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A Methodology for Analyzing Power Consumption in Wireless Communication Systems

机译:分析无线通信系统中功耗的方法

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摘要

Energy usage has become an important issue in wireless communication systems. The energy-intensive nature of wireless communication has spurred concern over how best systems can make the most use of this non-renewable resource. Research in energy-efficient design of wireless communication systems show that one of its challenges is that the overall performance of the system depends, in a coupled way, on the different submodules of the system i.e. antenna, power amplifier, modulation, error control coding, and network architecture. Network architecture implementation strategies offer protocol software implementors an opportunity of incorporating low-power strategies into the design of the network protocols used for data communication.This dissertation proposes a methodology that would allow a software protocol implementor to analyze the power consumption of a wireless communication system. The foundation of this methodology lies in the understanding of the formal specification of the wireless interface network architecture which can be used to predict the performance of the system. By extending this hypothesis, a protocol implementor can use the formal specification to derive the power consumption behaviour of the wireless system during a normal operation (transmission or reception of data). A high-level formalism like state-transition graphs, can be used to track the protocol processing behaviour and to derive the associated continuous-time Markov chains.Because of their diversity, Markov reward models(MRM) are used to model the power consumption associated with the different states of a specified protocol layer. The models are solved analytically using the Mobius performance and dependability tool. Using the MRM accumulation and utilization measures, a profile of the power consumption is generated. Results from the experiments on the protocol layers show the individual power consumption and utilization of the different states as well as the accumulated power consumption of different protocol layers when compared. Ultimately, the results from the reward model solution can be used in the energy-efficient design of wireless communication systems.Lastly, in order to get an idea of how wireless communication device companies handle issues of power consumption, we consulted with the wireless module engineers at Siemens Communication South Africa and present our findings on current practices in energy efficient protocol implementation.
机译:能源使用已成为无线通信系统中的重要问题。无线通信的能源密集型性质引起了人们对最佳系统如何充分利用这种不可再生资源的担忧。对无线通信系统的节能设计的研究表明,其挑战之一是系统的整体性能以耦合的方式取决于系统的不同子模块,即天线,功率放大器,调制,差错控制编码,和网络架构。网络体系结构的实现策略为协议软件实现者提供了将低功耗策略纳入数据通信网络协议设计的机会。本文提出了一种方法,可以使软件协议实现者分析无线通信系统的功耗。该方法的基础在于对无线接口网络体系结构形式规范的理解,该规范可用于预测系统性能。通过扩展该假设,协议实现者可以使用形式规范来推导正常操作(数据的传输或接收)期间无线系统的功耗行为。状态转换图之类的高级形式主义可用于跟踪协议处理行为并导出相关的连续时间马尔可夫链。由于其多样性,马尔可夫奖励模型(MRM)可用于建模相关的功耗具有指定协议层的不同状态。使用Mobius性能和可靠性工具以解析方式求解模型。使用MRM累积和利用措施,可以生成功耗曲线。协议层上的实验结果显示,与之相比,不同状态的单个功耗和利用率以及不同协议层的累积功耗。最终,奖励模型解决方案的结果可用于无线通信系统的节能设计。最后,为了了解无线通信设备公司如何处理功耗问题,我们咨询了无线模块工程师在南非西门子通信公司,并介绍了我们在节能协议实施方面的最新实践发现。

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    Chibesakunda Mwelwa K.;

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  • 年度 2004
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