一种改进的直流微电网下垂控制算法以实现精确的电流共享和改进的电压调节

Shrivatsal Sharma, V. Iyer, P. Das, S. Bhattacharya
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引用次数: 4

摘要

在直流微电网应用中,垂降控制是一种常用的变流器负载电流分担方法。然而,在这种方法中,电流共享和负载电压调节受到电缆电阻和其他非理想性的影响。采用低带宽通信信道的二次控制算法可以提高传统下垂控制方法的性能。针对多源单负载直流微电网系统,提出了一种改进的二次控制算法。该算法将负载电压信息传递给各个变流器,各个变流器之间不存在通信通道。因此,与几种最先进的方法相比,该算法在减少通信通道的情况下实现了精确的电流共享和改进的负载电压调节。算法中所有控制器均在局部实现,实现了分散控制。在双变换器单负载母线直流微电网系统上进行了电路仿真和硬件实验,验证了该算法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Modified Droop Control Algorithm for DC Microgrids to Achieve Accurate Current Sharing and Improved Voltage Regulation
Droop control is a commonly used method for load current sharing among the converters in DC microgrid applications. However, in this method, the current sharing and load voltage regulation are affected by cable resistances and other non-idealities. The conventional droop control method’s performance can be improved using secondary control algorithms that involve low-bandwidth communication channels. In this paper, an improved secondary control algorithm is proposed for a multi-source, single load bus DC microgrid system. In the proposed algorithm, the load voltage information is communicated to the individual converters, and there are no communication channels between individual converters. Thus the proposed algorithm achieves accurate current sharing and improved load voltage regulation with reduced communication channels compared to several state-of-the-art approaches. All the controllers in the proposed algorithm are implemented locally, and hence a decentralized control is achieved. The proposed algorithm’s effectiveness is validated using circuit simulations and hardware-based experiments on a two converter single load bus DC microgrid system.
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