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CN106856428A - For the bluetooth and WiFi coexistence methods and device of terminal device - Google Patents

For the bluetooth and WiFi coexistence methods and device of terminal device Download PDF

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Publication number
CN106856428A
CN106856428A CN201510901025.3A CN201510901025A CN106856428A CN 106856428 A CN106856428 A CN 106856428A CN 201510901025 A CN201510901025 A CN 201510901025A CN 106856428 A CN106856428 A CN 106856428A
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CN
China
Prior art keywords
wifi
timeslice
bluetooth
monitoring
bottom pour
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN201510901025.3A
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Chinese (zh)
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CN106856428B (en
Inventor
李艳涛
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Spreadtrum Communications Shanghai Co Ltd
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Spreadtrum Communications Shanghai Co Ltd
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Priority to CN201510901025.3A priority Critical patent/CN106856428B/en
Publication of CN106856428A publication Critical patent/CN106856428A/en
Application granted granted Critical
Publication of CN106856428B publication Critical patent/CN106856428B/en
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/22Arrangements affording multiple use of the transmission path using time-division multiplexing
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/12Wireless traffic scheduling
    • H04W72/1215Wireless traffic scheduling for collaboration of different radio technologies

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  • Engineering & Computer Science (AREA)
  • Signal Processing (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Mobile Radio Communication Systems (AREA)

Abstract

A kind of bluetooth for terminal device and WiFi coexistence methods and device, bluetooth and WiFi coexistence methods for terminal device include:Channel is distributed to WiFi and bluetooth in a time multiplexed manner, so that channel includes WiFi timeslices, monitoring timeslice and Bluetooth time piece, wherein, monitoring timeslice is after the WiFi timeslices, WiFi timeslices and monitoring timeslice distribute to WiFi, and Bluetooth time piece distributes to the bluetooth;In monitoring timeslice, protection frame to the WAP coupled with terminal device is only sent by WiFi, and receive the bottom pour ladle data that the WAP sends.Bluetooth and WiFi coexistence methods and device for terminal device realize the reception of the bottom pour ladle data that WAP sends after the WiFi working times terminate, it is to avoid influences of the bottom pour ladle data to WiFi service behaviours, and improve WiFi and bluetooth coexists performance.

Description

For the bluetooth and WiFi coexistence methods and device of terminal device
Technical field
The present invention relates to internet data communication field, more particularly to a kind of bluetooth for terminal device with WiFi coexistence methods and device.
Background technology
With the development of the communication technology, major part terminal device supports WiFi function and bluetooth at present (BlueTooth, BT) function.BT is a kind of wireless technology standard, it is possible to achieve fixing equipment, movement set The standby short-range data and personal area network between is exchanged.WiFi is a kind of high frequency radio signal, can be by Between terminal device, such as PC, pad, mobile phone are wirelessly interconnected, and realize data Transmission and exchange.
In the prior art, many scene requirement WiFi and BT in terminal device work simultaneously.WiFi and BT works simultaneously when, because WiFi and BT are operated in 2.4G frequency ranges, working channel is almost weighed completely Close, both can produce when working simultaneously and interfere with each other.In order to avoid interference, generally using time division multiplex letter Road, Fig. 1 is that bluetooth and WiFi coexist time division multiplex schematic diagram in the prior art, by WiFi and BT from when Between upper separate, it is to avoid while work.In the course of the work, WiFi operate mainly in station mode (Station, STA), STA is connected with WAP (Access Point, AP) and transmits data.Time division multiplex channel When, if channel is assigned to BT, WiFi cannot send and receive data.Data are sent for WiFi For, terminal device can stop data is activation according to time-division pattern.
But, the data receiver for WiFi, AP is not aware that terminal device in time division multiplex channel, When terminal device by channel distribution to BT when, AP still can send data to WiFi, and now WiFi The data of AP transmissions cannot be received, AP is ultimately caused and is sent data reduction of speed, in turn result in WiFi performances Decline or function is unavailable, cause WiFi's and BT hydraulic performance decline coexists.
The content of the invention
Present invention solves the technical problem that being how effectively to solve WAP bottom pour ladle phenomenon, improve blue Tooth and WiFi coexist performance.
In order to solve the above technical problems, the embodiment of the present invention provide a kind of bluetooth for terminal device with WiFi coexistence methods, the bluetooth for terminal device includes with WiFi coexistence methods:
Channel is distributed to WiFi and bluetooth in a time multiplexed manner, so that the channel includes WiFi Timeslice, monitoring timeslice and Bluetooth time piece, wherein, the monitoring timeslice is in the WiFi times After piece, the WiFi timeslices and monitoring timeslice distribute to the WiFi, the Bluetooth time piece point Bluetooth described in dispensing;
It is described monitoring timeslice in, by the WiFi only send protection frame to the terminal device coupling The WAP of conjunction, and receive the bottom pour ladle data that the WAP sends.
