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Demand response-based dynamic dispatch of microgrid system in hybrid electricity market

机译:混合电力市场中基于需求响应的微电网系统动态调度

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Purpose - Technological development has not only helped in effective integration of renewable sources but also made it possible for consumers to participate in system operation. Different market players are coming up in the electricity market, microgrid being one of them. Thus, this paper aims to investigate consumers' role in the dispatch of a microgrid system that has a hybrid market structure under varied system conditions. Design/methodology/approach - The mathematical model developed has been solved by the CONOPT solver in the GAMS optimization tool. GAMS-MATLAB interfacing is done to obtain solutions. Findings - The problem formulated shows the effect of consumers in dispatch and overall operational cost. Consumers' participation has been proposed through a quadratic cost function. The system operation under pool and bilateral contracts has been investigated. It shows that proper incentives to the consumers can help in reduction and effective management of the demand, carbon emission and overall system operational cost. Originality/value - This paper considers the hybrid market structure to find the load dispatch in a microgrid system. The participation of consumers in the microgrid system has been implemented considering variations in wind power, solar power and load. The power exchange between the grid and microgrid system has been modeled showing the contribution of the consumers in system operation.
机译:目的-技术发展不仅有助于有效整合可再生能源,而且使消费者有可能参与系统运行。电力市场出现了不同的市场参与者,微电网就是其中之一。因此,本文旨在研究消费者在微电网系统调度中的角色,该系统在不同的系统条件下具有混合市场结构。设计/方法/方法-开发的数学模型已由GAOP优化工具中的CONOPT求解器求解。完成GAMS-MATLAB接口以获得解决方案。调查结果-提出的问题显示了消费者对调度和总体运营成本的影响。已经通过二次成本函数提出了消费者的参与。已经研究了共同合同和双边合同下的系统运行情况。它表明,对消费者的适当激励措施可以帮助减少和有效管理需求,碳排放和整个系统的运营成本。原创性/价值-本文考虑了混合市场结构以在微电网系统中找到负荷分配。考虑到风力,太阳能和负荷的变化,已经使消费者参与微电网系统。网格和微电网系统之间的功率交换已建模,显示了用户在系统运行中的贡献。

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