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Study of microgap discharges and television interference.

机译:研究微间隙放电和电视干扰。

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Disturbing discharges are observed on power lines with inadequate design and maintenance standards. The nature of these discharges is different from that of conductor corona and is more frequently observed on distribution lines than on transmission lines. Electromagnetic noise causing not only Radio Interference (RI) but also Television Interference (TVI) is the consequence of such discharges.;On the basis of laboratory measurements, the properties of microgap discharges were investigated for a typical point-to-plate electrode geometry in the time domain and in the frequency domain. In particular, the statistical characteristics of microgap discharges were studied in this thesis. A microcomputer-based measurement system was set up. For the sake of getting new parameters to assess television interference caused by microgap discharge, the analog rectified intermediate frequency (IF) signal was taken from the R & S ESVP Test Receiver, and recorded by a digitizer-controller system. Amplitude Probability Distribution (APD) and Noise Amplitude Distribution (NAD) measurement results were obtained from the recorded data. Television interference caused by microgap discharge was investigated in the laboratory. The collected results clearly show that the applied voltage, the voltage source, the gap geometry and gap size affect the interference observed on the television screen. NAD is shown to be a better measure to assess television interference caused by microgap discharge.;A microgap discharge equivalent circuit is proposed and developed. The simulation results show that the proposed equivalent circuit gives better results than existing equivalent circuits.;Finally, the engineering significance of these findings with respect to characteristics of electromagnetic noise and design and maintenance of power lines is commented upon.
机译:在设计和维护标准不足的情况下,在电源线上会观察到令人讨厌的放电现象。这些放电的性质不同于导体电晕,并且在传输线上比在传输线上更常见。这种放电不仅导致无线电干扰(RI),而且引起电视干扰(TVI)的电磁噪声。在实验室测量的基础上,研究了典型的点对板电极几何形状中微间隙放电的特性。时域和频域。特别是对微间隙放电的统计特性进行了研究。建立了基于微机的测量系统。为了获得新的参数来评估由微间隙放电引起的电视干扰,从R&S ESVP测试接收器获取了模拟整流中频(IF)信号,并通过数字化控制器系统进行了记录。从记录的数据中获得了幅度概率分布(APD)和噪声幅度分布(NAD)测量结果。在实验室中研究了由微间隙放电引起的电视干扰。收集的结果清楚地表明,施加的电压,电压源,间隙的几何形状和间隙的大小会影响在电视屏幕上观察到的干扰。 NAD被证明是评估由微间隙放电引起的电视干扰的一种更好的方法。提出并开发了一种微间隙放电等效电路。仿真结果表明,所提出的等效电路比现有等效电路具有更好的效果。最后,对这些发现在电磁噪声特性以及电力线设计与维护方面的工程意义进行了评述。

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