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Coordinated optimal operation of hybrid energy storage in power system accommodated high penetration of wind power

机译:混合动力储能在电力系统中的协调优化运行,以适应风电的高渗透率

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The variability and nondispatchable nature of wind power presents sustainable challenges for power system's steady operation and security. In order to accommodate high penetration of wind power and increase the utilization rate of renewable resources, a model of hybrid energy storage system consisting of battery energy storage system and pumped storage power station is proposed in this paper, and a coordinated optimal operation method in the power system is presented. Based on the restriction of upper wind power fluctuation rate limit, a determination method of grid-connected wind farm power output is presented, which can improve the scheduling performance of wind power. The power difference between the original wind farm power out put and grid-connected wind farm power output is mitigated by BESS due to its quick response capacity. Pumped storage power station is used for peak regulation in power system. The proposed model and operation method are verified on a modified RTS-96 system, the results are presented to prove the feasibility and effectiveness of the proposed model and method.
机译:风电的多变性和不可调度性对电力系统的稳定运行和安全提出了可持续的挑战。为了适应风电的高渗透率,提高可再生资源的利用率,提出了一种由电池储能系统和抽水蓄能电站组成的混合储能系统模型,并提出了一种协调最优运行方法。提出了电力系统。基于风电波动率上限的限制,提出了并网风电场发电量的确定方法,可以提高风电调度性能。由于BESS具有快速响应能力,因此可以缓解原始风电场输出功率与并网风电场功率输出之间的功率差异。抽水蓄能电站用于电力系统的峰值调节。在改进的RTS-96系统上对提出的模型和方法进行了验证,结果证明了提出的模型和方法的可行性和有效性。

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