Digital Energy Platforms Considering Digital Privacy and Security by Design Principles

U. Cali, Marthe Fogstad Dynge, Ahmed Idries, Sambeet Mishra, I. Dmytro, Naser Hashemipour, M. Kuzlu
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引用次数: 0

Abstract

The power system and markets have become increasingly complex, along with efforts to digitalize the energy sector. Accessing flexibility services, in particular, through digital energy platforms, has enabled communication between multiple entities within the energy system and streamlined flexibility market operations. However, digitalizing these vast and complex systems introduces new cybersecurity and privacy concerns, which must be properly addressed during the design of the digital energy platform ecosystems. More specifically, both privacy and cybersecurity measures should be embedded into all phases of the platform design and operation, based on the privacy and security by design principles. In this study, these principles are used to propose a holistic but generic architecture for digital energy platforms that are able to facilitate multiple use cases for flexibility services in the energy sector. A hybrid framework using both DLT and non-DLT solutions ensures trust throughout the layers of the platform architecture. Furthermore, an evaluation of numerous energy flexibility service use cases operating at various stages of the energy value chain is shown and graded in terms of digital energy platform technical maturity, privacy, and cybersecurity issues.
从设计原则考虑数字隐私和安全的数字能源平台
随着能源部门数字化的努力,电力系统和市场变得越来越复杂。特别是通过数字能源平台访问灵活性服务,实现了能源系统内多个实体之间的通信,简化了灵活性市场操作。然而,将这些庞大而复杂的系统数字化会带来新的网络安全和隐私问题,这些问题必须在数字能源平台生态系统的设计过程中得到妥善解决。更具体地说,基于隐私和安全的设计原则,将隐私和网络安全措施嵌入到平台设计和运营的各个阶段。在本研究中,这些原则被用于为数字能源平台提出一个整体但通用的架构,该架构能够促进能源部门灵活性服务的多种用例。使用DLT和非DLT解决方案的混合框架确保了整个平台架构层的信任。此外,对能源价值链不同阶段运行的众多能源灵活性服务用例进行了评估,并根据数字能源平台技术成熟度、隐私和网络安全问题进行了分级。
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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