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Tracking unresolved targets in theater ballistic missile defense

机译:在战区弹道导弹防御中追踪未解决的目标

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Fire control requirements for designating an interceptor against a warhead impose stressing tracking requirements. The article introduces these issues and defines resolution and data association performance measures in the context of theater ballistic missile defense (TBMD). The emphasis of the paper is on definition of underlying concepts and use of analytical expressions to estimate resulting radar requirements, as these issues are often neglected in even high fidelity simulation efforts. Resolution and measurement-to-track data association requirements in a dense multiple object environment are parameterized using an analytical model for exoatmospheric rocket body fragmentation. This model is then used to illustrate the tradeoff between range resolution (waveform bandwidth) and track degradation imposed by a fragmentation event. Some associated waveform design issues are briefly addressed. TBMD may mandate precision track such that a significantly higher degree of track filter smoothing is demanded than that normally associated with fire control against airbreathing targets. Proposed tracking algorithms that improve track maintenance under stressing conditions do not necessarily lend themselves to achieving the high degree of track filter smoothing demanded by TBMD.
机译:针对弹头指定拦截器的火控要求施加了压力追踪要求。本文介绍了这些问题,并在战区弹道导弹防御(TBMD)的背景下定义了分辨率和数据关联性能度量。本文的重点是定义基本概念,并使用分析表达式来估算最终的雷达需求,因为即使在高保真度的仿真工作中,这些问题也经常被忽略。使用用于大气外火箭体破碎的分析模型,对密集的多目标环境中的分辨率和轨距测量数据关联要求进行了参数化。然后,使用该模型来说明范围分辨率(波形带宽)与碎片事件造成的磁道退化之间的折衷。简要解决了一些相关的波形设计问题。 TBMD可能要求进行精确的跟踪,因此要求的跟踪过滤器平滑度要比通常与针对呼吸目标的火控相关的平滑度高得多。提出的改善在压力条件下的轨道维护的跟踪算法不一定会使它们达到TBMD所要求的高度的轨道滤波器平滑度。

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