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Energy management and cooperation in microgrids

机译:微电网的能源管理与合作

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摘要

Microgrids are key components of future smart power grids, which integrate distributed renewable energy generators to efficiently serve the load demand locally. However, random and intermittent characteristics of renewable energy generations may hinder the reliable operation of microgrids. This thesis is thus devoted to investigating new strategies for microgrids to optimally manage their energy consumption, energy storage system (ESS) and cooperation in real time to achieve the reliable and cost-effective operation.;This thesis starts with a single microgrid system. The optimal energy scheduling and ESS management policy is derived to minimize the energy cost of the microgrid resulting from drawing conventional energy from the main grid under both the off-line and online setups, where the renewable energy generation/load demand are assumed to be non-causally known and causally known at the microgrid, respectively. The proposed online algorithm is designed based on the optimal off-line solution and works under arbitrary (even unknown) realizations of future renewable energy generation/load demand. Therefore, it is more practically applicable as compared to solutions based on conventional techniques such as dynamic programming and stochastic programming that require the prior knowledge of renewable energy generation and load demand realizations/distributions.;Next, for a group of microgrids that cooperate in energy management, we study efficient methods for sharing energy among them for both fully and partially cooperative scenarios, where microgrids are of common interests and self-interested, respectively. For the fully cooperative energy management, the off-line optimization problem is first formulated and optimally solved, where a distributed algorithm is proposed to minimize the total (sum) energy cost of microgrids. Inspired by the results obtained from the off-line optimization, efficient online algorithms are proposed for the real-time energy management, which are of low complexity and work given arbitrary realizations of renewable energy generation/load demand. On the other hand, for self-interested microgrids, the partially cooperative energy management is formulated and a distributed algorithm is proposed to optimize the energy cooperation such that energy costs of individual microgrids reduce simultaneously over the case without energy cooperation while limited information is shared among the microgrids and the central controller.
机译:微电网是未来智能电网的关键组成部分,这些电网集成了分布式可再生能源发电机,以有效地满足当地的负荷需求。但是,可再生能源发电的随机和间歇特性可能会阻碍微电网的可靠运行。因此,本论文致力于研究微电网的新策略,以最佳方式实时管理其能耗,能量存储系统(ESS)和协作,以实现可靠且具有成本效益的运行。本论文从一个微电网系统开始。得出了最佳的能源调度和ESS管理策略,以最小化在离线和在线设置下从主电网汲取常规能源而产生的微电网的能源成本,在这种情况下,可再生能源的产生/负载需求被认为是非-在微电网处分别为因果关系和因果关系。提出的在线算法是基于最佳离线解决方案设计的,并且在未来(可未知)未来可再生能源发电/负荷需求的实现下工作。因此,与基于动态技术和随机编程等基于常规技术的解决方案相比,该解决方案更具实用性,而动态编程和随机编程则需要可再生能源发电和负载需求实现/分配的先验知识。在管理方面,我们研究了在完全和部分协作的情况下(其中微电网分别具有共同利益和自身利益)在彼此之间共享能量的有效方法。对于完全协作的能源管理,首先提出并优化解决离线优化问题,其中提出了一种分布式算法,以最小化微电网的总(总)能源成本。受到离线优化结果的启发,提出了一种用于实时能源管理的高效在线算法,该算法复杂度低,并且在任意实现可再生能源发电/负荷需求的情况下都可以工作。另一方面,对于自利的微电网,制定了部分合作的能源管理,并提出了一种分布式算法来优化能源合作,从而在没有能源合作的情况下同时降低了各个微电网的能源成本,同时在有限的信息之间共享微电网和中央控制器。

著录项

  • 作者

    Rahbar, Katayoun.;

  • 作者单位

    National University of Singapore (Singapore).;

  • 授予单位 National University of Singapore (Singapore).;
  • 学科 Electrical engineering.;Energy.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 138 p.
  • 总页数 138
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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