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上海交通大学:《数字信号处理 Digital Signal Processing(B)》教学资源_Handouts_ch1_Review for Signal and System
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1. Automatic Control System 1.1 Introduction 1.2 An example 1.3 Types of control system 2. Mathematical Foundation 2.1 The transfer function concept 2.2 The block diagram. 2.3 Signal flow graphs 2.4 Construction of signal flow graphs 2.5 General input-output gain transfer 3. Time-Domain Analysis Of Control System 3.1 Introduction 3.2 Typical test signals for time response of control systems 3.3 First –Order Systems 3.4 Performance of a Second-Order System 3.5 Concept of Stability 4. The Root Locus Techniques 4.1 Introduction 4.2 Root Locus Concept 4.3 The Root Locus Construction Procedure for General System 4.4 The zero-angle (negative) root locus 5. Frequency-Domain Analysis of Control System 5.1 Frequency Response 5.2 Bode Diagrams 5.3 Bode Stability Criteria 5.4 The Nyquist Stability Criterion 6. Control system design 6.1 Introduction 6.2 Cascade Lead Compensation 6.3 Properties of the Cascade Lead Compensator 6.4 Parameter Design by the Root Locus Method
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1. Automatic Control System 1.1 Introduction 1.2 An example 1.3 Types of control system 2. Mathematical Foundation 2.1 The transfer function concept 2.2 The block diagram. 2.3 Signal flow graphs 2.4 Construction of signal flow graphs 2.5 General input-output gain transfer function 3. Time-Domain Analysis Of Control System 3.1 Introduction 3.2 Typical test signals for time response of control systems 3.3 First –Order Systems 3.4 Performance of a Second-Order System 3.5 Concept of Stability 4. The Root Locus Techniques 4.1 Introduction 4.2 Root Locus Concept 4.3 The Root Locus Construction Procedure for General System 4.4 The zero-angle (negative) root locus 5. Frequency-Domain Analysis of Control System 5.1 Frequency Response 5.2 Bode Diagrams 5.3 Bode Stability Criteria 5.4 The Nyquist Stability Criterion 6. Control system design 6.1 Introduction 6.2 Cascade Lead Compensation 6.3 Properties of the Cascade Lead Compensator 6.4 Parameter Design by the Root Locus Method
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第一节 Section 1 信号传递途径概述 第二节 受体感受信号 Section 2 perception of signals by receptors 第三节 跨膜信号传递 Transmembrane signal transduction 第四节 胞内信号的转导 Section 4 transduction of signals inside cells
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5.1 Basic concept of traffic signal control 5.2 Parameters in traffic signal control 5.3 Choice of Objective Function 5.4 Calculation of Cycle Length 5.5 Calculation of Split 5.6 Intelligent Traffic Control at Intersection
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Asynchronous Circuit Design a Mainly use Combinational Logic to do the decoding Address decoder Fifo/Ram Read or Write pulse The output logic does not have any relationship with any clocking signal a Usually the Decoding Glitch can be monitored at the output signal
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一、化学计量学介绍 a brief introduction of chemometrics 二、信息评价 information appraise 三、信号与噪声 signal and noise 四、信号的处理技术 technology of signal process 五、多元分析方法 polybasis analysis methods
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1、学什么(What): 信号(Signal ) 系统(System) 信号处理(Signal Processing) 它们之间的相互关系(their interconnections)
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連續時間信號與離散時間信號 連續時間信號(continuous-time signal):連續時間 信號以函數x(t)表示之,其中t是連續時間變數。 離散時間信號(discrete-time signal) :離散時間信 號只定義在離散的時間點上,一般以離散時間變數 n的序列(sequence) x[n]表示之,其中變數n為整數
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Chapter 5 Signal Encoding Instructor: Dr. Tianshuang Qiu School of the Electronic and Information Engineering Fall of 2004
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