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A case study of underground bus chiller SCADA system and the development of custom design systems

机译:地下公交车冷水机SCADA系统案例研究及定制设计系统开发

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This paper shall introduce the Taipei City Mass Rapid Transit underground section stations chiller Supervisory Control And Data Acquisition (SCADA) system and customized application software system development. Each station's existing chiller machine microprocessor Human Machine Interface (HMI) utilizes a standard communication protocol convertor and the environmental control system control room Open Protocol Master(OPM) communication equipment to pass the chiller machine operational data to the existing environmental control systems communication machine room Pulse Code Modulation (PCM)/Synchronous Digital Hierarchy(SDH) equipment. From there the signals are passed to the Central Control Environmental Room(CCER) communication machine room PCM/SDH equipment, and finally sent to the CCER data acquisition server (DAS). The operational data and settings from the station chiller machines are sent to two computer mainframe databases for monitor, control, and storage. The main contribution of this piece is to provide the CCER personnel with real-time air handling chiller machine operation data improving the environment control system reliability based on actual case studies. The air handling units are operated more efficiently, saving air conditioning electricity costs and providing a more comfortable platform and lobby environment to passengers in the high volume line underground stations. Second, the chiller machine operation data is electronically transmitted, saving the manual labor of reading the chiller data, and provides repair personnel with trend operation data and analysis. This makes the anticipated maintenance of chiller equipment possible. Finally, standard open communications protocol equipment and software format is provided, for expansion of future underground section station chiller units communication.
机译:本文将介绍台北市捷运地下部分站冷水机监控与数据采集(SCADA)系统以及定制应用软件系统的开发。每个站点现有的冷水机微处理器人机界面(HMI)均使用标准的通信协议转换器和环境控制系统控制室开放协议主站(OPM)通信设备将冷水机的运行数据传递到现有的环境控制系统通信机房Pulse代码调制(PCM)/同步数字体系(SDH)设备。信号从那里传递到中央控制环境室(CCER)通信机房的PCM / SDH设备,最后发送到CCER数据采集服务器(DAS)。来自站式冷却器机器的操作数据和设置被发送到两个计算机大型机数据库,以进行监视,控制和存储。本文的主要贡献是基于实际案例研究,为CCER人员提供实时的空气处理冷水机运行数据,从而提高环境控制系统的可靠性。空气处理机组的运行效率更高,可节省空调用电成本,并为高流量地铁站中的乘客提供更舒适的平台和大堂环境。其次,冷水机运行数据是电子传输的,节省了读取冷水机数据的人工,为维修人员提供了趋势运行数据和分析信息。这使得冷却器设备的预期维护成为可能。最后,提供了标准的开放式通信协议设备和软件格式,以扩展将来的地下部分站冷水机组的通信。

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