首页> 外文会议>AAAI Symposium on Information Refinement and Revision for Decision Making: Modeling for Diagnostics, Prognotics and Prediction >Supervisory control for energy savings and thermal comfort in commercial building HVAC systems
【24h】

Supervisory control for energy savings and thermal comfort in commercial building HVAC systems

机译:商业建筑HVAC系统中节能和热舒适的监督控制

获取原文

摘要

The operation and maintenance of commercial building HVAC (heating, ventilation, and air-conditioning) systems is illustrative of an industry that can benefit from the insightful use of all available information sources. Modern HVAC systems using direct digital control can potentially provide useful performance data. Occupant feedback complaint data and HVAC system trend data are stored within modern maintenance management databases. This paper will address the specific issue of integration and application of these fundamental sources of information, using some modern and novel techniques. Examples are found in, but are not limited to the following areas: discrete-event, continuous, and hybrid control system theory, artificial intelligence, statistics, system identification, databases, etc. Methods specific to these areas can be used to synthesize a supervisory controller. The objective of this controller is to reduce energy costs, improve building occupant comfort, fault detection and diagnostic capability. At the same time, the entire process needs to be stable, and the influence of occupant behavior needs to be taken full advantage of. The controller will achieve these objectives by performing and/or prioritizing the appropriate actions to be taken either automatically or by facility operators. Furthermore, the cost and scalability of the entire effort described can be positively influenced by recent technological advances in computing power, sensors, and databases.
机译:商业建筑HVAC(加热,通风和空调)系统的操作和维护是一种能够从所有可用信息来源的富有洞察力中受益的行业。使用直接数字控制的现代HVAC系统可能提供有用的性能数据。占用反馈投诉数据和HVAC系统趋势数据存储在现代维护管理数据库中。本文将使用一些现代和新颖的技术解决这些基本信息来源的结合和应用的具体问题。在实施例中被发现,但不限于以下领域:离散事件,连续和混合控制系统理论,人工智能,统计,系统识别,数据库等。可以使用特定于这些区域的方法来综合监督控制器。该控制器的目的是降低能源成本,提高建筑物舒适,故障检测和诊断能力。与此同时,整个过程需要稳定,并且需要充分利用乘员行为的影响。控制器将通过执行和/或优先考虑自动或由设施运算符进行适当的行动来实现这些目标。此外,所描述的整个努力的成本和可扩展性可以受到计算能力,传感器和数据库的最近技术进步的积极影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

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