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Optimal Capacity Allocation for Wind-Solar Station Considering Power Response of Pumped Storage

机译:考虑抽水蓄能动力响应的风光发电站容量优化分配

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Large-scale renewable energy access with randomness and volatility poses severe challenges to power grid security dispatch. In order to reduce the adverse impact of wind power and solar power on the grid, the fluctuation of wind power and solar power should be considered in the construction of wind-photovoltaic power plants. Therefore, considering the regulation ability of pumped storage units to suppress wind and solar fluctuations quickly, the power response model of pumped storage units under the conditions of pumping and hydroelectric power generation is established in this paper. Aiming at the economy and the proportion of wind energy and solar energy absorption, an optimal allocation method of wind energy and solar power capacity considering the power response of pumped storage units is proposed. Under the condition of positive and negative peak regulation of wind power output, the simulation results show that the optimal installed capacity allocation scheme of wind power and solar power plants is obtained. The simulation results verify the feasibility and effectiveness of this method.
机译:具有随机性和波动性的大规模可再生能源的使用给电网安全调度带来了严峻的挑战。为了减少风能和太阳能对电网的不利影响,在风力光伏电站的建设中应考虑风能和太阳能的波动。因此,考虑到抽水蓄能机组的调节能力,能够迅速抑制风和太阳的波动,建立了抽水蓄能发电条件下抽水蓄能机组的功率响应模型。针对经济性以及风能和太阳能吸收的比例,提出了一种考虑抽水蓄能机组动力响应的风能和太阳能发电容量的最优分配方法。仿真结果表明,在风电输出正负峰值调节的条件下,获得了风电和太阳能发电厂的最优装机容量分配方案。仿真结果验证了该方法的可行性和有效性。

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