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工程测试技术基础

工程测试技术基础

  • 字数: 701000
  • 装帧: 平装
  • 出版社: 华中科技大学出版社
  • 出版日期: 2022-01-01
  • 商品条码: 9787568077439
  • 版次: 1
  • 开本: 16开
  • 页数: 332
  • 出版年份: 2022
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1、本书作者为重量教学名师,屡次应邀在机械课程论坛及各类教学改革会议上交流,在高教改革领域具有广泛的影响力;2、本书为国际化课程“工程测试技术基础”配套教材,汇集了作者多年开设“Fundamentals of Measurement and Signal Processing(工程测试技术基础)"课程教学经验,符合国际化教学需要。
内容简介
工程测试技术是机械专业的专业基础课,内容涉及工业自动化、机器人、人工智能、楼宇控制、交通运输等领域中常见物理量(温度、光、声音、压力、振动位移等)的传感器测量原理和波形分析、频谱分析等测量信号分析方法,还包括计算机化测量系统构成原理、Matlab信号分析程序编程实践和Arduino传感器测量应用实践。本书为“工程测试技术基础”英文课程的教材,可作为机械类专业国际生以及参与“工程测试技术基础”国际化课程学习的学生的教材。
目录
Introduction
0.1 Definition of Measurement Technology
0.2 Engineering Applications of Measurement Technology
0.3 Developing Trends of Measurement Technology
0.4 Main Manufacturers of Sensors and Measurement Instruments
Exercise
Part Ⅰ Signal Processing
Chapter 1 Waveform Analysis of Signal
1.1 Classification of Signals
1.2 Sampling Theorem
1.3 Standard Functions in Signal Analysis
1.4 Generation of Standard Functions
1.5 Waveform Analysis of Signal
Exercise
Chapter 2 Frequency Domain Analysis
2.1 Concept of Frequency Domain Analysis
2.2 Fourier Series Representation of Periodic Signals
2.3 Fourier Transform of Aperiodic Signal
2.4 Fourier Transform of Typical Signal
2.5 Properties of Fourier Transform
2.6 Fourier Transform for Discretetime Signal
2.7 Error Analysis in FFT
2.8 Applications of Frequency Domain Analysis
Exercise
Chapter 3 Amplitude Domain Analysis
3.1 Probability Density Function and Histogram
3.2 Cumulative Distribution Function
3.3 Engineering Applications of Amplitude Domain Analysis
Exercise
Chapter 4 Correlation Analysis of Signals
4.1 Concepts of Correlation Analysis
4.2 Properties of the Correlation Function
4.3 Calculation of Correlation
4.4 Engineering Applications of Correlation Analysis
Exercise
Chapter 5 Timefrequency Domain Analysis
5.1 Motivations of Timefrequency Domain Analysis
5.2 Shorttime Fourier Transform
5.3 Wavelet Transform
Exercise
Chapter 6 Digital Filtering
6.1 Concepts of Filtering
6.2 Filtering in Frequency Domain
6.3 Time Domain Filtering and Z transform
6.4 Finite Impulse Response FIR Filter
6.5 Infinite Impulse Response IIR Filter
Exercise
Part Ⅱ Sensor Technology and Measurement System
Chapter 7 Principles of Sensors
7.1 Overview of Sensor Technology
7.2 Resistive Sensors
7.3 Inductive Sensor
7.4 Capacitive Sensor
7.5 Magnetoelectric Transducer
7.6 Piezoelectric Transducer
7.7 Hall Sensor
7.8 Photovoltaic Transducer
7.9 Image Sensor
7.10 Thermocouple
7.11 Fiberoptic Sensor
7.12 Grating Sensor
7.13 Biosensor
7.14 Selection of Sensors
Exercise
Chapter 8 Signal Conditioning Techniques
8.1 Overview of Signal Conditioning
8.2 Analog Amplifier and Operator
8.3 Bridge Circuit
8.4 Analog Filter
8.5 Modulation and Demodulation
Exercise
Chapter 9 Characteristics of Measurement System
9.1 Overview of Measurement System
9.2 Static Characteristics of Measurement System
9.3 Dynamic Characteristics of Measurement System
9.4 Characteristics of Typical Linear Measurement Systems
Exercise
Chapter 10 Computerized Measurement System
10.1 Overview of Computerized Measurement System
10.2 Development of Measurement Instrument
10.3 Computerized Measurement Instrument
Exercise
Reference

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