BDAC:无线局域网中基于DHCP的行为感知动态自适应配置

Congcong Miao, Jilong Wang, Tianying Ji, Hui Wang, Chao Xu, Fenghua Li, Fengyuan Ren
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引用次数: 3

摘要

DHCP被广泛用于局域网设备的动态IP地址分配,但WiFi设备的爆炸式增长及其频繁的移动对无线局域网的DHCP性能提出了很大的挑战。本文通过对大规模真实网络轨迹的分析,发现WiFi用户动态行为(如上网时间模式和时空移动模式)导致DHCP性能不佳。虽然WLAN的总IP利用率只有24%,但在高峰时段,部分vlan的IP池已经耗尽。因此,我们必须动态地配置IP租用时间和IP池,并确保它们能够适应WiFi用户的行为。为了实现这一目标,我们通过在线时间模式和时空移动模式对用户行为进行了表征和建模。然后,我们提出了一种行为感知的动态自适应配置BDAC,它结合了两种策略:自适应IP租用时间配置和动态IP池配置。前者是根据用户上网时间模式,设置跨用户角色和区域类型的自适应租用时间,及时回收IP地址,降低峰值IP使用率;后者是基于时空迁移相关性,跨vlan动态迁移IP地址,保存IP地址。利用不同星期的真实网络轨迹,我们进行了实验来评估BDAC的性能。结果表明,BDAC可以节省高达60%的IP地址,实际IP利用率从24%提高到59%。此外,当WLAN中的vlan数量增加时,BDAC仍能保持较高的IP利用率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
BDAC: A Behavior-aware Dynamic Adaptive Configuration on DHCP in Wireless LANs
DHCP is widely used to dynamically allocate IP addresses to the devices on local area networks, but the explosive increases of WiFi devices and their frequent mobility pose great challenges on DHCP performance in wireless LANs. In this paper, by analyzing large scale real network traces, we observe that the dynamic WiFi user behavior (e.g., online time pattern and spatio-temporal mobility pattern) leads to the poor DHCP performance. The IP pools in some VLANs have been exhausted in rush hours although the total IP utilization in WLAN is only 24%. Therefore, we have to configure IP lease times and IP pools dynamically and make sure that they are adaptive to the WiFi user behavior. In order to achieve this goal, we characterize and model the user behavior across online time pattern and spatiotemporal mobility pattern. Then we propose BDAC, a behaviour-aware dynamic adaptive configuration, which is combined of two strategies: adaptive IP lease time configuration and dynamic IP pool configuration. The former is to set adaptive lease times across user roles and area types based on online time pattern to reclaim IP addresses in time and reduce the peak IP usage, while the latter dynamically migrates the IP addresses across VLANs based on spatio-temporal mobility correlation to save the IP addresses. Using the real network traces of a different week, we conduct experiments to evaluate the performance of BDAC. Results show that BDAC can save up to 60% of IP addresses and the actual IP utilization rises from 24% to 59%. Furthermore, BDAC maintains high IP utilization when the number of VLANs in a WLAN increases.
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