一种基于pan技术的朝圣者灾害保护控制新方法

S. Gunasekaran, M. Suresh
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引用次数: 6

摘要

本文介绍了一种用于追踪北阿坎德邦和朝觐等圣地朝圣者的WPAN技术原型。现代救援机构通常使用全球定位系统(GPS)技术来定位人员,但由于无线网络问题和天气状况,无法帮助他们定位朝圣者。我们提出的方法采用了新颖的ZigBee技术,即使在无塔地区也能实现通信。现有系统:该系统[5]依赖于专用的容延迟无线传感器网络(WSN)。每个朝圣者都有一个移动传感器单元,包括GPS、微控制器和天线。在圣区安装了固定单元网络,用于接收和转发数据。每个移动设备定期发送其用户标识(UID)、纬度、经度和时间戳。中央服务器映射地理信息系统(GIS)中的经纬度信息。在现有的系统中,由于天气条件不稳定,救援单位对朝圣者的当前位置没有任何认识,导致许多朝圣者死亡。系统建议:主要目的是追踪自然灾害发生地区的朝圣者,并优先考虑有心跳信号的人。系统由两个架构模块组成,一个是由心跳传感器、多色LED、蜂鸣器组成的人侧模块控制,另一个是监视侧模块控制。在救援行动中,包含心跳传感器的模块连续测量朝圣者的心跳,然后将输出信号发送给信号调理单元,信号调理单元对信号进行调理。然后通过ZigBee协议将信号传输到监控端。而ZigBee收发器在监控端捕获的计数数量取决于该灾区的人的计数数量。人侧使用多色LED和蜂鸣器,只有在朝圣者活着的情况下才会发出信号,以避免在靠近人侧到监控侧的救援行动中朝圣者的生存和非生存状态的混淆。在这种方法中使用的通信协议使我们能够在没有卫星的情况下操作信号,并帮助我们营救朝圣者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel control of disaster protection (NCDP) for pilgrims by pan technology
This paper describes a prototype of WPAN technology for tracking pilgrims in the Holy areas like uttrakhand and Hajj (Pilgrimage). Modern rescue mechanisms commonly use Global Positioning System (GPS) technology for locating the persons, but due to wireless network problems and the weather condition doesn't help them to locate the pilgrims. Our proposed method use novel method of ZigBee technology, this enables communication even in tower less areas. Existing Systems: The system [5] relies on a dedicated delay-tolerant wireless sensor network (WSN). Each pilgrim is given a mobile sensor unit which includes a GPS, a microcontroller, and antennas. A network of fixed units is installed in the Holy area for receiving and forwarding data. Periodically, each mobile unit sends its user identification (UID), latitude, longitude, and a time stamp. A central server maps the latitude and longitude information on a geographical information system (GIS). In the existing system rescue unit doesn't have any awareness about the current location of pilgrims due to uneven weather condition leads to death of many pilgrims. The Proposed System: The main objective is tracking the pilgrims in the natural disaster occurred areas and giving the priority to human with heart beat signal. System consist of two architectural modules one is person side module control consists of heart beat sensor, multi-color LED, buzzer and another module is in surveillance side control. On rescue operation, module containing heart beat sensor is continuously measure the heart beats of the pilgrim then the output signal is given to signal conditioning unit in which the signal is conditioned. After that the signal is transmitted to surveillance side with the help of ZigBee protocols. The ZigBee transceiver in the surveillance side capture the number of count depends upon the person's count in that disaster area. Multicolor LED and buzzers used in the person's side indicates the signal only when the pilgrim is alive to avoid the confusion between the living and nonliving condition of the pilgrims while on the rescue operation near by the person side to surveillance side. Communication protocol used in this method enables us to operate signals without the aid of satellites and helps us to rescue the pilgrims.
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