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Load mitigation in cellular data networks by peer data sharing over WLAN channels

机译:通过WLAN通道上的对等数据共享减轻蜂窝数据网络中的负载

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摘要

The exponential growth of mobile data users and services places a heavy burden on the limited wireless bandwidth of cellular data networks. The situation will be exacerbated with the advent of high bandwidth multimedia applications for mobile devices. In this paper, we propose an architecture, called the Cellular-based Ad hoc Peer Data Sharing system (CAPS), that can reduce the load on the cellular network while improving the wireless data access latency. In CAPS, mobile hosts in a cellular network form an overlay multi-hop wireless network. This ad hoc network acts as a 'virtual cache' that enables data sharing among mobile hosts. Participating mobiles share the contents of their local caches with other mobiles. A subset of mobile hosts keep track of the location of objects with minimal overhead to facilitate fast location discovery in the peer-to-peer ad hoc network. Using CAPS, popular objects can be obtained over the fast ad hoc channel without accessing the cellular infrastructure, thereby reducing the load on the cellular network and improving data access latency. We evaluate the performance of this proposed architecture through simulations using ns-2, varying control parameters across a variety of scenarios, and find that CAPS reduces the timeouts of the user requests by 70-90% and reduces the traffic at the base station by up to 60%.
机译:移动数据用户和服务的指数增长给蜂窝数据网络有限的无线带宽带来了沉重负担。随着用于移动设备的高带宽多媒体应用的出现,这种情况将更加恶化。在本文中,我们提出了一种称为基于蜂窝的Ad hoc对等数据共享系统(CAPS)的体系结构,它可以减少蜂窝网络的负载,同时改善无线数据访问延迟。在CAPS中,蜂窝网络中的移动主机形成了覆盖多跳无线网络。这个临时网络充当“虚拟缓存”,使移动主机之间可以共享数据。参与的移动设备与其他移动设备共享其本地缓存的内容。移动主机的子集以最小的开销跟踪对象的位置,以促进对等自组织网络中的快速位置发现。使用CAPS,无需访问蜂窝基础结构即可通过快速ad hoc信道获得流行对象,从而减少了蜂窝网络的负载并改善了数据访问延迟。我们通过使用ns-2进行仿真,在各种情况下改变控制参数来评估此提议体系结构的性能,并发现CAPS可以将用户请求的超时减少70-90%,并将基站的流量减少多达到60%

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