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WO2018195739A1 - Procédé et système d'accès au réseau - Google Patents

Procédé et système d'accès au réseau Download PDF

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Publication number
WO2018195739A1
WO2018195739A1 PCT/CN2017/081759 CN2017081759W WO2018195739A1 WO 2018195739 A1 WO2018195739 A1 WO 2018195739A1 CN 2017081759 W CN2017081759 W CN 2017081759W WO 2018195739 A1 WO2018195739 A1 WO 2018195739A1
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WO
WIPO (PCT)
Prior art keywords
heat
terminal
battery
chip
value
Prior art date
Application number
PCT/CN2017/081759
Other languages
English (en)
Chinese (zh)
Inventor
李卓希
Original Assignee
李卓希
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by 李卓希 filed Critical 李卓希
Priority to PCT/CN2017/081759 priority Critical patent/WO2018195739A1/fr
Publication of WO2018195739A1 publication Critical patent/WO2018195739A1/fr

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/02Arrangements for optimising operational condition
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/02Services making use of location information

Definitions

  • the present invention relates to the field of mobile data communication technologies, and in particular, to a network access method and system.
  • the technical problem to be solved by the present invention is that the mobile terminal of the prior art cannot monitor the heat generation of the main control chip or the battery during the network connection process in real time, and cannot be based on the chip or the battery.
  • Work heating condition to control the switching of the mobile terminal data network which not only easily causes the mobile terminal chip or the battery to work overheating, but also is not conducive to improving the network data transmission efficiency of the mobile terminal, and cannot effectively avoid the safety caused by the overheating of the mobile terminal battery.
  • an embodiment of the present invention provides a network access method, where the method includes:
  • the working heat generation parameter is characterized by an instantaneous heat generation speed or accumulated heat with respect to the chip or the battery during operation, or by an operating temperature with respect to the chip or the battery;
  • a heat generation speed value VG of the chip or the battery is acquired as the heat generation value
  • a heat exchange transmission speed value VT of the chip or the battery is acquired as the heat dissipation value
  • the heat dissipation factor P (heat generation speed value VG - heat exchange transmission speed value VT) / heat generation speed value VG;
  • an embodiment of the present invention further provides a network access system, where the system includes a control unit, a network connection unit, a heat sensing unit, and a heat dissipation sensing unit;
  • the heat sensing unit is configured to acquire a working heat generation parameter and a heat generation value of a chip or a battery of the terminal in a data network connection state;
  • the control unit controls the network connection based on the heat generation value and the heat dissipation value Whether the connection unit performs a data network connection state change operation;
  • the heat sensing unit includes a plurality of sub-heat sensing units that surround the chip or battery by an envelope or are distributed on the surface of the chip or battery by multi-point sensing. on;
  • the heat dissipation sensing unit includes a plurality of semiconductor heat exchange sensors distributed on a surface of the terminal housing to detect a heat exchange transmission speed of the chip or the battery and the external environment;
  • control unit is further configured to calculate a heat dissipation factor P of the terminal according to the heat generation value and the heat dissipation value;
  • the heat dissipation factor P is used to evaluate the heat dissipation performance of the terminal in a data network connection state
  • system further includes a storage unit for storing a preset threshold for comparing the heat dissipation factor P.
  • the present invention provides a network access method and system by the above technical solution, the method and system detect the heat generated by the chip or the battery when the terminal is connected to different types of data networks, according to the current data network connection of the chip or the battery.
  • the battery accumulates and causes the terminal operating temperature to be too high, and finally ensures the normal data network connection of the terminal.
  • FIG. 1 is a schematic flowchart of a network access method according to an embodiment of the present invention.
  • FIG. 2 is a schematic structural diagram of a network access system according to an embodiment of the present invention.
  • FIG. 1 is a schematic flowchart of a network access method according to an embodiment of the present invention.
  • the method includes:
  • the terminal may be a mobile terminal such as a smart phone or a tablet computer, and the terminal includes a control unit, a network connection unit, and a heat sensing unit, and the network connection unit is configured to control the terminal to connect with different types of data networks.
  • Different types of data networks may be, but are not limited to, networks with different data transmission formats such as GPRS, GSM or wifi. Since the data transmission systems of GPRS, GSM or wifi are different, when the terminal is connected to the different types of data networks, the network connection unit also has different data transmission and parsing modes, which leads to the network connection unit corresponding The power consumption value of the chip is not the same. At this time, the power value outputted by the battery in the terminal is also different.
  • the power consumption value of the chip or the output power value of the battery is obviously It is higher than the power consumption value of the chip or the output power of the battery when the terminal is connected to the wifi data network.
