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Tradeoff between Area Spectral Efficiency and End-to-End Throughput in Rate-Adaptive Multihop Radio Networks

机译:速率自适应多跳无线网络中区域频谱效率与端到端吞吐量之间的折衷

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摘要

We investigate the impact of symbol rate control, modulation level control, and the number of hops on the area spectral efficiency of interference-limited multihop radio networks. By controlling symbol rate and modulation level, data rate can be adapted according to received power. In addition, varying the number of hops can control received power. First, we evaluate the achievable end-to-end throughput of multihop transmission assuming symbol rate and modulation level control. Numerical results reveal that by controlling symbol rate or using multihop transmission, the end-to-end communication range can be extended at the cost of end-to-end throughput, and this may result in lower area spectral efficiency. Next, an expression for the area spectral efficiency of multihop radio networks is derived as a function of the number of hops and the end-to-end throughput. Numerical results also reveal that the resulting area spectral efficiency depends on the specific circumstances, which, however, can be increased only by using multihop transmission.
机译:我们研究符号速率控制,调制级别控制和跳数对受干扰限制的多跳无线电网络的区域频谱效率的影响。通过控制符号速率和调制级别,可以根据接收功率调整数据速率。另外,改变跳数可以控制接收功率。首先,我们假设符号速率和调制级别控制,评估多跳传输可实现的端到端吞吐量。数值结果表明,通过控制符号速率或使用多跳传输,可以以牺牲端到端吞吐量为代价来扩展端到端通信范围,这可能导致较低的频谱效率。接下来,作为跳数和端到端吞吐量的函数,得出多跳无线电网络的区域频谱效率的表达式。数值结果还表明,所得的区域频谱效率取决于特定的情况,但是,只有通过使用多跳传输才能提高该效率。

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