Abstract
With the increasing demand of distributed energy in the energy system, the existing centralized energy trading model can no longer meet the effective interaction of a large number of distributed energy entities in the case of non-trust. Considering the advantages of low energy consumption and high efficiency of graphene blockchain, a distributed energy trading architecture and process based on graphene blockchain is designed. The trading system consists of five levels: user layer, application layer, contract layer, network layer and data layer, with clear overall architecture, self-discipline node and strong scalability and optimization. The entire transaction process is automatically completed on time through smart contracts, effectively improving the automation and intelligence of the transaction under the premise of ensuring the rights of both parties to the transaction. Through the comparative analysis of different distributed energy trading modes, the distributed energy trading model based on graphene blockchain has high feasibility, advancement and sustainability.
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