海上风电场健康监测中的实时故障检测方法

D. Agarwal, N. Kishor
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引用次数: 3

摘要

风能是一种清洁的发电资源。然而,由于环境参数的影响,风力发电机组的功率难以得到有效利用,从而导致机组塔架出现故障,降低了系统的效率。本文提出了基于柔性阈值选择和模糊推理系统的故障检测系统(FTSFFDS),该系统可以对风电场进行实时的自主和连续监测,并在故障发生时给出预警。这是一种简单有效的方法,为海上风电场结构健康监测奠定了基础。该系统利用海上风电场的无线传感器网络感知参数并将读数传输给远程观测者。该方法利用自适应阈值来适应一天中不同时间的读数。当数据集之间的相关性较低时,决定新的阈值。该方法有效地减小了传感器节点传输的数据包的总体大小,从而节省了无线传感器网络的能量。仿真结果表明,与LEACH等标准协议相比,该系统的能效提高了近十倍。本文是在前人研究基础上的扩展,提出了一种面向特定应用的网络生存期增强聚类路由协议NETCRP (Network Lifetime enhancement clustering and routing protocol)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An approach to real-time fault detection in health monitoring of offshore wind-farms
Wind is a clean resource for electricity generation. However, its power is difficult to harness due to the effect of environmental parameters which cause fault occurrences in the wind-turbine towers and decrease the efficiency of the system. We propose Flexible Threshold Selection and Fuzzy inference system based Fault Detection System (FTSFFDS), which allows autonomous and continuous monitoring of the wind farm in real-time and gives warnings in case of fault occurrences. This is a simple and efficient method which forms the basis for the structural health monitoring of Offshore wind-farms. The system uses WSN in offshore wind-farm to sense the parameters and transmit the readings to the remote observer. The method utilizes adaptive thresholds to cater to the readings at different times of the day. The decision for new threshold is made when the correlation between the datasets is low. The proposed method is efficient in reducing the overall size of the data packets transmitted by the sensor nodes and thus saving energy in the WSN. The simulations confirm that the energy efficiency of the system is increased by nearly ten times compared to standard protocols e.g. LEACH. This paper is an extension to our previous research-work which proposed an application-specific clustering and routing protocol NETCRP (Network Lifetime Enhancing Clustering and Routing Protocol).
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