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Mixed Sensitivity Based Dynamical Anti-Windup Compensator Design using LMI: An Application to Constrained Hot Air Blower System

机译:基于混合敏感性的动态防风补偿器设计利用LMI:应用于受阻热风鼓风机系统的应用

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There are always some type of constraints present in the all physical systems and these constraints or saturations produce the windup effect. This paper describes the design and implementation of a new dynamical Anti-Windup Compensator (AWC) scheme to remove the windup effect. In the new anti-windup scheme the state space matrices of the mixed sensitivity controller's parameters are used in the coprime factorization of the AWC to provide the robustness and optimize using the Linear Matrix Inequalities (LMI). The mixed sensitivity controller designed in this technique is based on the direct method, that is easy to design and do not involve complex calculations and algorithms. This new mixed sensitivity based AW scheme can work for other types of linear controllers other than mixed sensitivity controllers. This new scheme is applied to the benchmark plant with linear controllers and the results and compared with the already existing techniques. To prove the validation of this new proposed AW scheme, it is applied to a hot air blower system and practical results are discussed and compared with simulation results. These practical results aims to support the industrial application of the new AWC scheme ensuring stability and performance.
机译:所有物理系统中存在一些类型的约束,并且这些约束或饱和产生卷绕效果。本文介绍了一种新型动态防风补偿器(AWC)方案的设计和实现,以消除卷绕效果。在新的逆转方案中,混合灵敏度控制器参数的状态空间矩阵用于AWC的CopRime分解,以提供使用线性矩阵不等式(LMI)的鲁棒性和优化。在该技术中设计的混合灵敏度控制器基于直接方法,即易于设计并且不涉及复杂的计算和算法。基于新的混合灵敏度的AW方案可以用于除混合灵敏度控制器之外的其他类型的线性控制器。该新方案应用于具有线性控制器的基准设备和结果,并与现有的技术进行比较。为了证明这种新的拟议AW方案的验证,它适用于热风鼓风机系统,并与模拟结果进行讨论并进行实际结果。这些实际结果旨在支持新的AWC计划的工业应用,确保稳定性和性能。

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