首页> 外文会议>Conference on Counterterrorism, Crime Fighting, Forensics, and Surveillance Technologies >Assistance System for the Situation Aware Defense of Danger through Unmanned Aerial Systems
【24h】

Assistance System for the Situation Aware Defense of Danger through Unmanned Aerial Systems

机译:通过无人驾驶的空中系统,援助系统意识到危险的辩护

获取原文

摘要

Today, unmanned aerial systems (UAS) are being used for a growing range of useful applications. This has beendrastically increased during the last few years. The market is growing and a wide range of affordable and capableproducts is available. However, also the misuse of such systems is growing and has become a big problem for publicsecurity, private areas and industrial facilities. Therefore, products for detection, classification and countermeasures arean upcoming market though a complete solution is not yet present. At the Fraunhofer IOSB, a research project has beenset up in 2017 with its aim to develop an interactive detection and analyzing tool that helps the security staff in situationanalysis and decision making during the handling of threatening situations caused by the misuse of drones. Beginningwith different measuring devices and data fusion of these channels in order to generate a situational picture the systemshandle a comprehensive risk management while calculating the chances of countermeasures. The user is supported bysituational awareness tools and simulation/prognosis of possible scenarios during the complete process. The objective isthe optimal cognition for the users and to assist during the solution finding. There is no automatic decision and noautomatic reaction without humans in the decision loop.
机译:如今,无人机空中系统(UAS)用于越来越多的有用应用。这是在过去几年中大幅增加。市场正在增长,各种经济实惠且有能力产品可用。然而,滥用这些系统正在增长,并已成为公众的大问题安全,私人地区和工业设施。因此,用于检测,分类和对策的产品是虽然尚未存在完整的解决方案,但即将到来的市场。在Fraunhofer IOSB,一项研究项目已成为在2017年成立,其目的是开发一个交互式检测和分析工具,帮助安全人员在情况下威胁无人机滥用威胁情况下的分析与决策。开始使用不同的测量设备和这些通道的数据融合,以便生成系统的情况在计算对策的机会时处理综合风险管理。用户支持完整过程中可能场景的情境意识工具和模拟/预后。目标是用户的最佳认知和在解决方案发现期间有助于帮助。没有自动决定,没有在决策环中没有人类的自动反应。

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