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首页> 外文期刊>Indian Journal of Science and Technology >Canonic Signed Digit Recoding based RISC Processor Design
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Canonic Signed Digit Recoding based RISC Processor Design

机译:基于Canonic签名数字记录的RISC处理器设计

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Objective: The objective of this work is to design a Reduced Instruction Set Computing (RISC) processor with Canonic Signed Digit (CSD) recoding. Methods: The incorporation of the CSD recording reduces the number of non-zero bits in the constant word length coefficient. The processor has a dedicated processing unit for the manipulation of floating point numbers. It uses CSD recoded number for the execution of the arithmetic operations such as multiplication. This novel technique reduces the switching activity and in turn resulting in reduction in the power consumed by the processor. Findings: The simulation was carried out using XILINX 14.3 and CADENCE NCLAUNCH. The RISC processor was synthesized with and without the CSD recoding. Although there is a slight increase in the area overhead, the use of ternary number representation in the processor design brought in a power reduction of 56.23%. Conclusions: The CSD recoding was found to be effective in terms of power consumption, making the RISC processor power efficient.
机译:目标:这项工作的目的是设计一种具有规范符号数字(CSD)重新编码的精简指令集计算(RISC)处理器。方法:CSD记录的合并减少了恒定字长系数中非零位的数量。该处理器具有专用的处理单元,用于处理浮点数。它使用CSD编码数字执行诸如乘法的算术运算。这种新颖的技术减少了开关活动,进而导致处理器消耗的功率减少。发现:使用XILINX 14.3和CADENCE NCLAUNCH进行了仿真。带有和不带有CSD重新编码的RISC处理器都是合成的。尽管面积开销略有增加,但是在处理器设计中使用三进制数表示带来了56.23%的功耗降低。结论:CSD重新编码在功耗方面被认为是有效的,从而使RISC处理器具有更高的功耗效率。

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