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IMC based robust PID controller tuning for disturbance rejection 被引量:5
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作者 Mohammad Shamsuzzoha 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第3期581-597,共17页
It is well-known that the IMC-PID controller tuning gives fast and improved set point response but slow disturbance rejection. A modification has been proposed in IMC-PID tuning rule for the improved disturbance rejec... It is well-known that the IMC-PID controller tuning gives fast and improved set point response but slow disturbance rejection. A modification has been proposed in IMC-PID tuning rule for the improved disturbance rejection. For the modified IMC-PID tuning rule, a method has been developed to obtain the IMC-PID setting in closed-loop mode without acquiring detailed information of the process. The proposed method is based on the closed-loop step set point experiment using a proportional only controller with gain K_(c0). It is the direct approach to find the PID controller setting similar to classical Ziegler-Nichols closed-loop method. Based on simulations of a wide range of first-order with delay processes, a simple correlation has been derived to obtain the modified IMC-PID controller settings from closed-loop experiment. In this method, controller gain is a function of the overshoot obtained in the closed loop set point experiment. The integral and derivative time is mainly a function of the time to reach the first peak(overshoot). Simulation has been conducted for the broad class of processes and the controllers were tuned to have the same degree of robustness by measuring the maximum sensitivity, Ms, in order to obtain a reasonable comparison. The PID controller settings obtained in the proposed tuning method show better performance and robustness with other two-step tuning methods for the broad class of processes. It has also been applied to temperature control loop in distillation column model. The result has been compared to the open loop tuning method where it gives robust and fast response. 展开更多
关键词 pi/piD controller step test closed-loop response IMC-piD OVERSHOOT
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一种PWM整流器动态性能改进控制策略 被引量:26
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作者 王晗 张建文 蔡旭 《中国电机工程学报》 EI CSCD 北大核心 2012年第S1期194-202,共9页
风力发电三相脉宽调制(pulse width modulation,PWM)整流器多采用双闭环PI控制,调节器的比例系数和积分系数均为常值,不能在整个功率范围内都得到良好动态特性,特别是应用在能量波动比较频繁的风力发电系统。此外PI积分环节存在饱和效应... 风力发电三相脉宽调制(pulse width modulation,PWM)整流器多采用双闭环PI控制,调节器的比例系数和积分系数均为常值,不能在整个功率范围内都得到良好动态特性,特别是应用在能量波动比较频繁的风力发电系统。此外PI积分环节存在饱和效应,导致整流器在启动和负载突变瞬间出现较大冲击电流,严重威胁功率开关器件的安全,而且导致控制器软件过流保护,使得装置不能正常运行,需要对其动态控制性能进行改进。该文对PI控制的动态特性进行分析,提出一种改进控制方法,外环采用电压平方反馈闭环的变参数控制方法,内环采用无差拍预测电流控制;另外在启动时候进行电压给定值斜率限制以及增加负载电流前馈,从而抑制启动冲击电流和改善系统的动态性能。实验结果验证了提出方法的有效性和可行性。 展开更多
关键词 风力发电 PWM整流器 双闭环pi控制 预测电流控制
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Closed-loop flow control of an ultra-compact serpentine inlet based on nondimensional model
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作者 Xingya DA Jianchao FAN 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2020年第10期2555-2562,共8页
Ultra-compact serpentine inlet faces serve inlet-engine compatibility issues due to flow distortion.To ensure inlet-engine compatibility over a wide range of Mach number,novel active flow control techniques with the a... Ultra-compact serpentine inlet faces serve inlet-engine compatibility issues due to flow distortion.To ensure inlet-engine compatibility over a wide range of Mach number,novel active flow control techniques with the ability of being opened or adjusted as needed draw many attentions in recent years.In this paper,a feedback control system was developed based on the method of microjet blowing.The proposed system includes a pressure adjusting valve to adjust the control effort,a dynamic pressure sensor to sense the inlet distortion intensity,a signal processing instrument to calculate the Root-Mean-Squared(RMS)pressure,and a controller to implement feedback control.To achieve high quality closed-loop controls at dynamic conditions,a novel nondimensional feedback method was developed.The advantage of this nondimensional method was validated at both off-design and arbitrarily changing Mach number conditions.With a sectional PI control law,the RMS control error reduced more than 56%at arbitrary changing conditions.Works in this paper also showed that the dynamics of this nondimensional system can be simplified as a stable second-order overdamped system. 展开更多
关键词 closed-loop flow control Flow distortion Nondimensional feedback pi control Serpentine inlet
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