CN206876844U - Power communication battery wireless monitor integrated device - Google Patents
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Abstract
本实用新型提出的是电力通讯蓄电池无线监测一体装置。在长方形盒状一体装置的底部设有“+”和“‑”电源连接线,电源连接线分别与电源模块和集成电路上的PUC电压监测模块连接供电,电源模块连接集成电路,在集成电路上设有ARM9 SS处理器,ARM9 SS处理器分别与TCU温度传感器、RFID‑YY射频芯片和PUC电压监测模块电路连接,发送指令并接收数据。本实用新型采用传感技术、无线射频技术、嵌入式技术,进行蓄电池电压状态检测,实时采集蓄电池的电压和温度状态,通过无线射频传感网络方式,将数据汇集到电池监测集中终端,电池监测集中终端自动判断蓄电池电压监测状态。适宜作为一种电力通讯蓄电池无线监测一体装置使用。
The utility model proposes an integrated device for wireless monitoring of storage batteries for electric power communication. There are "+" and "‑" power connection lines at the bottom of the rectangular box-shaped integrated device. The power connection lines are respectively connected to the power supply module and the PUC voltage monitoring module on the integrated circuit for power supply. The power module is connected to the integrated circuit. An ARM9 SS processor is provided, and the ARM9 SS processor is respectively connected with the TCU temperature sensor, RFID‑YY radio frequency chip and PUC voltage monitoring module circuit to send instructions and receive data. The utility model adopts sensing technology, wireless radio frequency technology and embedded technology to detect the battery voltage state, collect the voltage and temperature state of the battery in real time, and collect the data to the battery monitoring centralized terminal through the wireless radio frequency sensor network mode, and the battery monitoring The centralized terminal automatically judges the battery voltage monitoring status. The utility model is suitable to be used as an integrated device for wireless monitoring of electric power communication battery.
Description
技术领域technical field
本实用新型提供的是能源领域蓄电池组运行状态无线传感监控的装置,主要应用于变电站电力通信屏蓄电池组现场使用。具体地说是电力通讯蓄电池无线监测一体装置。The utility model provides a device for wireless sensing and monitoring of the running state of storage battery packs in the energy field, which is mainly applied to the on-site use of storage battery packs for power communication screens in substations. Specifically, it is an integrated device for wireless monitoring of electric power communication storage battery.
背景技术Background technique
变电站通讯屏的蓄电池长期使用存在短路、漏液、鼓胀、老化问题,严重影响蓄电池的寿命,容易导致通讯系统供电中断。目前,蓄电池状态检测主要依靠运维人员定期现场检查,无法做到实时监测蓄电池的运行状态。现有电池监测系统安装、布线、使用、维护较为复杂,需要专业人员才能完成,并且长时间采集电池状态,容易给电池造成损伤。The long-term use of the battery in the substation communication screen has problems such as short circuit, liquid leakage, swelling, and aging, which seriously affect the life of the battery and easily lead to interruption of the power supply of the communication system. At present, battery status detection mainly relies on regular on-site inspections by operation and maintenance personnel, and it is impossible to monitor the operating status of the battery in real time. The installation, wiring, use, and maintenance of the existing battery monitoring system are relatively complicated and require professionals to complete, and the battery status is collected for a long time, which is easy to cause damage to the battery.
发明内容Contents of the invention
为了能够实时监测蓄电池组的运行状况,本实用新型提供了电力通讯蓄电池无线监测一体装置。该装置通过传感技术、无线射频技术、嵌入式技术,进行蓄电池电压状态检测,解决实时监测蓄电池组状态并提早发现蓄电池电池和温度异常,解决避免蓄电池损坏的技术问题。In order to be able to monitor the operation status of the storage battery pack in real time, the utility model provides an integrated device for wireless monitoring of storage batteries for electric power communication. The device detects battery voltage status through sensing technology, radio frequency technology, and embedded technology, solves the technical problem of real-time monitoring of battery pack status and early detection of battery cell and temperature abnormalities, and avoids battery damage.
本实用新型解决技术问题所采用的方案是:The scheme that the utility model solves technical problem adopts is:
在长方形盒状一体装置的底部设有“+”和“-”电源连接线,电源连接线分别与电源模块和集成电路上的PUC电压监测模块连接供电,电源模块连接集成电路,在集成电路上设有ARM9 SS处理器,ARM9 SS处理器分别与TCU温度传感器、RFID-YY射频芯片和PUC电压监测模块电路连接,发送指令并接收数据。There are "+" and "-" power connection lines at the bottom of the rectangular box-shaped integrated device. The power connection lines are respectively connected to the power supply module and the PUC voltage monitoring module on the integrated circuit for power supply. The power module is connected to the integrated circuit. There is an ARM9 SS processor, and the ARM9 SS processor is respectively connected with the TCU temperature sensor, RFID-YY radio frequency chip and PUC voltage monitoring module circuit to send instructions and receive data.
