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Blockchain Based Decentralized Management of Demand Response Programs in Smart Energy Grids

机译:智能能源网格中基于区块链的需求响应程序的分散管理

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摘要

In this paper, we investigate the use of decentralized blockchain mechanisms for delivering transparent, secure, reliable, and timely energy flexibility, under the form of adaptation of energy demand profiles of Distributed Energy Prosumers, to all the stakeholders involved in the flexibility markets (Distribution System Operators primarily, retailers, aggregators, etc.). In our approach, a blockchain based distributed ledger stores in a tamper proof manner the energy prosumption information collected from Internet of Things smart metering devices, while self-enforcing smart contracts programmatically define the expected energy flexibility at the level of each prosumer, the associated rewards or penalties, and the rules for balancing the energy demand with the energy production at grid level. Consensus based validation will be used for demand response programs validation and to activate the appropriate financial settlement for the flexibility providers. The approach was validated using a prototype implemented in an Ethereum platform using energy consumption and production traces of several buildings from literature data sets. The results show that our blockchain based distributed demand side management can be used for matching energy demand and production at smart grid level, the demand response signal being followed with high accuracy, while the amount of energy flexibility needed for convergence is reduced.
机译:在本文中,我们研究了分布式区块链机制的使用,以适应分布式能源生产者的能源需求概况的形式,为参与灵活性市场的所有利益相关者提供透明,安全,可靠和及时的能源灵活性。系统运营商,主要是零售商,集合商等)。在我们的方法中,基于区块链的分布式分类帐以防篡改的方式存储从物联网智能计量设备收集的能源消耗信息,而自我执行的智能合约以编程方式定义了每个生产者级别的预期能源灵活性以及相关的奖励或罚款,以及在电网一级平衡能源需求和能源生产的规则。基于共识的验证将用于需求响应程序验证,并为灵活性提供者激活适当的财务结算。该方法通过在以太坊平台上实施的原型进行了验证,该原型使用了文献数据集中的几座建筑物的能耗和生产轨迹。结果表明,基于区块链的分布式需求侧管理可用于在智能电网级别匹配能源需求和生产,以高精度跟踪需求响应信号,同时减少了收敛所需的能源灵活性。

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