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Context aware building energy management system with heterogeneous wireless network architecture

机译:具有异构无线网络架构的情境感知建筑能源管理系统

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摘要

Energy wastage in buildings is to be minimized to reduce the carbon footprint of electricity. Wireless sensor and actor networks (WSAN) have been providing solutions for effective energy management within buildings. In this paper, we present a decisive server based context aware energy management system for smart buildings through Cyber Physical System (CPS) models. A layered architecture for building energy management is proposed to enhance scalability of the system. Heterogeneous wireless network based multiple radio gateway is proposed and implemented to make the system more adaptive to different applications catering to variable data rates. A smart room test bed is deployed in the IIT Hyderabad campus, where the decisive server collects various physical parameters through sensors, and based on the context generates wireless control messages to power electronics based actuators. Integrating context awareness into the system increases the efficiency in terms of energy savings and was observed to be significant, around 30%. The paper also presents a detailed analysis on the turnaround time required to realise the real saving after recovering investments. Applications are developed to integrate smart phones and tabloids providing web enablement to the end user. In this paper, each of the sensors and actuators in the smart room are associated with a state machine, which enables modelling of the system using Hybrid automata for future scope of applications.
机译:为了减少电力的碳足迹,应尽量减少建筑物的能源浪费。无线传感器和参与者网络(WSAN)已为建筑物内的有效能源管理提供了解决方案。在本文中,我们通过网络物理系统(CPS)模型提出了一个基于决定性服务器的,基于上下文的智能建筑能源管理系统。提出了一种用于建筑物能源管理的分层体系结构,以增强系统的可伸缩性。提出并实现了基于异构无线网络的多无线网关,以使系统更适应于各种应用,以适应可变数据速率。 IIT海得拉巴园区中部署了一个智能室测试台,决定性服务器通过传感器在其中收集各种物理参数,并根据上下文生成无线控制消息,以为基于电子的执行器供电。将上下文感知集成到系统中可以提高节能效率,并且被认为非常重要,约为30%。本文还对收回投资后实现真正节省所需的周转时间进行了详细分析。开发应用程序以集成智能电话和小报,从而为最终用户提供Web支持。在本文中,智能室中的每个传感器和执行器都与状态机相关联,状态机可以使用混合自动机对系统进行建模,以用于将来的应用范围。

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