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Bi-level operational planning of microgrids with considering demand response technology and contingency analysis

机译:考虑需求响应技术和应变分析的微电网双层运营计划

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摘要

Considering financial, ecological and also reliability challenges in planning and operation of microgrids is an indispensable issue. On the other hand, an appropriate design of microgrids in planning stages has a major impact on the daily operation of the system. According to these matters, in this study, a hierarchical decision-making framework has been presented for both planning and operation of microgrids with wide ranges of means and concepts. The proposed model has been formulated as a bi-level optimisation problem in which every level optimises its own objectives independently, however, in interaction with each other. The upper level (leader) problem, which is related to the planning of microgrids, minimises the utility's demand, investment, and emission costs, while the lower level (follower) problem minimises the operation and maintenance costs through the implementation of an energy management system. The mentioned model is a non-linear bi-level problem, which is transformed into a linear single-level problem through Karush-Kuhn-Tucker conditions. Moreover, the contingency based energy management, demand response programme and uncertain nature of renewable resources have been taken into account. Finally, the proposed method has been applied to a typical microgrid and its results are compared with the weighted-sum multi-objective approach to depict its efficiency.
机译:在微电网的规划和运营中考虑到财务,生态以及可靠性方面的挑战是必不可少的问题。另一方面,在计划阶段适当设计微电网会对系统的日常运行产生重大影响。根据这些问题,在本研究中,已经提出了具有广泛手段和概念的微电网规划和运行的分层决策框架。所提出的模型已被表述为一个双层优化问题,其中每个级别都可以相互独立地优化自己的目标。与微电网规划有关的上层(领导者)问题使公用事业的需求,投资和排放成本最小化,而下层(跟随者)问题通过实施能源管理系统使运营和维护成本最小化。提到的模型是一个非线性双层问题,通过Karush-Kuhn-Tucker条件将其转化为线性单层问题。此外,已经考虑了基于应急的能源管理,需求响应计划和可再生资源的不确定性。最后,将所提出的方法应用于典型的微电网,并将其结果与加权和多目标方法进行比较,以描述其效率。

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