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Ten Questions Concerning Integrating Smart Buildings into the Smart Grid

机译:关于将智能建筑集成到智能电网中的十个问题

摘要

Recent advances in information and communications technology (ICT) have initiated development of a smart electrical grid and smart buildings. Buildings consume a large portion of the total electricity production worldwide, and to fully develop a smart grid they must be integrated with that grid. Buildings can now be ‘prosumers’ on the grid (both producers and consumers), and the continued growth of distributed renewable energy generation is raising new challenges in terms of grid stability over various time scales. Buildings can contribute to grid stability by managing their overall electrical demand in response to current conditions. Facility managers must balance demand response requests by grid operators with energy needed to maintain smooth building operations. For example, maintaining thermal comfort within an occupied building requires energy and, thus an optimized solution balancing energy use with indoor environmental quality (adequate thermal comfort, lighting, etc.) is needed. Successful integration of buildings and their systems with the grid also requires interoperable data exchange. However, the adoption and integration of newer control and communication technologies into buildings can be problematic with older legacy HVAC and building control systems. Public policy and economic structures have not kept up with the technical developments that have given rise to the budding smart grid, and further developments are needed in both technical and non-technical areas.
机译:信息和通信技术(ICT)的最新进展已启动了智能电网和智能建筑的开发。建筑物消耗了全球电力总产量的很大一部分,并且要充分发展智能电网,必须将其与该电网集成。建筑物现在可以成为电网上的“生产者”(生产者和消费者),并且分布式可再生能源发电的持续增长在各种时间范围内对电网稳定性提出了新的挑战。建筑物可以通过响应当前条件管理其总体电力需求来为电网稳定做出贡献。设施经理必须平衡电网运营商的需求响应请求与维持平稳建筑运行所需的能量。例如,在占用的建筑物内维持热舒适度需要能量,因此需要一种平衡能量使用与室内环境质量(足够的热舒适度,照明等)的优化解决方案。建筑物及其系统与网格的成功集成还需要可互操作的数据交换。但是,对于较旧的旧式HVAC和建筑物控制系统,采用新的控制和通信技术并将其集成到建筑物中可能会出现问题。公共政策和经济结构未能跟上催生智能电网的技术发展步伐,在技术和非技术领域都需要进一步发展。

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