CN103035392B - There is the voltage transformer of carrier communication interface - Google Patents
There is the voltage transformer of carrier communication interface Download PDFInfo
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Abstract
本发明涉及一种具有载波通讯接口的电压互感器,它包括电压互感器器身(2),电压互感器器身(2)的1个或2个高压绝缘套管(1)上安装有载波通讯装置(3),载波通讯装置(3)由耦合器(4)、载波通讯模块(5)和交直转换电源模块(6)构成,交直转换电源模块(6)的两个交流输入端分别与电压互感器二次侧的两端相连、两个直流输出端分别与载波通讯模块(5)的电源输入端相连。使用它载波通讯装置不需要外置电源单独供电,结构简单,节省安装成本,可以降低装置的复杂度。它将耦合器和载波通讯模块设计在载波通讯装置中并安装在电压互感器的高压绝缘套管上,简化了系统结构,节省了空间。
The invention relates to a voltage transformer with a carrier communication interface, which includes a voltage transformer body (2), and one or two high-voltage insulating bushings (1) of the voltage transformer body (2) are equipped with a carrier wave The communication device (3), the carrier communication device (3) is composed of a coupler (4), a carrier communication module (5) and an AC-DC conversion power module (6), and the two AC input terminals of the AC-DC conversion power module (6) are respectively connected to The two ends of the secondary side of the voltage transformer are connected, and the two DC output ends are respectively connected to the power input end of the carrier communication module (5). Using it, the carrier communication device does not need an external power supply for separate power supply, has a simple structure, saves installation costs, and can reduce the complexity of the device. It designs the coupler and the carrier communication module in the carrier communication device and installs them on the high-voltage insulating bushing of the voltage transformer, which simplifies the system structure and saves space.
Description
技术领域 technical field
本发明涉及电力器材,具体涉及一种电压互感器。 The invention relates to electrical equipment, in particular to a voltage transformer.
背景技术 Background technique
电力载波通信是利用高压输电作为传输通路的载波通信方式,用于电力系统的调度通信、远动、保护、生产指挥、行政业务通信及各种信息传输。电力载波通信由电力线载波机、电力线、耦合设备构成,耦合设备包含线路阻波器、结合滤波器、耦合电容器、高频电缆等。耦合方式有相-地耦合,相-相耦合、混合耦合等, 其中耦合电容器是接在结合滤波器和高压导线之间,它是一个耐高压的瓷瓶油浸纸介绝缘电容,其容量随电压等级的不同而不同。耦合电容器的作用是将载波设备与电力线上的高电压、操作过电压及雷电过电压等隔离开,防止高电压进入通信设备,同时使高频载波信号能顺利地耦合到高电压线路上。目前10KV电压互感器中的电力载波通讯中,耦合电容器通过相-地耦合的方式接到电力线上,载波通讯模块需要外置电源单独供电,结构复杂,这样既增加了安装成本,又增加了装置的复杂度。 Power carrier communication is a carrier communication method that uses high-voltage transmission as a transmission path, and is used for dispatching communication, telecontrol, protection, production command, administrative business communication and various information transmissions of the power system. Power carrier communication consists of power line carrier machine, power line, and coupling equipment. Coupling equipment includes line traps, combined filters, coupling capacitors, high-frequency cables, etc. Coupling methods include phase-ground coupling, phase-phase coupling, hybrid coupling, etc. The coupling capacitor is connected between the combined filter and the high-voltage wire. Levels vary. The role of the coupling capacitor is to isolate the carrier equipment from the high voltage, operating overvoltage and lightning overvoltage on the power line, prevent high voltage from entering the communication equipment, and at the same time enable the high frequency carrier signal to be smoothly coupled to the high voltage line. At present, in the power carrier communication of 10KV voltage transformer, the coupling capacitor is connected to the power line through phase-ground coupling, and the carrier communication module needs to be powered by an external power supply alone, and the structure is complicated, which not only increases the installation cost, but also increases the installation cost. of complexity.
发明内容 Contents of the invention
本发明的目的是提供一种载波通讯装置不需要外置电源单独供电、结构简单、节省安装成本、可以降低装置的复杂度的具有载波通讯接口的电压互感器。 The object of the present invention is to provide a voltage transformer with a carrier communication interface that does not require an external power supply for a carrier communication device, has a simple structure, saves installation costs, and can reduce the complexity of the device.
