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An optimal single/concurrent link MAC scheme for a single-hop MIMO network

机译:单跳MIMO网络的最佳单/并发链路MAC方案

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It is generally accepted that enabling concurrent links via the use of multi antenna techniques is an effective means of improving throughput in a MANET. Several MAC protocols (i.e. MIMA MAC, and SPACEMAC) have even been introduced in the literature specifically to increase the number of concurrent links. Recent work, however, has shown that this is not universally true. Given a MIMO enabled network, there are easily produced topologies where a single link MAC will outperform a concurrent MAC, which motivates the need for a MAC scheme that could choose between single link and concurrent link operation as the dynamics of the system changes. In this paper we present a novel MIMO MAC design that can adaptively switch between a single link scheme and a concurrent link scheme. Our design objective is to improve the link throughput by guaranteeing each link's throughput to be no less than that achievable via a single link MAC protocol. To demonstrate our design principle, we first present an idealized derivation where all network information is perfectly known at all nodes. Then as a realistic implementation, we further present a practical MAC protocol that uses distributed handshaking and imperfect channel estimation to run the adaptive switching function. Simulation results validate that our design's link throughput is greater than or equal to a single link MAC's throughput with 2% – 12% outage probabilities. Moreover, the proposed MAC's ergodic link throughput is 20%–30% higher than single link MAC and MIMA-MAC's counterparts.
机译:人们普遍认为,通过使用多天线技术启用并发链接是提高MANET吞吐量的有效手段。文献中甚至引入了几种MAC协议(即MIMA MAC和SPACEMAC)来专门增加并发链接的数量。但是,最近的工作表明,这并非普遍如此。给定具有MIMO功能的网络,很容易产生拓扑结构,其中单链路MAC的性能将超过并发MAC,这激发了对MAC方案的需求,该方案可以在系统动态变化时在单链路和并发链路操作之间进行选择。在本文中,我们提出了一种新颖的MIMO MAC设计,它可以在单链路方案和并发链路方案之间自适应切换。我们的设计目标是通过保证每个链路的吞吐量不小于通过单个链路MAC协议可达到的吞吐量来提高链路吞吐量。为了说明我们的设计原理,我们首先提出一种理想化的推导,其中所有节点上的所有网络信息都是完全已知的。然后,作为一个现实的实现,我们进一步提出了一种实用的MAC协议,该协议使用分布式握手和不完善的信道估计来运行自适应交换功能。仿真结果证明,我们设计的链路吞吐量大于或等于单链路MAC的吞吐量,且故障概率为2%– 12%。此外,拟议的MAC的遍历链路吞吐量比单链路MAC和MIMA-MAC的同行更高20%–30%。

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