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Evaluation of radiated immunity tests using adjusted pulse modulated signals

机译:使用调整后的脉冲调制信号评估辐射抗扰度测试

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摘要

The main goals of an engineering test are reproducing a real scenario in a controlled environment and monitoring a device under validation when exposed to such condition. In this context, some recent studies have indicated misalignments between the waveforms suggested by the Radiated Immunity standards and the real telecommunication signals. Reproducing an actual signal in an electromagnetic compatibility laboratory might, however, be an expensive task, since it demands more sophisticated hardware. In this study, a simple solution for this problem is proposed based on adjustments applied to the standardised pulse modulated waveform. The objective is to develop an alternative to the traditional procedures, in an attempt to provide the manufacturers a more realistic test environment for their products. Mathematical manipulations indicate that a good agreement between the adjusted waveforms and a digital television signal cannot be simultaneously achieved in both time and frequency domains. Multiple trade-off solutions are then generated and analysed through electromagnetic simulations. Results show that, in the 210-216 MHz frequency range, the pulse modulated signals model the digital television interference capability better than the classical continuous wave does.
机译:工程测试的主要目标是在受控环境中重现真实场景,并在暴露于这种情况下对处于验证状态的设备进行监控。在这种情况下,最近的一些研究表明,辐射抗扰度标准建议的波形与实际的电信信号之间存在偏差。但是,在电磁兼容性实验室中再现实际信号可能是一项昂贵的任务,因为它需要更复杂的硬件。在这项研究中,基于对标准化脉冲调制波形的调整,提出了针对此问题的简单解决方案。目的是开发一种替代传统程序的方法,以期为制造商提供对其产品更真实的测试环境。数学上的操作表明,在时域和频域都无法同时获得调整后的波形与数字电视信号之间的良好一致性。然后生成多个折衷解决方案,并通过电磁仿真进行分析。结果表明,在210-216 MHz频率范围内,脉冲调制信号比传统的连续波更好地模拟了数字电视的干扰能力。

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