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Prediction of Aircraft Transient Level (ATL) by simulation and comparison to frequency-domain measurements using the minimum phase algorithm

机译:通过仿真并使用最小相位算法与频域测量值进行比较来预测飞机的瞬态水平(ATL)

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This paper demonstrates the prediction of Aircraft Transient Level (ATL) by simulation, compared to measurements in frequency domain. Dealing with the design of a new aircraft, numerical simulation is nowadays used to reduce the EMC requirement margins for equipment qualification and aircraft certification. An advanced simulation approach is demonstrated in this paper to reduce simulation time and effort by using a Gaussian excitation pulse in time domain. The prediction of the indirect Lightning Electromagnetic Pulse (LEMP) and the Nuclear Electromagnetic Pulse (NEMP) threat by convolution is possible in post processing. The prediction of ATL from scalar measurements in the frequency domain by reconstruction of the unknown phase under minimum phase assumption is also shown. Theoretical and practical examples demonstrate the steps of the minimum phase algorithm (MPA) and the prediction of currents or voltages in time domain from measurements of the magnitude in frequency domain. The paper concludes with the combination of the advanced simulation approach and the phase reconstruction by MPA. This smart combination reduces the effort for measurements to frequency domain magnitudes only which can then be converted to ATL by using MPA. This process has grown to a dominant reduction factor for ATL requirement prediction.
机译:本文通过仿真演示了飞机瞬态水平(ATL)的预测,并与频域中的测量结果进行了比较。在处理新飞机的设计时,如今已使用数值模拟来减少设备鉴定和飞机认证的EMC要求余量。本文演示了一种先进的仿真方法,可通过在时域中使用高斯激励脉冲来减少仿真时间和精力。通过卷积可以预测间接雷电电磁脉冲(LEMP)和核电磁脉冲(NEMP)威胁。还显示了通过在最小相位假设下重构未知相位,根据频域中的标量测量预测ATL。理论和实践示例说明了最小相位算法(MPA)的步骤以及根据频域幅度的测量来预测时域电流或电压的步骤。本文将先进的仿真方法与MPA的相位重建相结合而得出结论。这种智能的组合将测量工作减少到仅频域幅度,然后可以通过使用MPA转换为ATL。对于ATL需求预测,此过程已发展成为主要的降低因素。

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