  • the control unit controls the heat sensing unit to acquire a working heat parameter of the chip or the battery in the terminal, specifically, the working heat
  • the parameter may be characterized by an instantaneous heat generation rate or an accumulated heat value of the chip or the battery during operation, or may be characterized by an operating temperature with respect to the chip or the battery; accordingly, the heat sensing unit may be but not It is limited to a semiconductor thermal sensor or a semiconductor temperature sensor.
  • the heat sensing unit transmits a plurality of working heat parameters detected by the terminal under different types of data networks to the control unit, and the control unit compares the plurality of working heat parameters and creates different types of a numerical table in which the data network and the working heat parameter are in one-to-one correspondence, wherein the value table further sets a priority level of the connection between the terminal and the different types of data networks according to the comparison result of the working heat parameters, which is simple In other words, when the terminal is connected to a data network, the chip or the battery corresponds to the work. The smaller the thermal parameter, the higher the connection priority of the data network. Subsequently, the control unit saves the created value table in the storage unit of the terminal.
  • the network connection unit of the terminal selects a certain data network to connect under the operation of the user.
  • the control unit controls the heat sensing unit to acquire the heat generation value of the chip or the battery when the terminal is working, and the heat is generated.
  • the generated value is related to the heat generated by the chip or the battery in the case of the data network connection of the terminal.
  • the heat sensing unit may have a plurality of sub-heat sensing units, the plurality of sub-children
  • the heat sensing unit may also surround the chip or the battery in the form of an envelope, or be distributed in the form of multi-point sensing on the surface of the chip or the battery, and the plurality of sub-heat sensing units can detect different positions of the chip or the battery.
  • the heat sensing unit performs the corresponding calculation process on the heat value detected by the plurality of sub-heat sensing units as a heat generation value about the chip or the battery, such as a heat generation speed value of the chip or the battery.
  • the terminal further includes a heat dissipation sensing unit for detecting a value of the heat generated by the chip or the battery to the external environment, the heat dissipation sensing unit being configured to include a plurality of semiconductor heat exchanges distributed on the surface of the terminal housing
  • the sensor, the semiconductor heat exchange sensor is capable of detecting a heat exchange transmission speed value VT of the working heat generated by the chip or the battery through the outer casing and the external environment.
  • the control unit acquires the heat generation speed value VG detected by the heat sensing unit and the heat exchange transmission speed value VT detected by the heat dissipation sensor unit, and performs the heat generation speed value VG and the heat exchange transmission speed value VT.
  • a heat dissipation factor P (heat generation speed value VG - heat exchange transmission speed value VT) / heat generation speed value VG, which is used for the heat dissipation factor P Measure the heat dissipation performance of the chip or the battery itself in the current data connection state of the terminal.
  • the heat dissipation factor P>0 it indicates that the current chip or battery has a higher heat generation rate than the chip or The heat exchange transmission speed between the battery and the external environment
  • the heat dissipation factor P ⁇ 0 indicates that the current chip or battery heat generation speed is lower than or equal to the heat exchange transmission speed of the chip or the battery and the external environment
  • the heat dissipation factor P The heat generation-transmission situation of the terminal under different data network connections can be quantitatively determined.
  • control unit compares the heat dissipation factor P calculated in the previous step with a preset threshold T stored in the storage unit, if the heat dissipation factor P is less than or equal to the preset threshold T. In this case, it indicates that the current chip or the battery can quickly dissipate the heat generated by the working of the terminal data network, and the heat does not accumulate in the chip or the battery.
  • the control unit sends an instruction with a trigger code “1” to the network connection unit, which indicates that In the current state of the terminal data network connection, the chip or the battery cannot quickly dissipate the heat generated by its own operation, and the heat is continuously accumulated in the chip or the battery so that the operating temperature of the chip or the battery is too high.
  • the network connection unit receives the instruction with the maintenance code “0”, the network connection unit maintains the connection state of the terminal with the current data network; when the network connection unit receives the trigger code “1” When instructed, the network connection unit triggers the terminal to switch the current data network connection status.
  • the triggering, by the network connection unit, the terminal to switch the current data network connection status may include cutting off the connection status of the terminal with the current data network or switching the terminal to connect with other data networks.
  • the control unit After the network connection unit cuts off the connection between the terminal and the current data network, the control unit periodically obtains a comparison result between the heat dissipation factor P and the preset threshold T, and the heat dissipation factor P is less than the preset threshold.
