Department of Computer Science and Engineering, Institute of Technology, Nirma University, Ahmedabad 382481, Gujarat, India.
Computer Science and Engineering Department, R. N. G. Patel Institute of Technology, Bardoli, Surat 394620, Gujarat, India.
Sensors (Basel). 2022 Jun 26;22(13):4826. doi: 10.3390/s22134826.
In Smart Grid (SG), Transactive Energy Management (TEM) is one of the most promising approaches to boost consumer participation in energy generation, energy management, and establishing decentralized energy market models using Peer-to-Peer (P2P). In P2P, a prosumer produces electric energy at their place using Renewable Energy Resources (RES) such as solar energy, wind energy, etc. Then, this generated energy is traded with consumers (who need the energy) in a nearby locality. P2P facilitates energy exchange in localized micro-energy markets of the TEM system. Such decentralized P2P energy management could cater to diverse prosumers and utility business models. However, the existing P2P approaches suffer from several issues such as single-point-of-failure, network bandwidth, scalability, trust, and security issues. To handle the aforementioned issues, this paper proposes a Decentralized and Transparent P2P Energy Trading scheme using blockchain. The proposed scheme aims to reduce the grid's energy generation and management burden while also increasing profit for both consumers and prosumers through a dynamic pricing mechanism. The scheme uses Ethereum-blockchain-based Smart Contracts (SCs) and InterPlanetary File System (IPFS) for the P2P energy trading. Furthermore, a recommender mechanism is also introduced in this study to increase the number of prosumers. The Ethereum SCs are designed and deployed to perform P2P in real time in the proposed scheme. The scheme is evaluated based on the various parameters such as profit generation (for prosumer and consumer both), data storage cost, network bandwidth, and data transfer rate in contrast to the existing approaches.
在智能电网 (SG) 中,交易能源管理 (TEM) 是促进消费者参与能源生产、能源管理以及利用点对点 (P2P) 建立分散式能源市场模型的最有前途的方法之一。在 P2P 中,产销者使用可再生能源资源 (RES),如太阳能、风能等,在其所在地生产电能。然后,这些产生的能源在附近的地方与消费者(需要能源的人)进行交易。P2P 促进了 TEM 系统中局部微型能源市场的能源交换。这种分散式的 P2P 能源管理可以满足各种产销者和公用事业商业模式的需求。然而,现有的 P2P 方法存在单点故障、网络带宽、可扩展性、信任和安全等问题。为了解决上述问题,本文提出了一种使用区块链的去中心化和透明的 P2P 能源交易方案。该方案旨在通过动态定价机制,减轻电网的能源生产和管理负担,同时提高消费者和产销者的利润。该方案使用基于以太坊区块链的智能合约 (SC) 和星际文件系统 (IPFS) 进行 P2P 能源交易。此外,本研究还引入了推荐机制,以增加产销者的数量。以太坊的 SC 被设计并部署在提议的方案中,以实时执行 P2P。该方案基于各种参数进行评估,例如产销者和消费者的利润生成、数据存储成本、网络带宽和数据传输速率,与现有方法相比。