Adaptive discrete wavelet transform based technique for load frequency control

Isaac Kofi Otchere, D. O. Ampofo, E. Frimpong
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引用次数: 5

Abstract

This paper presents an adaptive discrete wavelet transform (DWT) based genetic algorithm (GA) technique for automatic generation control (AGC) systems. The controller ensures a zero steady state error for frequency deviation, mitigates inter area oscillations between interconnected power system and damps out noise from the Area Control Error (ACE) signal. The non-orthogonal DWT with GA optimization technique is employed to determine the optimal gains of the proposed DWT based controller. The performance of the proposed controller was evaluated by applying it to a known two-area interconnected system. The Load frequency model was also subjected to noise/disturbance to validate the robustness of the proposed DWT-GA based controller. Integral square error (ISE) and signal integrity (SI) indices were the performance indices used. Test results show an enhanced performance with less settling time, overshoot and zero frequency deviation after a load disturbance.
基于自适应离散小波变换的负荷频率控制技术
提出了一种基于自适应离散小波变换(DWT)的遗传算法(GA)用于自动生成控制(AGC)系统。该控制器确保了频率偏差的零稳态误差,减轻了互联电力系统之间的区域间振荡,并抑制了区域控制误差(ACE)信号的噪声。采用非正交小波变换和遗传优化技术确定了该控制器的最优增益。通过将所提出的控制器应用于一个已知的两区互联系统,对其性能进行了评估。负载频率模型还经受了噪声/干扰,以验证所提出的基于DWT-GA的控制器的鲁棒性。采用积分平方误差(ISE)和信号完整性(SI)指标作为性能指标。试验结果表明,负载扰动后稳定时间短、超调量小、频率偏差为零,性能得到了提高。
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