Improved Dynamic of Engine Generation Set Using Energy Storage and the Instantaneous Power Theory

M. Dybko, Sergey V. Kuchak, Evgeniy V. Grishanov
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Abstract

This paper presents a comparative evaluation of two different algorithms for an Energy Storage System installed with an Engine Generation Set in an autonomous power supply system. The algorithms presented are intended to improve dynamic of the engine generation set units when a load connects or disconnects from the power supply system. All the algorithms are based on the instantaneous power theory. The main advantage of these algorithms is that they do not require any significant changes or additions to the known control system for a shunt active power filter. In fact, as shown in the article, energy storage system controlled by slightly modified algorithm based on the instantaneous power theory becomes a power system for load transients during load commutations. It is shown, that ESS provides smoother power variation using these additions to the conventional instantaneous power theory as far as active power filtering. Moreover, an ESS still may operate as an active power filter with some limitations concerning load changes. The results presented in paper are verified by simulation models.
利用储能和瞬时功率理论改进发动机发电机组动态特性
本文对自主供电系统中安装了发动机发电机组的储能系统进行了两种不同算法的比较评估。所提出的算法旨在改善发电机组在负荷与供电系统连接或断开时的动态特性。所有算法都基于瞬时功率理论。这些算法的主要优点是它们不需要对已知的并联有源电力滤波器的控制系统进行任何重大更改或添加。实际上,如本文所示,基于瞬时功率理论的稍作修改的算法控制的储能系统成为负荷换相时的负荷暂态电力系统。结果表明,就有源功率滤波而言,使用这些附加的传统瞬时功率理论,ESS提供了更平滑的功率变化。此外,ESS仍然可以作为有源电力滤波器工作,但有一些有关负载变化的限制。仿真模型验证了本文的研究结果。
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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