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Joint Routing and Medium Access Control in Fixed Random Access Wireless Multihop Networks

机译:固定随机接入无线多跳网络中的联合路由和媒体访问控制

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We study cross-layer design in random-access-based fixed wireless multihop networks under a physical interference model. Due to the complexity of the problem, we consider a simple slotted ALOHA medium access control (MAC) protocol for link-layer operation. We formulate a joint routing, access probability, and rate allocation optimization problem to determine the optimal max-min throughput of the flows and the optimal configuration of the routing, access probability, and transmission rate parameters in a slotted ALOHA system. We then also adapt this problem to include an XOR-like network coding without opportunistic listening. Both problems are complex nonlinear and nonconvex. We provide extensive numerical results for both problems for medium-size mesh networks using an iterated optimal search technique. Via numerical and simulation results, we show that: 1) joint design provides a significant throughput gain over a default configuration in slotted-ALOHA-based wireless networks; and 2) the throughput gain obtained by the simple network coding is significant, especially at low transmission power. We also propose simple heuristics to configure slotted-ALOHA-based wireless mesh networks. These heuristics are extensively evaluated via simulation and found to be very efficient.
机译:我们研究物理干扰模型下基于随机访问的固定无线多跳网络中的跨层设计。由于问题的复杂性,我们考虑用于链路层操作的简单时隙ALOHA介质访问控制(MAC)协议。我们制定联合的路由,访问概率和速率分配优化问题,以确定流的最佳最大-最小吞吐量以及时隙ALOHA系统中路由,访问概率和传输速率参数的最佳配置。然后,我们还将这个问题调整为包括类似XOR的网络编码,而无需进行机会监听。这两个问题都是复杂的非线性和非凸性。我们使用迭代的最佳搜索技术为中型网格网络的两个问题提供了广泛的数值结果。通过数值和仿真结果,我们表明:1)联合设计在基于时隙ALOHA的无线网络中的默认配置上提供了显着的吞吐量增益; 2)通过简单的网络编码获得的吞吐率增益是显着的,尤其是在低发射功率下。我们还提出了简单的启发式方法来配置基于时隙ALOHA的无线网状网络。这些启发式方法已通过仿真进行了广泛评估,并且非常有效。

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