本发明的技术解决方案是:它包括一次侧的两端分别设有高压绝缘套管的电压互感器器身,电压互感器器身的1个或2个高压绝缘套管上安装有载波通讯装置, 载波通讯装置由耦合器、载波通讯模块和交直转换电源模块构成,耦合器的两个高压端子分别与电压互感器接相线的一次侧的一端和电压互感器的铁芯相连,耦合器的两个低压端子分别与载波通讯模块的信号输入输出端相连,交直转换电源模块的两个交流输入端分别与电压互感器二次侧的两端相连、两个直流输出端分别与载波通讯模块的电源输入端相连。 The technical solution of the present invention is: it includes a voltage transformer body with high-voltage insulating bushings at both ends of the primary side, and a carrier communication device is installed on one or two high-voltage insulating bushings of the voltage transformer body , The carrier communication device is composed of a coupler, a carrier communication module and an AC-DC conversion power supply module. The two high-voltage terminals of the coupler are respectively connected with one end of the primary side of the phase line of the voltage transformer and the iron core of the voltage transformer. The two low-voltage terminals are respectively connected to the signal input and output terminals of the carrier communication module, the two AC input terminals of the AC-DC conversion power supply module are respectively connected to the two ends of the secondary side of the voltage transformer, and the two DC output terminals are respectively connected to the terminals of the carrier communication module. connected to the power input.
本发明的技术效果是:使用它载波通讯装置不需要外置电源单独供电,结构简单,节省安装成本,可以降低装置的复杂度。它将耦合器和载波通讯模块设计在载波通讯装置中并安装在电压互感器的高压绝缘套管上,简化了系统结构,节省了空间。载波通讯装置从电压互感器二次侧采样经简单电能变换装置转换为直流电,为载波通讯装置提供电源,简化了外置电源单独供电带来的不便。具有连接可靠、结构简单的优点。 The technical effect of the invention is that the carrier communication device does not need an external power supply for separate power supply, the structure is simple, the installation cost is saved, and the complexity of the device can be reduced. It designs the coupler and the carrier communication module in the carrier communication device and installs them on the high-voltage insulating bushing of the voltage transformer, which simplifies the system structure and saves space. The carrier communication device samples from the secondary side of the voltage transformer and converts it into direct current through a simple power conversion device to provide power for the carrier communication device, which simplifies the inconvenience caused by a separate external power supply. The utility model has the advantages of reliable connection and simple structure.
附图说明 Description of drawings
图1为本发明实施例电路原理图; Fig. 1 is the schematic circuit diagram of the embodiment of the present invention;
图2为本发明实施例结构示意图; Fig. 2 is a schematic structural diagram of an embodiment of the present invention;
图3为本发明实施例载波通讯模块结构框图; Fig. 3 is a structural block diagram of the carrier communication module of the embodiment of the present invention;
图4为本发明实施例载波通讯装置安装结构示意图。 FIG. 4 is a schematic diagram of an installation structure of a carrier communication device according to an embodiment of the present invention. the
具体实施方式 Detailed ways
如图1、图2、图3、图4所示,它包括一次侧的两端分别设有高压绝缘套管1的电压互感器器身2,电压互感器器身2的1个或2个高压绝缘套管1上安装有载波通讯装置3, 载波通讯装置3由耦合器4、载波通讯模块5和交直转换电源模块6构成,耦合器4的两个高压端子分别与电压互感器接相线的一次侧的一端和电压互感器的铁芯21相连,耦合器4的两个低压端子分别与载波通讯模块5的信号输入输出端相连,交直转换电源模块6的两个交流输入端分别与电压互感器二次侧的两端相连、两个直流输出端分别与载波通讯模块5的电源输入端相连。 As shown in Figure 1, Figure 2, Figure 3, and Figure 4, it includes a voltage transformer body 2 with a high-voltage insulating bushing 1 at both ends of the primary side, and one or two voltage transformer bodies 2 A carrier communication device 3 is installed on the high-voltage insulating bushing 1. The carrier communication device 3 is composed of a coupler 4, a carrier communication module 5 and an AC-DC conversion power module 6. The two high-voltage terminals of the coupler 4 are respectively connected to the phase line of the voltage transformer. One end of the primary side of the coupler is connected to the iron core 21 of the voltage transformer, the two low-voltage terminals of the coupler 4 are respectively connected to the signal input and output terminals of the carrier communication module 5, and the two AC input terminals of the AC-DC conversion power supply module 6 are respectively connected to the voltage The two ends of the secondary side of the transformer are connected, and the two DC output ends are respectively connected to the power input end of the carrier communication module 5 .
耦合器4由耦合电容41和耦合变压器42构成,耦合电容41与耦合变压器42一次侧相串联,耦合电容41的另一端与电压互感器接相线一次侧的一端相连,耦合变压器42一次侧的另一端与电压互感器的铁芯21相连,耦合变压器42的两个低压端子分别与载波通讯模块5的信号输入输出端相连。 The coupler 4 is composed of a coupling capacitor 41 and a coupling transformer 42, the coupling capacitor 41 is connected in series with the primary side of the coupling transformer 42, the other end of the coupling capacitor 41 is connected with one end of the primary side of the phase line of the voltage transformer, and the primary side of the coupling transformer 42 is The other end is connected to the iron core 21 of the voltage transformer, and the two low-voltage terminals of the coupling transformer 42 are respectively connected to the signal input and output ends of the carrier communication module 5 .
