...
首页> 外文期刊>Journal of Modern Power Systems and Clean Energy >Meeting peak electricity demand through combinatorial reverse auctioning of renewable energy
【24h】

Meeting peak electricity demand through combinatorial reverse auctioning of renewable energy

机译:通过组合反向拍卖可再生能源满足峰值电力需求

获取原文
           

摘要

The option of organizing E-auctions to purchase electricity required for anticipated peak load period is a new one for utility companies. To meet the extra demand load, we develop electricity combinatorial reverse auction (CRA) for the purpose of procuring power from diverse energy sources. In this new, smart electricity market, suppliers of different scales can participate, and homeowners may even take an active role. In our CRA, an item, which is subject to several trading constraints, denotes a time slot that has two conflicting attributes, electricity quantity and price. To secure electricity, we design our auction with two bidding rounds: round one is exclusively for variable energy, and round two allows storage and nonintermittent renewable energy to bid on the remaining items. Our electricity auction leads to a complex winner determination (WD) task that we represent as a resource procurement optimization problem. We solve this problem using multi-objective genetic algorithms in order to find the trade-off solution that best lowers the price and increases the quantity. This solution consists of multiple winning suppliers, their prices, quantities and schedules. We validate our WD approach based on large-scale simulated datasets. We first assess the time-efficiency of our WD method, and we then compare it to well-known heuristic and exact WD techniques. In order to gain an exact idea about the accuracy of WD, we implement two famous exact algorithms for our constrained combinatorial procurement problem.
机译:为预期高峰负荷期需要组织电子拍卖的选择是公用事业公司的新产品。为了满足额外的需求负荷,我们开发电力组合反向拍卖(CRA),以便从各种能源采购电力。在这个新的智能电力市场中,不同尺度的供应商可以参与,房主甚至可能会积极作用。在我们的CRA中,一个受几个交易限制的项目表示一个有两个相互冲突的属性,电量和价格的时隙。为了确保电力,我们用两个竞标轮设计我们的拍卖:圆形专门用于可变能量,第两轮允许存储和不合适的可再生能量在其余项目上出价。我们的电力拍卖会导致我们作为资源采购优化问题所代表的复杂胜利者确定(WD)任务。我们使用多目标遗传算法解决这个问题,以找到最佳降低价格的权衡解决方案并增加数量。该解决方案包括多个获奖供应商,价格,数量和时间表。我们基于大规模模拟数据集验证了我们的WD方法。我们首先评估我们的WD方法的时间效率,然后我们将其与知名启发式和确切的WD技术进行比较。为了提高关于WD的准确性的精确思想,我们为我们约束的组合采购问题实施了两个着名的精确算法。

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