Optionally, the bluetooth for terminal device also includes with WiFi coexistence methods:In the monitoring In timeslice, the information of the bottom pour ladle data that statistics is received;
Information according to the bottom pour ladle data is adjusted to the time span of the monitoring timeslice.
Optionally, the monitoring timeslice continues with the WiFi timeslices.
Optionally, the Bluetooth time piece it is described monitoring timeslice after, and the Bluetooth time piece with The monitoring timeslice continues.
Optionally, the bluetooth for terminal device also includes with WiFi coexistence methods:In the monitoring In timeslice, the WAP is received by the WiFi and is sent really in response to the protection frame Recognize frame.
Optionally, the bluetooth for terminal device also includes with WiFi coexistence methods:The WiFi In response to the bottom pour ladle data for receiving, acknowledgement frame to the WAP is sent.
Optionally, the initial temporal length of the monitoring timeslice is 0~5ms.
Optionally, the information of the bottom pour ladle data includes one or more of:The quantity of bottom pour ladle data, The transmission rate of bottom pour ladle data, the continuous transmission time of bottom pour ladle data.
Optionally, the information of the bottom pour ladle data includes one or more of:The quantity of bottom pour ladle data, The transmission rate of bottom pour ladle data, the continuous transmission time of bottom pour ladle data, according to the information of the bottom pour ladle data Time span to the monitoring timeslice is adjusted including one or more of:
The time span of the quantity regulation monitoring timeslice according to the bottom pour ladle data, the bottom pour ladle number According to quantity it is more, it is described monitoring timeslice time span it is more long;
The time span of the transmission rate regulation monitoring timeslice according to the bottom pour ladle data, the leakage The transmission rate of bag data is slower, and the time span of the monitoring timeslice is more long;
The time span of timeslice, institute are monitored described in continuous transmission time adjustment according to the bottom pour ladle data The continuous transmission time for stating bottom pour ladle data is more long, and the time span of the monitoring timeslice is more long.
Optionally, the protection frame is the empty data frame with dormancy mark.
In order to solve the above technical problems, the embodiment of the invention also discloses a kind of bluetooth for terminal device With WiFi coexisting apparatus, bluetooth and WiFi coexisting apparatus for terminal device include:
Time allocation unit, is suitable to channel is distributed to WiFi and bluetooth in a time multiplexed manner, so that The channel includes WiFi timeslices, monitoring timeslice and Bluetooth time piece, wherein, the monitoring time After the WiFi timeslices, the WiFi timeslices and monitoring timeslice distribute to the WiFi to piece, The Bluetooth time piece distributes to the bluetooth;
Transmission unit, be suitable to it is described monitoring timeslice in, by the WiFi only send protection frame to The WAP of the terminal device coupling, and receive the bottom pour ladle data that the WAP sends.
Optionally, the bluetooth for terminal device also includes with WiFi coexisting apparatus:
Statistic unit, is suitable in the monitoring timeslice, the information of the bottom pour ladle data that statistics is received;
Adjustment unit, is suitable to the information according to the bottom pour ladle data to the time span for monitoring timeslice It is adjusted.
Optionally, the monitoring timeslice continues with the WiFi timeslices.
Optionally, the Bluetooth time piece it is described monitoring timeslice after, and the Bluetooth time piece with The monitoring timeslice continues.
Optionally, the bluetooth for terminal device also includes with WiFi coexisting apparatus:The transmission is single Unit receives the WAP in response to the protection in the monitoring timeslice by the WiFi Frame and the acknowledgement frame that sends.
Optionally, the bluetooth for terminal device also includes with WiFi coexisting apparatus:The WiFi In response to the bottom pour ladle data for receiving, acknowledgement frame to the WAP is sent.
Optionally, the initial temporal length of the monitoring timeslice is 0~5ms.
Optionally, the information of the bottom pour ladle data includes one or more of:The quantity of bottom pour ladle data, The transmission rate of bottom pour ladle data, the continuous transmission time of bottom pour ladle data.
