首页> 外文期刊>Circuit World >High-Performance CML approximate full adders for image processing application of laplace transform
【24h】

High-Performance CML approximate full adders for image processing application of laplace transform

机译:高性能CML近似完整加法器,用于拉普拉斯变换的图像处理应用

获取原文
获取原文并翻译 | 示例
       

摘要

PurposeThe high demand for fast, energy-efficient, compact computational blocks in digital electronics has led the researchers to use approximate computing in applications where inaccuracy of outputs is tolerable. The purpose of this paper is to present two ultra-high-speed current-mode approximate full adders (FA) by using carbon nanotube field-effect transistors.Design/methodology/approachInstead of using threshold detectors, which are common elements in current-mode logic, diodes are used to stabilize voltage. Zener diodes and ultra-low-power diodes are used within the first and second proposed designs, respectively. This innovation eliminates threshold detectors from critical path and makes it shorter. Then, the new adders are employed in the image processing application of Laplace filter, which detects edges in an image.FindingsSimulation results demonstrate very high-speed operation for the first and second proposed designs, which are, respectively, 44.7 per cent and 21.6 per cent faster than the next high-speed adder cell. In addition, they make a reasonable compromise between power-delay product (PDP) and other important evaluating factors in the context of approximate computing. They have very few transistors and very low total error distance. In addition, they do not propagate error to higher bit positions by generating output carry correctly. According to the investigations, up to four inexact FA can be used in the Laplace filter computations without a significant image quality loss. The employment of the first and second proposed designs results in 42.4 per cent and 32.2 per cent PDP reduction compared to when no approximate FA are used in an 8-bit ripple adder.Originality/valueTwo new current-mode inexact FA are presented. They use diodes as voltage regulators to design current-mode approximate full-adders with very short critical path for the first time.
机译:PMOSethe在数字电子设备中对快速,节能,紧凑的计算块的高需求使研究人员在输出不准确的应用中使用近似计算。本文的目的是通过使用碳纳米管场效应晶体管来呈现两个超高速电流模式近似全加入器(FA)。使用阈值探测器,使用阈值检测器,这是当前模式中的常见元件逻辑,二极管用于稳定电压。齐纳二极管和超低功耗二极管分别在第一和第二建议设计中使用。这项创新消除了来自关键路径的阈值探测器,使其更短。然后,新加法器用于LAPPALL滤波器的图像处理应用,其检测图像中的边缘.FINDINGSIMULICULES结果表现出非常高速操作,用于第一和第二提出的设计,分别为44.7%和21.6比下一个高速加法器细胞快。此外,在近似计算的背景下,它们在功率延迟产品(PDP)和其他重要评估因子之间进行了合理的折衷。它们具有很少的晶体管和极低的总误差距离。另外,它们不会通过正确生成输出携带来将误差传播到更高的位位置。根据调查,在Laplace过滤器计算中可以使用多达四个不精确的FA,而无需显着的图像质量损失。与在8位纹波加法器中没有使用近似FA时,第一和第二拟议设计的就业导致42.4%和32.2%的PDP减少。呈现了8位纹波加法器的近似FA.10RIGINALITY / VALEOWO新的电流模式。它们使用二极管作为电压调节器,首次设计具有非常短的关键路径的电流模式近似全加入器。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号