基于fsm的无线协议功率建模:以蓝牙为例

L. Negri, M. Sami, D. Macii, Alessandra Terranegra
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引用次数: 34

摘要

依赖于电池供电设备和无线连接的普适计算应用程序的激增,使电源优化问题成为人们关注的焦点。虽然节点级模型和方法已经被广泛讨论,但一个需要更多关注的问题是与通信协议相关的功率。我们提出了一种基于有限状态机的高级建模方法,该方法有助于以极低的计算成本预测给定通信任务的能耗,该方法可应用于任何协议。我们使用这种方法创建了蓝牙的功率模型,并在实际实现中进行了表征和实验验证。
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FSM-based power modeling of wireless protocols: the case of Bluetooth
The proliferation of pervasive computing applications relying on battery-powered devices and wireless connectivity is posing great emphasis on the issue of power optimization. While node-level models and approaches have been widely discussed, a problem requiring even greater attention is that of power associated with the communication protocols. We propose a high-level modeling methodology based on finite state machines useful to predict the energy consumption of given communication tasks with very low computational cost, which can be applied to any protocol. We use this methodology to create a power model of Bluetooth that we characterize and validate experimentally on a real implementation.
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Mitigating inductive noise in SMT processors Balanced energy optimization Managing standby and active mode leakage power in deep sub-micron design Subthreshold leakage power distribution considering within-die and die-to-die P-T-V variations FSM-based power modeling of wireless protocols: the case of Bluetooth
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