标题: 无线感测网路应用于能源节约之个人化适性服务
Achieving Energy Conservation and Personalized Services in Intelligent Home/Office Environments by Wireless Sensor Networks
作者: 曾煜棋
TSENG YU-CHEE
国立交通大学资讯工程学系(所)
公开日期: 2007
摘要: 近几年来,“无线感测器网路”已成为一门重要的研究主题,因为其具备有监控环境的能力,因此成为目前产/研/学界的研发焦点。利用无线感测网路来达成办公室或家庭的能源节约,并提供个人化的适性服务与家电控制,势必会成为未来重要的一项发展趋势,故提出本计画寻求赞助。
根据现有的资料统计,每年一个国家所消耗的电力有1/3以上是使用在建筑物的HVAC系统,主要包括有暖气、通风设备、冷气机、电灯以及大楼内其他电器设备,且由于人们用电习惯的不良,大半的能源都浪费掉,因此若是能够有效调节这些电器所使用的能源,则我们将可以避免不必要的电源浪费,并从而节省十分可观的能源。就国内读使用环境来看,灯光与空调设备是HVAC系统中耗电量最多的电器,此外,在公共场所诸如学校或办公大楼等,时常到了晚上下课下班时人去楼空、却留下许多未关闭的电灯与冷气等电器,从而造成大量的电力浪费,因此如何有效判定人们未在使用电器、并有智慧地自动关闭电源,将是一个重要的研究议题。在这方面,国外的研究机构诸如UC Berkeley、CITRIS、Intel Lab等,均利用无线感测器网路的环境感知的特性来监控环境,从而应用在节省HVAC系统所消耗的能源。
基于上述的动机与需求,我们提出了一套以无线感测网路为架构的智慧型省电系统,这套系统不但能够根据环境状况来自动关闭未使用的电器外,还提供个人化适性服务,让电器可以根据人们的需求来作调整,此外,我们这套系统亦提供人性化的管理介面以方便管理;本计划提出的“无线感测网路应用于能源节约之个人化适性服务”共分为底下几项:
.. 我们以无线感测器来侦测周围环境的温度与灯光,并且使用感测器来侦测是否有人员存在某区域,并将这些资料以无线传输的方式回报至后端伺服器,而后端伺服器汇整这些资料后,并做出一项最佳的决策,举例来说,某房间无人存在,但电器仍开启着,造成了不必要的电力浪费,则本系统会侦测出此种情况,并使用X10协定来将电器关闭,以达到节约能源的效果。
.. 因为每个人的偏好均不相同,例如温度、光度,每个人所偏好之值均不一致,只要每个人身上带有一识别装置,则系统将提供其个人化服务,让每个人在节能之余,还能享有最佳的工作环境。
.. 为了管理和维护的方便,系统提供了一套人性化的操作介面,让使用者可以透过网际网路和系统做沟通,藉此可以从远端的来管理与维护系统,例如可以从远端来设定大楼电器的关闭时间,也可以远端的来将大楼的电器关闭…等。
.. 本系统会整合各电器的特性,来达成省电的效果,举例来说,若室内温度超过28度,则自动的开启冷气,若低于28度,则开启电扇即可,系统藉由感测环境资讯,来让省电和环境舒适之间取得一个最佳的平衡点。
.. 我们也将整合智慧型省电家电和家俱,例如,当人员坐在办公椅上时,椅上之压力感测器测知人员坐上椅子,伺服器自动开启桌上.灯。当人员离开时,因压力感测器测知人员不在座位上,即通知伺服器关闭.灯。这个想法是一个智慧型办公室,并具有节约能源之功效。
本计画预计完成上述“无线感测网路应用于能源节约之个人化适性服务”的建置;这套系统的成果将可以提供各级学校及公家机关使用,以达成节约电源之目的,除此之外,系统的资料库统计数据亦可以提供给各级学校及公家机关规划电量使用情形。长远而言,更可以教育使用者正确的电器使用习惯。
A wireless sensor network can provide a convenient way to monitor the environment. In the recent years, many researches and studies in both academic and industry have focused on such networks. Achieving energy conservation and providing personalized services on electric appliances by wireless sensor network have become one of the most important issues in the future. This motivates us to propose this project.
Based on the report in [1], more than 1/3 of energy in a country is consumed by the HVAC systems in buildings. Such system consists of heating, ventilating air conditioning, lights, and other equipments. In addition, many people forget to turn off these electric appliances when they do not use them. This will cause the waste of a large amount of energy. Therefore, if we can properly turn off these unused electric appliances, we can avoid unnecessary waste of electricity and thus achieve energy conservation. In Taiwan, both light and air condition play an important role of the HVAC system. However, most people leave the building without turn off these electric appliances, which waste a lot of energy. Thus, how to determine whether people use the electric appliances and thus automatically turning off their powers will be a critical issue. To solve this problem, many research groups such as UC Berkeley, CITRIS, and Intel Lab consider to adopt the context-aware capability of wireless sensor networks to save the energy consumed by the HVAC systems.
Based on the aforementioned motivations, we propose an energy-conservation system by adopting wireless sensor networks. This system can automatically turn off those unused electric appliances according to the environment and adjust electric appliances based on people’s requirements. In addition, this system provides a user-friendly interface to let people manage the system. This system can provide the following services:
.. We use wireless sensors to detect the temperature and light from the environment and to determine whether there are people in the region. This information will be reported to a remote server by wireless communication. Once the server collects the data, it will make the decision. For example, if nobody in the room but the electric appliances are turned on, the server will turn off these unused electric appliances through the X10 protocol.
.. Since everyone prefers different temperatures and degrees of light, the system can provide personalized services. In particular, everyone can carry a user identification device so that the system can adjust the electric appliances according to the user’s requirements.
.. To manage and maintain the system, this system provides a user-friendly interface to let users control and talk to the system. For example, the user can set up the checking time of electric appliances in different rooms.
.. The system can adopt the properties of different electric appliances to conserve energy. For example, when the temperature of a room is higher then 28 degrees, then the air conditioning will be turned on. Otherwise, the system will turn on the electric fan.
.. We also dedicate to integrate intelligent energy-efficient equipments and furniture. For example, when a person sits on the chair, the pressure sensors on that chair will detect such event and thus the desk light will be automatically turned on. When he/she leaves, these sensors will also detect the event and inform the server to turn off the desk light. This idea is to combine an smart office with energy-efficient effect.
Through this project, we expect to implement the above intelligent energy-conservation system. This system can be used by schools and public agencies. It can also used for statistic purpose. From a long-term view, it can educate people the importance of saving energy.
官方说明文件#: NSC96-2623-7009-002-ET
URI: http://hdl.handle.net/11536/88892
https://www.grb.gov.tw/search/planDetail?id=1400846&docId=250488
显示于类别:Research Plans


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