风电与蓄电池储能系统并网建模与控制

Omid Khoubseresht, M. Rajabinezhad, B. Ahmadi, E. Shirazi
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引用次数: 0

摘要

可再生能源(RES)的好处是不可否认的,尽管由于其间歇性的性质,控制其输出功率是复杂的。考虑时变负荷模型和资源不确定性,提出了一套新的风电机组与蓄电池储能系统(BESS)同时集成与控制的解析公式。该方法的目标函数包括平滑小波变换机组的输出功率,平衡需求和发电量,增加小波变换份额,降低电网中必不可少的自动发电控制(AGC)备用容量。此外,还考虑了对BESS基准电流的修改,延长了BESS的有效寿命,保证了BESS不会发生过充放电。结果表明,在电网中同时集成小波变换和小波变换将平滑小波变换输出功率,平衡负载和小波变换生成,从而有效降低AGC所需容量,提高电网承载能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modelling and Control of Wind Turbine and Battery Energy Storage System for Grid Integration
The benefits of renewable energy sources (RES) are undeniable, despite the fact that controlling their output power is complicated due to their intermittent nature. In this paper, a new set of analytical formulations has been proposed for simultaneous integration and control of wind turbine (WT) and battery energy storage system (BESS) considering the time-varying load models, and resources uncertainty. The objective functions of this method include smoothing the output power of the WT unit, balancing demand and generation, increasing WT shares as well as decreasing the automatic generation control (AGC) reserve capacity which is essential in the gird. In addition, the modification of BESS reference current is considered to prolong the BESS effective lifetime and guarantee the prevention of BESS from over-charge and discharge. The results show that simultaneous integration of WT and BESS in the grid will smooth WT output power, balance load and WT generation, thereby reducing AGC required capacity and increasing the hosting capacity of grids effectively.
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