We present a hierarchical framework aimed at decentralizing the distribution systems market operations using localized peer-to-peer energy markets. Hierarchically designed decision-making algorithm approaches the power systems market operations from a bottom-up perspective. The three layers of the hierarchical framework operate in orchestration to enable prosumers (the grass-root actors) to maximize their revenues - hence, a prosumer-centric framework. The design of the framework incorporates existing smart grid technologies (Virtual Power Plants, Microgrids, Distributed Energy Resources) and redefine their functional objectives to align them with the decentralization paradigm focused on empowering bottom-up grid operations approach. On one hand, the framework is enabling prosumers with simultaneous access to the buy-sell choices that help them maximize their cost savings while ensuring their consumption patterns and preferences are not being tradeoff as a result of top-down operational decisions. On the other hand, it is designed to operate in harmony with the existing top-down grid operations mechanisms - thereby reducing the potential friction in its adaptation. This marriage of the top-down and bottom-up operational approaches is facilitated through meticulous orchestration of operational timescales. Framework's novel design also incorporates scalability and interoperability considerations, thereby tackling the challenge of decentralization holistically.
翻译:我们提出了一个分级框架,目的是利用地方性同侪能源市场分散分配系统市场运作; 分级设计的决策算法从自下而上的角度处理电力系统市场运作; 分级框架的三层以协同方式运作,使计票人(基层行为者)能够最大限度地增加收入,从而形成一个以计票人为中心的框架; 框架的设计结合了现有的智能电网技术(虚拟电厂、微电网、分散能源资源),并重新界定了功能目标,使其与注重增强自下而上电网运作方法的权力下放模式保持一致。 一方面,该框架使那些同时获得购买-销售选择的授标人能够同时获得购买-销售选择,从而帮助他们最大限度地节省成本,同时确保他们的消费模式和偏好不是由于自上而下的业务决定的结果而成为交易的交换; 另一方面,框架的设计是与现有的自上而下电网运行机制(从而减少其适应中的潜在摩擦); 将自上而下和自下而上而上的业务操作方法结合,通过对操作时间尺度的精确的调调和可操作性考虑,从而将新的设计纳入全面互操作性考虑。