Optionally, the information of the bottom pour ladle data includes one or more of:The quantity of bottom pour ladle data, The transmission rate of bottom pour ladle data, the continuous transmission time of bottom pour ladle data, according to the information of the bottom pour ladle data Time span to the monitoring timeslice is adjusted including one or more of:
The time span of the quantity regulation monitoring timeslice according to the bottom pour ladle data, the bottom pour ladle number According to quantity it is more, it is described monitoring timeslice time span it is more long;
The time span of the transmission rate regulation monitoring timeslice according to the bottom pour ladle data, the leakage The transmission rate of bag data is slower, and the time span of the monitoring timeslice is more long;
The time span of timeslice, institute are monitored described in continuous transmission time adjustment according to the bottom pour ladle data The continuous transmission time for stating bottom pour ladle data is more long, and the time span of the monitoring timeslice is more long.
Optionally, the protection frame is the empty data frame with dormancy mark.
Compared with prior art, the technical scheme of the embodiment of the present invention has the advantages that:
The embodiment of the present invention is by the way that channel to be distributed to WiFi and bluetooth in a time multiplexed manner, so that institute State channel and include WiFi timeslices, monitoring timeslice and Bluetooth time piece, and in the monitoring timeslice, Protection frame to the WAP coupled with the terminal device is only sent by the WiFi, and receives institute The bottom pour ladle data of WAP transmission are stated, the WAP hair after the WiFi working times terminate is realized The reception of the bottom pour ladle data sent, it is to avoid influences of the bottom pour ladle data to WiFi service behaviours, improves WiFi Performance is coexisted with bluetooth.
Further, the information of the bottom pour ladle data by being received in statistical monitoring timeslice, according to the leakage The information of bag data to it is described monitoring timeslice time span be adjusted, by dynamic adjustment WiFi and The working time of bluetooth, the reception of whole bottom pour ladle data is realized, eliminates bottom pour ladle data to protecting the influence of frame, Reaching not only can for a long time protect WiFi service behaviours but also the purpose of the environment that do not influence to eat dishes without rice or wine.
Brief description of the drawings
Fig. 1 is that bluetooth and WiFi coexist time division multiplex schematic diagram in the prior art;
Fig. 2 is the flow of a kind of bluetooth for terminal device of the embodiment of the present invention and WiFi coexistence methods Figure;
Fig. 3 is a kind of bluetooth of the embodiment of the present invention and WiFi time division multiplex schematic diagrames;
Fig. 4 is the flow of another bluetooth for terminal device of the embodiment of the present invention and WiFi coexistence methods Figure;
Fig. 5 is a kind of bluetooth for terminal device of the embodiment of the present invention and WiFi coexisting apparatus structural representations Figure.
Specific embodiment
As described in the background art, the data receiver for WiFi, AP be not aware that terminal device when Point multipling channel, when terminal device by channel distribution to BT when, AP still can send data to WiFi, And now WiFi cannot receive the data of AP transmissions, ultimately cause AP and send data reduction of speed, Jin Erzao It is unavailable into WiFi hydraulic performance declines or function, cause WiFi's and BT hydraulic performance decline coexists.
In order to avoid the disabled situation of WiFi function, special protection frame is generally sent to AP using WiFi, Empty data (Null Data) frame of (Doze Flag) is marked with dormancy by sending, AP is known WiFi still online associations, its hollow data frame is properly termed as protecting frame again;AP can also be seen that WiFi Reception signal intensity indicate (Received Signal Strength Indication, RSSI) change;802.11 Agreement specifies that AP supports power management (Power Management) function, when AP receives carrying Doze After the bag of Flag, will stop sending data to STA, data temporary cache is got up.And AP is to work( Consumption management (Power Management) function supports simultaneously imperfection, causes AP receiving the guarantor of STA STA still can be sent data to after shield frame, bottom pour ladle phenomenon occurs, frame protecting effect is protected in influence, while Also have impact on BT and WiFi coexists performance.
Further, it is also possible to send allow to send agreement (Clear to send, CTS) frame to AP by STA, To ensure that WiFi function can use.CTS frames then can forcibly occupy channel for a period of time, realization allow mono- section of AP when Between not to STA send data.But CTS guard times are limited, agreement regulation is most long to be can only achieve 32.768ms, busy channel time long scene is needed for BT, is such as asked (Inquiry) and is sought When exhaling (Page) state, CTS protective capabilities are limited;Meanwhile, CTS can influence using cochannel its His equipment, continuous cycles are using can make environmental degradation of eating dishes without rice or wine.
It is understandable to enable the above objects, features and advantages of the present invention to become apparent, below in conjunction with the accompanying drawings Specific embodiment of the invention is described in detail.
Using protection frame, by recognizing AP with the presence or absence of bottom pour ladle phenomenon, dynamic is adjusted the embodiment of the present invention The time distribution of WiFi and BT, eliminates influence of the bottom pour ladle data (Leaky AP) of AP to protection frame, Reaching not only can for a long time protect WiFi but also the purpose of the environment that do not influence to eat dishes without rice or wine.
