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Location based transmission using a neighbour aware with optimized EIFS MAC for ad hoc networks

机译:使用针对Ad hoc网络的具有优化EIFS MAC的邻居感知的基于位置的传输

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In a typical Ad Hoc network, participating nodes have scarce shared bandwidth and limited battery life resources, so resource optimization and enhancing the overall network performance are the primary aims to maintain functionality. This paper proposes a new cross layer Medium Access Control (MAC) algorithm called Location Based Transmission using a Neighbour Aware with optimized Extended Inter-Frame Spacing (EIFS) for Ad Hoc Networks MAC (LBT-NA with optimized-EIFS MAC) that aims to reduce the transmission power when communicating with the next hop receiver based on node's location which is made available during node deployment. However, node mobility is not taken into account in the study of this paper. According to the algorithm the node dynamically adjusts its transmission power, if there is an active neighbour located beyond the communicating source and destination pair to avoid hidden nodes. The new protocol also defines an optimized EIFS when frame collision, frame error or frame capture takes place, in-order to maintain a fair channel access among the contending nodes. The proposed MAC also uses a modified range of random backoff values, based on the degree of contention unlike IEEE 802.11 series which uses a fixed random backoff value for fresh frames irrespective of the degree of contention. Simulation results indicate that in a random topology with a random source and destination, when the two sources are separated by a minimum distance of 200 m, the performance gain of power controlled MAC over IEEE 802.11b ranges from 30% to 70% depending on the type of traffics in the network and the degree of fairness ranges from 62% to 99.99% for a location based MAC with minimum power transmission, whereas LBT-NA with optimized-EIFS MAC secures fairness index ranging from 75% to 99.99%. Communication with a node that is 20 m away can save 40% of the battery life in comparison to the traditional transmission power MAC from 802.11b. The validation tests demonstrate that the proposed algorithm increases battery life and reduces the interference impact on shorter distance communication and increases the probability of parallel transmission. The proposed protocol also provides a scope for active nodes to transmit with a higher degree of probability, providing higher degree of overall network throughput in the environment and alleviate the starvation of hidden node by using Dynamic EIFS scheme. (C) 2017 The Authors. Published by Elsevier B.V.
机译:在典型的Ad Hoc网络中,参与节点的共享带宽稀少,电池寿命资源有限,因此资源优化和增强整体网络性能是维护功能的主要目的。本文针对Ad Hoc网络MAC(具有优化的EIFS MAC的LBT-NA)提出了一种新的跨层媒体访问控制(MAC)算法,称为基于位置的传输,该算法使用具有优化的扩展帧间间距(EIFS)的邻居感知功能。根据在节点部署期间可用的节点位置,与下一个跃点接收器进行通信时,降低传输功率。但是,本文的研究未考虑节点移动性。根据该算法,如果有一个活动邻居位于通信源和目的地对之外,则该节点可动态调整其传输功率,以避免隐藏节点。新协议还定义了发生帧冲突,帧错误或帧捕获时的优化EIFS,以便在竞争节点之间保持公平的信道访问。与IEEE 802.11系列不同,IEEE 802.11系列针对新帧使用固定的随机补偿值,而与竞争程度无关,所提出的MAC还基于竞争程度使用了修改后的随机补偿值范围。仿真结果表明,在具有随机源和目的地的随机拓扑中,当两个源之间的最小距离为200 m时,IEEE 802.11b上的功率控制MAC的性能增益范围为30%至70%,具体取决于对于具有最小功率传输的基于位置的MAC,网络中流量的类型和公平度的范围从62%到99.99%,而具有优化的EIFS MAC的LBT-NA的公平度范围从75%到99.99%。与802.11b的传统传输功率MAC相比,与20 m以外的节点进行通信可以节省40%的电池寿命。验证测试表明,所提出的算法可以延长电池寿命,减少对短距离通信的干扰影响,并提高并行传输的可能性。所提出的协议还为活动节点以较高的概率进行传输提供了范围,在环境中提供了较高的整体网络吞吐量,并通过使用动态EIFS方案缓解了隐藏节点的饥饿现象。 (C)2017作者。由Elsevier B.V.发布

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