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Battery Energy Storage System to Stabilize Transient Voltage and Frequency and Enhance Power Export Capability

机译:电池储能系统稳定瞬态电压和频率,增强电源导出能力

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This paper investigates the enactment of battery energy storage system (BESS) and static compensator (STATCOM) in enhancing large-scale power system transient voltage and frequency stability, and improving power export capacity within two interconnected power systems. A PI-lead and lead-lag controlled BESS is proposed for multimachine power system to provide simultaneous voltage and frequency regulation within the defined battery state-of-charge ranges and an equivalent Finnish transmission grid is used to evaluate the system performance. According to Australian National Electricity Market grid requirements, the performances of the proposed control schemes are compared with conventional PI controlled BESS and STATCOM under multiple temporary and permanent fault conditions. In addition, two adjacent disturbance events are also applied to evaluate system performance with BESS and STATCOM. Through simulation results, it is shown that when there is a 44% increase in power export and the STATCOM fails, incorporating BESS improves the performance and justifies the novelty of this study. Moreover, the proposed lead-lag controlled BESS manifests better transient performance than BESS with PI-lead and traditional PI controller, in the event of divergent temporary and permanent faults.
机译:本文调查了电池储能系统(BESS)和静态补偿器(Statcom)在提高大规模电力系统瞬态电压和频率稳定性方面的制定,提高了两个互连电力系统内的电力输出容量。提出了一种用于多功能电力系统的PI引线和引导滞后控制的BESS,以在限定的电池充电状态范围内提供同时电压和频率调节,并且使用等效的芬兰传输电网来评估系统性能。根据澳大利亚国家电网的要求,在多个临时和永久性故障条件下将所提出的控制方案的表演与传统的PI控制的BESS和Statcom进行比较。此外,还应用了两个相邻的干扰事件来评估BESS和Statcom的系统性能。通过仿真结果,表明电力出口增加44%,统计数据的失败,百丝士提高了该研究的新颖性的性能并证明了新颖性。此外,如果发生发散的临时和永久性故障,所提出的引导滞后控制的BESS在具有PI-Lead和传统PI控制器的BESS中表现出比BES更好的瞬态性能。

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