首页> 外文学位 >Approximation and optimization of an auditory model for realization in VLSI hardware.
【24h】

Approximation and optimization of an auditory model for realization in VLSI hardware.

机译:在VLSI硬件中实现的听觉模型的逼近和优化。

获取原文
获取原文并翻译 | 示例

摘要

The Auditory Image Model (AIM) is a software tool set developed to functionally model the role of the ear in the human hearing process. AIM includes detailed filter equations for the major functional portions of the ear. Currently, AIM is run on a workstation and requires 10 to 100 times real-time to process audio information and produce an auditory image.; An all-digital approximation of the AIM which is suitable for implementation in very large scale integrated circuits is presented. This document details the mathematical models of AIM and the approximations and optimizations used to simplify the filtering and signal processing accomplished by AIM. Included are the details of an efficient multi-rate architecture designed for sub-micron VLSI technology to carry out the approximated equations. Finally, simulation results which indicate that the architecture, when implemented in 0.8mu m CMOS VLSI, will sustain real-time operation on a 32 channel system are included. The same tests also indicate that the chip will be approximately 3.3 mm2, and consume, approximately 18 mW.; The details of a new and efficient method for computing an approximate logarithm (base two) on binary integers is also presented. The approximate logarithm algorithm is used to convert sound energy into millibels quickly and with low power. Additionally, the algorithm, is easily extended to compute an approximate logarithm in base ten which broadens the class of problems to which it may be applied.
机译:听觉图像模型(AIM)是一种软件工具集,旨在对耳朵在人类听力过程中的作用进行功能建模。 AIM包含针对耳朵主要功能部分的详细滤波器方程式。当前,AIM在工作站上运行,需要10到100倍的实时时间来处理音频信息并产生听觉图像。提出了适合在超大规模集成电路中实现的AIM的全数字近似。本文档详细介绍了AIM的数学模型,以及用于简化AIM实现的滤波和信号处理的近似和优化。其中包括为亚微米VLSI技术设计的高效多速率体系结构的详细信息,以执行近似方程式。最后,仿真结果表明该体系结构在0.8μmCMOS VLSI中实现时,将在32通道系统上保持实时运行。同样的测试还表明该芯片的面积约为3.3 mm2,功耗约为18 mW。还介绍了一种新的有效方法,用于计算二进制整数上的近似对数(以2为底)。近似对数算法用于将声能快速且低功耗地转换为毫巴。此外,该算法易于扩展以计算以10为底的近似对数,从而扩大了可应用的问题类别。

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