Fig. 2 is a kind of bluetooth for terminal device of the embodiment of the present invention and WiFi coexistence method flow charts.
Fig. 2 is refer to, the bluetooth and WiFi coexistence methods for terminal device include:
Step S201, channel is distributed to WiFi and bluetooth in a time multiplexed manner, so that the channel Comprising WiFi timeslices, monitoring timeslice and Bluetooth time piece.
Please with reference to Fig. 3, Fig. 3 is a kind of bluetooth of the embodiment of the present invention and WiFi time division multiplex schematic diagrames.
In the present embodiment, the monitoring timeslice 302 is described after the WiFi timeslices 301 WiFi timeslices 301 and monitoring timeslice 302 distribute to the WiFi, 303 points of the Bluetooth time piece Bluetooth described in dispensing.WiFi is operated in the WiFi timeslices 301, is realized within this time and wirelessly connect Data sends and receives between access point (Access Point, AP).Bluetooth is operated in the Bluetooth time piece 303, carry out the transmission of blue-teeth data.WiFi timeslices 301, monitoring timeslice 302 and Bluetooth time piece 303 is separate, does not interfere with each other.
In specific implementation, the WiFi of terminal device is in station mode at work, and WiFi does not receive in itself Wireless access, it may be connected to AP.AP provides wirelessly access, it is allowed to the WiFi of terminal device Access, there is provided data access.WiFi sends to AP and activates when the WiFi timeslices 301 start Frame (Active), expression can transmit data;After AP receives Active Frame, acknowledgement frame (Ack) is sent To the WiFi of terminal device, expression can carry out data transmission;The WiFi of terminal device sends number to AP According to bag, AP sends acknowledgement frame;AP sends packet to WiFi, and WiFi sends acknowledgement frame, it is ensured that data The validity of transmission.It should be noted that WiFi herein refers to terminal device and external equipment (example Such as AP) between WiFi connections or the WiFi module on terminal device;" bluetooth " herein refers to Be that bluetooth connection or terminal between terminal device and external equipment (such as other-end equipment) sets Standby upper bluetooth module.
In the present embodiment, monitoring timeslice 302 continues with the WiFi timeslices 301.During the bluetooth Between piece 303 it is described monitoring timeslice 302 after, and the Bluetooth time piece 303 with the monitoring when Between piece 302 continue.
In specific implementation, WiFi timeslices 301 and Bluetooth time piece 303 are the works according to WiFi and bluetooth Make mode, be allocated according to certain rule, the monitoring timeslice 302 then need one it is initial Time span, the initial temporal length is 0~5ms.
It is understood that in the application, can be according to actual applied environment, to WiFi timeslices 301 Adaptability is done with the allocation rule of Bluetooth time piece 303 and the initial temporal length of monitoring timeslice 302 Adjustment.
Step S202, it is described monitoring timeslice 302 in, by the WiFi only send protection frame to The WAP of the terminal device coupling, and receive the bottom pour ladle data that the WAP sends.
In the present embodiment, monitoring timeslice 302 is also allocated to WiFi, and WiFi is in monitoring timeslice 302 only send protection frame to the wireless access point AP coupled with the terminal device, receive what AP sent Bottom pour ladle data.The protection frame is the empty data frame with dormancy mark.
In specific implementation, the protection frame can be the Null Data frames with Doze Flag.In WiFi After timeslice 301 terminates, at the beginning, WiFi sends with Doze Flag monitoring timeslice 302 immediately Null Data frames to AP, AP is known WiFi still online associations, so that AP can continue Data, i.e. bottom pour ladle data are sent, to the WiFi of terminal device.Herein, " bottom pour ladle data " refer to end After protection frame is sent to AP, AP is still to the data of terminal device transmission for end equipment.
In the present embodiment, in the monitoring timeslice 302, after AP receives the protection frame, response Acknowledgement frame to the WiFi is sent in the protection frame, and continues to send bottom pour ladle data;The WiFi After receiving the bottom pour ladle data, in response to the bottom pour ladle data for receiving, acknowledgement frame is sent to described WAP.
It is understood that in the monitoring timeslice 302, when WiFi is not received by bottom pour ladle data, Represent do not exist bottom pour ladle phenomenon, in this case, then the initial time in monitoring timeslice 302 terminates Afterwards, into Bluetooth time piece 303, the data transfer work of bluetooth is carried out.
Fig. 4 is another bluetooth for terminal device of the embodiment of the present invention and WiFi coexistence method flows Figure.
