首页> 外文OA文献 >Total Facility Control - Applying New Intelligent Technologies to Energy Efficient Green Buildings
【2h】

Total Facility Control - Applying New Intelligent Technologies to Energy Efficient Green Buildings

机译:全面设施控制-将新的智能技术应用于节能绿色建筑

摘要

Energy efficiency through intelligent control is a core element of any "Green Building". We need smarter, more efficient ways of managing the energy consuming elements within a building. But what we think of as "the building" is only a small piece of the puzzle. We have to think broader in order to gain the greater energy savings and efficiencies that are possible. "Total Facility Control" is a concept that we need to embrace and consider when we design, commission, and retrofit our facilities. Very often a single building is part of a larger campus or collection of buildings under a common management domain. Be it a university, public school district, office complex, or multiuse tenant space, there are often multiple "buildings" plus the connectivity between buildings: walkway lighting, signage, parking structures, and even the irrigation systems. We don't often think about the outdoor lighting, security, or irrigation as part of the building management plan, but it can be a significant contributing factor when looking at places to save on energy and improve operational efficiency. We must change the way we design our buildings, facilities, campuses, and enterprises in order to be more energy efficient and be green. A variety of technologies and design principles are available to ensure we move in a positive direction. We must make our systems and processes more visible and, hence, more accessible. At the core of this is the visibility and control of the systems within these environments. A majority of the building control systems in operation today are extremely limited in their ability to achieve higher efficiencies because there is no intelligent control or communication system available; and the amount of cross system interoperability is even scarcer. What does an interoperable system architecture look like? It's one in which a wide variety of energy consuming, intelligent devices can share their information and be controlled by an energy management system. Newer technologies use open systems, open protocols, and higher levels of interoperability, all of which have been proven to cost effectively provide competitive solutions. Better energy efficiency and improved operational costs start with better visibility and control of the myriad of systems within a facility. They must communicate together in a way that enables greater functionality and lower costs. Total Facility Control must be considered as we look at the entire building envelope as well as the rest of the facility systems. Included in the mix are HVAC, indoor lighting, security, access, sun shading, indoor air quality, sound masking and alarm annunciation, elevators/escalators, appliances, power conditioning, irrigation, energy metering, outdoor/parking lot lighting, street lighting, co-generation stations, and much more. This paper will discuss some of the basic concepts, architectures, and technologies that are being used today to implement a Total Facility Control model.
机译:通过智能控制实现能源效率是任何“绿色建筑”的核心要素。我们需要更智能,更高效的方法来管理建筑物中的能耗元素。但是,我们认为的“建筑物”只是难题的一小部分。为了获得更大的节能和效率,我们必须考虑更广泛。 “总体设施控制”是我们在设计,调试和改造设施时需要接受和考虑的概念。通常,单个建筑物是较大校园的一部分,或者是同一管理域下的建筑物集合。无论是大学,公立学区,办公大楼还是多用途租户空间,通常都有多个“建筑物”以及建筑物之间的连接性:人行道照明,标牌,停车结构,甚至是灌溉系统。我们通常不会将室外照明,安全或灌溉作为建筑物管理计划的一部分,但是当寻找节省能源和提高运营效率的场所时,它可能是一个重要的因素。我们必须改变设计建筑物,设施,校园和企业的方式,以提高能源效率并实现绿色环保。可以使用多种技术和设计原则来确保我们朝着积极的方向前进。我们必须使我们的系统和过程更加可见,从而更易于访问。核心是这些环境中系统的可见性和控制力。由于没有可用的智能控制或通讯系统,当今运行中的大多数建筑物控制系统在实现更高效率方面的能力都受到极大限制。跨系统互操作性的数量甚至更少。可互操作的系统架构是什么样的?在该平台中,各种耗能的智能设备可以共享其信息并由能源管理系统进行控制。较新的技术使用开放系统,开放协议和更高级别的互操作性,所有这些已被证明可以有效地提供具有竞争力的解决方案。更好的能源效率和更低的运营成本始于对设施内无数系统的更好的可视性和控制。他们必须以能够实现更多功能和更低成本的方式进行通信。在我们研究整个建筑围护结构以及其他设施系统时,必须考虑全面设施控制。混合中包括HVAC,室内照明,安全,通道,遮阳,室内空气质量,隔音和警报通知,电梯/自动扶梯,电器,空调,灌溉,能源计量,室外/停车场照明,街道照明,热电联产站等等。本文将讨论当今用于实现总体设施控制模型的一些基本概念,体系结构和技术。

著录项

  • 作者

    Bernstein R.;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 入库时间 2022-08-20 19:41:57

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号