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Statistical characteristic in time-domain of direct current corona-generated audible noise from conductor in corona cage

机译:电晕笼中导体产生的直流电晕产生的可听到噪声的时域统计特性

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The corona-generated audible noise (AN) has become one of decisive factors in the design of high voltage direct current (HVDC) transmission lines. The AN from transmission lines can be attributed to sound pressure pulses which are generated by the multiple corona sources formed on the conductor, i.e., transmission lines. In this paper, a detailed time-domain characteristics of the sound pressure pulses, which are generated by the DC corona discharges formed over the surfaces of a stranded conductors, are investigated systematically in a laboratory settings using a corona cage structure. The amplitude of sound pressure pulse and its time intervals are extracted by observing a direct correlation between corona current pulses and corona-generated sound pressure pulses. Based on the statistical characteristics, a stochastic model is presented for simulating the sound pressure pulses due to DC corona discharges occurring on conductors. The proposed stochastic model is validated by comparing the calculated and measured A-weighted sound pressure level (SPL). The proposed model is then used to analyze the influence of the pulse amplitudes and pulse rate on the SPL. Furthermore, a mathematical relationship is found between the SPL and conductor diameter, electric field, and radial distance. (C) 2016 AIP Publishing LLC.
机译:电晕产生的可听噪声(AN)已成为高压直流(HVDC)传输线设计中的决定性因素之一。来自传输线的AN可以归因于声压脉冲,该声压脉冲是由形成在导体即传输线上的多个电晕源产生的。在本文中,在实验室环境中使用电晕笼结构,系统地研究了由绞合导体表面上形成的直流电晕放电产生的声压脉冲的详细时域特性。通过观察电晕电流脉冲和电晕产生的声压脉冲之间的直接相关性,提取声压脉冲的幅度及其时间间隔。基于统计特性,提出了一种随机模型,用于模拟导体上发生的直流电晕放电引起的声压脉冲。通过比较所计算和测得的A加权声压级(SPL),验证了所提出的随机模型。然后将所提出的模型用于分析脉冲幅度和脉冲速率对SPL的影响。此外,在SPL与导体直径,电场和径向距离之间发现了数学关系。 (C)2016 AIP出版有限责任公司。

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