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Embedded power-aware cycle by cycle variable speed processor

机译:逐周期变速处理器的嵌入式功率感知周期

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A variable speed processor (VSP) that can adjust its clock period at each cycle, according to the instruction flow in a pipelined program, is presented. This allows performance enhancement and energy consumption reduction, which is an important consideration for the next generation of embedded processor designs. With little change to the standard synchronous design, speed can be enhanced without increasing energy or speed can be maintained with energy savings. The VSP concept is validated by coupling a Nios processor with a variable period clock synthesiser (VPCS). No modifications to the core other than extracting internal signals from the pipeline are needed to control the VPCS. The VPCS cleanly switches between period lengths at each cycle, over a wide range of possible lengths and with any resolution depending on available clock phases. One VPCS design, in CMOS 0.18 (mu)m, consumes less than 10 (mu)W/MHz and is able to instantly switch inside the 4-250 MHz range. The VSP design is implemented with the Altera Embedded System platform, in its Stratix FPGA. With the proposed method, the dynamic energy consumed per program loop is reduced by 14percent, while the processing time is reduced by 3.6percent compared to the original standard Nios processor running the same program at its maximum frequency (133 MHz).
机译:提出了一种变速处理器(VSP),它可以根据流水线程序中的指令流在每个周期调整其时钟周期。这可以提高性能并降低能耗,这是下一代嵌入式处理器设计的重要考虑因素。只需对标准同步设计进行少量更改,就可以提高速度而无需增加能量,或者可以通过节能来保持速度。通过将Nios处理器与可变周期时钟合成器(VPCS)耦合,可以验证VSP概念。除了从管道中提取内部信号以外,无需对内核进行任何修改即可控制VPCS。 VPCS在每个周期的周期长度之间,各种可能的长度范围内以任意分辨率(取决于可用的时钟相位)在各个分辨率之间进行干净的切换。一种采用CMOS 0.18μm的VPCS设计,功耗小于10μW/ MHz,能够立即在4-250 MHz范围内切换。 VSP设计是通过Stratix FPGA中的Altera嵌入式系统平台实现的。与原始标准Nios处理器以其最大频率(133 MHz)运行相同程序相比,使用该方法,每个程序循环消耗的动态能量减少了14%,而处理时间减少了3.6%。

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