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§4.1 LTI Discrete-Time Systems in the Transform Domain §4.2 The Frequency Response §4.3 Frequency Response Computation Using MATLAB §4.4 The Concept of Filtering §4.5 Phase and Group Delays §4.6 Frequency Response of the LTI Discrete-Time System §4.7 The Transfer Function §4.8 The Transfer Function §4.9 Frequency Response from Transfer Function §4.10 Types of Transfer Functions §4.11 Linear-Phase FIR Transfer Functions §4.12 Allpass Transfer Function §4.13 Minimum-Phase and Maximum-Phase Transfer Functions
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§7.1 Digital Filter Specifications §7.2 Selection of Filter Type §7.3 Digital Filter Design: Basic Approaches §7.4 IIR Digital Filter Design: Bilinear Transformation Method §7.5 IIR Highpass, Bandpass, and Bandstop Digital Filter Design §7.6 Fixed Window Functions §7.7 FIR Filter Design Example
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§5.1 Digital Processing of Continuous-Time Signals §5.2 Sampling of Continuous-time Signals §5.3 Effect of Sampling in the Frequency Domain §5.4 Recovery of the Analog Signal §5.5 Implication of the Sampling Process §5.6 Sampling of Bandpass Signals §5.7 Analog Lowpass Filter Specifications §5.8 Analog Lowpass Filter Design
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§1.1 Introduction §1.2 Continue-time Signal §1.3 signal representation based on δ(t) §1.4 Linear time-invariant system §1.5 System unit impulse response §1.6 Fourier series of periodic signals §1.7 Fourier analyses of non-periodic signals—Fourier Transform §1.8 Fourier Transform of typical signals §1.9 Fourier Transform of typical signals §1.10 Properties of Fourier Transform §1.11 Fourier analyses of linear system
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实验6FFT算法的应用 实验目的:加深对离散信号的DFT的理解及其FFT算法的运用。 实验原理:N点序列的DFT和IDFT变换定义式如下: n=0 N k=0 利用旋转因子W=e具有周期性,可以得到快速算法 (FFT)。 在 MATLAB中,可以用函数x=fft(x,n)和=ifft(N)计算 N点序列的DFT正、反变换。 实验内容:
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实验4离散系统的频率响应分析和零、极点分布 实验目的:加深对离散系统的频率响应分析和零、极点分布的概念 理解。 实验原理:离散系统的时域方程为 (n-k)=(n-k) 其变换域分析方法如下:
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实验2离散系统的差分方程、冲激响应和卷积分析 实验目的:加深对离散系统的差分方程冲激响应和卷积分析方法 的理解。 实验原理:离散系统
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1. Any arbitrary input sequence x[n] can be expressed as a linear combination of delaved and advanced unit sample sequences [n]=x[k][n-k] k=-0 2. .Linear Time-Invariant()System A system satisfying both the linearity and the time-invariance property. .If yiln] is the output due to an input xiln] and y2ln] is the output due to an input x2n] then for an input xn]=axiln]+bx2n] the output is given by ]=]+by2[n]
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3.1 概述 3.2 组合逻辑电路的基本分析和设计方法 3.3 若干常用的组合逻辑电路 3.4 组合电路中的竞争-冒险
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1.1 数制与编码 1.1.1 数制 1.1.2 数制间的转换 1.1.3 编码 1.2 逻辑代数 1.2.1 逻辑变量与逻辑函数的概念 1.2.2 三种基本逻辑及运算 1.2.3 复合逻辑及其运算 1.2.4 逻辑函数的描述 1.2.5 逻辑代数的定律、规则及常用公式 1.3 逻辑函数化简 1.4 VHDL语言描述
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