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Peer-to-Peer Energy Sharing Model for Interconnected Home Microgrids

机译:互联家庭微电网的对等能源共享模型

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With the growth in residential rooftop microgrids (MGs), consumers are becoming prosumers. Prosumers tend to inject the excess solar-generated into the grid. This leads to an increase in people participating in the electricity market. Under this scenario, market clearance is one of the major challenges for electricity markets. Apart from selling power to the grid with the advent of peer to peer mechanisms for energy transactions, the number of transactions in the electricity market is increasing. In this context, the objective of this paper is to demonstrate the savings maximization for a prosumer using peer to peer mechanism. This paper proposes two models for energy sharing in p2p mechanism, namely (i) preferential energy sharing and (ii) proportional energy sharing. Preferential energy sharing mechanism where the prosumer with high solar availability is given the higher priority in selling the power either to the community or to the grid. Proportional energy sharing divides the energy proportionally based on solar power injection and consumption. A comparison study among the two mechanisms is performed considering four MGs, and grid time of use pricing is considered. It is observed that preferential sharing provides a reduction in the electricity bill of 4.36 % when compared to selling to grid. Similarly, proportional energy sharing results in 5.81 % reduction in the electricity bills. Based on these observations, it is concluded that proportional energy sharing peer to peer mechanism will result in more amount of energy savings.
机译:随着住宅屋顶微电网(MGs)的增长,消费者正在成为专业消费者。生产者倾向于将多余的太阳能发电注入电网。这导致参与电力市场的人数增加。在这种情况下,市场准入是电力市场的主要挑战之一。除了通过点对点机制进行能源交易将电力出售给电网之外,电力市场中的交易数量也在增加。在这种情况下,本文的目的是证明使用对等机制的生产者的储蓄最大化。本文提出了两种基于p2p机制的能量共享模型,即(i)优先能量共享和(ii)比例能量共享。优先能源共享机制,在向社区或电网出售电力时,将具有较高太阳能可用性的生产者给予更高的优先级。比例能量共享根据太阳能的注入和消耗按比例分配能量。考虑了四个MG,对这两种机制进行了比较研究,并考虑了电网使用时间定价。可以发现,与向电网销售相比,优惠共享可减少4.36%的电费。同样,按比例分配能源可以使电费减少5.81%。基于这些观察,可以得出结论,按比例的按比例对等的能量共享机制将导致更多的节能量。

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