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AECM, an AF tool to generate I/Q for simulators or real radar processors

机译:AECM,一种为模拟器或真实雷达处理器生成I / Q的自动对焦工具

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This paper describes a unique way to generate digital I/Q for input to either a simulated or real radar signal processor, by the use of a USAF Wright Laboratory (WL/AARM-3) simulation tool: The Airborne Radar Electronic Countermeasures (AECM) Vulnerability Assessment Model. AECM is a high fidelity, extensively detailed, pulse-to-pulse simulation of an airborne air intercept radar (air-to-air) in an electronic countermeasure (ECM) environment. Scenarios can be setup with single or multiple targets that fly straight or curved segments with constant or variable velocities and altitude changes within the segments. Multiple segments can be used with either curved or straight choices. After the scenario is entered, 13 modules comprising a complete radar model are inputted with the radar parameters. These modules encompass all antenna, transmitter, receiver, waveform, and processing parameters. The received signal I/Q can be obtained from the analog processor or the preprocessor after the A/D conversion. The resulting I/Q is that for both the mainbeam and the guard channel if the guard is modeled. The I/Q within a dwell is coherent. A random number seed determines the phase of the first return pulse within a dwell. The succeeding pulses change phase with both time and Doppler. Subsequent dwells are processed similarly, with their own first-pulse seed. The parameters effecting the I/Q such as the target RCS (Radar Cross Section), can be easily varied. Multiple or single targets with or without jamming can be used with the variable power ECM on the jammers. The effect of these variations can be used to evaluate tracking as well as detection performance of the radar.
机译:本文介绍了一种通过使用美国空军怀特实验室(WL / AARM-3)仿真工具来生成数字I / Q以输入到模拟或真实雷达信号处理器的独特方法:机载雷达电子对策(AECM)漏洞评估模型。 AECM是在电子对策(ECM)环境中对机载空气拦截雷达(空对空)进行的高保真,详细详尽的脉冲到脉冲模拟。可以使用单个或多个目标设置场景,这些目标以直线或曲线段飞行,这些段具有恒定或可变的速度以及段内的高度变化。可以使用弯曲或直线选择的多个段。进入场景后,将输入包含雷达参数的13个模块(包括完整的雷达模型)。这些模块包含所有天线,发射机,接收机,波形和处理参数。接收到的信号I / Q可以在A / D转换后从模拟处理器或预处理器获得。如果对防护装置进行了建模,那么得出的I / Q就是主光束和防护装置通道的I / Q。驻留中的I / Q是一致的。随机数种子确定停顿内第一个返回脉冲的相位。随后的脉冲随时间和多普勒而改变相位。随后的停顿以其自己的第一脉冲种子进行类似的处理。可以很容易地改变影响I / Q的参数,例如目标RCS(雷达横截面)。干扰器上的可变功率ECM可以使用带有或不带有干扰的多个或单个目标。这些变化的影响可用于评估跟踪以及雷达的检测性能。

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