Fig. 4 is refer to, the bluetooth and WiFi coexistence methods for terminal device include:
Step S401, channel is distributed to WiFi and bluetooth in a time multiplexed manner, so that the channel Comprising WiFi timeslices, monitoring timeslice and Bluetooth time piece.
In the present embodiment, the monitoring timeslice 302 is described after the WiFi timeslices 301 WiFi timeslices 301 and monitoring timeslice 302 distribute to the WiFi, 303 points of the Bluetooth time piece Bluetooth described in dispensing.WiFi is operated in the WiFi timeslices 301, is realized within this time and wirelessly connect Data sends and receives between access point (Access Point, AP).Bluetooth is operated in the Bluetooth time piece 303, carry out the transmission of data.WiFi timeslices 301, monitoring timeslice 302 and Bluetooth time piece 303 It is separate, it does not interfere with each other.
Step S402, it is described monitoring timeslice in, by the WiFi only send protection frame to it is described The WAP of terminal device coupling, and receive the bottom pour ladle data that the WAP sends.
In the present embodiment, monitoring timeslice 302 is also allocated to WiFi, and WiFi is in monitoring timeslice 302 only send protection frame to the wireless access point AP coupled with the terminal device, receive what AP sent Bottom pour ladle data.The protection frame is the empty data frame with dormancy mark.
Step S403, in the monitoring timeslice, the information of the bottom pour ladle data that statistics is received.
In the present embodiment, the information of the bottom pour ladle data includes one or more of:The number of bottom pour ladle data Amount, the continuous transmission time of the transmission rate of bottom pour ladle data, bottom pour ladle data.
In specific implementation, in monitoring timeslice 302, when WiFi receives at least one bottom pour ladle data, table Show there is bottom pour ladle phenomenon, the information of bottom pour ladle data that statistics is received, including bottom pour ladle data quantity, leakage The transmission rate of bag data, the continuous transmission time of bottom pour ladle data.
Step S404, the information according to the bottom pour ladle data is carried out to the time span of the monitoring timeslice Adjustment.
In the present embodiment, based on the information of bottom pour ladle data, the serious journey of WAP bottom pour ladle phenomenon is judged When degree, i.e., quantity, the transmission rate of bottom pour ladle data, the continuous transmission of bottom pour ladle data according to bottom pour ladle data Between difference, the order of severity of bottom pour ladle phenomenon is also different.
In specific implementation, in the case of not serious for bottom pour ladle, in the monitoring initial time of timeslice 302, WiFi can receive all of bottom pour ladle data of AP;When bottom pour ladle is serious, in monitoring timeslice After 302 initial times terminate, AP still sends bottom pour ladle data, in this case, WiFi to WiFi Performance coexists can still be affected with bluetooth.
In the present embodiment, the length to monitoring timeslice 302 is adjusted, to ensure that WiFi can be received To all bottom pour ladle data that WAP sends, wherein, adjustable strategies are as follows:According to the bottom pour ladle number According to the quantity regulation monitoring timeslice 302 time span, the quantity of the bottom pour ladle data is more, The time span of the monitoring timeslice 302 is more long;Transmission rate regulation institute according to the bottom pour ladle data The time span of monitoring timeslice 302 is stated, the transmission rate of the bottom pour ladle data is slower, during the monitoring Between piece 302 time span it is more long;Monitored described in continuous transmission time adjustment according to the bottom pour ladle data The time span of timeslice 302, the continuous transmission time of the bottom pour ladle data is more long, the monitoring time The time span of piece 302 is more long.
The embodiment of the present invention realizes the bottom pour ladle data that WAP sends after the WiFi working times terminate Reception, it is to avoid influences of the bottom pour ladle data to WiFi service behaviours, improve being total to for WiFi and bluetooth Sustainability energy.
It should be noted that can be according to actual applied environment to monitoring the length adjustment of timeslice 302 Strategy does the adjustment of adaptability, and the embodiment of the present invention is without limitation.
The specific embodiment of the embodiment of the present invention refers to foregoing corresponding embodiment, and here is omitted.
Fig. 5 is a kind of bluetooth for terminal device of the embodiment of the present invention and WiFi coexisting apparatus structural representations Figure.
Fig. 5 is refer to, the bluetooth and WiFi coexisting apparatus for terminal device include:
Time allocation unit 501, is suitable to channel is distributed to WiFi and bluetooth in a time multiplexed manner, So that the channel includes WiFi timeslices, monitoring timeslice and Bluetooth time piece.
