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Performance comparison of PID tuning by using Ziegler-Nichols and particle swarm optimizationudapproaches in a water control system

机译:Ziegler-Nichols和粒子群算法对PID调节的性能比较 ud水控制系统中的方法

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摘要

Tuning the gain of Proportional-Integral Derivative (PID) controller in a process control system is exceptionally paramount since correct tuning would help a control process response without steady state error and overshoot. As the conventional gain tuning of PID controller, the Ziegler-Nichols (ZN) approach generally delivers an enormous overshoot; therefore, current heuristics approach, namely Particle Swarm Optimization (PSO) is utilized.A tuning problem of a single tank water level dynamic control system is presented.The best PID controller parameters are determined by using the ZN and PSO approaches.udComparisons of process time performance and the performance measurement of the system are made in order to evaluate both approaches in terms of their step response through the MATLAB/Simulink platform.The results demonstrate that the PSO approach produces promising results with lower overshoot compared to the ZN approach.It is found that the PSO approach would be advantageous for the industries related to single tank water control system for a better PID gain tuning.
机译:在过程控制系统中调整比例积分微分(PID)控制器的增益极为重要,因为正确的调整将有助于控制过程响应而不会出现稳态误差和过冲。作为PID控制器的常规增益调整,Ziegler-Nichols(ZN)方法通常会产生巨大的过冲。因此,目前使用的启发式方法是粒子群优化(PSO)。提出了单罐水位动态控制系统的调整问题。使用ZN和PSO方法确定最佳PID控制器参数。为了评估这两种方法在MATLAB / Simulink平台上的阶跃响应,进行了时间性能和系统性能测量。结果表明,与ZN方法相比,PSO方法产生了有希望的结果,并且具有较低的过冲。我们发现,PSO方法对于与单罐水控制系统相关的行业有利,因为它可以实现更好的PID增益调整。

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