系統(tǒng)級(jí)動(dòng)態(tài)電源管理框架與在線策略的研究與實(shí)現(xiàn)
[Abstract]:With the rapid development of embedded systems, the contradiction between high performance and low power consumption has become increasingly prominent, power consumption has become the main problem of embedded system design. High power consumption increases cooling costs and reduces system reliability and battery life. Reducing the consumption of electric energy can not only prolong the battery life, reduce the cycle of battery replacement, but also improve the system performance and reduce the cost of the system, and even play a role in protecting the environment. Low power design is to minimize power consumption while ensuring performance constraints. Dynamic Power Management (DPM) has been proved to be a system level low power technology which can effectively reduce system power consumption. It dynamically configures the system under the constraints of request service and performance, closes the idle system components or turns them into a low energy consumption state, so as to realize the effective utilization of energy consumption. With the in-depth study of DPM, a standardized policy framework supporting different power management strategies has become increasingly important. DPM framework deals with the power management problems of the system from the perspective of the whole system. Adopt structured rules and mechanisms to integrate DPM technology or related strategies of different components of the system. The existing DPM framework lacks the scheduling method of the policy and the effective evaluation of the policy performance. In view of this, this paper adds the policy selection and policy evaluation module on the basis of the original DPM framework, and extends the original framework. Get a more perfect DPM framework. DPM strategy is the focus of system-level dynamic power management technology. It determines when idle components are turned off or into low-power state, and dynamic power management makes effective use of energy consumption. Much depends on the performance of the strategy used. There are three kinds of traditional DPM strategies: timeout strategy, prediction strategy and stochastic model strategy. These strategies have their own shortcomings and their effectiveness depends heavily on an accurate load model. However, for a complex system, the effectiveness of these strategies depends heavily on an accurate load model. The load is usually unpredictable because it depends on the nature of the application and inputs data into the user context. Based on the analysis of the deficiency of traditional DPM strategy, this paper proposes an online learning strategy for dynamic power supply management at system level. The strategy changes the behavior of the system state and adjusts the behavior through reward / punishment to realize the online self-updating of the dynamic power management strategy and to solve the dynamic power management problem under the partially observable environment (the load model can not be predicted). Finally, in the extended DPM framework, the comparison of policy selection, online strategy and traditional DPM strategy is carried out to verify the effectiveness of the extended dynamic power supply management framework and the power saving performance of the strategy selection and online strategy.
【學(xué)位授予單位】:華南理工大學(xué)
【學(xué)位級(jí)別】:碩士
【學(xué)位授予年份】:2013
【分類號(hào)】:TP303.3
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