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Optimization of maintenance scheduling for offshore wind turbines considering the wake effect of arbitrary wind direction

机译:考虑任意风向唤醒效果的海上风力涡轮机维护调度优化

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摘要

An optimization model for offshore wind farm maintenance scheduling is presented, considering minimum maintenance costs and maximum power generation. For power generation, the wind speed at each tower site plays an important role that is impacted not only by the dynamically changing wake overlap area and the consequence of variation of wind direction but also by the relative position of the wake affected by the maintenance status. This paper combines the wake model with the maintenance status to accurately express the input wind speed of the wind turbine (WT) in each period. Because the optimization model includes complex dynamical coupling relationships and a number of nonlinear constraints, mixed integer second-order cone programming (MISOCP) are employed to address these issues. The MISOCP model is relaxed as a mixed integer linear programming (MILP) model to improve computational efficiency and the e-constraint method is utilized to handle the multi-objective function. The proposed model and method are tested in a short-term maintenance case of an offshore wind farm. The numerical results demonstrate that the proposed approach can achieve sound economic benefits and provide comprehensive decision support.
机译:介绍了海上风电场维护调度的优化模型,考虑了最低维护成本和最大发电。对于发电,每个塔部位的风速起到重要的作用,不仅受到动态变化的唤醒重叠区域和风向变化的结果而且由受维护状态影响的唤醒的相对位置影响。本文将唤醒模型与维护状态相结合,以精确地表达每个时期风力涡轮机(WT)的输入风速。因为优化模型包括复杂的动态耦合关系和许多非线性约束,所以使用混合整数二阶锥编程(MISOCP)来解决这些问题。 MISOCP模型作为混合整数线性编程(MILP)模型放宽,以提高计算效率,并且使用电子约束方法来处理多目标函数。拟议的模型和方法在海上风电场的短期维护案例中进行了测试。数值结果表明,该方法可以实现良好的经济效益,并提供全面的决策支持。

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