首页> 外文会议>Chinese Control and Decision Conference >The influences of an improved pumped-wind-hydro-thermal optimization strategy in power system and research on different optimal proportion in different large regional grid
【24h】

The influences of an improved pumped-wind-hydro-thermal optimization strategy in power system and research on different optimal proportion in different large regional grid

机译:改进的风水热电联合优化策略对电力系统的影响及不同区域电网不同最佳比例的研究

获取原文

摘要

Until the end of the year 2015, the world's installed capacity of wind power reached 432419MW. And the capacity of wind farm in China was 145.1GW, which was 141.6GW in European Union at the same time. China became an important region that has the largest wind installed capacity. Wind power has its characteristic of randomness and uncertain. And the large-scale wind would bring a lot of challenge to the safety and economic of operation in state grid. At the present, the fluctuation of wind power is adjusted through the participating of thermal units, which is a waste of fossil energy and money. Due to the fluctuation caused by integration of large-scale wind power, current grid can not deal with it without considering the features of renewable energy. In recent years, the pumped-storage stations had been proposed to arrange the output in order to smooth the fluctuation of wind power. In this paper, an new scheduling policy is put forward to deal with the randomness of wind farm and to improve the intermittent of wind power. The improved pumped-wind-hydro-thermal optimization strategy discussed here only aims at cutting down the fluctuation and operation cost, but also improving the power generation of clean energy. The main algorithm was based on the improved particle swarm optimization algorithm. We simulated several different large regional grids and discussed the impact of different optimal proportion in different large regional grid.
机译:截至2015年底,全球风电装机容量达到432419MW。中国的风电场装机容量为145.1GW,同时欧盟为141.6GW。中国成为风电装机容量最大的重要地区。风电具有随机性和不确定性的特征。而大风将给国家电网的运行安全性和经济性带来很多挑战。目前,通过参与火力发电来调节风能的波动,这是在浪费化石能源和金钱。由于大规模风电整合所引起的波动,当前的电网如果不考虑可再生能源的特点就无法应对。近年来,已经提出了抽水蓄能站来布置输出,以使风能的波动平滑。提出了一种新的调度策略来应对风电场的随机性,提高风电的间歇性。此处讨论的改进的抽风-水-热-热优化策略仅旨在减少波动和运营成本,而且还改善了清洁能源的发电量。主要算法基于改进的粒子群算法。我们模拟了几个不同的大型区域网格,并讨论了不同的最佳比例对不同的大型区域网格的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号