论文标题

电源分配系统的强度调节的光纤电压传感器

Intensity-Modulated Fiber-Optic Voltage Sensors for Power Distribution Systems

论文作者

Lukens, Joseph M., Lagakos, Nicholas, Kaybulkin, Victor, Vizas, Christopher J., King, Daniel J.

论文摘要

我们根据压电传感器的光学反射设计,测试和分析光纤电压传感器。通过控制设备的物理尺寸,我们可以调整其自然共振的频率,以达到所需的灵敏度和带宽组合。在这项工作中,我们完全表征了具有2 kHz特性共振设计的传感器,并在实验中验证了易于使用的频率范围,从大约10 Hz到3 kHz。光谱噪声测量值表明可检测到的电压水平低至60 Hz的300 mV RM,以及全面的动态范围为60 dB,目前受读数电子设备的限制,而不是传感器中传感器的固有性能。此外,我们演示了一种数字信号处理方法,以均衡测量的频率响应,从而准确地检索了短脉冲输入。我们的结果表明,强度调节的光纤电压传感器的价值和适用性用于测量稳态波形和宽带瞬变,这些瞬态与传感器的直接和紧凑设计相结合,应使其在电网监视中有效工具。

We design, test, and analyze fiber-optic voltage sensors based on optical reflection from a piezoelectric transducer. By controlling the physical dimensions of the device, we can tune the frequency of its natural resonance to achieve a desired sensitivity and bandwidth combination. In this work, we fully characterize sensors designed with a 2 kHz characteristic resonance, experimentally verifying a readily usable frequency range from approximately 10 Hz to 3 kHz. Spectral noise measurements indicate detectable voltage levels down to 300 mV rms at 60 Hz, along with a full-scale dynamic range of 60 dB, limited currently by the readout electronics, not the inherent performance of the transducer in the sensor. Additionally, we demonstrate a digital signal processing approach to equalize the measured frequency response, enabling accurate retrieval of short-pulse inputs. Our results suggest the value and applicability of intensity-modulated fiber-optic voltage sensors for measuring both steady-state waveforms and broadband transients which, coupled with the straightforward and compact design of the sensors, should make them effective tools in electric grid monitoring.

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