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The minimal time detection algorithm

机译:最小时间检测算法

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An aerospace vehicle may operate throughout a wide range of flight environmental conditions that affect its dynamic characteristics. Even when the control design incorporates a degree of robustness, system parameters may drift enough to cause its performance to degrade below an acceptable level. The object of this paper is to develop a change detection algorithm so that we can build a highly adaptive control system applicable to aircraft systems. The idea is to detect system changes with minimal time delay. The algorithm developed is called Minimal Time-Change Detection Algorithm (MT-CDA) which detects the instant of change as quickly as possible with false-alarm probability below a certain specified level. Simulation results for the aircraft lateral motion with a known or unknown change in control gain matrices, in the presence of doublet input, indicate that the algorithm works fairly well as theory indicates though there is a difficulty in deciding the exact amount of change in some situations. One of MT-CDA distinguishing properties is that detection delay of MT-CDA is superior to that of Whiteness Test.
机译:航空航天车辆可以在整个范围内运行影响其动态特性的飞行环境条件。即使当控制设计包含一定程度的鲁棒性时,系统参数也可能漂移足以使其性能降低到可接受的水平以下。本文的目的是开发更换检测算法,以便我们可以构建适用于飞机系统的高度自适应控制系统。该想法是通过最小的时间延迟检测系统变化。开发的算法称为最小时间变化检测算法(MT-CDA),其检测尽可能快地通过低于某个指定级别的错误警报概率来检测变化的瞬间。在双击矩阵的存在下,在控制增益矩阵中具有已知或未知变化的飞机横向运动的仿真结果表明该算法在理论中表明虽然难以决定某些情况的确切变化量难以实现。 MT-CDA区分特性之一是MT-CDA的检测延迟优于白度试验。

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