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A simple approach for on-line PI controller tuning using closed-loop setpoint responses

机译:使用闭环设定点响应的在线PI控制器调整的简单方法

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A simple and new procedure has been developed for the PI controller tuning of an unidentified process using closed-loop responses. The method requires only one step test in the closed-loop system to obtain the proportional gain and integral time. The step test is a setpoint change performed with a proportional only controller while disabling any integral and derivative action. From the setpoint response one observes the overshoot and the corresponding time to reach the peak. In addition one observes the proportional gain (k_(c0)) and the steady-state offset. Based on a range of first-order with delay test processes, a simple analytical correlation has been developed for the controller gain (k_c/k_(c0)) as a function of the overshoot. The integral time setting is mainly a function of the time to reach the peak. The settings were derived to match the SIMC tuning rule (with τ_c=θ) which gives good robustness with a gain margin of about 3 and sensitivity peak (M_s-value) of about 1.6. The proposed tuning method, originally derived for first-order with delay processes, has been tested on a broad range of other stable and integrating processes. The results using the closed-loop data are comparable with the SIMC tuning rule using the open-loop model.
机译:使用闭环响应的未认定过程的PI控制器调整已经开发了一种简单的和新的过程。该方法只需要在闭环系统中进行一步测试,以获得比例增益和积分时间。步骤测试是在禁用任何积分和导数动作的同时执行比例仅执行的设定值。从设定值响应,一个观察到过冲和相应的时间到达峰值。另外,一个观察比例增益(K_(C0))和稳态偏移。基于一系列具有延迟测试过程的一阶,已经为控制器增益(K_C / K_(C0))开发了简单的分析相关,作为过冲的函数。积分时间设置主要是时间达到峰值的函数。导出设置以匹配SIMC调谐规则(具有τ_c=θ),其提供良好的鲁棒性,增益裕度为约3和约1.6的灵敏度峰值(m_s-value)。已经在广泛的其他稳定和集成过程中测试了最初衍生的第一阶的所提出的调谐方法。使用闭环数据的结果与使用开环模型的SIMC调整规则相当。

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