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首页> 外文期刊>IEEE Transactions on Aerospace and Electronic Systems >Robust altitude estimation for over-the-horizon radar using a state-space multipath fading model
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Robust altitude estimation for over-the-horizon radar using a state-space multipath fading model

机译:基于状态空间多径衰落模型的超视距雷达的稳健高度估计

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摘要

In previous work, a matched-field estimate of aircraft altitude from multiple over-the-horizon (OTH) radar dwells was presented. This approach exploits the altitude dependence of direct and surface reflected returns off the aircraft and the relative phase changes of these micro-multipath arrivals across radar dwells. Since this previous approach assumed high dwell-to-dwell predictability, it has been found to be sensitive to mismatch between modeled versus observed micro-multipath phase and amplitude changes from dwell-to-dwell. A generalized matched-field altitude estimate is presented here based on a state-space model that accounts for random ionospheric and target-motion effects that degrade the dwell-to-dwell predictability of target returns. The new formulation results in an efficient, robust recursive maximum likelihood (ML) estimation of aircraft altitude. Simulations suggest that the proposed technique can achieve accuracy within 5,000 ft of the true aircraft altitude, even with relatively high levels of uncertainty in modeling of dwell-to-dwell changes in the target return. A real data result is also presented to illustrate the technique.
机译:在先前的工作中,提出了来自多个超视距(OTH)雷达驻地的飞机高度匹配场估计。这种方法利用了飞机直接反射和地面反射返回的高度依赖性,以及这些微小多径到达雷达停顿的相对相位变化。由于此先前方法假定了较高的驻留间隔可预测性,因此已发现它对建模与观察到的微多径相位之间的失配以及驻留间隔之间的幅度变化非常敏感。这里基于状态空间模型给出了一个广义的匹配场高度估计值,该模型考虑了电离层和目标运动的随机效应,这些效应降低了目标返回值对目标的可预测性。新的公式可有效,可靠地估计飞机高度。仿真表明,即使在目标返回的停留到停留变化建模中具有相对较高的不确定性时,所提出的技术也可以在飞机真实高度的5,000英尺内实现精度。还提供了实际数据结果以说明该技术。

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