蓄电池和相应直流网络参数控制装置

V. Puida
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The paper proposes a device for monitoring the following parameters: voltage of the direct current network from which the mobile device is powered or the batteries are charged; battery charge current control; control of insulation resistance of direct current circuits; control of the voltage of chargers; monitoring the status of chargers; protection of batteries from deep discharge; control of the state of switching nodes. The device is implemented as a two-processor system based on STM32F103 microcontrollers. A non-contact sensor of the LEM LA 100-P type is used to measure the direct current, which generates an analog signal proportional to the value of the direct current. This signal is passed to a 16- bit analog-to-digital converter. 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引用次数: 0

摘要

用于信息、控制和遥测系统的移动设备通过交流-直流转换器由移动发电机供电,或由蓄电池供电,或在可能的情况下直接由太阳能电池板供电。太阳能电池板通常与蓄电池组成一个系统,在太阳能电池板不工作或不能提供足够电力时,使用蓄电池维持系统运行。如果太阳能电池板有足够的电力,电池可以通过太阳能电池板本身充电,或者通过外部直流电源充电。此外,对于某些移动设备,供电系统只使用电池,电池由发电机充电,或在可能的情况下,由标准电网充电。移动设备供电系统的所有这些选择都需要对电池参数和相应的直流网络进行操作控制。本文提出了一种用于监控以下参数的设备:移动设备供电或电池充电的直流网络电压;电池充电电流控制;直流电路绝缘电阻控制;充电器电压控制;充电器状态监控;电池深度放电保护;开关节点状态控制。该设备采用基于 STM32F103 微控制器的双处理器系统。LEM LA 100-P 型非接触式传感器用于测量直流电,可产生与直流电值成正比的模拟信号。该信号被传送至 16 位模数转换器。由于这些微控制器集成了 12 位模数转换器,因此需要使用 ADS1115 型 16 位外部模数转换器来确保直流和电压测量的必要精度,并通过 I2C 接口将信息传送给基本处理器。基本处理器实现设备的主要运行模式,本地处理器通过 RS-485 接口与通用移动电源系统进行信息交换。设备配备了一个基于 VS1602A 型 LCD 指示灯和功能可编程单 LED 指示灯的指示系统、一个用于选择控制模式的本地键盘、一个用于连接附加模块的 USB 端口和一个用于对微控制器闪存编程和实时调试程序的 SWD 端口。运行期间,非标准事件的参数会存储在设备的非易失性存储器中。基本处理器和本地处理器的软件已经开发完成,可确保设备在基本模式下正常运行,并定期对设备进行自我诊断。所取得的成果可用于科学研究和设计真正的移动信息系统自动电源系统。关键词:移动信息系统电源系统、电池、电池充电、微控制器、LCD 指示器、I2C 接口、USB 接口、RS-485 接口、SWD 接口。
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DEVICE FOR CONTROLLING PARAMETERS OF ACCUMULATOR BATTERIES AND THE CORRESPONDING DIRECT CURRENT NETWORK
Mobile devices for information, control and telemetry systems are powered by mobile generators through AC to DC converters, by batteries or, if possible, directly by solar panels. Solar panels typically work in a system that involves the usage of batteries to keep the systems running when the solar panels are not working or not providing enough power. The batteries can be recharged from the panels themselves if the solar panels have sufficient power or from an external direct current source. Also, for some mobile devices, power systems are used only with batteries, which are recharged from generators or, if possible, from standard electrical networks. All these options of power supply systems for mobile devices require operational control of battery parameters and corresponding direct current networks. The paper proposes a device for monitoring the following parameters: voltage of the direct current network from which the mobile device is powered or the batteries are charged; battery charge current control; control of insulation resistance of direct current circuits; control of the voltage of chargers; monitoring the status of chargers; protection of batteries from deep discharge; control of the state of switching nodes. The device is implemented as a two-processor system based on STM32F103 microcontrollers. A non-contact sensor of the LEM LA 100-P type is used to measure the direct current, which generates an analog signal proportional to the value of the direct current. This signal is passed to a 16- bit analog-to-digital converter. Given that these microcontrollers have integrated 12-bit analog-to- digital converters, an external 16-bit analog-to-digital converter of the ADS1115 type is used to ensure the necessary accuracy of direct current and voltage measurement, which transmits information to the basic processor via the I2C interface. The basic processor implements the main operating modes of the device, and the local processor provides information exchange with the general mobile power supply system through the RS-485 interface. The device is equipped with an indication system based on an LCD indicator of the VS1602A type and functionally programmable single LED indicators, a local keyboard for selecting control modes, a USB port for connecting additional modules and a SWD port for programming the Flash memory of microcontrollers and debugging programs in real time. During operation, parameters of non-standard events are stored in the device's non-volatile memory. The software of the basic and local processors has been developed, which ensures the functioning of the device in basic modes and performs periodic self-diagnosis of the device. The obtained results can be used in scientific research and in the design of real automated power systems for mobile information systems. Keywords: power systems of mobile information systems, batteries, battery charging, microcontroller, LCD indicator, I2C interface, USB interface, RS-485 interface, SWD interface.
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