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Towards Better Understanding the Challenges of Reliable and Trust-Aware Critical Communications in the Aftermath of Disaster

机译:更好地理解灾难后可靠和信任的关键通信所面临的挑战

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This paper seeks to better understand the highly multi-dimensional, multi-faceted challenges of meeting trust and reliability requirements in critical, disaster aftermath communication networks comprising heterogeneous groups of sensor equipped nodes. Through emulation of a UK based flooding event in the South of England we show the impact of selfish and malicious nodes on disaster communications when disparate, distributed, and disconnected nodes are carrying sensitive messages relating to resource availability and need. To further support the need for trust-aware schemes in such environments we compare benchmark DTN protocols against our reliable, trust-aware framework, TACID, which penalises and excludes malicious nodes. We show that in disaster aftermath networks trust-aware schemes can significantly reduce the impact of malicious intermediary nodes and increase overall reliability whilst simultaneously maintaining message confidentiality.
机译:本文力图更好地理解在关键的,灾难后果通信网络(包括配备传感器的节点的异构组)中满足信任度和可靠性要求的高度多维,多方面的挑战。通过模拟英格兰南部的一个英国洪灾事件,我们显示了当分散的,分散的和断开连接的节点承载与资源可用性和需求有关的敏感消息时,自私节点和恶意节点对灾难通信的影响。为了进一步满足此类环境中对信任感知方案的需求,我们将基准DTN协议与我们可靠的信任感知框架TACID进行了比较,TACID惩罚并排除了恶意节点。我们表明,在灾难后果网络中,可感知信任的方案可以显着减少恶意中间节点的影响,并提高总体可靠性,同时保持消息的机密性。

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