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Energy-Storage-Based Low-Frequency Oscillation Damping Control Using Particle Swarm Optimization and Heuristic Dynamic Programming

机译:基于粒子群优化和启发式动态规划的基于能量存储的低频振荡阻尼控制

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Low-frequency oscillation is one of the main barriers limiting power transmission between two connected power systems. Although power system stabilizers (PSSs) have been proved to be effective in damping inner-area oscillation, inter-area oscillation still remains a critical challenge in today's power systems. Since the low-frequency oscillation between two connected power systems is active power oscillation, power modulation through energy storage devices (ESDs) can be an efficient and effective way to maintain such power system stability. In this paper, we investigate the integration of a new goal representation heuristic dynamic programming (GrHDP) algorithm to adaptively control ESD to damp inter-area oscillation. A particle swarm optimization (PSO)-based power oscillation damper (POD) has also been proposed for comparison. Various simulation studies with residue-based POD controller design, the proposed PSO optimized controller design, and the GrHDP-based controller design over a four-machine-two-area benchmark power system with energy storage device have been conducted. Simulation results have demonstrated the efficiency and effectiveness of the GrHDP-based approach for inter-area oscillation damping in a wide range of system operating conditions.
机译:低频振荡是限制两个连接的电力系统之间的电力传输的主要障碍之一。尽管电力系统稳定器(PSS)已被证明在抑制内部区域振荡方面有效,但是区域间振荡仍然是当今电力系统中的关键挑战。由于两个连接的电源系统之间的低频振荡是有功功率振荡,因此通过储能设备(ESD)进行功率调制可以成为维持这种电源系统稳定性的有效途径。在本文中,我们研究了一种新的目标表示启发式动态规划(GrHDP)算法的集成,以自适应地控制ESD以抑制区域间振荡。还提出了一种基于粒子群优化(PSO)的功率振荡阻尼器(POD)进行比较。进行了基于残渣的POD控制器设计,拟议的PSO优化控制器设计以及带有储能装置的四机两面积基准电力系统的基于GrHDP的控制器设计的各种仿真研究。仿真结果证明了基于GrHDP的方法在各种系统工作条件下的区域间振荡阻尼的效率和有效性。

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