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Proportional-integral-plus (PIP) design for delta (delta) operator systems - Part 1. SISO systems

机译:Delta(Delta)操作系统系统的比例 - 积分加(PIP)设计 - 第1.部分1.SISO系统

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The paper presents a general approach to state variable feedback control of rapidly sampled linear systems described by discrete differential or delta (delta) operator transfer function models. This is based on the formulation of a special nonminimum state-space representation of the system which ensures that the state variable feedback control law can be implemented in terms of realizable compensation filters, thus avoiding the complication and limitations of state reconstruction filter (observer or Kalman filter) design. The necessary and sufficient conditions for the controllability and pole assignability of the proportional-integral-plus (PIP) controller obtained in this manner are developed and, in the case of SVF pole assignment, the relationships between the coefficients of the desired closed-loop characteristic polynomial and the control feedback gains are developed. Single-input single-output deterministic systems are considered, but the approach can be extended to multivariable and stochastic systems, as described in two companion papers. The effectiveness of the design procedure is illustrated by both simulation and practical examples. [References: 24]
机译:本文介绍了由离散差分或Δ操作员传递函数模型描述的快速采样线性系统的状态可变反馈控制的一般方法。这是基于系统的特殊非最多状态空间表示的制定,该系统可确保在可实现的补偿过滤器方面可以实现状态可变反馈控制规律,从而避免了状态重建过滤器的复杂性和限制(观察者或卡尔曼过滤器)设计。以这种方式获得的比例积分 - 加(PIP)控制器的可控性和极点可分配的必要和充分条件,并且在SVF极杆分配的情况下,所需闭环特性的系数之间的关系开发了多项式和控制反馈增益。考虑单输入单输出确定性系统,但该方法可以扩展到多变量和随机系统,如两个伴随文件中所述。模拟和实际示例的说明了设计过程的有效性。 [参考:24]

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