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Advances in Protection Technology Against Reradiation Interference on Radio Stations from Power Lines

机译:电力线路电力站勘探干扰保护技术进步

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Background: Reducing Reradiation Interference (RRI) on radio stations from adjacent UHV power lines is one of the key issues urged to be solved in UHV power projects undergoing in China. Methods: In this paper, advances in three aspects, namely the mechanism of RRI, distance-based protecting measures and detuning-based protecting measures are introduced. Combining with the up-to-date studies on induced current and resonance for RRI in MW frequency band, we analyzed and summarized the efforts in the three aspects. Conclusion: It is concluded that the key issue in RRI protection is to clarify the resonance mechanism as well as the determining factor of RRI. Since the researches from IEEE were mainly based on field intensities, they cannot obtain resonance mechanism for RRI at frequencies above 1.7 MHz, which resulted in the ignorance of resonance in protecting distance calculation in China that induced exaggeration in the distance. Plus, the protecting distance cannot deal with the RRI problems at SW and above frequency bands already existed in China. Therefore, it is suggested to apply the generalized resonance theory or other novel methods to determine the resonance mechanism of RRI at SW and above frequencies.
机译:背景技术:减少相邻UHV电力线路的广播电台上的雷击干扰(RRI)是在中国进行的UHV电力项目中敦促解决的关键问题之一。方法:在本文中,介绍了三个方面的进步,即RRI,基于距离的保护措施和基于静物保护措施的机制。与MW频带中RRI的诱导电流和共振的最新研究相结合,我们分析并总结了三个方面的努力。结论:得出结论是,RRI保护中的关键问题是阐明共振机制以及RRI的确定因素。由于IEEE的研究主要基于现场强度,因此它们无法获得RRI的频率以高于1.7 MHz的谐振机制,这导致了在中国保护距离的保护距离计算中的共振无知。此外,保护距离不能应对中国已经存在的SW及以上频段的RRI问题。因此,建议应用广义共振理论或其他新方法来确定RRI在SW及以上频率的谐振机制。

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