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首页> 外文期刊>International journal of Power and energy conversion >Oppositional biogeography-based optimisation applied to SMES and TCSC-based load frequency control with generation rate constraints and time delay
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Oppositional biogeography-based optimisation applied to SMES and TCSC-based load frequency control with generation rate constraints and time delay

机译:基于对立生物地理的优化应用于具有发电率约束和时间延迟的SMES和基于TCSC的负载频率控制

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摘要

This article introduces biogeography-based optimisation (BBO) and oppositional BBO for solving load frequency control (LFC) in power system. Two widely employed test systems, viz. two-area multi-unit thermal-thermal and three-area thermal power plant, are considered for analysis. To make the study realistic, inherent power system nonlinearities like time delay, generation rate constraint and reheater are included. 2nd order Pade approximation is used to find linear model of time delay. To provide additional damping to frequency and tie-line power oscillations caused by sudden load perturbation, optimal thyristor controlled series compensator (TCSC) and superconducting magnetic energy storage (SMES) are design in coordination to LFC for the concerned power systems. An extensive comparative analysis is performed to established superiority of proposed method over other recently published algorithms. Simulation results show that coordinated LFC-TCSC-SMES controller yields greater dynamic performance compared to other. Finally, sensitivity analysis is performed to demonstrate the robustness of the proposed controller.
机译:本文介绍了用于解决电力系统负载频率控制(LFC)的基于生物地理的优化(BBO)和对立BBO。两个广泛使用的测试系统,即。考虑对两区多单元热电厂和三区热电厂进行分析。为了使研究变得现实,包括了时间延迟,发电量约束和再热器等电力系统固有的非线性。使用二阶Pade近似来找到时间延迟的线性模型。为了对由突然的负载扰动引起的频率和联络线功率振荡提供额外的阻尼,针对相关功率系统,针对LFC进行了优化设计的可控硅串联补偿器(TCSC)和超导磁储能器(SMES)。进行了广泛的比较分析,以建立所提出方法相对于其他最近发布的算法的优越性。仿真结果表明,与其他控制器相比,协调的LFC-TCSC-SMES控制器具有更高的动态性能。最后,进行灵敏度分析以证明所提出控制器的鲁棒性。

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