首页> 外文会议>International Conference on Communication Systems, Computing and IT Applications >Performance Comparison of Wi-Fi IEEE 802.11ac and Wi-Fi IEEE 802.11n
【24h】

Performance Comparison of Wi-Fi IEEE 802.11ac and Wi-Fi IEEE 802.11n

机译:Wi-Fi IEEE 802.11ac和Wi-Fi IEEE 802.11n的性能比较

获取原文

摘要

This paper's objective is to present the performance comparison between Wi-Fi IEEE 802.11ac and Wi-Fi IEEE 802.11n by measuring the throughput and steaming rate of big data streaming. The performance test is divided into four scenarios, 1) data streaming to one device, 2) data streaming with different distances, 3) data streaming to multiple devices, and 4) live broadcast a big data streaming. The results of evaluations are as follow. In the first scenario, maximum transfer rate of IEEE 802.11ac is higher but the average transfer rate depends on the video type. In second scenario, maximum transfer rate to the first and second device of IEEE 802.11ac is significantly greater than IEEE 802.11n but IEEE 802.11ac cannot reach the third device which located on the different floor, while IEEE 802.11n can reach the third device with maximum transfer rate of 942.8 kbps. The throughput of IEEE 802.11ac is more stable than IEEE 802.11n by compare the data from the first and second device. In third scenario, the maximum transfer rate of IEEE 802.11ac is higher than IEEE 802.11n and throughput of IEEE 802.11ac is more stable than IEEE 802.11n. In fourth scenario, the maximum transfer rate and average transfer rate of IEEE 802.11ac is higher than IEEE 802.11n.
机译:本文的目的是通过测量大数据流的吞吐量和蒸汽速率,展示Wi-Fi IEEE 802.11ac和Wi-Fi IEEE 802.11n之间的性能比较。性能测试被分为四个场景,1)数据流到一个设备,2)数据流与不同距离,3)数据流到多个设备,4)实时广播大数据流。评估结果如下。在第一场景中,IEEE 802.11ac的最大传输速率更高,但平均传输速率取决于视频类型。在第二种情况下,IEEE 802.11ac的第一和第二设备的最大传输速率明显大于IEEE 802.11n,但IEEE 802.11ac无法到达位于不同地板上的第三设备,而IEEE 802.11n可以到达第三设备最大转移率为942.8 kbps。通过从第一和第二设备比较数据,IEEE 802.11ac的吞吐量比IEEE 802.11n更稳定。在第三场景中,IEEE 802.11ac的最大传输速率高于IEEE 802.11n,并且IEEE 802.11ac的吞吐量比IEEE 802.11n更稳定。在第四场景中,IEEE 802.11ac的最大传输速率和平均传输速率高于IEEE 802.11n。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号