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Spatial gradient measurement through length scale estimation for the tracking of a gaseous source

机译:通过长度尺度估计来跟踪气体源的空间梯度测量

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Material release, deliberate or accidental, into the atmosphere can pose a significant hazard. Knowledge of the location of the source can be used to contain the damage by stopping the threat from additional material release. However, in order to minimize the effects of the material already released, an accurate estimate of the released plume must be available. This work uses such a model based approach to predict the state of the contaminant within a spatial domain. A mobile agent provides sensor measurements in order to efficiently reconstruct the process state. Sensor guidance is based on Lyapunov methods which drives the sensor to areas of higher state estimation error. As part of this guidance, the spatial gradient of the estimation error is used, which must be computed from sensor measurements. In flows with turbulence and eddies, care must be taken when determining the local gradient though the appropriate length scale. This will minimize the effects of the stochastic components of the flow on the measurements. With a model based estimate of the plume, the appropriate length scale can be predicted from sensor measurements. This work investigates the use of a measured spatial gradient based on an estimated length scale at the sensor location and compares the results with ideal spatial gradient data.
机译:物质有意或无意地释放到大气中会构成重大危害。通过阻止源于其他材料释放的威胁,可以使用源位置的知识来控制损害。但是,为了使已经释放的物料的影响最小化,必须提供释放出的烟羽的准确估算值。这项工作使用这种基于模型的方法来预测空间域内污染物的状态。移动代理提供传感器测量值以有效地重建过程状态。传感器指导基于Lyapunov方法,该方法将传感器驱动到状态估计误差较高的区域。作为本指南的一部分,使用了估计误差的空间梯度,必须从传感器测量值中计算出该梯度。在湍流和涡流中,通过适当的长度尺度确定局部梯度时必须小心。这将使流量的随机分量对测量的影响最小化。利用基于模型的羽流估计,可以从传感器测量结果中预测合适的长度比例。这项工作基于在传感器位置的估计长度比例调查了测量的空间梯度的使用,并将结果与​​理想的空间梯度数据进行了比较。

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  • 来源
    《American Control Conference;ACC》|2012年|p.2984- 2989|共6页
  • 会议地点 Montreal(CA)
  • 作者

    Court, Jeffrey R.;

  • 作者单位

    Worcester Polytechnic Institute Dept of Mechanical Engineering Worcester MA 01609 USA;

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