DC-Side Sensorless Control of Battery Interfaced Three-Phase Full Bridge Cascaded H-Bridge Multilevel Grid-Connected Inverter

K. Algarny, M. Vilathgamuwa, M. Broadmeadow
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引用次数: 2

Abstract

Grid connected battery systems play an important role in present day power systems. In this paper, a DC-side sensoreless control of battery interfaced three-phase full bridge cascaded H-bridge multilevel grid-connected inverter is proposed. The key achievement of this paper is the use of the DC-link voltage and current estimation proposed in [1] for a three-phase battery storage system and achieving battery SOC balancing using the estimation algorithm. Coulomb counting (Amp-hour balancing) method is used for SOC estimation because of its simplicity and it can utilize the value of the estimated battery current directly. One disadvantage of this method is the need to identify the value of the initial SOC value which was assumed to be known. The balancing between the batteries has been done using the estimated SOC values. Simulated results are presented to show the efficacy of the proposed algorithm.
电池接口三相全桥级联h桥多电平并网逆变器直流侧无传感器控制
并网蓄电池系统在当今的电力系统中发挥着重要的作用。本文提出了一种电池接口三相全桥级联h桥多电平并网逆变器的直流侧无传感器控制方法。本文的主要成果是将[1]中提出的直流链路电压和电流估计用于三相电池存储系统,并利用该估计算法实现电池SOC平衡。采用库仑计数法(安培-小时平衡法)估算电池荷电状态,不仅简单,而且可以直接利用估算的电池电流值。这种方法的一个缺点是需要识别假设已知的初始SOC值的值。电池之间的平衡已经使用估计的SOC值完成。仿真结果表明了该算法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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