Robust generation maintenance scheduling considering wind power and forced outages


Generation maintenance scheduling has system level and equipment level aspects. At the system level, massive-scale integration of wind power brings concerning important challenges for classical generator maintenance scheduling. At the equipment level, forced outages of power equipment caused by wear have an effect on maintenance choices. Here, the authors report a sturdy optimisation model for maintenance scheduling considering wind power integration and compelled outages of kit. An uncertainty set is employed to describe fluctuations in the wind power, and a technique to control the conservativeness of the robust model is developed. An outage model is employed to describe the impact of the operating conditions on maintenance decisions. The consequences and benefits of the model are demonstrated via numerical simulations.

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