首页> 外文会议>IEEE Annual Information Technology ,Electronics and Mobile Communication Conference >Autonomous Embedded System Vehicle Design on Environmental, Mapping and Human Detection Data Acquisition for Firefighting Situations
【24h】

Autonomous Embedded System Vehicle Design on Environmental, Mapping and Human Detection Data Acquisition for Firefighting Situations

机译:用于环境,绘图和人类检测数据采集的自主嵌入式系统车辆设计,用于消防情况

获取原文

摘要

When firefighters are at burning sites, they are exposed to a spectrum of hazards. These include extreme temperatures, low visibility, and the presence of harmful air pollutants. Another concern is a foreign building layout and determining the precise location of individuals. For this research, an embedded system design approach that can give firefighters capabilities to remotely monitor and analyze thermal conditions, atmospheric conditions, produce a 2D LiDAR map of individual rooms, and assist in the detection of human presence in the building before proceeding inside. It is proposed an Autonomous Embedded System Vehicle (AESV) design that is equipped with several sensors that provide firefighters outside of the burning site with environmental and topographical information that can assist in planning and time spent on rescue operations. The AESV communicates all sensory data back to a host system in the fire truck where real-time data can be evaluated. This current design is the first prototype of the AESV and integration of all the peripheral devices. The design approach is to develop a multilayered micro controller system to handle the different types of devices, requirements of processing digital and analog inputs, and integration of the communication modules to transmit data back to the host system. Temperature, gas and GPS values have been successfully transmitted through the Xbees as other devices are being integrated to the design.
机译:消防员在燃烧场地时,它们会暴露于危险的范围。这些包括极端温度,低可视性和有害空气污染物的存在。另一个问题是外国建筑布局并确定个人的精确位置。对于这项研究,嵌入式系统设计方法可以为消防员提供远程监控和分析热条件,大气条件,生产2D个单个房间的LIDAR地图,并在进行内部之前帮助检测建筑物中的人类存在。提出了一种自主嵌入式系统车辆(AESV)设计,配备了几种传感器,该传感器在燃烧的网站之外提供具有环境和地形信息的消防员,可以帮助计划和花时间在救援行动中度过。 AESV将所有感官数据传送回到在消防车中的主机系统,其中可以评估实时数据。本电流设计是AESV的第一个原型和所有外围设备的集成。设计方法是开发多层微控制器系统,以处理不同类型的设备,处理数字和模拟输入的要求,以及通信模块的集成将数据传输回主系统。由于其他设备集成到设计,温度,气体和GPS值已经通过Xbe成功传输。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号