Department of Computer and Communication Engineering, St. John's University, New Taipei City 25135, Taiwan.
Sensors (Basel). 2013 Jun 18;13(6):7797-812. doi: 10.3390/s130607797.
Transport stations such as airports, ports, and railways have adopted blocked-type pathway management to process and control travel systems in a one-directional manner. However, this excludes highway transportation where large buses have great variability and mobility; thus, an instant influx of numerous buses increases risks and complicates station management. Focusing on Taipei Bus Station, this study employed RFID technology to develop a system platform integrated with modern information technology that has numerous characteristics. This modern information technology comprised the following systems: ultra-high frequency (UHF) radio-frequency identification (RFID), ultrasound and license number identification, and backstage graphic controls. In conclusion, the system enabled management, bus companies, and passengers to experience the national bus station's new generation technology, which provides diverse information and synchronization functions. Furthermore, this technology reached a new milestone in the energy-saving and efficiency-increasing performance of Taiwan's buses.
交通场站如机场、港口和铁路已经采用了封闭式通道管理,以单向方式处理和控制出行系统。然而,高速公路运输则有所不同,大型巴士具有很大的可变性和机动性;因此,大量巴士的瞬间涌入增加了风险,使场站管理变得复杂。本研究以台北转运站为例,利用 RFID 技术开发了一个集成现代信息技术的系统平台,具有众多特点。该现代信息技术包含以下系统:超高频(UHF)射频识别(RFID)、超声波和车牌识别以及后台图形控制。总之,该系统使管理部门、巴士公司和乘客都能体验到国家巴士站的新一代技术,提供多样化的信息和同步功能。此外,该技术在台湾巴士的节能和增效性能方面达到了新的里程碑。