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Reduction of acoustic noise emission in AC-machines by intelligent distributed random modulation

机译:通过智能分布式随机调制减少交流机中的声学噪声发射

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AC-machines driven by PWM-VSI emit acoustical noise. The dominating frequencies in the acoustical noise emission spectra are placed around the switching frequency of the inverter and multiples of this. To reduce the emitted noise a quasi random modulation strategy is proposed. Quasi random modulation means that the switching frequency is varied within a prespecified frequency band. The modulation gives the emitted noise a more 'acceptable' sound for the human ear due to the distinct tones being less significant. The modulation strategy is improved in order to distribute the output voltage spectra more uniformly. Measurements show an almost uniform distribution of the voltage spectra when a special weight function of the distribution of the random modulation frequency is used. Further improvements can be done by considering the mechanical resonance frequencies of the AC-machine. Tests on a pump system shows that omitting the switching frequencies around estimated mechanical resonance frequencies of the AC-machine and load reduces the emitted acoustical noise significantly. It is concluded that an almost silent AC-machine is obtained even at low switching frequencies.
机译:PWM-VSI驱动的AC机器发出声学噪声。声噪声发射光谱中的主导频率围绕逆变器的开关频率和倍数放置。为了减少发出的噪声,提出了准随机调制策略。准随机调制意味着开关频率在预定频带内变化。由于独特的色调不太显着,调制使发出的噪声为人类耳朵提供更多“可接受”的声音。改进了调制策略,以便更均匀地分配输出电压谱。当使用随机调制频率分布的特殊重量函数时,测量显示了电压谱的几乎均匀分布。通过考虑AC机器的机械谐振频率,可以进一步改进。在泵系统上的测试表明,省略了估计AC机器的估计机械谐振频率的开关频率,并且负载显着降低发射的声学噪声。得出结论,即使在低开关频率下也获得了几乎静音的AC机器。

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