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Experimental investigation on correlation of corona-induced vibration and audible noise from DC conductor

机译:电晕引起的振动与直流导体可听噪声相关性的实验研究

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In this study, the corona-induced vibration and audible noise (AN) on stranded conductor from positive and negative corona discharges were measured and analysed. The experiments were conducted in a semi-anechoic chamber to reduce the inferences from environment. For the measurement of vibration, the conductor was kept in dry condition without water drops on the conductor, which is different from previous investigations and can reveal the contributions of corona-generated space charges on the corona-induced vibration. Besides, the measurement of vibration on the conductor was performed by using a laser vibrometer which was a non-contact measurement device for measuring the vibration velocity. Furthermore, waveforms of corona-induced vibration and AN were measured simultaneously to analyse the correlation between them. The time and frequency domains characteristics of the vibration velocity and AN from negative and positive corona discharge are carefully analysed and no correlated relationship in time and frequency domains can be found in the two corona effects. It can be concluded that disturbance of air molecules caused by the vibration of conductor does not contribute the corona-generated AN.
机译:在这项研究中,对来自正负电晕放电的绞合导体上电晕诱发的振动和可闻噪声(AN)进行了测量和分析。实验是在半消声室中进行的,以减少来自环境的推断。对于振动的测量,导体保持干燥状态,导体上没有水滴,这与以前的研究不同,可以揭示电晕产生的空间电荷对电晕引起的振动的影响。此外,导体上的振动的测量通过使用激光振动计进行,该激光振动计是用于测量振动速度的非接触式测量装置。此外,同时测量电晕引起的振动和AN的波形,以分析它们之间的相关性。仔细分析了负电晕和正电晕放电的振动速度和AN的时域和频域特性,在两个电晕效应中均未发现时域和频域的相关关系。可以得出结论,由导体的振动引起的空气分子扰动不会对电晕产生的AN产生影响。

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