电压互感器器身2的1个或2个高压绝缘套管1上设有载波通讯装置安装槽11,载波通讯装置安装槽11内设有与电压互感器接相线的一次侧相连的静触头一12、与电压互感器二次侧的两端分别相连的静触头二13、静触头三14和与电压互感器的铁芯21相连的静触头四15,载波通讯装置3上设有分别与静触头一12、静触头二13、静触头三14和静触头四15相连的四个动触头31,四个动触头31分别由一端固定在载波通讯装置3上的弹性导电片构成。载波通讯装置3为长方形块状体,其四个角的位置分别设有安装卡头33,载波通讯装置安装槽11的四个角的位置分别设有与各安装卡头33相配合的定位卡槽16。载波通讯装置3安装在高压绝缘套管1上时位于外侧的面上设有安装拉手32。 One or two high-voltage insulating bushings 1 of the voltage transformer body 2 are provided with a carrier communication device installation groove 11, and a carrier communication device installation groove 11 is provided with a static contact connected to the primary side of the voltage transformer phase line. Head 1 12, static contact 2 13, static contact 3 14 connected to the two ends of the secondary side of the voltage transformer, and static contact 4 15 connected to the iron core 21 of the voltage transformer, on the carrier communication device 3 There are four moving contacts 31 respectively connected with the first static contact 12, the second static contact 13, the third static contact 14 and the fourth static contact 15, and the four moving contacts 31 are respectively fixed on the carrier communication device by one end 3 on the elastic conductive sheet. The carrier communication device 3 is a rectangular block, and the positions of its four corners are respectively provided with mounting clips 33, and the positions of the four corners of the carrier communication device installation groove 11 are respectively provided with positioning cards matched with each mounting clip 33 Slot 16. When the carrier wave communication device 3 is installed on the high voltage insulating bushing 1 , a mounting handle 32 is provided on the outer surface.
载波通讯模块5由中央处理器34、调制器35、放大器36、解调器37、滤波器38和通讯接口39构成,通讯接口39与中央处理器34相连用于输入输出通讯信号,调制器35与中央处理器34相连用于对从中央处理器34传输来的通讯信号做调制处理,放大器36与调制器35和耦合器4分别相连用于将调制处理后的信号放大并传输至耦合器4,滤波器38与耦合器4和解调器37分别相连用于对从耦合器4传输来的信号进行滤波并传输至解调器37,解调器37与中央处理器34相连用于对从滤波器38传输来的信号进行解调处理并传输到中央处理器34,交直转换电源模块6的直流输出端与中央处理器34、调制器35、放大器36、解调器37、滤波器38和通讯接口39分别相连为其提供直流电源。 Carrier communication module 5 is made of central processing unit 34, modulator 35, amplifier 36, demodulator 37, filter 38 and communication interface 39, and communication interface 39 is connected with central processing unit 34 for input and output communication signal, modulator 35 It is connected with the central processing unit 34 for modulating the communication signal transmitted from the central processing unit 34, and the amplifier 36 is respectively connected with the modulator 35 and the coupler 4 for amplifying the modulated signal and transmitting it to the coupler 4 , the filter 38 is connected with the coupler 4 and the demodulator 37 for filtering the signal transmitted from the coupler 4 and transmitted to the demodulator 37, and the demodulator 37 is connected with the central processing unit 34 for the slave The signal transmitted by the filter 38 is demodulated and transmitted to the central processing unit 34, and the DC output terminal of the AC-DC conversion power supply module 6 is connected with the central processing unit 34, modulator 35, amplifier 36, demodulator 37, filter 38 and The communication interfaces 39 are respectively connected to provide DC power for them.
电压互感器器身2由铁芯21、壳体22、一次线圈23、二次线圈24和两个高压绝缘套管1构成,一次线圈23和二次线圈24相耦合安装在铁芯21上,两个高压绝缘套管1分别套装在一次线圈23的两端上并固定上在壳体22上,二次线圈24的两端分别连接在设于壳体22上的两个接线端子25上。 The voltage transformer body 2 is composed of an iron core 21, a housing 22, a primary coil 23, a secondary coil 24 and two high-voltage insulating bushings 1, and the primary coil 23 and the secondary coil 24 are coupled and installed on the iron core 21. The two high-voltage insulating bushings 1 are fitted on both ends of the primary coil 23 and fixed on the housing 22 , and the two ends of the secondary coil 24 are respectively connected to two terminals 25 provided on the housing 22 .
