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Enabling Efficient System Configurations for Dynamic Wireless Applications Using System Scenarios

机译:使用系统方案为动态无线应用程序启用有效的系统配置

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Next generation mobile wireless systems (4G) support a wide range of communication protocols and services, thus opening new design challenges. The desired flexibility requires an effective utilization of system resources. In this article, we introduce the concept of system scenarios in wireless baseband engine signal processing optimization and in digital front-end power optimization. The scenario methodology classifies the system behavior from a cost perspective and provides the necessary information for an effective system tuning. We propose improvements for the clustering of the system executions into scenarios and the detection of scenarios at run time achieving a better trade-off between cost estimation accuracy and detection overhead. The first case study of the paper, using the WLAN communication protocol, demonstrates the accurate prediction of the execution time of each block of bits, which on average is 92 % shorter than the worst case allowing us to use the remaining time for the optimization of specifications like power consumption. In the second case study, we concentrate on the efficient signal power management during a WLAN transmission reducing the total energy consumption 50-94 % based on the throughput utilization.
机译:下一代移动无线系统(4G)支持广泛的通信协议和服务,从而带来了新的设计挑战。所需的灵活性要求有效利用系统资源。在本文中,我们介绍了无线基带引擎信号处理优化和数字前端功率优化中系统方案的概念。方案方法论从成本角度对系统行为进行了分类,并提供了有效的系统调整所需的信息。我们提出了一些改进,以将系统执行群集到场景中,并在运行时检测场景,从而在成本估算精度和检测开销之间取得更好的平衡。该论文的第一个案例研究使用WLAN通信协议,展示了对每个位块执行时间的准确预测,比最坏情况平均短92%,这使我们可以使用剩余时间来优化诸如功耗之类的规格。在第二个案例研究中,我们专注于WLAN传输期间的有效信号功率管理,基于吞吐量利用率将总能耗降低了50-94%。

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