  • the connection includes the control unit obtaining the data network having the highest connection priority level from the value table of the S101, and connecting the terminal connection to the data network having the highest connection limited level through the network connection unit, and further, if the connection has the highest connection When the priority data network cannot be connected, the network connection unit selects the data network with the next-level connection priority level for connection, and so on, so as to ensure that the terminal has less heat-generating data network connection during data transmission. .
  • the network access method distinguishes different types of data networks and terminals based on the heat generated by the operation of the chip or the battery when the terminal is connected to different types of data networks, and based on the generated value of the working heat.
  • Connection priority in addition to the method can also be based on the core
  • the difference between the heat generation value of the chip or the battery in the current data network connection state and the heat exchange transmission value between the current data network and the external environment determines whether to change the data network connection state of the current terminal, and the network access method can be based on the terminal.
  • the working heat generation situation of the terminal controls the data network connection state of the terminal, thereby avoiding the situation that the terminal continuously accumulates in the chip or the battery during the process of connecting the data network and causes the working temperature of the terminal to be too high, and finally guarantees the terminal. Normal data network connection.
  • FIG. 2 is a schematic structural diagram of a network access system according to an embodiment of the present invention.
  • the network access system enables the terminal to generate heat according to a chip or a battery when performing data network connection work. Status to control the data network connection of the terminal.
  • the network access system includes a control unit, a network connection unit, a storage unit, a heat sensing unit, and a heat dissipation sensing unit, wherein the control unit is configured to control the network connection unit, the storage unit, the heat sensing unit, and the heat dissipation The work of the sensory unit.
  • the network connection unit is used to control the connection status between the terminal and different types of data networks.
  • the terminal may be a mobile terminal such as a smart phone or a tablet computer.
  • the different types of data networks may be but not limited to networks with different data transmission systems such as GPRS, GSM or wifi.
  • the network connection unit can control whether the terminal performs a data network connection or control the terminal to perform connection switching between different types of data networks.
  • the heat sensing unit is configured to obtain a working heat parameter of the chip or the battery when the terminal performs a data network connection, and the working heat parameter may specifically generate a speed or a cumulative heat value of the instantaneous heat generated by the chip or the battery during the working process. Characterized, or characterized by the operating temperature of the chip or battery. Accordingly, the heat sensing unit can be, but is not limited to, a semiconductor thermal sensor or a semiconductor temperature sensor. Further, the heat sensing unit may have a plurality of sub-heat sensing units, which may also surround the chip or the battery in the form of an envelope, or be distributed in the chip or battery in the form of multi-point sensing. On the surface, the plurality of sub-heat sensing units are capable of detecting heat generation at different positions of the chip or the battery.
  • the heat dissipation sensing unit is configured to detect the heat generated by the chip or the battery to divergence parameter values to the external environment.
  • the heat dissipation sensing unit can be configured to include a plurality of semiconductor heat exchange sensors distributed on a surface of the terminal housing.
  • the semiconductor heat exchange sensor is capable of detecting a heat exchange transmission speed value of the working heat generated by the chip or the battery through the outer casing and the external environment.
  • the control unit can also compare the size of the plurality of working heat parameters detected by the heat sensing unit, and create a numerical table corresponding to the different types of data networks and the working heat parameters, wherein the value table is further based on the value table.
  • the result of the size comparison of the working heat parameters sets the priority level of the connection between the terminal and the different types of data networks.
  • the value table is stored in the storage unit.
  • the storage unit also holds a preset threshold for the heat dissipation factor to be compared.
  • the control unit finally sends different instructions to the network connection unit based on the result of the comparison process, and the network connection unit performs a corresponding data network connection control operation on the terminal according to the received instruction type.
  • the network access system generates a value according to the heat generated by the chip or the battery when the terminal is connected to different types of data networks, according to the heat generated by the chip or the battery in the current data network connection state.
  • the difference between the heat exchange value and the external environment is used to determine whether to change the data network connection status of the current terminal, and the network access system can control the data network connection status of the terminal based on the working heat generation condition of the terminal itself. Therefore, the terminal does not accumulate heat in the chip or the battery during the process of connecting the data network, and the terminal operating temperature is too high, and finally ensures the normal data network connection of the terminal.
  • the storage medium may be a magnetic disk, an optical disk, a read-only memory (ROM), or a random access memory (RAM).

