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Toward a new backpressure-based framework to enhance situational awareness in disaster response

机译:朝向新的背压框架,以提高灾害响应的情境意识

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Crises generate intense need to communication not just as a panic reaction to crisis, but also due the critical need for communication in order to better coordinate during response activities. In the afterward of a disaster, the lack of resources to handle this increase of data, due to the fragility of network infrastructures, leads to network congestion or overload. The results is that critical data are prevented from reaching decision makers, which has a direct impact on situational-awareness. To overcome this problem, we propose a new cross layer architecture for Wireless Mesh Network with a twofold objective: one, to include a filtering system able to identify the most critical data and two, to propose a routing layer with the capacity to prioritize these data while ensuring the stability and throughput optimality of the whole network. The proposed solution combines both by proposing an adjustable and fully distributed version of the high throughput efficient Backpressure routing protocol, with a geolocation and role-based filtering and prioritizing system. Both components collaborate in a way to identify and send most critical data, using a lower end-to-end delay, without however starving less critical data. Extensive experiments, using NS-3 simulator, are used to validate the proposal and confirm the high impact of the introduced ideas.
机译:危机产生强烈需要沟通不仅是一种恐慌反应,危机的影响,而且由于对通信的迫切需求,以响应期间的活动更好地协调。在后来发生灾难,缺乏资源来处理这一增长数据,由于网络基础设施,导致网络拥塞或过载的脆弱性。结果是,关键数据到达决策者,这对情境意识有直接的影响阻止。为了克服这个问题,我们提出了无线Mesh网络具有双重目标的一个新的跨层架构:一,包括能够识别最关键的数据和两,一起对这些数据的优先级的能力,提出了路由层过滤系统同时保证了稳定性和整个网络的吞吐量最优。提出的解决方案结合了通过提出的高通量高效背压路由协议的一个可调节的和完全分布式的版本,与地理定位和基于角色的过滤和优先系统。这两个组件的方式来识别和发送最关键的数据协作,使用较低端至端延迟,但不挨饿不那么重要的数据。大量的实验,采用NS-3模拟器,用于验证该提案,并确认的引进思路高冲击。

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