便携式无线系统的节能设计

T. Simunic, H. Vikalo, P. Glynn, G. Micheli
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引用次数: 71

摘要

便携式无线系统需要很长的电池寿命,同时仍然提供高性能。这项工作的主要贡献是结合了新的电源管理(PM)和电源控制(PC)算法,以在便携式设备的系统级上权衡性能和功耗。首先,提出了基于更新理论的产品管理政策优化问题的求解公式。接下来,我们提出了无线链路的功率控制(PC)的公式,使我们能够在系统活动时获得进一步的节能。最后,我们讨论了为笔记本电脑上的WLAN卡实现的一组PM和PC算法获得的测量结果。与仍然具有高性能的WLAN卡的默认PM策略相比,我们基于更新模型开发的PM策略消耗的功率减少了三倍。电源控制可在相同的误码率下额外节省53%的能量。在电源控制和电源管理算法都到位的情况下,我们观察到平均节省了6倍的电源。
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Energy efficient design of portable wireless systems
Portable wireless systems require long battery lifetime while still delivering high performance. The major contribution of this work is combining new power management (PM) and power control (PC) algorithms to trade off performance for power consumption at the system level in portable devices. First we present the formulation for the solution of the PM policy optimization based on renewal theory. Next we present the formulation for power control (PC) of the wireless link that enables us to obtain further energy savings when the system is active. Finally, we discuss the measurements obtained for a set of PM and PC algorithms implemented for the WLAN card on a laptop. The PM policy we developed based on our renewal model consumes three times less power as compared to the default PM policy for the WLAN card with still high performance. Power control saves additional 53% in energy at same bit error rate. With both power control and power management algorithms in place, we observe on average a factor of six in power savings.
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