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Discrete Data Load Frequency Control of Two-Area Power System with Multi-Source Power Generation

机译:多源发电两区电力系统离散数据负载频率控制

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This paper presents load frequency control (LFC) of interconnected power systems involving multi-source power generation. The investigations are carried on a typical two area power system comprising hydro, thermal, and gas power generations with speed governors in each area. A discrete time proportional-integral-derivative (PID) load frequency control is applied only to thermal and gas power generating units and hydro is allowed to operate at its scheduled generation level with only speed governor control. The transient performance of the two area power system is investigated for different combinations of generations from thermal and gas sources with different scheduled operating load conditions when subjected to step load disturbance of 1 in area-1. The PID controller gains are optimized using genetic algorithm (GA) for a sampling period of two seconds. The combination of integral squared error (ISE) and integral time an absolute error (ITAE) performance index is used for fitness evaluation.
机译:本文介绍了涉及多源发电的互联电力系统的负载频率控制(LFC)。调查是在典型的两区电力系统上进行的,该系统包括水力发电、热力发电和天然气发电,每个区域都有调速器。离散时间比例积分微分 (PID) 负载频率控制仅适用于火力和燃气发电机组,水电允许在其计划发电水平上运行,仅进行调速器控制。研究了两区电力系统在1区1%的阶跃负荷扰动下,不同计划工作负荷条件下的热源和气源不同发电组合的瞬态性能。PID控制器增益使用遗传算法(GA)进行优化,采样周期为2秒。积分平方误差 (ISE) 和积分时间绝对误差 (ITAE) 性能指数的组合用于适应度评估。

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