针对可再生能源不确定性的鲁棒供需控制器

Y. Sasaki, Dai Seikoba, Jun Okihara, Kohei Kanaya, Y. Zoka, N. Yorino
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引用次数: 5

摘要

电力需求的快速增长和可再生能源的使用对电网的优化运行提出了严峻的挑战。从未来的角度来看,风能和太阳能等可再生能源的急剧增加可能会导致与负荷调度相关的严重问题。另一个重要方面是减少可控制资源,从而引起对这些资源的可靠性问题的关注。本文重点研究了一种减轻可再生能源发电过程中不均匀性的新技术。针对电力系统有限控制资源下的供需管理问题,提出了一种新的24小时实时发电计划方法。负载跟随能力将被认为是非常有限的。该方法具有灵活的运行结果,满足了系统的经济性和可靠性要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A robust supply and demand controller against uncertainties of renewable energy sources
The rapid growth in demand of electricity combined with renewable energy sources (RESs) are presenting serious challenges for the optimal network operation. The future perspective of the dramatic increase in RESs, such as wind and solar energy, may lead to severe problems related to the load dispatch. Other important aspect is the reduction of controllable resources yielding concerns about the reliability issues of such sources. This paper focuses on a new technique for mitigating the irregularity associated with renewable power generation. A new method is proposed for 24-hour and real-time generation schedule as an efficient solution for demand and supply management over the limited control resources of a power system. Load following capability will be considered as critically limited. The flexible operational outcome of the proposed approach satisfies the economical requirements and reliability against uncertainties of RESs.
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