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Optimal Design of Power System stabilizer in a Multi-machine System Using Evolutionary Computing, A Comparative Study

机译:一种使用进化计算的多机系统电力系统稳定器的优化设计,比较研究

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When the power system subjected to disturbances, stability is a challenging task. The Power System Stabilizer plays an important role to reduce the low frequency oscillation (LFO) and enhance the performance. This is because, the PSS is low cost, flexible and easy to implement. In this work the problem is designed as a single objective optimization technique to tune the PSS parameters with Eigenvalue analysis. Here the Invasive Weed Optimization algorithm which is found suitable for these types of problems is selected as a tool to find optimal solutions. Simulations are executed on a 4-machine power system for different operating conditions such as heavy load, light load and capacitive load. The results are obtained under different fault conditions with Invasive Weed optimization technique and compared the same with PSO. At last it is observed that the IWO technique performs better in damping overshoot and settling time.
机译:当经过扰动的电力系统时,稳定性是一个具有挑战性的任务。电力系统稳定器起到降低低频振荡(LFO)并增强性能的重要作用。这是因为,PSS是低成本,灵活且易于实现的。在这项工作中,问题被设计为单个客观优化技术,可以通过特征值分析调整PSS参数。这里,选择适用于这些类型问题的侵入性杂草优化算法作为找到最佳解决方案的工具。在4机器电源系统上执行模拟,用于不同的操作条件,如重载,轻负载和电容负载。结果在不同的故障条件下获得,具有侵入性杂草优化技术,并将其与PSO相比。最后,观察到IWO技术在阻尼过冲和稳定时间方面更好地表现更好。

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