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Selection of best wavelet for discrete wavelet transform based PID controller connected with liquid level system and its performances analysis

机译:基于离散的小波变换的PID控制器的最佳小波选择与液位系统的PID控制器及其性能分析

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In this paper, the performance of discrete wavelet transform (DWT) based PID controller is compared to the conventional proportional-integral-derivative (PID) controller applied to Liquid level system (LLS). Here, DWT is used to decompose the actuating signal into different scales. The high scale gives the approximate or low frequency information and low scale gives the detail or high frequency information contained in the actuating signal. Based on this frequency information, the decomposed coefficients of each level are scaled by their respective gains and then added together to generate the final control signal. The choice of wavelet to decompose the error signal is an important factor because the wavelet affects the reconstructed signal quality and the design of the system as a whole. The minimum description length criterion permits to select not only the suitable wavelet filter but also the optimum number of wavelet coefficients retained for the signal reconstruction. Simulation results show that the proposed controller has faster transient response and more satisfactory operation under steady-state conditions with respect to PID controller. Simulation is done in National Instruments LabVIEW software.
机译:在本文中,将基于离散小波变换(DWT)的PID控制器的性能与施加到液位系统(LLS)的传统比例积分衍生物(PID)控制器进行比较。这里,DWT用于将致动信号分解成不同的尺度。高尺度给出近似或低频信息,低尺度给出了致动信号中包含的细节或高频信息。基于该频率信息,每个级别的分解系数由它们各自的增益缩放,然后加入一起以产生最终控制信号。小波分解错误信号的选择是一个重要因素,因为小波影响了整个系统的重建信号质量和系统的设计。最小描述长度标准允许不仅选择合适的小波滤波器,而且还可以选择所保留的信号重建的最佳数量的小波系数。仿真结果表明,该控制器在PID控制器的稳态条件下具有更快的瞬态响应和更令人满意的操作。模拟在国家仪器LabVIEW软件中完成。

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