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  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Telephone Function (AREA)

Abstract

Un mode de réalisation de la présente invention concerne un procédé d'accès au réseau. Le procédé comprend les étapes suivantes : S101, obtention de paramètres de génération de chaleur de travail d'une puce ou d'une batterie d'un terminal lorsque le terminal est connecté à différents types de réseaux de données ; S102, obtention d'une valeur de génération de chaleur de la puce ou de la batterie lorsque le terminal est en connexion avec un réseau actuel, et réalisation d'une opération sur la valeur de génération de chaleur et une valeur de dissipation de chaleur du terminal, de façon à obtenir un facteur de dissipation de chaleur P du terminal ; et S103, comparaison du facteur de dissipation de chaleur P avec un seuil prédéfini, et contrôle de l'état de connexion au réseau de données du terminal en fonction du résultat de la comparaison. Un mode de réalisation de la présente invention concerne également un système d'accès au réseau. En utilisant la présente invention, un procédé pour éviter une température de fonctionnement excessivement élevée d'une puce ou d'une batterie de la batterie pendant une connexion au réseau de données peut être fourni.
PCT/CN2017/081759 2017-04-24 2017-04-24 Procédé et système d'accès au réseau WO2018195739A1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PCT/CN2017/081759 WO2018195739A1 (fr) 2017-04-24 2017-04-24 Procédé et système d'accès au réseau

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2017/081759 WO2018195739A1 (fr) 2017-04-24 2017-04-24 Procédé et système d'accès au réseau

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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103067939A (zh) * 2012-12-19 2013-04-24 广东欧珀移动通信有限公司 降低移动终端辐射的方法和装置
CN105511594A (zh) * 2016-02-29 2016-04-20 柏伟伟 一种移动终端温度的控制方法及移动终端
CN105578416A (zh) * 2016-01-27 2016-05-11 努比亚技术有限公司 终端数据业务控制方法和装置
CN106294922A (zh) * 2015-06-24 2017-01-04 格罗方德半导体公司 使用热势理论模型化集成电路芯片上的局部温度变化

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103067939A (zh) * 2012-12-19 2013-04-24 广东欧珀移动通信有限公司 降低移动终端辐射的方法和装置
CN106294922A (zh) * 2015-06-24 2017-01-04 格罗方德半导体公司 使用热势理论模型化集成电路芯片上的局部温度变化
CN105578416A (zh) * 2016-01-27 2016-05-11 努比亚技术有限公司 终端数据业务控制方法和装置
CN105511594A (zh) * 2016-02-29 2016-04-20 柏伟伟 一种移动终端温度的控制方法及移动终端

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