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Power Quality Improvement of Distribution Network Using Optimum Combination of Battery Energy Storage System and Capacitor Banks

机译:使用电池储能系统和电容器组的最佳组合电力质量改进分配网络

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This paper proposes static and dynamic Volt Amp Reactive (VAR) planning based on the active and reactive power profile enhancing for dynamic voltage stability of distribution networks with Battery Energy Storage System (BESS) and capacitor bank using VAR planning scheme on distribution networks. Firstly, the impact of dynamic high impedance and resistive non-linear loads in the static voltage stability of the system has been studied and the effects of complex load behaviour on system dynamical performance is presented through a system stability analysis for three network structures. A VAR planning method is proposed where active and reactive loadability (P-Q) is considered to analyse the vulnerability of the network to voltage collapse and system inefficiency. Compensating devices are placed considering P-Q loadability to improve system voltage profile and stability limit. Finally, a cost-effective combination of BESS and capacitor bank is determined through static and dynamic analysis to ensure voltage stability of the network. The results show that the proposed approach can reduce the required sizes of compensating devices which reduces costs, enhances the voltage regulation of the system and minimizes power losses.
机译:本文提出了基于主动和动态伏柱反应(VAR)规划,其利用电池储能系统(BESS)和电容器组在配电网上增强了用于电池储能系统(BESS)和电容器组的动态电压稳定性。首先,研究了动态高阻抗和电阻非线性载荷在系统的静电稳定性中的影响,并通过三个网络结构的系统稳定性分析来提出了复合负载行为对系统动态性能的影响。提出了一种var规划方法,其中考虑了主动和无功负载性(P-Q)分析网络漏洞到电压崩溃和系统效率效率。考虑P-Q可加载性以提高系统电压曲线和稳定性极限,放置补偿装置。最后,通过静态和动态分析确定贝塞和电容器组的经济有效组合,以确保网络的电压稳定性。结果表明,该方法可以降低降低成本的补偿装置所需的尺寸,增强了系统的电压调节并最大限度地减少了功率损耗。

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