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Binary Galois field based asynchronous scheduling protocol for delay tolerant networks

机译:基于二进制Galois场的延迟容差网络的异步调度协议

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Neighbour discovery plays a crucial role for communication in sparsely dense mobile networks, especially in delay tolerant networks, where neighbour discovery latency is generally much higher than the node contact duration. Hence, energy efficient neighbour discovery is an essential aspect of this type of network. Synchronous wake-up scheduling of the nodes can be used to decrease the neighbour discovery latency, but such scheduling cannot be applied to delay tolerant networks where the essence of the communication lies in it's decentralization. Additionally, the synchronous process needs a global clock for node synchronization. Using a global clock is an energy hungry process. Hence, to avoid this energy hungriness, over the years, many asynchronous protocols based on wake-up scheduling have been developed in order to timely wake-up the nodes to ease the neighbour discovery process in an energy efficient manner. However, asynchronous protocols have reduced message delivery and are not fine-grained enough to support high delivery ratio. In this paper, we have used a binary Galois field based technique for designing asynchronous wake-up scheduling. A thorough analysis has been performed to demonstrate the performance of this asynchronous protocol when compared to the current state of the art in the adaptive and the non-adaptive mode. Results show that the proposed protocol in non-adaptive mode increases message delivery probability by 10% and reduces message delivery latency approximately by 7% while keeping the energy consumption constant when compared to the other existing asynchronous protocols.
机译:邻居发现在稀疏密集的移动网络中的通信发挥着关键作用,特别是在延迟容忍网络中,邻居发现延迟通常远高于节点接触持续时间。因此,节能邻居发现是这种网络的重要方面。节点的同步唤醒调度可用于降低邻居发现延迟,但是这种调度不能应用于延迟公差网络,其中通信的本质在于它的分散化。另外,同步过程需要一个全局时钟进行节点同步。使用全局时钟是一种能源饥饿的过程。因此,在多年来,为了避免这种能量饥饿感,已经开发了基于唤醒调度的许多异步协议,以便及时唤醒节点以以节能的方式缓解邻居发现过程。然而,异步协议具有减少的消息传递并且不足以支撑高输送比率。在本文中,我们使用了一种基于二进制的Galois基础技术来设计异步唤醒调度。已经进行了彻底的分析,以展示与自适应和非自适应模式的最新状态相比的异步协议的性能。结果表明,与其他现有异步协议相比,在非自适应模式下,在非自适应模式下提出的协议将消息传递概率提高10%,并减少了7%的消息传递延迟,同时保持能量消耗常数。

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