Wherein, it is described monitoring timeslice 302 after the WiFi timeslices 301, during the WiFi Between piece 301 and monitoring timeslice 302 distribute to the WiFi, the Bluetooth time piece 303 distributes to institute State bluetooth.The monitoring timeslice 302 continues with the WiFi timeslices 301, the Bluetooth time piece 303 after the monitoring timeslice 302, and the Bluetooth time piece 303 and the monitoring timeslice 302 continue.The protection frame can be the empty data frame with dormancy mark.
Transmission unit 502, is suitable in the monitoring timeslice, and protection frame is only sent by the WiFi To the WAP coupled with the terminal device, and receive the bottom pour ladle number that the WAP sends According to.
In the present embodiment, the transmission unit 502 is connect in the monitoring timeslice by the WiFi Receive the acknowledgement frame that the WAP sends in response to the protection frame.The WiFi is in response to receiving The bottom pour ladle data for arriving, send acknowledgement frame to the WAP.
Statistic unit 503, is suitable in the monitoring timeslice, the information of the bottom pour ladle data that statistics is received.
In the present embodiment, the information of the bottom pour ladle data includes one or more of:The number of bottom pour ladle data Amount, the continuous transmission time of the transmission rate of bottom pour ladle data, bottom pour ladle data.
Adjustment unit 504, is suitable to long to the time of the monitoring timeslice according to the information of the bottom pour ladle data Degree is adjusted.
In the present embodiment, the initial temporal length of the monitoring timeslice 302 is 0~5ms.To ensure WiFi The all of bottom pour ladle data of WAP are received, the quantity according to the bottom pour ladle data adjusts the monitoring The time span of timeslice 302, the quantity of the bottom pour ladle data is more, the monitoring timeslice 302 Time span is more long;According to the bottom pour ladle data transmission rate regulation it is described monitoring timeslice 302 when Between length, the transmission rate of the bottom pour ladle data is slower, and the time span of the monitoring timeslice 302 is got over It is long;The time span of timeslice 302 is monitored described in continuous transmission time adjustment according to the bottom pour ladle data, The continuous transmission time of the bottom pour ladle data is more long, and the time span of the monitoring timeslice 302 is more long.
The specific embodiment of the embodiment of the present invention refers to foregoing corresponding embodiment, and here is omitted.
Although present disclosure is as above, the present invention is not limited to this.Any those skilled in the art, Without departing from the spirit and scope of the present invention, can make various changes or modifications, therefore guarantor of the invention Shield scope should be defined by claim limited range.

Claims (20)

1. a kind of bluetooth for terminal device and WiFi coexistence methods, it is characterised in that including:
Channel is distributed to WiFi and bluetooth in a time multiplexed manner, during so that the channel including WiFi Between piece, monitoring timeslice and Bluetooth time piece, wherein, it is described monitoring timeslice in the WiFi times After piece, the WiFi timeslices and monitoring timeslice distribute to the WiFi, the Bluetooth time Piece distributes to the bluetooth;
In the monitoring timeslice, protection frame is only sent by the WiFi and is extremely coupled with the terminal device WAP, and receive the bottom pour ladle data that the WAP sends.
2. the bluetooth for terminal device according to claim 1 and WiFi coexistence methods, it is characterised in that Also include:
In the monitoring timeslice, the information of the bottom pour ladle data that statistics is received;
Information according to the bottom pour ladle data is adjusted to the time span of the monitoring timeslice.
3. the bluetooth for terminal device according to claim 1 and WiFi coexistence methods, it is characterised in that The monitoring timeslice continues with the WiFi timeslices.
4. the bluetooth for terminal device according to claim 1 and WiFi coexistence methods, it is characterised in that The Bluetooth time piece it is described monitoring timeslice after, and the Bluetooth time piece with the monitoring when Between piece continue.
5. the bluetooth for terminal device according to any one of claim 1 to 4 and the WiFi sides of coexisting Method, it is characterised in that also include:In the monitoring timeslice, receive described by the WiFi The acknowledgement frame that WAP sends in response to the protection frame.
6. the bluetooth for terminal device according to any one of claim 1 to 4 and the WiFi sides of coexisting Method, it is characterised in that also include:The WiFi sends in response to the bottom pour ladle data for receiving Acknowledgement frame is to the WAP.
7. the bluetooth for terminal device according to any one of claim 1 to 4 and the WiFi sides of coexisting Method, it is characterised in that the initial temporal length of the monitoring timeslice is 0~5ms.
8. the bluetooth for terminal device according to any one of claim 1 to 4 and the WiFi sides of coexisting Method, it is characterised in that the information of the bottom pour ladle data includes one or more of:Bottom pour ladle data Quantity, the transmission rate of bottom pour ladle data, the continuous transmission time of bottom pour ladle data.
