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A Noise Level Prediction Method Based on Electro-Mechanical Frequency Response Function for Capacitors

机译:基于机电频率响应函数的电容器噪声水平预测方法

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摘要

The capacitors in high-voltage direct-current (HVDC) converter stations radiate a lot of audible noise which can reach higher than 100 dB. The existing noise level prediction methods are not satisfying enough. In this paper, a new noise level prediction method is proposed based on a frequency response function considering both electrical and mechanical characteristics of capacitors. The electro-mechanical frequency response function (EMFRF) is defined as the frequency domain quotient of the vibration response and the squared capacitor voltage, and it is obtained from impulse current experiment. Under given excitations, the vibration response of the capacitor tank is the product of EMFRF and the square of the given capacitor voltage in frequency domain, and the radiated audible noise is calculated by structure acoustic coupling formulas. The noise level under the same excitations is also measured in laboratory, and the results are compared with the prediction. The comparison proves that the noise prediction method is effective.
机译:高压直流(HVDC)换流站中的电容器会辐射出许多可听到的噪声,这些噪声可能会超过100 dB。现有的噪声水平预测方法不能令人满意。本文提出了一种基于频率响应函数的,同时考虑电容器的电气和机械特性的噪声水平预测的新方法。机电频率响应函数(EMFRF)定义为振动响应的频域商与电容器电压的平方,它是从冲击电流实验中获得的。在给定的激励下,电容器罐的振动响应是EMFRF与给定电容器电压的平方在频域上的乘积,并且通过结构声耦合公式来计算辐射可听噪声。在实验室中也测量了相同激励下的噪声水平,并将结果与​​预测结果进行了比较。比较表明,该噪声预测方法是有效的。

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