为实现分布式输入串并联逆变器系统的输入电压共享和输出电流共享,提出了一种新的复合控制策略

Jian Wang, Tianzhi Fang, Junjie Hua
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引用次数: 4

摘要

ISOP逆变系统非常适用于高输入电压、高输出电流的功率转换应用。系统的控制目标是实现各组成模块之间的输入电压共享和输出电流共享。针对这一目标,本文提出了一种新的复合控制策略,即输入电压共享与相同电感电流幅值相结合的方法。在该方案中,通过IVS回路根据各模块的输入电压与平均输入电压的偏差来调节电感电流的相位和相应的各模块的有功功率。同时保持各电感电流的幅值不变,从而实现了光控系统。在此基础上,提出了一种新的分布式配置方案,并通过三路总线实现了各模块之间的通信。实验结果验证了控制策略和分布式配置的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel compound control strategy to achieve input voltage sharing and output current sharing for distributed input-series-output-parallel inverter system
Input-series-output-parallel (ISOP) inverter system is very suitable for high input voltage and high output current power conversion applications. The control objective of the system is to achieve input voltage sharing (IVS) and output current sharing (OCS) among the constituent modules. Aiming at the target, this paper presents a novel compound control strategy, i.e., the method entitled input voltage sharing combined with the same inductor current amplitude. In the proposed scheme, the phase of inductor current and accordingly the active power of each module are regulated by IVS loop based on the deviation between input voltage of respective module and average input voltage. And meanwhile, the amplitude of each inductor current is kept the same and so the OCS is realized. Furthermore, a new solution dedicated to distributed configuration is put forward, and the communications among the modules are realized through three buses. The experimental results validate the effectiveness of the control strategy and the distributed configuration.
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