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Development of operator-oriented peer-to-peer energy trading model for integration into the existing distribution system

机译:开发经营者为导向的点对点能源交易模型,用于集成到现有的分销系统中

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摘要

Recently, peer-to-peer (P2P) energy trading has attracted considerable attention as an approach to overcome current challenges faced by the dissemination policy of each country for renewables-based distributed energy resources. However, existing trading models do not provide solutions for the receptivity problem in trading from the perspectives of customers and related organizations. In this regard, this paper proposes a novel P2P energy trading model that can be integrated into the existing distribution system. An operator-oriented trading scheme is developed to lower barriers to allow entry into P2P trading. The operator, instead of each participant, decides the marginal/trading price and trading schedules. Unlike in the existing model, the marginal price that accommodates various electric tariffs and sales systems is derived to obtain high receptivity from customers. Furthermore, service charges comprising charges for network usage and platform service are determined to develop a feasible trading model. The proposed model achieves acceptance from the utility company and platform operator in terms of service charges. Further, a matching algorithm is formulated considering derived elements; accordingly, a constrained optimization problem is formulated, and the Lagrange multiplier method is applied to create an optimal trading schedule that maximizes social welfare while preventing imbalance in revenues between buyers and sellers. The actual data for various types of loads and distributed energy resources are applied to the IEEE 18-bus distribution system to verify the performance of the proposed P2P trading scheme.
机译:最近,对等(P2P)能源交易引起了相当大的关注,以克服每个国家的传播政策所面临的当前挑战,以获得可再生能源的分布能源资源。然而,现有的交易模式不提供从客户和相关组织的角度交易中的接受问题的解决方案。在这方面,本文提出了一种新型P2P能源交易模型,可以集成到现有的分销系统中。以允许进入P2P交易的障碍开发了一种以经营者为导向的交易计划。运营商代替每个参与者决定边际/交易价格和交易时间表。与现有模型不同,获得各种电费和销售系统的边际价格被推导出获得客户的高度接受性。此外,确定包括网络使用率和平台服务的费用的费用来开发可行的交易模型。拟议的模型在服务费方面取得了公用事业公司和平台运营商的验收。此外,考虑衍生元素的配制匹配算法;因此,制定了受约束的优化问题,并应用了拉格朗日乘法器方法来创建最佳交易时间表,以最大化社会福利,同时防止买家和卖家之间的收入不平衡。各种类型的负载和分布式能量资源的实际数据应用于IEEE 18总线分配系统,以验证所提出的P2P交易方案的性能。

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