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An intelligent hybrid spread spectrum MAC for interference management in mobile ad hoc networks

机译:用于移动自组织网络中干扰管理的智能混合扩频MAC

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This paper presents and analyses a fully distributive intelligent hybrid spread spectrum MAC for ad hoc networks. The IHSS MAC scheme has been developed with the aim to mitigate far field interference with the use of a robust DSSS physical layer, while managing near field interference with the use of intelligent slow frequency hopping. The IHSS design ensures a minimum required SINR threshold at active receivers, under low outage probability constraints. IHSS does not inhibit any nodes in space neither thins them out in time. A lower bound on transmission capacity for the case where the size of the frequency hopping zone is variable is derived in this paper. The mathematical model is validated through simulation. The simulation is based on a hopping sequence selection methodology that randomizes the available hopping sequences within a frequency hopping zone around each active receiver. The implementation utilises the RTS/CTS concept of the CSMA MAC, with a slight modification. The performance criterion used for analysis is transmission capacity normalized by the required bandwidth. It is observed that implementation of a suitable sized frequency hopping zone using the proposed IHSS MAC, shows superior performance over ALOHA and guard zone based MACs. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文提出并分析了用于ad hoc网络的全分布式智能混合扩频MAC。 IHSS MAC方案的开发旨在通过使用健壮的DSSS物理层来减轻远场干扰,同时通过使用智能慢跳频来管理近场干扰。 IHSS设计可确保在低中断概率约束下,有源接收机的最低SINR阈值。 IHSS不会禁止空间中的任何节点,也不会及时使它们稀疏。本文推导了跳频区域大小可变的情况下的传输容量下限。数学模型通过仿真验证。该模拟基于跳频序列选择方法,该方法随机化了每个活动接收机周围跳频区内的可用跳频序列。该实现利用了CSMA MAC的RTS / CTS概念,并做了一些修改。用于分析的性能标准是通过所需带宽归一化的传输容量。可以观察到,使用建议的IHSS MAC实现合适大小的跳频区域,比基于ALOHA和基于保护区的MAC具有更好的性能。 (C)2015 Elsevier B.V.保留所有权利。

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