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首页> 外文期刊>International Journal of Electrical Power & Energy Systems >Optimized load-frequency simulation in restructured power system with Redox Flow Batteries and Interline Power Flow Controller
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Optimized load-frequency simulation in restructured power system with Redox Flow Batteries and Interline Power Flow Controller

机译:带有氧化还原液流电池和线间潮流控制器的重组电力系统中优化的负载频率仿真

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摘要

This paper proposes the Load Frequency Control (LFC) of an interconnected two-area multiple-unit thermal reheat power system in a restructured environment. In the restructured scenario, various kinds of apparatus with large capacity and fast power consumption may cause a series problem of frequency oscillations. The oscillation of system frequency may sustain and grow to cause a series frequency stability problem if no adequate damping is available. Moreover, the larger amount of the steam stored in steam chest and reheater of thermal power plant delays the control valve motion to increase the mechanical power output after the load perturbation. So in order to stabilize the system, impacts of Interline Power Flow Controller (IPFC) in series with tie-line and Redox Flow Batteries (RFB) at the terminal of area 1 have been investigated. The Bacterial Foraging Optimization (BFO) algorithm is used to optimize the integral gains of the Load-frequency Controller under different transactions in the competitive electricity market. Compliance with North American Electric Reliability Council (NERC) standards for Load Frequency Control has also been established in this work. Simulation studies reveal that the RFB coordinated with IPFC units for LFC loop has greater potential for improving the system's dynamic performance.
机译:本文提出了一种在重构环境下互连的两区域多单元热力再热系统的负载频率控制(LFC)。在重组的情况下,各种具有大容量和快速功耗的设备可能会引起一系列的频率振荡问题。如果没有足够的阻尼,系统频率的振荡可能会持续并增长,从而引起串联频率稳定性问题。此外,存储在火力发电厂的蒸汽箱和再热器中的大量蒸汽会延迟控制阀的运动,从而增加负载扰动后的机械动力输出。因此,为了稳定系统,研究了在区域1终端与联络线和氧化还原液流电池(RFB)串联的线间潮流控制器(IPFC)的影响。在竞争激烈的电力市场中,细菌觅食优化(BFO)算法用于优化负载频率控制器在不同交易下的积分增益。在这项工作中,还建立了符合北美电力可靠性委员会(NERC)负载频率控制标准的标准。仿真研究表明,与LFC回路的IPFC单元配合使用的RFB具有改善系统动态性能的更大潜力。

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