区块链安全数字双胞胎在促进基于智能能源性能的建筑合同中的作用

Energies Pub Date : 2024-07-10 DOI:10.3390/en17143392
Mohamed Nour El-Din, João Poças Martins, Nuno M. M. Ramos, Pedro F. Pereira
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引用次数: 0

摘要

基于能源性能的合同(EPCs)为提高建筑物的能源性能提供了一个前景广阔的解决方案,是实现净零碳建筑、应对气候变化和改善居住舒适度的重要一步。尽管其潜力巨大,但在建筑、工程、施工和运营行业中,其执行却受到各种困难的制约,阻碍了其推广。值得注意的是,由于数据共享、存储和安全方面的挑战,测量和验证过程被认为是一个重大障碍。然而,对这一领域的研究进行系统分析的工作却少之又少。为了填补这一空白,我们对 113 篇已确定的期刊论文进行了系统分析。结果发现,有关利用数字技术加强 EPCs 实施的研究极少。因此,本文提出了一个整合数字孪生和区块链技术的框架,以提供一个增强的 EPC 执行环境。数字孪生技术通过实时监测和评估能源性能、预测未来性能和促进知情决策来利用系统。区块链技术可确保信息的完整性、透明度和问责制。此外,该框架最初引入了私有区块链基础设施,以消除与链上存储相关的高昂交易成本,以及对开放式分布式账本中信息保密性的潜在担忧。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Role of Blockchain-Secured Digital Twins in Promoting Smart Energy Performance-Based Contracts for Buildings
Energy performance-based contracts (EPCs) offer a promising solution for enhancing the energy performance of buildings, which is an overarching step towards achieving Net Zero Carbon Buildings, addressing climate change and improving occupants’ comfort. Despite their potential, their execution is constrained by difficulties that hinder their diffusion in the architecture, engineering, construction, and operation industry. Notably, the Measurement and Verification process is considered a significant impediment due to data sharing, storage, and security challenges. Nevertheless, there have been minimal efforts to analyze research conducted in this field systematically. A systematic analysis of 113 identified journal articles was conducted to fill this gap. A paucity of research tackling the utilization of digital technologies to enhance the implementation of EPCs was found. Consequently, this article proposes a framework integrating Digital Twin and Blockchain technologies to provide an enhanced EPC execution environment. Digital Twin technology leverages the system by monitoring and evaluating energy performance in real-time, predicting future performance, and facilitating informed decisions. Blockchain technology ensures the integrity, transparency, and accountability of information. Moreover, a private Blockchain infrastructure was originally introduced in the framework to eliminate high transaction costs related to on-chain storage and potential concerns regarding the confidentiality of information in open distributed ledgers.
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