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Performance Analysis of Multi-Rate Capable Random Access Mac Protocols in Wireless Multi-Hop Networks

机译:无线多跳网络中支持多速率随机访问Mac协议的性能分析

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In this paper, we study an ad hoc wireless network system in which multiple access wireless channels are shared in accordance with a random access (ALOHA type) MAC protocol. We assume that a modulation/coding scheme (MCS) can be selected from a list of available such structures, each of which is associated with a transmission data rate and an acceptable SINR level that yields a prescribed BER value. The use of such different MCSs impacts the achievable value of the system''s spatial reuse factor level and of the realized end-to-end lengths of flow paths. Consequently, as the traffic loading level increases, the use of such different schemes yields different throughput capacity levels. We present mathematical models that enable the selection of the MCS that yields the highest level of throughput performance. For the multi-hop network system, we demonstrate that the link range and the employed MCS can be jointly selected to yield the highest throughput capacity level. We show that for the system under consideration it is generally preferable for a node to use a high data rate MCS while jointly selecting its neighbours from a usually reasonably short range level
机译:在本文中,我们研究了一个ad hoc无线网络系统,其中根据随机接入(Aloha类型)MAC协议共享多个访问无线信道。我们假设可以从可用这种结构的列表中选择调制/编码方案(MCS),每个列表中的每一个与传输数据速率相关联,以及产生规定的BER值的可接受的SINR水平。这种不同的MCSS的使用会影响系统的空间重用因子级别的可实现的价值,并实现了流动路径的实现端到端长度。因此,随着流量负载水平的增加,这种不同方案的使用产生了不同的吞吐量能力水平。我们提出了数学模型,使得能够选择产生最高吞吐量性能的MCS。对于多跳网络系统,我们证明了链路范围和所采用的MCS可以共同选择以产生最高的吞吐量容量水平。我们表明,对于所考虑的系统,通常优选用于使用高数据速率MCS的节点,同时从通常合理地短的范围内选择其邻居

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