智能建筑温度控制的分布式多方共识算法

Sanjoy Mondal, A. Ranjan, Pushkar Kumar, Shivam Kumar, Debarghya Sinha Roy, Puza Mallick, Ronit Mishra
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引用次数: 0

摘要

智能建筑技术具有多使用者共享空间,如购物中心、机场休息室、公司住宅、酒店和学校学院等,通常由多名使用者占用,通常具有不同的温度要求。在一个多区域的区域中,根据居住者的不同,获得一个较好的温度是一个具有挑战性的问题。同样,在多区域空间中,如果温度控制在不同的设定点,那么它也增加了整个系统的节能。利用共识的概念,提出了一种分布式多方控制策略,以保持不同区域的不同温度设定点。将所关注的空间划分为不同的区域(或方),每个区域用一个温度模型来描述,被认为是一个agent。所提出的方法在同一方内部是相互同步的,但不同方的agent或区域具有不同的目标轨迹。一种典型的处理方法是使用复数来描述不同方的所有目标轨迹之间的关系,但这大大降低了其对复杂目标编队问题的适用性。在本文中,我们提出了一种基于矩阵的技术来捕获不同方的代理之间的信息交互,使其适用于处理更多种类的共识问题。仿真研究证明了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Distributed Multi Party Consensus Algorithm for Temperature Control in Smart Buildings
Smart building technology with multi occupants with shared spaces such shopping mall, airport lunges, corporate house, hotels and school colleges etc. are often occupied by multiple occupants that typically have different temperature requirements. Attaining a preferable temperature based on the occupants in a multi zone area is a challenging problem. Also in a multi zone space if temperature is controlled at different set point then it also increases the energy savings in the overall system. Using the concept of consensus we propose a distributed multiparty control strategy to maintain the different temperature set point in different zone. The space under concern are partitioned into different zones (or parties), among which each zone is describes by a temperature model, is consider an agent. The proposed method within the same party are synchronise with each other, but agents or zones from different parties have different target trajectories. One typical treatment on this is to use complex numbers to describe relationship among all target trajectories in different parties, which nevertheless significantly reduces its applicability to problems with complex target formations. In this paper we propose a matrix-based technique to capture information interactions among agents of different parties, making it suitable for tackling consensus problems for a larger variety of formations. Simulation studies demonstrate the effectiveness of the proposed approach.
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