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Efficient power management in real-time embedded systems

机译:实时嵌入式系统中的高效电源管理

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摘要

Power consumption became a crucial problem in the development of mobile devices, especially those that are communication intensive. In these devices, it is imperative to reduce the power consumption devoted to maintaining a communication link during data transmission/reception. The application of dynamic power management methodologies has contributed to the reduction of power consumption in general purpose computer systems. However, to further reduce power consumption in communication intensive real-time embedded devices, we have to consider the state of the computation and external events in addition to power management policies. In this paper we propose a model of an Extended Power State Machine (EPSM), where we adapt a Power State Machine to include the state of an embedded program in the power state machine formulation. This EPSM model is used to adapt the Quality of Service (QoS) in communication intensive devices to ensure low power consumption. In such development, a middleware layer fits in the system's architecture, being responsible for intercepting the data communication and implementing the EPSM. Also, a software tool was developed, allowing the Middleware Code to be generated based on the State Machine. A case study demonstrates the application of the proposed model to a real situation.
机译:功耗已成为移动设备(尤其是通信密集型设备)开发中的关键问题。在这些设备中,必须减少用于在数据发送/接收期间维持通信链路的功耗。动态电源管理方法的应用有助于降低通用计算机系统的功耗。但是,为了进一步减少通信密集型实时嵌入式设备中的功耗,除了电源管理策略外,我们还必须考虑计算状态和外部事件。在本文中,我们提出了扩展电源状态机(EPSM)的模型,其中我们对电源状态机进行了调整,以在电源状态机公式中包括嵌入式程序的状态。此EPSM模型用于调整通信密集型设备中的服务质量(QoS),以确保低功耗。在这种开发中,中间件层适合系统的体系结构,负责拦截数据通信并实现EPSM。此外,还开发了一种软件工具,允许基于状态机生成中间件代码。案例研究表明了该模型在实际情况中的应用。

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