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首页> 外文期刊>IEEE Transactions on Aerospace and Electronic Systems >Sequential localization of a radiating source by Doppler-shifted frequency measurements
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Sequential localization of a radiating source by Doppler-shifted frequency measurements

机译:通过多普勒频移测量对辐射源进行顺序定位

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For a single omnidirectional sensor in contact with a constant velocity source that radiates a constant frequency tone, the measurements of the Doppler-shifted frequencies over time do not provide sufficient information to localize the source. Instead, only the parameters of source rest frequency, speed, and range relative to a sensor can be determined. However, if over time three or more sensors sequentially come in contact with the source, the source trajectory can then be specified. This is termed sequential localization. A two-dimensional grid search technique to find the Doppler parameters from measurements taken by a single sensor alone is presented. From these parameters, it is next shown how sequential localization is accomplished. Two simulation examples are provided to verify the development. The localization root mean squared errors (RMSEs) are found to be very close to the Cramer-Rao bound.
机译:对于与辐射恒定频率音调的恒定速度源接触的单个全向传感器,随时间推移对多普勒频移频率的测量无法提供足够的信息来定位该源。相反,只能确定相对于传感器的源静止频率,速度和范围的参数。但是,如果随着时间的流逝,三个或更多传感器依次与源接触,则可以指定源轨迹。这被称为顺序定位。提出了一种二维网格搜索技术,该技术可从仅单个传感器进行的测量中找到多普勒参数。接下来,根据这些参数显示如何完成顺序定位。提供了两个仿真示例来验证开发。发现本地化均方根误差(RMSE)非常接近Cramer-Rao界。

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