Fault tolerant wind farm control — A benchmark model

Fault tolerant wind farm control — A benchmark model
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容错风电场控制——基准模型

DOI:
10.1109/cca.2013.6662784
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发表时间:
2013
期刊:
2013 IEEE International Conference on Control Applications (CCA)
影响因子:
--
通讯作者:
J. Stoustrup
J. Stoustrup
中科院分区:
--
文献类型:
--
作者:
P. F. Odgaard;J. Stoustrup

文献摘要

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近年来,风力涡轮机工业集中于优化能量成本。其中一个重要因素是提高风力涡轮机的可靠性。先进的故障检测、隔离和调节是这一过程中的重要工具。显然,大多数故障最好在风力涡轮机控制级处理。然而,一些故障在风电场控制级处理得更好。在本文中,故障检测和隔离的基准模型,并在风电场控制级实现的风力发电机组的容错控制。基准模型包括一个小型风力发电场的九个风力涡轮机,基于一个简单的模型,风力涡轮机以及风和风力发电场中的风力涡轮机之间的相互作用。该模型包括风力和电力参考场景以及三个相关的故障场景。该基准模型用于风力发电场故障检测、隔离和容错控制的国际竞赛。
In the recent years the wind turbine industry has focused on optimizing the cost of energy. One of the important factors in this is to increase reliability of the wind turbines. Advanced fault detection, isolation and accommodation are important tools in this process. Clearly most faults are dealt with best at a wind turbine control level. However, some faults are better dealt with at the wind farm control level. In this paper a benchmark model for fault detection and isolation, and fault tolerant control of wind turbines implemented at the wind farm control level is presented. The benchmark model includes a small wind farm of nine wind turbines, based on a simple model of a wind turbine as well as the wind and interactions between wind turbines in the wind farm. The model includes wind and power references scenarios as well as three relevant fault scenarios. This benchmark model is used in an international competition dealing with Wind Farm fault detection and isolation and fault tolerant control.