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Time-domain virtual EMI receiver model algorithm for corona-originated electromagnetic interference of dc transmission line

机译:直流传输线电晕引发的电磁干扰的时域虚拟EMI接收机模型算法

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摘要

A time-domain virtual electromagnetic interference (EMI) receiver model algorithm for corona-originated EMI of dc transmission line is proposed. The presented model is based on short-time fast Fourier transform (FFT) and digital quasi-peak, peak and average detector algorithms together with the measured corona current. The virtual EMI receiver model algorithm is verified by comparing with measurement results of conducted interference of the three regular waveforms. The influences of computational accuracy on the conducted interference are discussed. Through utilising the laboratory-scale corona cage to generate corona current, the 0.5 MHz excitation current is calculated by using short-time FFT and excitation function theory. The measured and computational average value, root mean square value, quasi-peak value and peak value of EMI receiver response to corona current sequence are obtained. It is found that computations of radio interference have a good agreement with the measured results.
机译:提出了一种针对直流传输线电晕产生的EMI的时域虚拟电磁干扰(EMI)接收机模型算法。提出的模型基于短时快速傅立叶变换(FFT)和数字准峰值,峰值和平均值检测器算法以及测得的电晕电流。通过与三个规则波形的传导干扰的测量结果进行比较,验证了虚拟EMI接收机模型算法。讨论了计算精度对传导干扰的影响。通过利用实验室规模的电晕笼产生电晕电流,利用短时FFT和激励函数理论计算出0.5 MHz的激励电流。获得EMI接收器对电晕电流序列响应的测量和计算平均值,均方根值,准峰值和峰值。发现无线电干扰的计算与测量结果具有良好的一致性。

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