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Confidence regions for multi-sensor state estimation under faulty measurements

机译:错误测量下用于多传感器状态估计的置信区域

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The paper deals with state estimation of nonlinear dynamic stochastic systems under faulty measurements. The special focus is laid on defining and constructing a confidence region for the state estimate. The construction of the region is motivated by traditional approaches to fault detection based on parity equations and the region is designed by using a geometry perspective to provide a hyper-sphere centered at the state estimate. Consequently, it is proven that the proposed confidence region contains the state with a probability that serves as a design parameter of the region. The construction of the confidence region is illustrated in an example dealing with positioning a moving object using bearing measurements.
机译:本文研究了在测量错误的情况下非线性动态随机系统的状态估计。特别关注的是定义和构建状态估计的置信区域。该区域的构建是由基于奇偶校验方程的传统故障检测方法所推动的,并且该区域是通过使用几何透视图来设计的,以提供一个以状态估计为中心的超球体。因此,证明了所提出的置信区域包含具有作为该区域的设计参数的概率的状态。在涉及使用方位测量来定位运动对象的示例中说明了置信区域的构造。

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