Incident Scene Mobility Analysis

Ying Huang, Wenbo He, K. Nahrstedt, W.C. Lee
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引用次数: 9

Abstract

In an incident scene ad hoc network, mobility of on-scene first responders induces dynamic topology for their carried communication devices. This dynamics has significant impact on network connectivity, quality of communication and resource allocation. In performing evaluation of such networks as distributed systems, it is crucial to use mobility models derived from realistic use cases. In this paper, we examine properties of public safety incidents and discover unique characteristics of associated mobility patterns. Our first goal is to understand how first responders' mobility is influenced by a variety of factors, such as transportation, environmental, and operational factors. Our second goal is to determine and recommend a comprehensive set of parameters to characterize first responder mobility at an incident scene. The set of parameters we suggest includes both personnel and event characteristics. We also show the relationship and interaction between them. This set of parameters can subsequently be used in mobility generation tools for simulation studies. Our main contribution is to characterize the mobility pattern for first responders in incident scenes as a mission-specific, environment-aware and event-driven adaptation process.
事故现场移动性分析
在事件现场自组织网络中,现场第一响应者的移动性导致其所携带通信设备的动态拓扑结构。这种动态对网络连通性、通信质量和资源分配有重大影响。在对分布式系统这样的网络进行评估时,使用源自实际用例的移动性模型是至关重要的。在本文中,我们研究了公共安全事件的性质,并发现了相关流动模式的独特特征。我们的第一个目标是了解急救人员的机动性如何受到各种因素的影响,如交通、环境和操作因素。我们的第二个目标是确定并推荐一套全面的参数,以表征事故现场的第一响应者机动性。我们建议的参数集包括人员和事件特征。我们还展示了它们之间的关系和相互作用。这组参数随后可用于流动性生成工具的模拟研究。我们的主要贡献是将事件现场第一响应者的机动模式描述为任务特定的、环境感知的和事件驱动的适应过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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