首页> 外文会议>IEEE Power and Energy Society General Meeting >Unit Commitment with Intermittent Wind Generation via Markovian Analysis with Transmission Capacity Constraints
【24h】

Unit Commitment with Intermittent Wind Generation via Markovian Analysis with Transmission Capacity Constraints

机译:通过Markovian分析与传输容量限制的单位承诺通过Markovian分析

获取原文

摘要

With increasing worldwide wind generation capacity, efficient wind power integration into the electrical grid becomes important. The intermittent nature of wind generation makes it challenging, and transmission capacity constraints add a major level of complexity since with congestion, wind generation at one node may not be the same as wind generation at another node. When multiple wind farms are located at different nodes in the transmission network, the complexity increases drastically. In this paper, wind generation is formulated at the node level using discrete Markov processes, and is integrated into the nodal demand. The Markov property reduces the number of realizations of wind uncertainty over time, compared with the stochastic programming based on scenarios. To overcome the complexity because of multiple states of multiple wind farms, power flows are formulated using voltage phase angles, assuming that the power flows are dominated by the states of the two nodes connecting the line. Then the resulting flow imbalance at each node is handled by setting aside generation and transmission capacities. Numerical results of two examples demonstrate the efficiency and scalability of the new method.
机译:随着全球风力发电容量的增加,高效的风力集成到电网变得重要。风力产生的间歇性使它具有具有挑战性,传输能力约束增加了自拥塞以来的主要复杂程度,一个节点处的风发电可能与另一个节点的风产生不同。当多个风电场位于传输网络中的不同节点时,复杂性大幅增加。在本文中,使用离散性马尔可夫工艺在节点级别配制风发射,并集成到节点需求中。与基于场景的随机编程相比,马尔可夫财产随着时间的推移而减少了随着时间的推移随着时间的推移的实现。为了克服复杂性因为多个风电场的多种状态,假设功率流由连接线的两个节点的状态主导,使用电压相位角配制功率流。然后通过抛开生成和传输容量来处理每个节点处的产生的流动不平衡。两个例子的数值结果证明了新方法的效率和可扩展性。

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