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Energy-Optimum Throughput and Carrier Sensing Rate in CSMA-Based Wireless Networks

机译:基于CSMA的无线网络中的能量最佳吞吐量和载波侦听速率

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摘要

We propose a model for the energy consumption of a node as a function of its throughput in a wireless CSMA network. We first model a single-hop network, and then a multi-hop network. We show that operating the CSMA network at a high throughput is energy inefficient since unsuccessful carrier sensing attempts increase the energy consumption per transmitted bit. Operating the network at a low throughput also causes energy inefficiency because of increased sleeping duration. Achieving a balance between these two opposite operating regimes, we derive the energy-optimum carrier-sensing rate and the energy-optimum throughput which maximize the number of transmitted bits for a given energy budget. For the single-hop case, we show that the energy-optimum total throughput increases as the number of nodes sharing the channel increases. For the multi-hop case, we show that energy-optimum throughput decreases as the degree of the conflict graph corresponding to the network increases. For both cases, the energy-optimum throughput reduces as the power required for carrier-sensing increases. The energy-optimum throughput is also shown to be substantially lower than the maximum throughput and the gap increases as the degree of the conflict graph increases for multi-hop networks.
机译:我们提出了一个节点的能耗模型,该模型是无线CSMA网络中节点吞吐量的函数。我们首先对单跳网络建模,然后对多跳网络建模。我们表明,以高吞吐量运行CSMA网络是能源效率低下的,因为不成功的载波侦听尝试会增加每个传输位的能耗。由于睡眠时间增加,以低吞吐量运行网络也会导致能源效率低下。在这两个相对的工作方式之间取得平衡,我们得出了能量最佳载波检测速率和能量最佳吞吐量,它们在给定的能量预算下最大化了传输比特的数量。对于单跳情况,我们表明,能量共享的总吞吐量随着共享信道的节点数量的增加而增加。对于多跳情况,我们显示能量最佳吞吐量随着与网络相对应的冲突图的程度增加而降低。对于这两种情况,随着载波侦听所需功率的增加,能量最佳吞吐量会降低。对于多跳网络,能量最佳吞吐量也显示为大大低于最大吞吐量,并且间隙随着冲突图的程度增加而增加。

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