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Active Estimation for Switching Linear Dynamic Systems

机译:开关线性动态系统的主动估计

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Switching linear dynamic systems are convenient models for systems that exhibit both continuous dynamics and discrete mode changes. Estimating the hybrid discrete-continuous state of these systems is important for control and fault detection. Existing solutions for hybrid estimation approximate the belief state by maintaining a subset of the possible discrete mode sequences. This approximation can cause the estimator to lose track of the true mode sequence when the effects of discrete mode changes are subtle. In this paper we present a method for active hybrid estimation, where control inputs can be designed to discriminate between possible mode sequences. By probing the system for the purposes of estimation, such a sequence of control inputs can greatly reduce the probability of losing the true mode sequence compared to a nominal control sequence. Furthermore, by using a constrained finite horizon optimization formulation, we are able to guarantee that a given control task is achieved, while optimally detecting the hybrid state
机译:切换线性动态系统是展示连续动态和离散模式变化的系统的方便型号。估计这些系统的混合离散状态对于控制和故障检测非常重要。通过维持可能的离散模式序列的子集来实现混合估计的现有解决方案近似于信仰状态。当离散模式变化的影响是微妙的,这种近似可能导致估计器丢失真实模式序列的轨道。在本文中,我们介绍了一种用于主动混合估计的方法,其中可以设计控制输入来区分可能的模式序列。通过探测系统以估计的目的,与标称控制序列相比,这种控制输入序列可以大大降低丢失真实模式序列的概率。此外,通过使用约束的有限地平线优化制定,我们能够保证实现了给定的控制任务,同时最佳地检测混合状态

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