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Efficacy of system optimization by Genetic Algorithm with and without noise

机译:遗传算法在有噪声和无噪声情况下系统优化的有效性

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The paper presents two plants which use proportional-integral-derivative (PID) controller for obtaining the desired transient response. Ziegler Nichols (ZN) and Genetic Algorithm (GA) tuning methods are employed on both the plants affected by band-limited white noise, and the optimized parameters (viz. Settling Time and Peak Overshoot) are compared. The efficacy of system optimization by GA is being tested so that both set point tracking and disturbance rejection are enabled, hence posing a servo as well as regulator problem. The result shows that GA proves to be more favorable for optimization of systems with or without noise as compared to ZN tuning method.
机译:本文介绍了两个工厂,它们使用比例积分微分(PID)控制器来获得所需的瞬态响应。在受到带限白噪声影响的两种植物上均采用Ziegler Nichols(ZN)和遗传算法(GA)调整方法,并比较了优化参数(即稳定时间和峰值超调)。正在测试通过GA优化系统的效率,以便启用设定点跟踪和干扰抑制功能,因此会带来伺服以及调节器问题。结果表明,与ZN调谐方法相比,GA被证明对有噪声或无噪声系统的优化更为有利。

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