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A mixed-signal CMOS VLSI image convolution circuit using error spectrum shaping.

机译:使用误差频谱整形的混合信号CMOS VLSI图像卷积电路。

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摘要

In this experimental research, the signals used to perform Finite Impulse Response image filtering are altered with Error Spectrum Shaping (ESS) so as to preclude corruption by circuit imperfections, in contrast to modifying the circuits to meet some improved level of performance. In using this technique, the representational noise caused by the circuit's resolution inaccuracy is pushed into an unused portion of the signal band, permitting the in-band portion of the signal to be more effectively captured and carried by the noisy analog channels. The suitability of ESS as a method for averting the detrimental effects of the error types inherent in analog array computations is established, with in-band noise reduction through ESS demonstrated for both binary quantization noise and random Gaussian errors. The design, fabrication, and testing of specific CMOS VLSI image convolution circuits are described, and the measured data collected from these circuits is used to model their behavior. The behavioral models are then used in convolution simulations of Nyquist, oversampled, and 1st order and 2nd order noise shaped images of varying resolutions and the SNR improvements quantified.
机译:在这项实验研究中,用于进行有限冲激响应图像滤波的信号会通过误差频谱整形(ESS)进行更改,以防止电路缺陷造成的破坏,这与修改电路以满足性能水平的提高相反。在使用这种技术时,由电路的分辨率不准确引起的代表性噪声被推入信号频带的未使用部分,从而允许信号的带内部分被噪声模拟通道更有效地捕获和携带。建立了ESS作为避免模拟阵列计算中固有的错误类型的有害影响的方法的适用性,并通过ESS证明了带内噪声的减少适用于二进制量化噪声和随机高斯误差。描述了特定CMOS VLSI图像卷积电路的设计,制造和测试,并将从这些电路收集的测量数据用于对其行为进行建模。然后将行为模型用于奈奎斯特,过采样和1阶和2阶噪声成形图像的不同分辨率的卷积仿真,并量化SNR改善。

著录项

  • 作者

    Buchanan, Brent Edgar.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 161 p.
  • 总页数 161
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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