高吞吐量IEEE 802.11n无线局域网的能量感知速率自适应算法

Teuku Yuliar Arif, Dery Rinaldi, Ramzi Adriman
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引用次数: 3

摘要

IEEE 802.11标准得到了迅速的发展,特别是在无线局域网(WLAN)中实现了高吞吐量(HT)和甚高吞吐量(VHT)。因此,需要一种新的速率自适应算法来控制信道带宽、保护间隔、空间流数以及最适合数据传输的调制和编码速率方案(MCS)。文献中已经提出了几种算法,但它们都没有考虑能源效率。本文提出了一种能量感知的速率自适应算法,称为高吞吐量自适应功率自动速率回落(APARF-HT)算法。我们将IEEE 802.11n WLAN中的数据速率分为组速率。如果所产生的数据传输达到阈值,则在保持数据成功传输的同时减少传输功率。如果传输功率已达到最小值,则在组速率中增加数据速率,但如果在组速率中速率最大,则也增加组速率。因此,在APARF-HT中,在数据传输过程中动态使用发射功率、带宽、保护间隔、数据流数和MCS,以产生最佳的吞吐量和能耗。采用NS-3对该算法进行了实现和测试。仿真结果表明,与同类算法相比,APARF-HT的每比特能耗更低。
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Energy-Aware Rate Adaptation Algorithm for High Throughput IEEE 802.11n WLANs
IEEE 802.11 has been developed rapidly especially to produce High Throughput (HT) and Very High Throughput (VHT) in Wireless Local Area Network (WLAN). As a consequence, a new rate adaptation algorithm is required that can control the bandwidth of the channel, guard interval, number of spatial streams, and modulation and coding rate scheme (MCS) most appropriate for data transmission. Several algorithms have been proposed in the literature, but they do not consider energy efficiency. In this paper, we propose an energy-aware rate adaptation and call it as Adaptive Power Automatic Rate Fallback for High Throughput (APARF-HT) algorithm. We classify the data rate in IEEE 802.11n WLAN into group rate. If the resulting data transmission reaches the threshold then the transmitted power is decremented while still keeping the data successfully transmitted. If the transmit power has reached the minimum, then the data rate is incremented in the group rate, but if the rate is maximal in the group rate then the group rate is also incremented. So in APARF-HT, transmit power, bandwidth, guard interval, number of data streams and MCS are used dynamically during data transmission to generate optimal throughput and energy consumption. The proposed algorithm is implemented and tested using NS-3. The simulation results show that APARF-HT produces lower energy consumption per bit compared to a similar algorithm.
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