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Effectiveness calculations in captive-carry HIL missile simulatorexperiments

机译:携带式HIL导弹模拟器实验的效能计算

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Electronic countermeasures (ECMs) are instrumental in altering the flight path of an incoming active threat missile. To determine the effectiveness of the ECM, hardware-in-the-loop (HIL) threat missile simulators are tested in several types of experimental configurations (e.g., closed-loop in an anechoic chamber, open-loop captive-carry held tests on board an aircraft). A new class of modeling and simulation algorithms is presented that allows an accurate miss distance to be calculated from a high-bandwidth ECM captive-carry test result. The techniques combine the results from each test configuration and represent an improvement in evaluating an ECM effectiveness over a singly independent analysis. Anechoic chamber and captive-carry test results from an HIL antiship missile (ASM) simulator are used to demonstrate the algorithms and detail the feasibility of the approach
机译:电子对策(ECM)有助于改变进入的主动威胁导弹的飞行路径。为了确定ECM的有效性,在几种类型的实验配置中测试了硬件在环(HIL)威胁导弹模拟器(例如,无回声室中的闭环,机载的开环俘虏携带式测试)一架飞机)。提出了一种新型的建模和仿真算法,该算法允许从高带宽ECM携带式测试结果中计算出准确的未命中距离。该技术结合了每种测试配置的结果,代表了在评估ECM有效性方面比单独进行的一项独立改进。 HIL反舰导弹(ASM)仿真器的消声室和自动运载测试结果用于演示算法并详细说明该方法的可行性

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