论文标题
RDSP:迅速可部署的无线临时系统用于拆卸后管理
RDSP: Rapidly Deployable Wireless Ad Hoc System for Post-Disaster Management
论文作者
论文摘要
在灾后场景中,例如在洪水,地震和战区中,蜂窝通信基础设施可能会被破坏或严重破坏。在这种紧急情况下,急救人员与其他救援团队进行交流以向中央办公室和灾难幸存者提供反馈变得非常重要。为了解决此问题,需要快速部署的系统来重新建立连接性并帮助事件区域中的用户和急救人员。在这项工作中,我们描述了在污点后情况下的初次响应应用程序的快速部署系统的设计,实现和评估,名为RDSP。拟议的系统通过使用新颖的路由计划分享其位置信息,从而帮助早期的救援人员和受害者分享其位置信息。这种新颖的路由方案由动态ID分配(DIA)算法和最小最大邻居(MMN)算法组成。继电器设备使用DIA算法用于根据网络的所有可用ID进行动态选择其ID。鉴于,客户端和中继设备使用MMN算法来动态选择其下一个邻居继电器以传输消息。 RDSP包含三个设备;客户端设备将受害者的位置信息发送到服务器,继电器设备中继客户端和服务器设备之间的信息,服务器设备从客户端设备接收消息以提醒救援团队。我们在大学校园的室外环境中部署并评估了我们的系统。实验结果表明,RDSP系统减少了消息传递延迟,并通过较低的通信开销提高了消息传递比率。
In post-disaster scenarios, such as after floods, earthquakes, and in war zones, the cellular communication infrastructure may be destroyed or seriously disrupted. In such emergency scenarios, it becomes very important for first aid responders to communicate with other rescue teams in order to provide feedback to both the central office and the disaster survivors. To address this issue, rapidly deployable systems are required to re-establish connectivity and assist users and first responders in the region of incident. In this work, we describe the design, implementation, and evaluation of a rapidly deployable system for first response applications in post-disaster situations, named RDSP. The proposed system helps early rescue responders and victims by sharing their location information to remotely located servers by utilizing a novel routing scheme. This novel routing scheme consists of the Dynamic ID Assignment (DIA) algorithm and the Minimum Maximum Neighbor (MMN) algorithm. The DIA algorithm is used by relay devices to dynamically select their IDs on the basis of all the available IDs of networks. Whereas, the MMN algorithm is used by the client and relay devices to dynamically select their next neighbor relays for the transmission of messages. The RDSP contains three devices; the client device sends the victim's location information to the server, the relay device relays information between client and server device, the server device receives messages from the client device to alert the rescue team. We deployed and evaluated our system in the outdoor environment of the university campus. The experimental results show that the RDSP system reduces the message delivery delay and improves the message delivery ratio with lower communication overhead.