本发明使用方法如下: The present invention uses method as follows:
本发明整套装置设计除表面与高压绝缘套管形状吻合外,其它面为平面,类似长方体。在使用时,通过安装拉手可以将载波通讯装置推入高压绝缘套管中。10KV输电线通过顶端接入装置中,载波通信光纤从侧端引出,耦合电容器的接地线和电容互感器副边分别通过底端接入。若需要更换或者维修,通过手柄用力拉出装置即可。 The whole set of device design of the present invention is except that the surface conforms to the shape of the high-voltage insulating bushing, and the other surfaces are planes, similar to a cuboid. When in use, the carrier communication device can be pushed into the high-voltage insulating bushing by installing the handle. The 10KV transmission line is connected to the device through the top, the carrier communication optical fiber is led out from the side end, and the ground wire of the coupling capacitor and the secondary side of the capacitance transformer are respectively connected through the bottom end. If it needs to be replaced or repaired, just pull out the device through the handle.
本发明的优点是: The advantages of the present invention are:
1、利用电压互感器副边为电力载波通讯模块供电。 1. Use the secondary side of the voltage transformer to supply power to the power carrier communication module.
2、将耦合器、交直转换电源模块和载波通讯模块设计到同一个装置中,同时可以安装到互感器高压绝缘套管内部,精简了整套装置的复杂度,外观上基本保持电压互感器原来的样子。 2. The coupler, AC-DC conversion power supply module and carrier communication module are designed into the same device, and can be installed inside the high-voltage insulation bushing of the transformer, which simplifies the complexity of the whole device and basically maintains the original appearance of the voltage transformer. look.
3、重新设计了高压绝缘套管的形状和接线引出线,可以使载波通讯装置很好的固定到电压互感器绝缘套管内部,载波通讯装置上的手柄可以方便取出和安装整套装置。 3. The shape of the high-voltage insulating bushing and the wiring leads are redesigned, so that the carrier communication device can be well fixed inside the insulating bushing of the voltage transformer, and the handle on the carrier communication device can be easily taken out and installed.
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| CN202977156U (en) * | 2012-12-27 | 2013-06-05 | 吉林省电力有限公司电力科学研究院 | Voltage transformer with carrier wave communication interface |
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| US20080077336A1 (en) * | 2006-09-25 | 2008-03-27 | Roosevelt Fernandes | Power line universal monitor |
| US8427131B2 (en) * | 2009-06-12 | 2013-04-23 | Schweitzer Engineering Laboratories Inc | Voltage regulation at a remote location using measurements from a remote metering device |
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| US4016429A (en) * | 1976-01-16 | 1977-04-05 | Westinghouse Electric Corporation | Power line carrier communication system for signaling customer locations through ground wire conductors |
| CN101373906A (en) * | 2008-10-24 | 2009-02-25 | 华北电力大学(保定) | Distribution network carrier communication measurement and control module |
| CN201594823U (en) * | 2009-07-22 | 2010-09-29 | 冯汉春 | Power line carrier communication device |
| CN201830516U (en) * | 2010-09-26 | 2011-05-11 | 石家庄合辐节能科技有限公司 | Control circuit of light emitting diode (LED) street lamp capable of being regulated and controlled remotely based on electric carrier communication |
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Owner name: JILIN ACADEMY OF ELECTRIC POWER SCIENCE DALIAN UNI Free format text: FORMER OWNER: JILIN ACADEMY OF ELECTRIC POWER SCIENCE DALIAN UNIVERSITY OF TECHNOLOGY STATE GRID CORPORATION OF CHINA Effective date: 20150420 |
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Inventor after: Li Zongze Inventor after: Zhu Qigui Inventor after: Wang Jiaying Inventor after: Mou Xianmin Inventor after: Li Meifang Inventor before: Zhu Qigui Inventor before: Wang Jiaying Inventor before: Zhou Huiwei Inventor before: Mou Xianmin Inventor before: Li Meifang |
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Free format text: CORRECT: INVENTOR; FROM: ZHU QIGUI WANG JIAYING ZHOU HUIWEI MOU XIANMIN LI MEIFANG TO: LI ZONGZE ZHU QIGUI WANG JIAYING MOU XIANMIN LI MEIFANG |
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Effective date of registration: 20150420 Address after: 130021 Changchun City, Chaoyang District province people's street, No. 4433, No. Applicant after: Electric Power Research Institute of Jilin Electric Power Company Applicant after: Jilin Academy of Electric Power Science Applicant after: Dalian University of Technology Applicant after: State Grid Corporation of China Applicant after: Attached senior middle school of Dalian University of Technology Address before: 130021 Changchun City, Chaoyang District province people's street, No. 4433, No. Applicant before: Electric Power Research Institute of Jilin Electric Power Company Applicant before: Jilin Academy of Electric Power Science Applicant before: Dalian University of Technology Applicant before: State Grid Corporation of China |
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