9. the bluetooth for terminal device according to claim 2 and WiFi coexistence methods, it is characterised in that The information of the bottom pour ladle data includes one or more of:The quantity of bottom pour ladle data, bottom pour ladle data The continuous transmission time of transmission rate, bottom pour ladle data, the information according to the bottom pour ladle data is to the prison The time span for surveying timeslice is adjusted including one or more of:
The time span of the quantity regulation monitoring timeslice according to the bottom pour ladle data, the bottom pour ladle data Quantity it is more, it is described monitoring timeslice time span it is more long;
The time span of the transmission rate regulation monitoring timeslice according to the bottom pour ladle data, the bottom pour ladle The transmission rate of data is slower, and the time span of the monitoring timeslice is more long;
The time span of timeslice is monitored described in continuous transmission time adjustment according to the bottom pour ladle data, it is described The continuous transmission time of bottom pour ladle data is more long, and the time span of the monitoring timeslice is more long.
10. the bluetooth for terminal device according to any one of claim 1 to 4 and the WiFi sides of coexisting Method, it is characterised in that the protection frame is the empty data frame with dormancy mark.
A kind of 11. bluetooths for terminal device and WiFi coexisting apparatus, it is characterised in that including:
Time allocation unit, is suitable to channel is distributed to WiFi and bluetooth in a time multiplexed manner, so that institute State channel and include WiFi timeslices, monitoring timeslice and Bluetooth time piece, wherein, the monitoring time Piece after the WiFi timeslices, distribute to described by the WiFi timeslices and monitoring timeslice WiFi, the Bluetooth time piece distributes to the bluetooth;
Transmission unit, be suitable to it is described monitoring timeslice in, by the WiFi only send protection frame to institute The WAP of terminal device coupling is stated, and receives the bottom pour ladle data that the WAP sends.
12. bluetooths for terminal device according to claim 11 and WiFi coexisting apparatus, its feature exist In also including:
Statistic unit, is suitable in the monitoring timeslice, the information of the bottom pour ladle data that statistics is received;
Adjustment unit, is suitable to enter the time span of the monitoring timeslice according to the information of the bottom pour ladle data Row adjustment.
13. bluetooths for terminal device according to claim 11 and WiFi coexisting apparatus, its feature exist In the monitoring timeslice continues with the WiFi timeslices.
14. bluetooths for terminal device according to claim 11 and WiFi coexisting apparatus, its feature exist In the Bluetooth time piece is after the monitoring timeslice, and the Bluetooth time piece and the prison Timeslice is surveyed to continue.
15. bluetooth for terminal device according to any one of claim 11 to 14 coexists dress with WiFi Put, it is characterised in that also include:The transmission unit is monitored in timeslice described, by described WiFi receives the acknowledgement frame that the WAP sends in response to the protection frame.
16. bluetooth for terminal device according to any one of claim 11 to 14 coexists dress with WiFi Put, it is characterised in that also include:The WiFi sends in response to the bottom pour ladle data for receiving Acknowledgement frame is to the WAP.
17. bluetooth for terminal device according to any one of claim 11 to 14 coexists dress with WiFi Put, it is characterised in that the initial temporal length of the monitoring timeslice is 0~5ms.
18. bluetooth for terminal device according to any one of claim 11 to 14 coexists dress with WiFi Put, it is characterised in that the information of the bottom pour ladle data includes one or more of:Bottom pour ladle data Quantity, the transmission rate of bottom pour ladle data, the continuous transmission time of bottom pour ladle data.
19. bluetooths for terminal device according to claim 12 and WiFi coexisting apparatus, its feature exist In the information of the bottom pour ladle data includes one or more of:The quantity of bottom pour ladle data, bottom pour ladle number According to transmission rate, bottom pour ladle data the continuous transmission time, the information according to the bottom pour ladle data is to institute The time span for stating monitoring timeslice is adjusted including one or more of:
The time span of the quantity regulation monitoring timeslice according to the bottom pour ladle data, the bottom pour ladle data Quantity it is more, it is described monitoring timeslice time span it is more long;
The time span of the transmission rate regulation monitoring timeslice according to the bottom pour ladle data, the bottom pour ladle The transmission rate of data is slower, and the time span of the monitoring timeslice is more long;
The time span of timeslice is monitored described in continuous transmission time adjustment according to the bottom pour ladle data, it is described The continuous transmission time of bottom pour ladle data is more long, and the time span of the monitoring timeslice is more long.
