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Investigating and modeling the transmission channel of a prismatic lithium-ion cell and module for powerline communication

机译:研究和建模用于电力线通信的方形锂离子电池和模块的传输通道

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摘要

Current lithium-ion battery management systems require a huge amount of connecting units for monitoring and controlling single cells. A sophisticated way of simplifying a complex wiring architecture is the use of a powerline communication system. By this approach the existing powerline is simultaneously used for data transmission. However, a thorough understanding of the channel characteristics in the high frequency range (1-110 MHz) is necessary to be able to design and implement such a system. This work deals with the characterization of the powerline channel of <10 Ah prismatic hard case Lithium-Ion cells and 10 cell modules with special respect to the interaction between single cells using impedance measurements. Based on the obtained knowledge, a circuit-based model of the transfer channel has been designed, allowing to estimate the behavior of larger battery systems. The model was also used to simulate different coupling methods to transmit and receive signals to the powerline.
机译:当前的锂离子电池管理系统需要大量的连接单元来监视和控制单节电池。一种简化复杂布线架构的复杂方法是​​使用电力线通信系统。通过这种方法,现有的电力线可同时用于数据传输。但是,要想设计和实现这样的系统,就必须全面了解高频范围(1-110 MHz)中的信道特性。这项工作着眼于<10 Ah棱柱形硬壳锂离子电池和10个电池模块的电力线通道的特性,特别是使用阻抗测量来研究单个电池之间的相互作用。基于获得的知识,已设计了传输通道的基于电路的模型,从而可以估计较大电池系统的行为。该模型还用于模拟不同的耦合方法以向电力线发送和接收信号。

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