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Advanced Battery Management and Diagnostic System for Smart Grid Infrastructure

机译:智能电网基础设施的高级电池管理和诊断系统

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摘要

This paper presents the design and implementation of an advanced battery management system (BMS). The basic concept is to divide each series battery array into sub-arrays where each battery is individually monitored and managed. The proposed BMS continuously monitors the voltage, current, and energy of each battery. Based on these measurements, the BMS can calculate individual state of charge (SoC) levels and C-rates. Furthermore, the system has the capability to isolate each individual battery to apply different charging profiles and advanced diagnostics to detect the correct problems. Pulsed charging is deployed using different duty cycles for SoC balancing. The isolated battery is bypassed to maintain uninterrupted supply to the load despite reduced series array voltage. An unidirectional dc–dc boost converter maintains a constant output voltage level to the load, regardless of the number of batteries connected, until the problem is corrected. A hardware implementation of the proposed BMS is explained in detail. The performance of the system is tested experimentally under different loading conditions, including heavy pulsed loads.
机译:本文介绍了高级电池管理系统(BMS)的设计和实现。基本概念是将每个串联电池阵列划分为子阵列,在其中分别监视和管理每个电池。建议的BMS持续监视每个电池的电压,电流和能量。基于这些测量,BMS可以计算单个充电状态(SoC)级别和C费率。此外,该系统具有隔离每个单独电池以应用不同充电配置文件和高级诊断程序以检测正确问题的能力。脉冲充电使用不同的占空比进行部署,以实现SoC平衡。尽管降低了串联阵列电压,也绕过了隔离电池,以维持对负载的不间断供电。一个单向dc-dc升压转换器,不管连接的电池数量如何,都能维持恒定的负载输出电压水平,直到问题解决为止。详细说明了所提出的BMS的硬件实现。该系统的性能在包括重脉冲负载在内的不同负载条件下进行了实验测试。

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