PROJECT TITLE :

A benchmark evaluation of fault tolerant wind turbine control concepts

ABSTRACT:

As the planet's power supply to a bigger and bigger degree depends on wind turbines, it is consequently and increasingly necessary that these are as reliable and out there as attainable. Fashionable fault tolerant control (FTC) could play a substantial part in increasing reliability of recent wind turbines. A benchmark model for wind turbine fault detection and isolation, and FTC has previously been proposed. Primarily based on this benchmark, a world competition on wind turbine FTC was announced. In this transient, the top three solutions from that competition are presented and evaluated. The analysis shows that every one 3 ways and, in particular, the winner of the competition shows potential for wind turbine FTC. Plus showing sensible performance, the approach relies on a technique, that has relevancy for industrial usage. It is based mostly on a virtual sensor and actuator strategy, in that the fault accommodation is handled in software sensor and actuator blocks. This means that the wind turbine controller will continue operation as in the fault free case. The opposite 2 evaluated solutions show some potential however in all probability need enhancements before industrial applications.


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