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用于混合光纤光栅-压电陶瓷光子电流传感器的无源自动量程电路的设计与实现

Design and Implementation of a Passive Autoranging Circuit for Hybrid FBG-PZT Photonic Current Transducer.

作者信息

Mir Burhan, Niewczas Pawel, Fusiek Grzegorz

机构信息

Department of Electronic and Electrical Engineering, University of Strathclyde, Glasgow G1 1XW, UK.

出版信息

Sensors (Basel). 2023 Jan 3;23(1):551. doi: 10.3390/s23010551.

Abstract

In this paper, we present a novel technique for passively autoranging a photonic current transducer (PCT) that incorporates a current transformer (CT), piezoelectric transducer (PZT) and fiber Bragg grating (FBG). Due to the usage of single-mode fiber and FBG, multiple PCTs can be interconnected and distributed over a long distance, for example along a power network, greatly reducing the cost of sensor deployment and offering other unique advantages. The autoranging technique relies on the usage of multiple, serially connected CT burden resistors and associated static MOSFET switches to realize instantaneous shortening of the resistors in response to increasing measured current. This functionality is realized passively, utilizing a modular, μW-power comparator circuit that powers itself from the electrical energy supplied by the CT within a small fraction of the 50/60 Hz cycle. The resultant instantaneous changes in sensor gain will be ultimately detected by the central FBG interrogator through real-time analysis of the optical signals and will be used to apply appropriate gain scaling for each sensor. The technique will facilitate the usage of a single PCT to cover an extended dynamic range of the measurement that is required to realize a combined metering- and protection-class current sensor. This paper is limited to the description of the design process, construction, and testing of a prototype passive autoranging circuitry for integration with the PCT. The two-stage circuitry that is based on two burden resistors, 1 Ω and 10 Ω, is used to prove the concept and demonstrate the practically achievable circuit characteristics. It is shown that the circuit correctly reacts to input current threshold breaches of approximately 2 A and 20 A within a 3 ms reaction time. The circuit produces distinct voltage dips across burden resistors that will be used for signal scaling by the FBG interrogator.

摘要

在本文中,我们提出了一种用于对光子电流传感器(PCT)进行被动自动量程调整的新技术,该传感器集成了电流互感器(CT)、压电传感器(PZT)和光纤布拉格光栅(FBG)。由于采用了单模光纤和FBG,多个PCT可以相互连接并分布在很长的距离上,例如沿着电网分布,这大大降低了传感器部署成本并提供了其他独特优势。自动量程调整技术依赖于使用多个串联的CT负载电阻和相关的静态MOSFET开关,以响应测量电流的增加而实现电阻的瞬时缩短。此功能通过一个模块化的微瓦功率比较器电路被动实现,该电路在50/60Hz周期的一小部分时间内从CT提供的电能中获取自身所需的电力。传感器增益的最终瞬时变化将由中央FBG询问器通过对光信号的实时分析来检测,并将用于为每个传感器应用适当的增益缩放。该技术将有助于使用单个PCT覆盖扩展的测量动态范围,这是实现组合计量和保护级电流传感器所必需的。本文仅限于描述与PCT集成的无源自动量程调整电路原型的设计过程、构建和测试。基于1Ω和10Ω两个负载电阻的两级电路用于验证概念并展示实际可实现的电路特性。结果表明,该电路在3ms的反应时间内能够正确响应大约2A和20A的输入电流阈值突破。该电路在负载电阻上产生明显的电压降,将由FBG询问器用于信号缩放。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a56/9824097/05f6b2e6901e/sensors-23-00551-g001.jpg

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