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Incremental output feedback design approach for discrete-time parameter-varying systems with amplitude and rate control constraints

机译:具有幅度和速率控制约束的离散时间参数变化系统的增量输出反馈设计方法

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In this work, we investigate an incremental stabilizing Output Feedback control law for discrete-time linear parameter-varying (LPV) systems subject to state constraints, control amplitude limits, and bounds of the control-rate variation. To this end, we consider the Positive-Invariance and Contractivity properties of polyhedral sets to guarantee the regional closed-loop stability and that the constraints are all respected. As usual in LPV literature, the varying parameters are considered online available. Furthermore, we describe the constrained control system in the extended state space composed of the system's state and control variables, in which the control variations act as the control inputs. From this extended LPV formulation, we use the known necessary and sufficient algebraic conditions for positive-invariance and contractivity to propose a new bilinear optimization problem to design the controller. The proposed objective function optimizes the polyhedron size in given directions, and an efficient non-linear optimization solver is used to tackle the present bilinearities. Numerical examples showcase the effectiveness and potential of our proposal.
机译:在这项工作中,我们研究了通过状态约束,控制幅度限制和控制速率变化的界限的离散时间线性参数 - 变化(LPV)系统的增量稳定输出反馈控制定律。为此,我们考虑多面体集的积极不变性和合同性质,以保证区域闭环稳定性,并受到约束。像往常一样,在LPV文献中,不同参数可在线可用。此外,我们描述由系统状态和控制变量组成的扩展状态空间中的受限控制系统,其中控制变化充当控制输入。从这种扩展的LPV配方中,我们使用已知的必要和足够的代数条件来积极不变性和合同,提出新的双线性优化问题来设计控制器。所提出的目标函数在给定方向上优化多面体尺寸,并且使用有效的非线性优化求解器来解决当前的双线性。数值例子展示了我们提案的有效性和潜力。

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