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Spatial Computers for Emergency Support

机译:紧急支持的空间计算机

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We present two spatially distributed computing systems that operate in a building and provide intelligent navigation services to people for evacuation purposes. These systems adapt to changing conditions by monitoring the building and using local communication and computation for determining the best evacuation paths. The first system, called distributed evacuation system (DES), comprises a network of decision nodes (DNs) positioned at specific locations inside the building. DNs provide people with directions regarding the best available exit. The second system, called opportunistic emergency support system (OESS), consists of mobile communication nodes (CNs) carried by people. CNs form an opportunistic network in order to exchange information regarding the hazard and to direct the evacuees towards the safest exit. Both DES and OESS employ sensor nodes deployed at fixed locations for monitoring the hazard. We evaluate the spatial systems using simulation experiments with a purpose-built emergency simulator called DBES. We show how parameters such as the frequency of information exchange and communication range affect the system performance and evacuation outcome.
机译:我们介绍了两个在建筑物中运行的空间分布式计算系统,它们为疏散目的向人们提供智能导航服务。这些系统通过监视建筑物并使用本地通信和计算来确定最佳的疏散路径,从而适应不断变化的条件。第一个系统称为分布式疏散系统(DES),包括位于建筑物内部特定位置的决策节点(DN)网络。 DN为人们提供有关最佳出口的指导。第二个系统称为机会紧急支持系统(OESS),由人们携带的移动通信节点(CN)组成。 CNs形成机会网络,以便交换有关危害的信息并将疏散人员引向最安全的出口。 DES和OESS均采用部署在固定位置的传感器节点来监视危害。我们使用名为DBES的专用应急模拟器通过模拟实验评估空间系统。我们展示了诸如信息交换频率和通信范围之类的参数如何影响系统性能和疏散结果。

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