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Maximum-Likelihood Estimation of Parameters of an Extended Target in Tracking Monopulse Radars

机译:跟踪单脉冲雷达扩展目标参数的最大似然估计

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In comparison with radars, that have a single receiving channel, monopulse systems with their sum and difference channels can accurately estimate not only the signal power and angular position of a target but its angular extent as well. This virtue can be used to facilitate target recognition, classification, and tracking. When an extended target is observed with a monopulse radar and the mutual position of the radar antenna and the target does not significantly change in time, the maximum-likelihood (ML)-estimates of the aforementioned parameters were derived by L. B. Milstein in [1]. If the target moves and the monopulse radar runs in the tracking (continuous or track-while-scan) mode these estimates become inaccurate because amplitudes of signals from the scatterers composing an extended target vary due to the antenna boresight deviations in the vicinity of the target angular position. The presented article is devoted to the synthesis and analysis of algorithms of the joint estimation of the target signal power, angular position and extent in a monopulse radar run in the tracking mode and it is impossible to neglect the antenna boresight deviations. The ML estimates are derived here under the assumption that the sum and difference antenna patterns can be approximated within the antenna beamwidth with the trigonometric functions. Statistical analysis of the estimates is performed and the probability distributions, mean values, and variances are determined.
机译:与具有单个接收通道的雷达相比,具有其求和通道和差通道的单脉冲系统不仅可以准确估计目标的信号功率和角度位置,而且还可以准确估计其角度范围。此优点可用于促进目标识别,分类和跟踪。当用单脉冲雷达观测到扩展目标并且雷达天线与目标的相互位置没有随时间显着变化时,上述参数的最大似然(ML)估计值由LB Milstein在[1]中得出。 。如果目标移动并且单脉冲雷达以跟踪(连续或扫描时跟踪)模式运行,则这些估计将变得不准确,因为组成目标的散射体的信号幅度会由于目标附近的天线视轴偏差而发生变化角位置。本文致力于在跟踪模式下运行的单脉冲雷达中目标信号功率,角位置和范围的联合估计算法的综合与分析,不可能忽略天线视轴偏差。 ML估计是在这样的假设下得出的,即可以使用三角函数在天线波束宽度内近似求和和差天线方向图。对估计值进行统计分析,并确定概率分布,平均值和方差。

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