所述集成电路包括ARM9 SS处理器、PUC电压监测模块、TCU温度传感器和RFID-YY射频芯片。The integrated circuit includes ARM9 SS processor, PUC voltage monitoring module, TCU temperature sensor and RFID-YY radio frequency chip.
积极效果,由于本实用新型采用传感技术、无线射频技术、嵌入式技术,进行蓄电池电压状态检测,实时采集蓄电池的电压和温度状态,通过无线射频传感网络方式,将数据汇集到电池监测集中终端,电池监测集中终端自动判断蓄电池电压监测状态,对于蓄电池电压异常和温升异常,进行报警提醒。适宜作为一种电力通讯蓄电池无线监测一体装置使用。Positive effect, because the utility model adopts sensor technology, wireless radio frequency technology, embedded technology, carries out storage battery voltage state detection, collects the voltage and temperature state of storage battery in real time, gathers the data into the battery monitoring center through wireless radio frequency sensor network mode The terminal, the battery monitoring centralized terminal automatically judges the battery voltage monitoring status, and gives an alarm reminder for abnormal battery voltage and temperature rise. The utility model is suitable to be used as an integrated device for wireless monitoring of electric power communication battery.
附图说明Description of drawings
图1为本实用新型电路组成图。Fig. 1 is a circuit composition diagram of the utility model.
图中,1.PUC电压监测模块,2.TCU温度传感器,3.RFID-YY射频芯片,4.ARM9 SS处理器,5.电源模块,6.电源连接线。In the figure, 1. PUC voltage monitoring module, 2. TCU temperature sensor, 3. RFID-YY radio frequency chip, 4. ARM9 SS processor, 5. Power module, 6. Power connection line.
具体实施方式detailed description
据图所示,在长方形盒状一体装置的底部设有“+”和“-”电源连接线6,电源连接线分别与电源模块5和集成电路上的PUC电压监测模块1连接供电,电源模块连接集成电路,在集成电路上设有ARM9 SS处理器4,ARM9 SS处理器分别与TCU温度传感器2、RFID-YY射频芯片3和PUC电压监测模块电路连接,发送指令并接收数据。As shown in the figure, there are "+" and "-" power connection lines 6 at the bottom of the rectangular box-shaped integrated device. The power connection lines are respectively connected to the power supply module 5 and the PUC voltage monitoring module 1 on the integrated circuit for power supply. Connect the integrated circuit, the integrated circuit is provided with an ARM9 SS processor 4, and the ARM9 SS processor is respectively connected with the TCU temperature sensor 2, the RFID-YY radio frequency chip 3 and the PUC voltage monitoring module circuit to send instructions and receive data.
所述集成电路包括ARM9 SS处理器、PUC电压监测模块、TCU温度传感器和RFID-YY射频芯片。The integrated circuit includes ARM9 SS processor, PUC voltage monitoring module, TCU temperature sensor and RFID-YY radio frequency chip.
技术原理:Technical principle:
电力通讯蓄电池无线监测一体装置,由ARM9 SS处理器、射频芯片、电压监测模块、温度传感器、集成电路、电源模块组成,采用集成电路设计,基于电池内阻测量方法,实时获取电池电压数据,集成温度传感器,在检测电压数据的同时,获取蓄电池表面温度数据。一体装置采用低功耗设计,安装在每块蓄电池上,与电池正负极连接,以定点轮巡的方式,实时监测各节蓄电池状态,极少消耗电池电量,不额外对蓄电池造成伤害。The all-in-one wireless monitoring device for power communication storage battery is composed of ARM9 SS processor, radio frequency chip, voltage monitoring module, temperature sensor, integrated circuit, and power supply module. The temperature sensor acquires battery surface temperature data while detecting voltage data. The all-in-one device is designed with low power consumption, installed on each battery, connected to the positive and negative poles of the battery, and monitors the status of each battery in real time in a fixed-point patrol mode, seldom consumes battery power, and does not cause additional damage to the battery.
