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Power optimization of variable voltage core-based systems

机译:基于可变电压核心的系统的功率优化

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The growing class of portable systems, such as personal computing and communication devices, has resulted in a new set of system design requirements, mainly characterized by dominant importance of power minimization and design reuse. We develop the design methodology for the low power core-based real-time system-on-chip based on dynamically variable voltage hardware. The key challenge is to develop effective scheduling techniques that treat voltage as a variable to be determined, in addition to the conventional task scheduling and allocation. Our synthesis technique also addresses the selection of the processor core and the determination of the instruction and data cache size and configuration so as to fully exploit dynamically variable voltage hardware, which result In significantly lower power consumption for a set of target applications than existing techniques. The highlight of the proposed approach is the non-preemptive scheduling heuristic which results in solutions very close to optimal ones for many test cases. The effectiveness of the approach is demonstrated on a variety of modem industrial-strength multimedia and communication applications.
机译:诸如个人计算和通信设备之类的便携式系统类别的增长,导致了一组新的系统设计要求,其主要特征是功率最小化和设计重用的主要重要性。我们为基于动态可变电压硬件的低功耗,基于核的实时片上系统开发了设计方法。关键的挑战是,除了常规的任务调度和分配,还要开发有效的调度技术,将电压作为要确定的变量。我们的综合技术还解决了处理器内核的选择以及指令和数据高速缓存大小和配置的确定问题,以便充分利用动态可变电压硬件,与现有技术相比,这导致目标应用集的功耗大大降低。所提出的方法的重点是非抢占式调度启发式算法,它可以使解决方案非常接近于许多测试用例的最优解决方案。该方法的有效性在各种现代工业强度的多媒体和通信应用中得到了证明。

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