20. bluetooth for terminal device according to any one of claim 11 to 14 coexists dress with WiFi Put, it is characterised in that the protection frame is the empty data frame with dormancy mark.
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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109152057A (en) * 2018-08-14 2019-01-04 Oppo广东移动通信有限公司 Time slice distribution method and device and electronic equipment
CN109392177A (en) * 2018-04-27 2019-02-26 展讯通信(上海)有限公司 A kind of WiFi and Bluetooth coexistence dispatching method, device and mobile terminal
CN109587714A (en) * 2018-12-11 2019-04-05 恒玄科技(上海)有限公司 Send method, apparatus, storage medium and the bluetooth headset of audio data
CN109618317A (en) * 2018-12-17 2019-04-12 珠海市杰理科技股份有限公司 Time-sharing communication method, device, computer equipment and storage medium
CN112367709A (en) * 2020-10-30 2021-02-12 新华三技术有限公司 Channel control method, device and equipment
WO2024055583A1 (en) * 2022-09-15 2024-03-21 哲库科技(上海)有限公司 Audio data transmission method and apparatus, and chip

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1741484A (en) * 2004-08-09 2006-03-01 美国博通公司 Method and system for sharing a single antenna in radio communication
CN101069436A (en) * 2006-09-22 2007-11-07 创蕊信通(北京)科技有限公司 A single transceiver device, wireless communication device and wireless communication method thereof
US8798005B1 (en) * 2009-12-21 2014-08-05 Sprint Spectrum L.P. Comparative-throughput triggered handoff
CN103988536A (en) * 2011-12-05 2014-08-13 三星电子株式会社 Method and system for handling in-device coexistence interference in user equipment
CN104219015A (en) * 2013-06-03 2014-12-17 中兴通讯股份有限公司 Clock data recovery method and device for branch signals in SDH (synchronous digital hierarchy)
CN104812080A (en) * 2015-05-05 2015-07-29 江苏惠通集团有限责任公司 Wireless communication device and method for distributing time slices thereof
CN107105511A (en) * 2010-08-13 2017-08-29 交互数字专利控股公司 Wtru

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1741484A (en) * 2004-08-09 2006-03-01 美国博通公司 Method and system for sharing a single antenna in radio communication
CN101069436A (en) * 2006-09-22 2007-11-07 创蕊信通(北京)科技有限公司 A single transceiver device, wireless communication device and wireless communication method thereof
US8798005B1 (en) * 2009-12-21 2014-08-05 Sprint Spectrum L.P. Comparative-throughput triggered handoff
CN107105511A (en) * 2010-08-13 2017-08-29 交互数字专利控股公司 Wtru
CN103988536A (en) * 2011-12-05 2014-08-13 三星电子株式会社 Method and system for handling in-device coexistence interference in user equipment
CN104219015A (en) * 2013-06-03 2014-12-17 中兴通讯股份有限公司 Clock data recovery method and device for branch signals in SDH (synchronous digital hierarchy)
CN104812080A (en) * 2015-05-05 2015-07-29 江苏惠通集团有限责任公司 Wireless communication device and method for distributing time slices thereof

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109392177A (en) * 2018-04-27 2019-02-26 展讯通信(上海)有限公司 A kind of WiFi and Bluetooth coexistence dispatching method, device and mobile terminal
CN109392177B (en) * 2018-04-27 2022-03-01 展讯通信(上海)有限公司 WiFi and Bluetooth coexistence scheduling method and device and mobile terminal
CN109152057A (en) * 2018-08-14 2019-01-04 Oppo广东移动通信有限公司 Time slice distribution method and device and electronic equipment
CN109587714A (en) * 2018-12-11 2019-04-05 恒玄科技(上海)有限公司 Send method, apparatus, storage medium and the bluetooth headset of audio data
CN109587714B (en) * 2018-12-11 2022-09-09 恒玄科技(上海)股份有限公司 Method, device, storage medium and Bluetooth headset for sending audio data
CN109618317A (en) * 2018-12-17 2019-04-12 珠海市杰理科技股份有限公司 Time-sharing communication method, device, computer equipment and storage medium
CN109618317B (en) * 2018-12-17 2022-04-15 珠海市杰理科技股份有限公司 Time-sharing communication method, time-sharing communication device, computer equipment and storage medium
CN112367709A (en) * 2020-10-30 2021-02-12 新华三技术有限公司 Channel control method, device and equipment
CN112367709B (en) * 2020-10-30 2022-07-29 新华三技术有限公司 Channel control method, device and equipment
WO2024055583A1 (en) * 2022-09-15 2024-03-21 哲库科技(上海)有限公司 Audio data transmission method and apparatus, and chip

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