Throughput Improvement by Using Dynamic Channel Selection in 2.4GHz Band of IEEE 802.11 WLAN

K. Mathur, D. Jena, S. Agrawal, S. Baburaj, Sridhar Kondabathini, V. Tyagi
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引用次数: 4

Abstract

IEEE 802.11 WLAN Access Points(APs) are configured in the 2.4GHz band extensively to cater for the needs of all WiFi-enabled devices. In densely populated areas this causes considerable interference amongst the APs since there are only three orthogonal channels. Downlink data throughput reduces due to co-channel and overlapping channel interference. Efficient channel selection is a significant problem due to the dynamic wireless environment. Our proposed Dynamic Channel Selection(DCS) algorithm selects the optimal channel based on the periodic scan of the environment by a co-located monitoring radio unit. Frequent switching of channels is also reduced to maintain the AP's performance and stability. It is an innovative solution, readily applicable to the existing WLAN standard not necessitating any change in IEEE 802.11 MAC Layer. Our results show an improvement of up to 35% in the data throughput in six different real-time network scenarios.
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IEEE 802.11无线局域网2.4GHz频段动态信道选择提高吞吐量
IEEE 802.11 WLAN接入点(ap)广泛配置在2.4GHz频段,以满足所有支持wi - fi的设备的需求。在人口稠密的地区,由于只有三个正交信道,这在接入点之间造成相当大的干扰。下行链路数据吞吐量由于同信道和重叠信道干扰而降低。由于无线环境是动态的,有效的信道选择是一个重要的问题。本文提出的动态信道选择(DCS)算法基于同址无线电监测单元对环境的周期性扫描来选择最优信道。减少了频繁的信道切换,保持了AP的性能和稳定性。它是一种创新的解决方案,很容易适用于现有的WLAN标准,而不需要对IEEE 802.11 MAC层进行任何更改。我们的结果显示,在六种不同的实时网络场景中,数据吞吐量提高了35%。
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