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Online Passive Identifier for Spatially Distributed Systems Using Mobile Sensor Networks

机译:使用移动传感器网络的空间分布式系统的在线被动标识符

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摘要

The problem of online parameter identification for spatially distributed systems using a mobile sensor network is investigated in this brief. Inspired by the passive identifier developed for boundary control of partial differential equations (PDEs) using a static sensor network, we propose a distributed online passive identifier that is able to estimate the unknown diffusion coefficient of the advection-diffusion PDE using data collected by a mobile sensor network moving in the field. To enable the online passive identifier, we develop a distributed cooperative Kalman filter run by each sensing agent that provides state estimates of the field. Optimal trajectory for the mobile sensor network in the advection-diffusion field is found, and distributed control laws to control the mobile sensor network to estimate and follow the trajectory while keeping a desired formation are designed. We prove that the parameter estimation errors are bounded and achieve parameter consensus. In addition, by generating a persistence of excitation condition, we further verify the asymptotic parameter convergence. Numerical simulations for 2-D and 3-D cases demonstrate the effectiveness of the proposed online passive identifier.
机译:本文简要介绍了使用移动传感器网络对空间分布系统进行在线参数识别的问题。受使用静态传感器网络为偏微分方程(PDE)的边界控制开发的无源标识符的启发,我们提出了一种分布式在线无源标识符,该标识符能够使用移动台收集的数据估算对流扩散PDE的未知扩散系数传感器网络领域。为了启用在线被动标识符,我们开发了由每个感应代理运行的分布式协作式卡尔曼滤波器,可提供该字段的状态估计。找到了对流扩散场中移动传感器网络的最优轨迹,并设计了分布式控制律来控制移动传感器网络以估计和跟踪轨迹,同时保持所需的编队。我们证明了参数估计误差是有界的并且达到了参数共识。另外,通过产生激励条件的持久性,我们进一步验证了渐近参数的收敛性。 2D和3D情况的数值模拟证明了所提出的在线被动标识符的有效性。

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