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首页> 外文期刊>Applied Energy >Interactive game vector: A stochastic operation-based pricing mechanism for smart energy systems with coupled-microgrids
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Interactive game vector: A stochastic operation-based pricing mechanism for smart energy systems with coupled-microgrids

机译:交互式博弈向量:具有微电网耦合的智能能源系统的基于随机操作的定价机制

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摘要

To accommodate the large scale of renewable energy resources now widely integrated into power systems, an interactive two-level pricing mechanism for coupled microgrids (MG) in a smart energy system is proposed that considers operational quality and renewable generation uncertainty. In the upper level of the pricing mechanism, the distribution energy market operator (DEMO) guarantees operational quality by trading energy with coupled microgrids, while the actual transactions between networked microgrids is performed at the lower level. Stochastic programming is applied to handle the uncertainty caused by large-scale renewable integration. An innovative time-varying game vector and energy transaction strategy deal with the spatio-temporal market interaction of the networked microgrids, where each microgrid is able to directly trade all types of energy with any other microgrid at any time. The proposed model is solved using a customized hierarchical genetic algorithm. Case studies on an IEEE bus test feeder and an existing energy system in China demonstrate the effectiveness of the proposed methodology.
机译:为了适应现已广泛集成到电力系统中的大规模可再生能源,提出了一种智能化能源系统中耦合微电网(MG)的交互式两级定价机制,该机制考虑了运行质量和可再生能源发电的不确定性。在定价机制的较高级别,配电能源市场运营商(DEMO)通过与耦合的微电网进行能源交易来保证运营质量,而联网的微电网之间的实际交易则在较低级别进行。应用随机规划来处理大规模可再生能源整合所带来的不确定性。创新的时变博弈向量和能源交易策略处理了联网微电网的时空市场互动,其中每个微电网都可以随时与任何其他微电网直接交易所有类型的能源。提出的模型使用定制的分层遗传算法求解。对IEEE总线测试馈线和中国现有能源系统的案例研究证明了该方法的有效性。

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