实时物联网数据交易的能源感知需求选择与分配

Pooja Gupta, Volkan Dedeoglu, K. Najeebullah, S. Kanhere, R. Jurdak
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引用次数: 13

摘要

个人物联网数据是一种新的经济资产,个人可以通过交易在新兴的数据市场上产生收入。通常情况下,市场是中心化的系统,会引起人们对隐私、单点故障、透明度低以及涉及可信中介的担忧。此外,电池供电的物联网设备限制了实时交易的物联网数据量,从而影响了买方/卖方的满意度,从而影响了此类市场的可持续性和可用性。这项工作提出利用区块链技术实现一个可信、透明的去中心化市场,用于实时交易由电池供电的物联网设备产生的物联网数据流。本文的贡献是双重的:(1)我们提出了一个基于区块链的自治市场,配备了协议框架、定价模型和评级机制等基本功能,以创建一个有效的市场框架,而不涉及中介;(2)我们提出了一种机制,用于在质量和电池限制下选择和分配买方对卖方设备的需求。我们在以太坊中提出了一个概念验证实现,以证明该框架的可行性。我们通过广泛的模拟研究了不同场景下买方需求对物联网设备电池耗电量的影响。我们的研究结果表明,这种方法是可行的,有利于买卖双方创建一个可持续的市场模型,用于从电池供电的物联网设备实时交易物联网数据。
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Energy-aware Demand Selection and Allocation for Real-time IoT Data Trading
Personal IoT data is a new economic asset that individuals can trade to generate revenue on the emerging data marketplaces. Typically, marketplaces are centralized systems that raise concerns of privacy, single point of failure, little transparency and involve trusted intermediaries to be fair. Furthermore, the battery-operated IoT devices limit the amount of IoT data to be traded in real-time that affects buyer/seller satisfaction and hence, impacting the sustainability and usability of such a marketplace. This work proposes to utilize blockchain technology to realize a trusted and transparent decentralized marketplace for contract compliance for trading IoT data streams generated by battery-operated IoT devices in real-time. The contribution of this paper is two-fold: (1) we propose an autonomous blockchain-based marketplace equipped with essential functionalities such as agreement framework, pricing model and rating mechanism to create an effective marketplace framework without involving a mediator, (2) we propose a mechanism for selection and allocation of buyers' demands on seller's devices under quality and battery constraints. We present a proof-of-concept implementation in Ethereum to demonstrate the feasibility of the framework. We investigated the impact of buyer's demand on the battery drainage of the IoT devices under different scenarios through extensive simulations. Our results show that this approach is viable and benefits the seller and buyer for creating a sustainable marketplace model for trading IoT data in real-time from battery-powered IoT devices.
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