Design of Dual Loop Networked Control Systems with Different Sampling Rate Based on Gain Adaptive Smith Predictor

Hong Zhao, Ke Che
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Abstract

A class of dual loop networked control systems with different sampling rate is discussed in this paper. Generally, Smith predictor can be used to overcome the influence of network delay. However, influence of prediction model inaccuracy, different sampling rate and interference always appear in the actual systems, and the systems based on conventional Smith predictor cannot achieve the desired control effect. The gain adaptive Smith predictor is proposed for this class of networked control systems, which can be used to overcome the problems caused by inaccurate prediction model, interference and various sampling rate. The simulation results based on MATLAB show that the proposed method is efficient and feasible.
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基于增益自适应Smith预测器的不同采样率双环网络控制系统设计
讨论了一类具有不同采样率的双环网络控制系统。一般来说,史密斯预测器可以用来克服网络延迟的影响。然而,实际系统中往往存在预测模型不准确、采样率不同和干扰等因素的影响,基于传统Smith预测器的系统无法达到预期的控制效果。针对这类网络控制系统,提出了增益自适应Smith预测器,克服了预测模型不准确、干扰和采样率不一致等问题。基于MATLAB的仿真结果表明了该方法的有效性和可行性。
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