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Human-centered sensor-based Bayesian control: Increased energy efficiency and user satisfaction in commercial lighting.

机译:以人为本的基于传感器的贝叶斯控制:在商业照明中提高能效和用户满意度。

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The need for sustainable, efficient energy systems is the motivation that drove this research, which targeted the design of an intelligent commercial lighting system. Lighting in commercial buildings consumes approximately 13% of all the electricity generated in the US. Advanced lighting controls1 intended for use in commercial office spaces have proven to save up to 45% in electricity consumption. However, they currently comprise only a fraction of the market share, resulting in a missed opportunity to conserve energy. The research goals driving this dissertation relate directly to barriers hindering widespread adoption---increase user satisfaction, and provide increased energy savings through more sophisticated control.; To satisfy these goals an influence diagram was developed to perform daylighting actuation. This algorithm was designed to balance the potentially conflicting lighting preferences of building occupants, with the efficiency desires of building facilities management. A supervisory control policy was designed to implement load shedding under a demand response tariff. Such tariffs offer incentives for customers to reduce their consumption during periods of peak demand, trough price reductions.; In developing the value function occupant user testing was conducted to determine that computer and paper tasks require different illuminance levels, and that user preferences are sufficiently consistent to attain statistical significance. Approximately ten facilities managers were also interviewed and surveyed to isolate their lighting preferences with respect to measures of lighting quality and energy savings. Results from both simulation and physical implementation and user testing indicate that the intelligent controller can increase occupant satisfaction, efficiency, cost savings, and management satisfaction, with respect to existing commercial daylighting systems.; Several important contributions were realized by satisfying the research goals. A general model of a daylighted environment was designed, and a practical means of user preference identification was defined. Further, a set of general procedures were identified for the design of human-centered sensor-based decision-analytic systems, and for the identification of the allowable uncertainty in nodes of interest. To confirm generality, a vehicle health monitoring problem was defined and solved using these two procedures.; 1'Daylighting' systems use sensors to determine room occupancy and available sunlight, and automatically dim the lights in response.
机译:对可持续,高效能源系统的需求是推动这项研究的动机,该研究的目标是智能商业照明系统的设计。商业建筑中的照明消耗了美国全部发电量的13%。事实证明,用于商业办公空间的高级照明控件1可节省多达45%的电耗。但是,它们目前仅占市场份额的一小部分,从而导致丧失了节约能源的机会。驱动该论文的研究目标直接与阻碍广泛采用的障碍有关,即提高用户满意度,并通过更复杂的控制来提供更多的节能。为了满足这些目标,开发了一个影响图来执行日光致动。设计该算法的目的是平衡建筑物占用者潜在的冲突照明偏好与建筑物设施管理的效率需求。设计了监督控制策略,以根据需求响应费率实施减载。此类关税为客户在需求高峰,低谷降价期间减少消费提供了动力。在开发价值功能时,进行了用户测试,以确定计算机和纸张任务需要不同的照度级别,并且用户偏好足够一致以达到统计意义。还对大约10名设施经理进行了访谈和调查,以从照明质量和节能措施的角度隔离他们的照明偏好。仿真和物理实施以及用户测试的结果表明,相对于现有的商业采光系统,智能控制器可以提高乘员满意度,效率,成本节省和管理满意度。通过满足研究目标,实现了一些重要的贡献。设计了日光环境的通用模型,并定义了一种实用的用户喜好识别方法。此外,确定了一套通用程序,用于设计以人为中心的基于传感器的决策分析系统,并确定感兴趣节点中的可允许不确定性。为了确认一般性,使用这两个过程定义并解决了车辆健康监控问题。 1“日光照明”系统使用传感器确定房间的占用情况和可用的阳光,并根据需要自动调暗灯光。

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