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Effect of Power Line Interference on Microphone Calibration Measurements Made at or Near Harmonics of the Power Line Frequency

机译:电力线干扰对在电力线频率谐波处或附近进行的麦克风校准测量的影响

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摘要

The electrical measurements required during the primary calibrations of laboratory standard microphones by the reciprocity method can be influenced by power line interference. Because of this influence, the protocols of international inter-laboratory key comparisons of microphone calibrations usually have not included measurements at power line frequencies. Such interference has been observed in microphone output voltage measurements made with a microphone pressure reciprocity calibration system under development at NIST. This system was configured for a particular type of standard microphone in such a way that measurements of relatively small signal levels, which are more susceptible to the effect of power line interference, were required. This effect was investigated by acquiring microphone output voltage measurement data with the power line frequency adjusted to move the frequency of the interference relative to the center frequency of the measurement system passband. These data showed that the effect of power line interference for this system configuration can be more than one percent at test frequencies harmonically related to the power line frequency. These data also showed that adjusting the power line frequency to separate the interference and test frequencies by as little as 1.0 Hz can reduce the effect of the interference by at least an order of magnitude. Adjustment of the power line frequency could enable accurate measurements at test frequencies that otherwise might be avoided.
机译:通过互易方法在实验室标准麦克风的初步校准过程中所需的电气测量会受到电源线干扰的影响。由于这种影响,麦克风校准的国际实验室间密钥比较协议通常不包括电力线频率下的测量。在NIST正在开发的麦克风压力互易性校准系统进行的麦克风输出电压测量中,已经观察到这种干扰。该系统针对特定类型的标准麦克风进行了配置,因此需要测量相对较小的信号电平,而这些信号电平更容易受到电源线干扰的影响。通过获取麦克风输出电压测量数据并调整电源线频率以相对于测量系统通带的中心频率移动干扰频率,可以研究这种效果。这些数据表明,在与电源线频率谐波相关的测试频率下,对于此系统配置,电源线干扰的影响可能超过百分之一。这些数据还表明,调整电源线频率以将干扰频率和测试频率分开低至1.0 Hz,可以将干扰的影响降低至少一个数量级。电力线频率的调整可以实现在测试频率下的准确测量,否则可以避免。

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