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Wireless cache invalidation schemes with link adaptation and downlink traffic

机译:具有链接自适应和下行链路流量的无线缓存无效方案

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Providing on-demand data access in client-server wireless networks is an important support to many interesting mobile computing applications. Caching frequently accessed data by mobile clients can conserve wireless bandwidth and battery power, at the expense of some system resources to maintain cache consistency. The basic cache consistency strategy is the use of periodic invalidation reports (IRS) broadcast by the server. Recently, IR-based approaches have been further improved by using additional updated invalidation reports (UIRs) (i.e., the IR+UIR algorithm) to reduce the long query latency. However, the performance of the IR+UIR approach in a practical system is still largely unknown. Specifically, previous results are based on two impractical simplifying assumptions: 1) broadcast traffic is error-free and 2) no other downlink traffic (e.g., voice) exists in the system. The first assumption is clearly unrealistic as signal propagation impairments (e.g., multipath fading) and, hence, packet reception failures are inevitable in a practical situation. The second assumption is also inapplicable in real life because mobile devices are usually multipurposed (e.g., a mobile phone equipped with a browser may be used for Web surfing while having a phone conversation). In this paper, we first study the performance of the IR+UIR approach under a realistic system model: The quality of the wireless channel is time-varying, and there are other downlink traffics in the system. Our simulation results show that query delay significantly increases as a result of broadcast error and the additional downlink traffics experience longer delay due to extended broadcast period. Exploiting link adaptation (i.e., transmission rate is adjusted dynamically according to channel quality), we then propose three schemes to tackle these two problems. Our results indicate that the proposed schemes outperform IR+UIR under a wide range of system parameters.
机译:在客户端-服务器无线网络中提供按需数据访问是许多有趣的移动计算应用程序的重要支持。移动客户端缓存经常访问的数据可以节省无线带宽和电池电量,但会消耗一些系统资源来维持缓存一致性。基本的缓存一致性策略是使用服务器广播的定期失效报告(IRS)。最近,通过使用附加的更新的无效报告(UIR)(即IR + UIR算法)来减少长查询延迟,从而进一步改进了基于IR的方法。但是,IR + UIR方法在实际系统中的性能仍然未知。具体而言,先前的结果基于两个不切实际的简化假设:1)广播流量没有错误,并且2)系统中不存在其他下行链路流量(例如,语音)。由于信号传播障碍(例如,多径衰落),第一个假设显然是不现实的,因此,在实际情况下不可避免地发生分组接收失败。第二个假设在现实生活中也不适用,因为移动设备通常是多用途的(例如,配备有浏览器的移动电话可以在进行电话交谈时用于Web冲浪)。在本文中,我们首先研究在实际系统模型下IR + UIR方法的性能:无线信道的质量随时间变化,并且系统中还有其他下行链路流量。我们的仿真结果表明,由于广播错误,查询延迟显着增加,并且由于延长广播时间,额外的下行链路流量会经历更长的延迟。利用链路自适应(即,根据信道质量动态调整传输速率),然后我们提出三种方案来解决这两个问题。我们的结果表明,在广泛的系统参数下,提出的方案优于IR + UIR。

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