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Improving design method for sensitivity and frequency response of E-field sensor using a Mach-Zehnder interferometer

机译:用马赫曾德尔干涉仪改进电场传感器灵敏度和频率响应的设计方法

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摘要

The design method for sensitivity and frequency response of an electric field sensor using a Mach-Zehnder interferometer (an optical E-field sensor) has been developed in order to measure electromagnetic environments and the performance of measuring facilities. The designs of the optical modulator, sensor elements, and sensitivity were analyzed theoretically by using an accurate equivalent circuit of the sensor. Then an actual sensor was fabricated, and its characteristics of the sensor were evaluated experimentally. The results show that the designed sensitivity and frequency response were optimal. The optical output deviation when the temperature increased from 0 to 40 degrees C was reduced to within 2 dB. The minimum detectable electric field strength was 17 dB mu V/m (8 mu V/m), and the dynamic range was more than 100 dB. The frequency response of the sensitivity was almost flat between 200 Hz and 900 MHz.
机译:为了测量电磁环境和测量设备的性能,已经开发了使用Mach-Zehnder干涉仪(光学电场传感器)的电场传感器的灵敏度和频率响应的设计方法。通过使用传感器的精确等效电路,从理论上分析了光调制器,传感器元件和灵敏度的设计。然后,制造出实际的传感器,并通过实验评估其特性。结果表明,设计的灵敏度和频率响应是最佳的。当温度从0升高到40摄氏度时,光输出偏差减小到2 dB以内。最小可检测电场强度为17 dBμV / m(8μV / m),动态范围大于100 dB。灵敏度的频率响应在200 Hz和900 MHz之间几乎是平坦的。

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