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首页> 外文期刊>International journal of communication systems >ElectroBlocks: A blockchain-based energy trading scheme for smart grid systems
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ElectroBlocks: A blockchain-based energy trading scheme for smart grid systems

机译:Electroblocks:智能电网系统的基于区块链的能源交易方案

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Smart grid systems are widely used across the world for providing demand response management between users and service providers. In most of the energy distributions scenarios, the traditional grid systems use the centralized architecture, which results in large transmission losses and high overheads during power generation. Moreover, owing to the presence of intruders or attackers, there may be a mismatch between demand and supply between utility centers (suppliers) and end users. Thus, there is a need for an automated energy exchange to provide secure and reliable energy trading between users and suppliers. We found, from the existing literature, that blockchain can be an effective solution to handle the aforementioned issues. Motivated by these facts, we propose a blockchain-based smart energy trading scheme,ElectroBlocks, which provides efficient mechanisms for secure energy exchanges between users and service providers. InElectroBlocks, nodes in the network validate the transaction using two algorithms that are cost aware and store aware. The cost-aware algorithm locates the nearest node that can supply the energy, whereas the store-aware algorithm ensures that the energy requests go to the node with the lowest storage space. We evaluated the performance of theElectroBlocksusing performance metrics such as mining delay, network exchanges, and storage energy. The simulation results obtained demonstrate thatElectroBlocksmaintains a secure trade-off between users and service providers when using the proposed cost-aware and store-aware algorithms.
机译:智能电网系统广泛应用于全球,用于提供用户和服务提供商之间的需求响应管理。在大多数能量分布方案中,传统的电网系统使用集中式架构,从而导致发电期间的传输损耗和高开销。此外,由于入侵者或攻击者的存在,公用事业中心(供应商)和最终用户之间的需求和供应之间可能存在不匹配。因此,需要一种自动化能量交换,以提供用户和供应商之间的安全可靠的能量交易。我们发现,从现有文献中,区块链可以是处理上述问题的有效解决方案。这些事实的激励,我们提出了一种基于区块链的智能能量交易方案,电子块,为用户和服务提供商之间的安全能量交换提供有效的机制。在电子块中,网络中的节点使用两种成本感知和存储的算法验证交易。成本感知算法定位可以提供能量的最近节点,而商店感知算法确保能量请求转到具有最低存储空间的节点。我们评估了电气块的性能指标的性能,如采矿延迟,网络交换和存储能量。获得的模拟结果表明,在使用所提出的成本感知和存储的算法时,用户和服务提供商之间的安全折衷。

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