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Robust communications for disconnected, intermittent, low-bandwidth (DIL) environments

机译:用于断开,间歇性低带宽(DIL)环境的强大通信

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Battlefield communications can be disrupted by a number of factors including environmental constraints, wireless dynamics and mobility, and both intentional and non-intentional interference. Robust, reliable, and efficient mechanisms are needed in such environments to ensure that critical data is delivered in the face of disruptions, intermittent connectivity, and low-bandwidth (DIL). In this paper, we examine a tiered approach to providing reliable communication in DIL environments. We model a tactical network scenario in which nodes in a low bandwidth loosely-connected ad-hoc network periodically send position/location information (PLI) messages to a shore base station. We utilize this scenario to quantify the differences in performance between a number of layered approaches that utilize mechanisms such as the Simplified Multicast Forwarding (SMF) protocol, the NACK-oriented Reliable Multicast (NORM), and Delay/Disruption Tolerant Networking (DTN) in mitigating the challenges of DIL environments. Our evaluation of the layered approaches considers metrics relevant to two broad classes of data: ‘ephemeral’ and ‘persistent’: ephemeral data (e.g. instantaneous position-location information of a node) has a relatively short lifetime and older data is obviated by newer data; by contrast, persistent data (e.g. exact mobility track of a node) has a longer useful lifetime and is not obviated by newer data. We examine the latency and staleness for ephemeral data and the message delivery ratio for persistent data. Our results show that SMF at the IP layer provides robust delivery to a single connected component of the network whereas NACKing and retransmission by NORM addresses short disruptions. For long-term disruptions, a DTN gossiping (i.e. anti-entropy) router can effectively bridge the gap between disconnected components. Our evaluation leverages the Common Open Research Emulator (CORE) tool and the mobility scripting tools from the Nava-n-nl Research Laboratory (NRL).
机译:战场通信可能会受到许多因素的干扰,包括环境限制,无线动力学和移动性以及有意和无意干扰。在这样的环境中,需要鲁棒,可靠和高效的机制来确保在中断,间歇性连接和低带宽(DIL)的情况下传送关键数据。在本文中,我们研究了一种在DIL环境中提供可靠通信的分层方法。我们对战术网络模型进行建模,其中低带宽松散连接的自组织网络中的节点定期向海岸基站发送位置/位置信息(PLI)消息。我们利用这种情况来量化利用诸如简化多播转发(SMF)协议,面向NACK的可靠多播(NORM)和延迟/中断容忍网络(DTN)之类的机制的许多分层方法之间的性能差异。减轻DIL环境的挑战。我们对分层方法的评估考虑了与两大类数据相关的指标:“临时”和“持久”:临时数据(例如,节点的即时位置信息)的生存期相对较短,而较旧的数据被较新的数据所取代;相反,持久性数据(例如,节点的精确移动性轨迹)具有更长的使用寿命,并且不会被更新的数据所消除。我们检查临时数据的等待时间和陈旧性,以及持久数据的消息传递率。我们的结果表明,IP层上的SMF可向网络的单个连接组件提供可靠的传递,而NORM的NACK和重传可解决短暂的中断。对于长期中断,DTN闲聊(即反熵)路由器可以有效地弥合断开的组件之间的距离。我们的评估利用了Nava-n-nl研究实验室(NRL)的Common Open Research Emulator(CORE)工具和移动脚本工具。

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