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Detection and Isolation of Interturn Faults in Inductors of LCL Filter for Marine Electric Propulsion System

机译:船用推进系统LCL滤波器电感器中干扰故障的检测与隔离

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摘要

This paper presents an online technique to detect and isolate the interturn fault in the inductors of the LCL filter integrated with the active front-end rectifier used for electric propulsion of marine vessels. The proposed online technique is based on the fundamental component of the core-leakage flux measured at the yoke center of the inductor. A comparative study of the grid currents and the core-leakage fluxes under interturn faults is carried out using the proposed analytical models which reveal high sensitivity of the core-leakage flux at the yoke center when compared to the grid currents. The theoretical analysis is validated experimentally on a laboratory-based 11.3-kW marine propulsion system test rig for 1-turn, 2-turn, and 4-turn faults under various loading and supply voltage unbalance conditions. An online fault notification and isolation framework has also been proposed and validated experimentally with two different techniques to increase the reliability for 1-turn fault detection. The methodology requires just a single, low-bandwidth, and inexpensive magnetic flux sensor in addition to the existing current sensors to detect as low as 1-turn fault out of 63 turns.
机译:本文介绍了一种在线技术,用于检测和隔离与用于电动推进的主动前端整流器集成的LCL过滤器的电感器中的酸入故障。所提出的在线技术基于在电感器的轭中心测量的核漏通量的基本组件。使用所提出的分析模型进行了交流故障下的栅格电流和芯漏通量的比较研究,该模型在与电流电流相比时揭示了轭中心的芯漏通量的高灵敏度。理论分析在实验上在基于实验室的11.3千瓦海洋推进系统试验台上进行了经过实验验证,用于在各种装载和电源不平衡条件下为1圈,2圈和4匝断裂。在通过两种不同的技术实验上提出并验证了在线故障通知和隔离框架,以提高1匝故障检测的可靠性。除了现有电流传感器之外,该方法还需要单个,低带宽和廉价的磁通传感器,以检测为63匝数的低至1匝故障。

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