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Power Line Communication Management of Battery Energy Storage in a Small-Scale Autonomous Photovoltaic System

机译:小型自主光伏系统中电池储能的电力线通信管理

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摘要

Today an increasing number of batteries are equipped with a digital battery management system (BMS) either for safety issues or lifetime improvement, or for both. In order to avoid the use of dedicated wiring for communicating with these BMS, a power line communication (PLC) solution is proposed to communicate through the dc power line inherent in these systems. This solution is also designed to be directly compatible with the existing controller area network controllers integrated in a large number of commercially available microcontrollers. It uses a single carrier generator in order to generate a shared carrier signal on the bus. Each modem can modulate this common carrier signal by switching the impedance it presents on the bus. In a first part, this paper proposes an overview of the industrial context of this PLC solution, including simulation results and discussion of the theoretical limits of the system. Then, the digitization stage interfacing the controller to the power line is described and a first prototype is validated through discussion of experimental results obtained within an actual industrial environment.
机译:如今,越来越多的电池都配备了数字电池管理系统(BMS),以解决安全问题或延长使用寿命,或两者兼而有之。为了避免使用专用布线与这些BMS进行通信,提出了一种电源线通信(PLC)解决方案,以通过这些系统中固有的直流电源线进行通信。该解决方案还被设计为与集成在大量商用微控制器中的现有控制器局域网控制器直接兼容。它使用单个载波发生器,以便在总线上生成共享载波信号。每个调制解调器都可以通过切换总线上存在的阻抗来调制此公共载波信号。在第一部分中,本文提出了对该PLC解决方案的工业环境的概述,包括仿真结果和对系统理论极限的讨论。然后,描述了将控制器连接到电源线的数字化阶段,并通过讨论在实际工业环境中获得的实验结果来验证第一个原型。

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