电力通讯蓄电池无线监测一体装置,采集电池电压、温度状态数据后,通过无线射频方式,与数据集中器建立无线传感网络,将数据发送给监测终端。电力通讯蓄电池无线监测一体装置,内部具有射频芯片,当电池监测集中终端,发送无线射频信号后,一体装置接收无线射频信号,与监测集中终端之间建立无线射频通信连接,通过无线网络通讯方式,传输电池监测状态数据,无需额外布置通讯连接线,基于无线射频通信息,电池监测集中终端,可同时连接多个电力通讯蓄电池无线监测一体装置,完成蓄电池状态的采集与监测。电池监测集中终端具备预警判断与提示功能,监测集中终端内的处理器,控制射频模块接收蓄电池传感器发送的数据,自动判断电池的电压状态和温度状态的异常情况,当监测到电池状态数据发生异常变化时,电池监测集中终端通过GPRS无线模块,自动向运维人员发送报警短信。The all-in-one wireless monitoring device for electric power communication storage battery, after collecting battery voltage and temperature state data, establishes a wireless sensor network with the data concentrator through wireless radio frequency, and sends the data to the monitoring terminal. The battery wireless monitoring integrated device for power communication has a radio frequency chip inside. When the battery monitoring centralized terminal sends a radio frequency signal, the integrated device receives the wireless radio frequency signal and establishes a wireless radio frequency communication connection with the monitoring centralized terminal. Through wireless network communication, To transmit battery monitoring status data, there is no need to arrange additional communication connection lines. Based on radio frequency communication information, the battery monitoring centralized terminal can be connected to multiple power communication battery wireless monitoring integrated devices at the same time to complete the collection and monitoring of battery status. The battery monitoring centralized terminal has early warning judgment and prompt functions, monitors the processor in the centralized terminal, controls the radio frequency module to receive the data sent by the battery sensor, and automatically judges the abnormality of the voltage state and temperature state of the battery. When changing, the battery monitoring centralized terminal automatically sends an alarm message to the operation and maintenance personnel through the GPRS wireless module.
工作过程:work process:
本实用新型通过一体装置对蓄电池电压状态检测,实时采集蓄电池的电压和温度状态,通过无线射频传感网络方式,将数据汇集到电池监测集中终端,电力通讯蓄电池无线监测一体装置,采用集成电路设计,由集成电路将ARM9 SS处理器、RFID-YY射频芯片、PUC电压监测模块、TCU温度传感器、电源模块连接到一起,实现各模块之间的数据通讯。The utility model detects the battery voltage state through an integrated device, collects the voltage and temperature state of the battery in real time, and collects the data to the battery monitoring centralized terminal through a wireless radio frequency sensor network. , the ARM9 SS processor, RFID-YY radio frequency chip, PUC voltage monitoring module, TCU temperature sensor, and power module are connected together by an integrated circuit to realize data communication between modules.
一体装置采用低功耗设计,安装在每块蓄电池上,一体装置两根电源连接线与电池正负极连接,以定点轮巡的方式,实时监测各节蓄电池状态,极少消耗电池电量,不额外对蓄电池造成伤害。ARM9 SS处理器控制定点轮巡的时间间隔,PUC电压监测模块根据ARM9SS处理器,设置的轮巡时间间隔,采集监测蓄电池电压和温度状态。The all-in-one device adopts a low-power design and is installed on each battery. The two power cables of the all-in-one device are connected to the positive and negative poles of the battery. The state of each battery is monitored in real time in a fixed-point patrol mode, which consumes very little battery power and does not Additional damage to the battery. The ARM9 SS processor controls the time interval of the fixed-point patrol, and the PUC voltage monitoring module collects and monitors the battery voltage and temperature status according to the patrol time interval set by the ARM9SS processor.
PUC电压监测模块,通过电源连接线,与蓄电池正负极连接,基于电池内阻测量方法,实时获取电池电压数据值,通过集成电路,将电压数据发送给ARM9 SS处理器,完成蓄电池电压状态监测。TCU温度传感器,在检测电压数据的同时,获取蓄电池表面温度数据,并将数据发送给ARM9 SS处理器。电源连接线外部与蓄电池正负极连接,装置内部与电源模块连接,为蓄电池无线监测一体装置提供工作电源,电源模块获取工作电源后,通过集成电路为ARM9 SS处理器、RFID-YY射频芯片、PUC电压监测模块、TCU温度传感器提供工作电源证,装置各模块正常工作。The PUC voltage monitoring module is connected to the positive and negative poles of the battery through the power connection line. Based on the battery internal resistance measurement method, the battery voltage data value is obtained in real time, and the voltage data is sent to the ARM9 SS processor through the integrated circuit to complete the battery voltage status monitoring. . The TCU temperature sensor, while detecting the voltage data, obtains the battery surface temperature data and sends the data to the ARM9 SS processor. The outside of the power connection line is connected to the positive and negative poles of the battery, and the inside of the device is connected to the power module to provide working power for the battery wireless monitoring integrated device. After the power module obtains the working power, it provides ARM9 SS processor, RFID-YY radio frequency chip, The PUC voltage monitoring module and the TCU temperature sensor provide a working power certificate, and each module of the device works normally.
