无所不在环境下移动设备无线接口的节能拼车策略

Sung-Hwa Lim , Jungsup Oh , Byoung-Hoon Lee , Se Won Lee , Mye Sohn
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引用次数: 3

摘要

如今,移动设备的功耗是一个大问题,因为移动设备的电池电量是最重要的资源之一。遗憾的是,电池电源的性能无法满足高端移动设备的电源需求。由于无线通信接口是移动设备中最主要的功耗模块之一,因此通过无线通信传输/接收的数据增加会导致高功耗。因此,移动设备需要采用高效的无线接口电源管理。动态电源管理被广泛采用,以支持多种电源模式,如活动模式(例如,发送、接收和空闲模式)和非活动模式(例如,睡眠模式和关闭电源)。因此,最大化无线接口在非活动模式下的停留时间是减少能量消耗的必要方案。然而,打开/关闭无线接口所需的开销能量和时间是不可忽略的。最近的大部分工作都是试图增强硬件架构或网络/MAC协议。在本文中,我们提出了一种节能的拼车策略,该策略只在超过预定义阈值时打开无线接口并传输所有等待的数据。我们提出了两种阈值——时间和空间。为了进行实际评估,我们不仅进行了模拟,还通过在真实测试台上实施测试程序进行了实验测量。仿真和实验测量结果表明,我们提出的方案比传统的电源管理方案产生更少的能量消耗。
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Energy-efficient carpool policy for wireless interfaces of mobile devices in ubiquitous environments

Nowadays, power consumption is a big concern for mobile devices because battery power of mobile devices is one of the most crucial resources. Unfortunately, the performance of battery power fails to meet the power needs of high-end mobile devices. Increased data to be transferred/received through wireless communication incur high power consumption, because the wireless communication interface is one of the most dominant modules of mobile devices in terms of power consumption. Therefore, efficient power management of wireless interfaces should be employed for mobile devices. Dynamic power management is widely employed in order to support multiple power modes such as active modes (e.g., transmit, receive, and idle mode) and inactive modes (e.g., sleep mode and power off). Therefore maximizing the staying time of the wireless interface in an inactive mode is an essential scheme to reduce energy expenditure. However, required overhead energy and time for turning on/off the wireless interface are not negligible. Most of recent works have been trying to enhance the hardware architecture or network/MAC protocols. In this paper, we present an energy-efficient carpool policy that turns on the wireless interface and transmits all awaited data only when the predefined threshold is exceeded. We propose two kinds of thresholds–time and space. For practical evaluation, we conduct not only simulations but also experimental measurements by implementing a test program on a real test bed. Results of simulation and experimental measurements show that our proposed scheme incurs less energy expenditure than legacy power management schemes do.

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来源期刊
Mathematical and Computer Modelling
Mathematical and Computer Modelling 数学-计算机:跨学科应用
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