Exploiting constrained IoT devices in a trustless blockchain-based water management system

Miguel Pincheira, M. Vecchio, R. Giaffreda, S. Kanhere
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引用次数: 10

Abstract

We propose a technological framework based on the combination of the Internet of Things (IoT) and Blockchains aiming at incentivizing and rewarding more sustainable water management practices in agriculture. In this context, current IoT-based precision agriculture deployments prefer energy efficiency, which generally translates into power-and-resource-constrained sensing devices. For this reason, often, system integrators of this sector feel the need to interpose third-party hardware intermediaries (e.g., IoT gateways) between sensing devices and blockchain endpoints, so augmenting infrastructural costs and reducing the trustworthiness of the data acquired from the field. In this paper, we present a software architecture specifically designed for a trustless water management system where constrained IoT devices can directly transact sensed data on a public blockchain network. We deploy the proposed solution on off-the-shelf hardware devices and undertake a thorough benchmarking in terms of memory, program size, communication overheads and power consumption. Our results show that, in general, typical IoT devices can be used to directly interact with a blockchain, without severe burden. More specifically, these devices only incur an additional 6% of the energy consumed for their typical interactions with a gateway.
在无信任的基于区块链的水管理系统中利用受限的物联网设备
我们提出了一个基于物联网(IoT)和区块链相结合的技术框架,旨在激励和奖励农业中更可持续的水资源管理实践。在这种背景下,目前基于物联网的精准农业部署更注重能源效率,这通常转化为功率和资源受限的传感设备。出于这个原因,该行业的系统集成商通常认为有必要在传感设备和区块链端点之间插入第三方硬件中介(例如物联网网关),从而增加基础设施成本并降低从现场获取的数据的可信度。在本文中,我们提出了一种专门为无信任水管理系统设计的软件架构,在该系统中,受约束的物联网设备可以直接在公共区块链网络上处理感知数据。我们将提出的解决方案部署在现成的硬件设备上,并在内存、程序大小、通信开销和功耗方面进行全面的基准测试。我们的研究结果表明,一般来说,典型的物联网设备可以用来直接与区块链交互,而不会造成严重的负担。更具体地说,这些设备与网关的典型交互只产生额外6%的能量消耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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