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Using the system linearity of reverberation chambers to derive an equivalent baseband model in time-domain to predict the chamber response to an input signal

机译:使用混响室的系统线性度在时域中导出等效基带模型,以预测混响室对输入信号的响应

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Testing with pulsed signals in reverberation chambers has the advantage of a lower input-power necessary to reach the desired test field-strength. On the other hand larger chambers with a high quality factor Q have a large time-constant. That means that the build-up of the electrical field inside a chamber takes a long time (up to several µs). This can become a problem when testing with 3 µs-pulses is concerned. The rise- and fall-time of the electrical field inside a reverberation chamber can be manipulated using specifically designed input signals. To design such signals it is important to accurately model the chamber response to any given input signal. Assuming a reverberation chamber to be a linear time-invariant system it is possible to calculate the chamber response using the systems impulse-response. In this paper a corresponding equivalent baseband model is presented. With this the chamber response can be accurately predicted.
机译:在混响室内用脉冲信号进行测试的优势在于,输入功率较低,可以达到理想的测试场强。另一方面,具有高品质因数Q的较大腔室具有较大的时间常数。这意味着在腔室内建立电场要花费很长时间(最多几微秒)。当考虑使用3 µs脉冲进行测试时,这可能会成为问题。混响室内电场的上升和下降时间可以使用专门设计的输入信号进行控制。为了设计这样的信号,重要的是准确地模拟腔室对任何给定输入信号的响应。假设混响室是线性时不变系统,则可以使用系统脉冲响应来计算混响室响应。本文提出了一种相应的等效基带模型。这样,可以准确地预测腔室响应。

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