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Active power dispatch method for a wind farm central controller considering wake effect

机译:考虑唤醒效应的风电场中央控制器有功功率分配方法

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With the increasing integration of the wind power into the power system, wind farm are required to be controlled as a single unit and have all the same control tasks as conventional power plants. The wind farm central controller receives control orders from Transmission System Operator (TSO), then dispatch the wind power reference to each wind turbine. One of the most commonly used dispatch methods is to dispatch the wind power reference to each wind turbine proportional to each wind turbine's available wind power without the consideration of the wake effect. The wake which depends on the thrust efficient of upstream wind turbines in the wind farm influences the downstream wind speed which determines the available wind power of the downstream wind turbine. Optimize the wind power production of each wind turbine in the wind farm by the optimization of the pitch angle and tip-speed-ratio of each turbine can increase the total available wind power of the wind farm. This paper proposed a new dispatch method which dispatches the wind power reference to each wind turbine proportional to each wind turbine's optimal wind power to increase the available wind power of the whole wind farm. Particle Swarm Optimization (PSO) is used to obtain the optimal wind power for each wind turbine. A case study is carried out. The available wind power of the wind farm was compared between the traditional dispatch method and the proposed dispatch method with the consideration of the wake effect.
机译:随着风能越来越多地集成到电力系统中,要求将风电场作为一个单元进行控制,并具有与常规发电厂相同的控制任务。风电场中央控制器从传输系统运营商(TSO)接收控制命令,然后将风电参考分配给每个风力涡轮机。一种最常用的调度方法是在不考虑尾流影响的情况下,将与每个风力涡轮机的可用风力成比例的风力参考功率分配给每个风力涡轮机。取决于风场中上游风力涡轮机的推力效率的尾流会影响下游风速,从而决定下游风力涡轮机的可用风力。通过优化桨距角和每个涡轮的叶尖速比来优化风电场中每个风力涡轮机的风力发电量,可以增加风力发电场的总可用风力。本文提出了一种新的调度方法,该方法将风能参考分配给每台风力发电机,并与每台风力发电机的最佳风能成比例,以增加整个风电场的可用风能。粒子群优化(PSO)用于获得每个风力涡轮机的最佳风力。进行了案例研究。在考虑了尾流影响的基础上,比较了传统调度方法和拟议调度方法中风电场的可用风能。

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