A Blockchain-Based Time-Sharing Trading Model for Microgrid Energy Storage
Abstract
With the development of intelligent power systems, the ecological community of microgrid community power autonomous organizations has become increasingly active. However, the uncertainty of renewable energy within the microgrid has led to energy coordination issues within the community, posing a threat to the sustainable development of microgrid community energy. And blockchain technology, with its characteristics of decentralization, tamper resistance, and distributed storage, is highly compatible with decentralized and autonomous microelectronic networks. This article utilizes intelligent contract automation to achieve optimal allocation and utilization of power resources. Proposed a blockchain-based energy storage time-sharing trading model Blockchain time-of-use energy storage (BLES-TOU). After processing the data through smart contracts, we provide feedback to the subject information. We adjust the electricity consumption strategy by constructing a Stackelberg game model. Finally, we design a smart contract testing plan based on the caliper and obtain the throughput and performance analysis of the smart contract.
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