Digitalization has led to radical changes in the distribution of goods across various sectors. The tendency is to move from traditional buyer-seller markets to subscription-based on-demand "smart" matching platforms enabled by pervasive ICTs. The driving force behind this lies in the fact that assets, which were scarce in the past, are readily abundant, approaching a regime of zero marginal costs. This is also becoming a reality in electrified energy systems due to the substantial growth of distributed renewable energy sources such as solar and wind; the increasing number of small-scale storage units such as batteries and heat pumps; and the availability of flexible loads that enable demand-side management. In this context, this article proposes a system architecture based on a logical (cyber) association of spatially distributed (physical) elements as an approach to build a virtual microgrid operated as a software-defined energy network (SDEN) that is enabled by packetized energy management. The proposed cyber-physical system presumes that electrical energy is shared among its members and that the energy sharing is enabled in the cyber domain by handshakes inspired by resource allocation methods utilized in computer networks, wireless communications, and peer-to-peer Internet applications (e.g., BitTorrent). The proposal has twofold benefits: (i) reducing the complexity of current market-based solutions by removing unnecessary and costly mediations and (ii) guaranteeing energy access to all virtual microgrid members according to their individual needs. This article concludes that the proposed solution generally complies with the existing regulations but has highly disruptive potential to organize a dominantly electrified energy system in the mid- to long-term, being a technical counterpart to the recently developed social-oriented microgrid proposals.
翻译:数字化导致各部门货物分配发生巨大变化,趋势是从传统的买方-卖方市场转向普遍信通技术所促成的基于订阅的“智能”需求型“智能”匹配平台,其驱动力在于,过去稀缺的资产非常丰富,接近于零边价制度;由于太阳能和风等分布式可再生能源的大幅增长,这在可再生能源系统电气化中也成为现实;小型储存单位(如电池和热泵等)的数量不断增加;灵活负荷的可用性使需求方得以管理。在这方面,本篇文章提出一个基于空间分布(物理)要素逻辑(网络)结合的系统架构,作为建立虚拟微电网的一种方法,这些资产过去稀缺,正在接近一个由软件定义能源管理所促成的零边际能源网络。 拟议的网络物理系统假设,电力在其成员之间共享,以及电流化和热泵等小型储存单位的共享,在计算机网络网络化、无线通信和同行间虚拟解决方案的激励下,在逻辑化的逻辑(网络化(网络、网络和网络的当前成本化规则)的当前应用中,已经逐渐消除了当前的社会成本化规则。