Integration of Real-Intelligence in Energy Management Systems to Enable Holistic Demand Response Optimization in Buildings and Districts

A. Romero, P. De Agustín, T. Tsitsanis
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引用次数: 3

Abstract

Although multiple trials have been conducted demonstrating that demand side flexibility works and even though technology roll-out progresses significantly fast, the business application of residential and small tertiary demand response has been slow to develop. This paper introduces a holistic demand response optimization framework that enables significant energy costs reduction at the consumer side, while introducing buildings as a major contributor to energy networks' stability in response to network constraints and conditions. The backbone of the solution consists in a modular interoperability and data management framework that enables open standards-based communication along the demand response value chain. The solution is validated in four large-scale pilot sites, incorporating diverse building types, heterogeneous home, building and district energy systems and devices, a variety of energy carriers and spanning diverse climatic conditions, demographic and cultural characteristics.
在能源管理系统中集成真正的智能,以实现建筑物和区域的整体需求响应优化
尽管已经进行了多次试验,证明需求侧灵活性是有效的,尽管技术推广进展迅速,但住宅和小型第三产业需求响应的商业应用发展缓慢。本文介绍了一个整体的需求响应优化框架,该框架能够在消费者端显著降低能源成本,同时将建筑物作为能源网络稳定的主要贡献者,以响应网络约束和条件。该解决方案的主干包括模块化互操作性和数据管理框架,该框架支持沿着需求响应价值链进行基于开放标准的通信。该解决方案在四个大型试点场地进行了验证,包括不同的建筑类型,不同的家庭,建筑和区域能源系统和设备,各种能源载体,跨越不同的气候条件,人口和文化特征。
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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