智能环境系统的高能效多维系统控制模型

Anlong Ming, Hong Luo, Yanchen Ren, Zhibo Pang, K. Tsang
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引用次数: 1

摘要

智能环境系统应根据感知信息和用户要求自动控制设备,使环境要素(如温度、光线)保持在期望的范围内。最小功率控制是该系统的关键问题之一。本文提出了一种用于系统控制的多维模型。该模型将每个环境要素抽象为一个维度,从而将具有条件和目标的服务公式化为多维服务空间,将具有众多服务的智能环境通过空间计算映射为综合的多维服务空间。在此模型的基础上,提出了智能环境下节能调度的最小功率调节算法,将最优控制问题转化为多维空间中点到多边形的加权距离最短问题。理论分析和实验结果表明,该模型在节能系统控制中是有效的。重要的是要指出,当维度或服务的数量增加时,所提出的算法是可扩展的。
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A energy efficient multi-dimension model for system control in smart environment systems
A smart environment system should automatically control the devices according to the sensing information and users' requirements so as to keep the environmental elements (e.g., temperature, light) within the desired range. System control with minimum power is one key issue in such a system. In this paper, we propose a multi-dimension model for system control. In this model, each environmental element is abstracted into a dimension, such that a service with conditions and targets can be formulated as a multi-dimensional service space, and a smart environment with many services may map to a comprehensive multi-dimensional service space through space computation. Based on this model, we propose a minimum power adjustment algorithm for energy-efficient scheduling in smart environment, which transforms the optimal control problem into the problem of the shortest weighted distance of point-to-polygonal in multi-dimensional space. Theoretical analysis and experimental results show that the proposed model is effective and efficient in energy-efficient system control. It is important to point out that the proposed algorithms are scalable when the number of dimensions or services increases.
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