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RF/microwave system high-fidelity modeling and simulation: application to airborne multi-channel receiver system for angle of arrival estimation

机译:射频/微波系统高保真建模与仿真:应用于机载多通道接收机系统的到达角估计

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摘要

In this paper, a high-fidelity RF modeling and simulation framework is demonstrated to model an airborne multi-channel receiver system that is used to estimate the angle of arrival (AoA) of received signals from a stationary emitter. The framework is based on System Tool Kit (STK~®), Matlab and System Vue~®. The SystemVue-based multi-channel receiver estimates the AoA of incoming signals using adjacent channel amplitude and phase comparisons, and it estimates the Doppler frequency shift of the aircraft by processing the transmitted and received signals. The estimated AoA and Doppler frequency are compared with the ground-truth data provided by STK to validate the efficacy of the modeling process. Unlike other current RF electronic warfare simulation frameworks, the received signal described herein is formed using the received power, the propagation delay and the transmitted waveform, and does not require information such as Doppler frequency shift or radial velocity of the moving platform from the scenario; hence, the simulation is more computationally efficient. In addition, to further reduce the overall modeling and simulation time, since the high-fidelity model computation is costly, the high-fidelity electronic system model is evoked only when the received power is higher than a predetermined threshold.
机译:在本文中,演示了一种高保真RF建模和仿真框架,用于对机载多通道接收器系统进行建模,该系统用于估计来自固定发射器的接收信号的到达角(AoA)。该框架基于系统工具包(STK〜®),Matlab和System Vue〜®。基于SystemVue的多通道接收器使用相邻通道的幅度和相位比较来估计输入信号的AoA,并通过处理发送和接收的信号来估计飞机的多普勒频移。将估计的AoA和多普勒频率与STK提供的真实数据进行比较,以验证建模过程的有效性。与其他当前的RF电子战仿真框架不同,本文所述的接收信号是使用接收功率,传播延迟和发射波形形成的,并且从场景中不需要诸如多普勒频移或移动平台的径向速度之类的信息;因此,仿真的计算效率更高。另外,为了进一步减少整体建模和仿真时间,由于高保真模型的计算成本很高,因此仅当接收功率高于预定阈值时才唤起高保真电子系统模型。

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