具有时滞的拦截弹预测制导

C. Hecht, A. Troesch
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引用次数: 0

摘要

利用最优控制理论建立了时滞系统的预测制导方程,以获得拦截弹转向增益。在此之前,预测制导和比例导航本质上是相同的,它们采用的是基于拦截弹瞬时响应的转向策略。本文采用线性一阶时滞来近似截击器的时间响应,并利用二次惩罚函数求出最优转向增益。确定了最优拦截控制是预测位置误差和加速度误差的线性函数。增益仅是运行时间和拦截器时间常数的函数。给出了一个非机动目标拦截的计算机仿真应用。仿真结果表明,与传统的比例导航增益相比,采用最佳增益可以显著提高拦截器的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Predictive guidance for interceptors with time delays
Predictive guidance equations for systems with time delays are developed using optimal control theory to obtain interceptor steering gains. Previously, predictive guidance and proportional navigation, which are essentially the same, employed a steering policy based on instantaneous interceptor response. In this paper the time response of the interceptor is approximated by a linear first order time lag, and the optimal steering gain is evaluated using a quadratic penalty function. The optimal control for interception is determined to be a linear function of the predicted position error and the acceleration error. The gains are functions of only the time-to-go and the interceptor time constant. An application with computer simulations is included for interception of a non-maneuvering target. The simulations demonstrate a significant improvement of interceptor performance using the optimum gains in comparison to the conventional gain of proportional navigation.
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