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Integrated sensing and command and control system for disaster response

机译:灾害感知综合指挥与控制系统

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Emergency responders fighting blazes and flooding, law enforcement securing sites and crowds, and medical teams treating victims are typical scenarios during rapidly-evolving, catastrophic events. The larger the disaster, the more complicated becomes the situation as thousands of responders from hundreds of organizations participate in the response and relief efforts. Organizing, coordinating and commanding these efforts remains a significant technical challenge, as it requires timely collection and distribution of information under harsh environments. With guidance from operational partners in California's emergency response community, we have designed, implemented and demonstrated a prototype integrated sensing and command and control system that enables shared situational awareness and collaboration during response operations. The system architecture is based on net-centric and service-oriented paradigms, and combines sensors, communications, and visualization and collaboration technologies, with all components being linked in (near) real-time. The utility of this prototype system was evaluated through a field exercise that tested the technical performance of the system and assessed the impact of new technologies on current concept of operations. In this paper, we describe the design analysis, system architecture, core enabling technologies, and the field evaluations.
机译:在迅速发展的灾难性事件中,典型的场景是突发事件的应急人员,包括扑灭大火和洪水,执法人员保护现场和人群,以及医疗队为受害者提供医疗服务。灾难越大,情况就越复杂,因为来自数百个组织的数千名响应者参与了响应和救灾工作。组织,协调和指挥这些工作仍然是一项重大的技术挑战,因为它要求在恶劣的环境下及时收集和分发信息。在加利福尼亚州应急响应社区运营合作伙伴的指导下,我们设计,实施和演示了集成感测和指挥与控制系统的原型,该系统可在响应操作期间实现共享的态势感知和协作。该系统架构基于以网络为中心和面向服务的范例,并结合了传感器,通信,可视化和协作技术,所有组件都被实时(近)链接。通过实地演练评估了该原型系统的效用,该演习对系统的技术性能进行了测试,并评估了新技术对当前运营概念的影响。在本文中,我们描述了设计分析,系统架构,核心支持技术以及现场评估。

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