电力通讯蓄电池无线监测一体装置,采集电池电压、温度状态数据后,数据汇集在ARM9 SS处理器中,由ARM9 SS处理器控制RFID-YY射频芯片,接收射频信号,通过无线射频方式,与电池监测集中终端建立无线传感网络,将监测数据发送给监测终端。RFID-YY射频芯片,接收到电池监测集中终端,发送无线射频信号后,与监测集中终端之间建立无线射频通信连接,通过无线网络通讯方式,ARM9 SS处理器通过RFID-YY射频芯片,将蓄电池电压数据和温度数据,传输电池监测集中终端,无需额外布置通讯连接线,基于无线射频通信息,多个电力通讯蓄电池无线监测一体装置,可同时与电池监测集中终端建立无线通信网络,向电池监测集中终端发送蓄电池状态。电池监测集中终端具备预警判断与提示功能,自动判断电池的电压状态和温度状态的异常情况,当监测到电池状态数据发生异常变化时,电池监测集中终端通过GPRS无线模块,自动向运维人员发送报警短信。Power communication battery wireless monitoring integrated device, after collecting battery voltage and temperature state data, the data is collected in the ARM9 SS processor, and the ARM9 SS processor controls the RFID-YY radio frequency chip, receives radio frequency signals, and communicates with battery monitoring through radio frequency The centralized terminal establishes a wireless sensor network and sends the monitoring data to the monitoring terminal. The RFID-YY radio frequency chip, after receiving the battery monitoring centralized terminal and sending the radio frequency signal, establishes a wireless radio frequency communication connection with the monitoring centralized terminal. Through wireless network communication, the ARM9 SS processor uses the RFID-YY radio frequency chip to connect the battery Voltage data and temperature data are transmitted to the battery monitoring centralized terminal without additional communication connection lines. Based on radio frequency communication information, multiple power communication storage battery wireless monitoring integrated devices can simultaneously establish a wireless communication network with the battery monitoring centralized terminal to provide battery monitoring information. The centralized terminal sends the battery status. The battery monitoring centralized terminal has early warning judgment and prompt function, which can automatically judge the abnormal situation of the battery voltage state and temperature state. Alarm SMS.
特点:Features:
电力通讯蓄电池无线监测一体装置,具有蓄电池电压采集、温度采集、无线射频通信功能,实现蓄电池运行状态的无线智能监测,有效提高电池运行寿命,简化安装工艺,快速完成安装,提高蓄电池监测效率,降低监测成本。The battery wireless monitoring integrated device for power communication has the functions of battery voltage collection, temperature collection, and radio frequency communication. Monitoring costs.
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Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
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| CN107390132A (en) * | 2017-07-20 | 2017-11-24 | 国网辽宁省电力有限公司葫芦岛供电公司 | A kind of power communication battery wireless monitor integrated device |
| CN109494583A (en) * | 2018-12-29 | 2019-03-19 | 国网福建省电力有限公司厦门供电公司 | AC load shifts distribution box |
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Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN107390132A (en) * | 2017-07-20 | 2017-11-24 | 国网辽宁省电力有限公司葫芦岛供电公司 | A kind of power communication battery wireless monitor integrated device |
| CN109494583A (en) * | 2018-12-29 | 2019-03-19 | 国网福建省电力有限公司厦门供电公司 | AC load shifts distribution box |
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Inventor after: Cui Yan Inventor after: Wang Yu Inventor after: Tu Jing Inventor after: Zhang Ou Inventor after: Yang Ziming Inventor after: Xiao Yi Inventor after: Wang Huan Inventor after: Wang Fuchun Inventor after: Peng Haiying Inventor after: Zhao Xing Inventor after: Li Yan Inventor before: Zhang Ou Inventor before: Tu Jing Inventor before: Yang Ziming Inventor before: Xiao Yi Inventor before: Wang Huan Inventor before: Wang Fuchun Inventor before: Peng Haiying Inventor before: Zhao Xing Inventor before: Li Yan Inventor before: Wang Yu |