• You can log in to your eeworld account to continue watching:
  • Computer control technology
  • Login
  • Duration:9 minutes and 49 seconds
  • Date:2020/06/07
  • Uploader:木犯001号
Introduction
Contents Chapter
1 Introduction
1.1 Overview of computer control systems
1.2 Types of computer control systems
1.3 Computer control theory
1.4 Application examples of computer control systems
1.5 Development of computer control systems
Chapter 2 Hardware basis for computer control system design
2.1 Switch input
2.2 Switch output
2.3 Analog input
2.4 Analog output
2.5 Power supply in computer control system
2.6 Signal sampling and reconstruction
2.7 Digital filtering
Exercises
Chapter 3 Mathematical foundation of computer control systems
3.1 Difference equation
3.2 z transform
3.3 Inverse z transform
3.4 Pulse transfer function
Exercises
no. Chapter Four Characteristics Analysis of Computer Control Systems
4.1 Stability of Computer Control Systems
4.2 Dynamic Characteristics of Computer Control Systems
4.3 Steady State Error of Computer Control Systems
4.4 Root Locus and Frequency Characteristics of Discrete Systems
Exercises
Chapter 5 Indirect Design Methods of Computer Control Systems
5.1 Overview
5.2 Basic design method
5.3 Design of digital PID controller
5.4 Improvement of digital PID controller algorithm
5.5 Parameter tuning of digital PID controller.
Exercises
Chapter 6 Direct design method of computer control system
6.1 Overview
6.2 Least beat control system design
6.3 Pure hysteresis Object control algorithm
6.4 Root locus method for designing digital controllers
6.5 Frequency domain design method for digital controllers
Exercises
Chapter 7 State space design method for digital controllers
7.1 State space description of linear systems and state space of linear discrete systems
7.2 Linear constant Controllability and observability of discrete systems
7.3 State feedback design method
7.4 Output feedback design method
7.5 State observer design
7.6 State feedback system using state observer
7.7 Quadratic optimal control algorithm design
Exercises
Chapter 8 Computer Control System Engineering design
8.1 Design steps of computer control system
8.2 Digital servo system
8.3 Double closed-loop DC digital speed control system
8.4 Resistance furnace temperature control system
8.5 Digital program control system
Exercises
Chapter 9 New computer control system
9.1 Embedded system
9.2 Distributed control system
9.3 Fieldbus control system
9.4 Network control system
Exercises
Chapter 10 Reliability design of computer control system
10.1 Overview
10.2 Sources of interference
10.3 Anti-interference measures for power supply and power supply system
10.4 Anti-interference measures for signal transmission channels
10.5 System reliability design
10.6 Fault diagnosis Technical
exercises
Unfold ↓

You Might Like

Recommended Posts

Interface switching issues
I am using Android to make a Bluetooth communication device. There are two interfaces that need to be switched. For the sake of convenience, let's say there are two interfaces, A and B. Interface A ha
chenbingjy Linux and Android
It's time to test your eyesight
It's been a while since I posted a question that tests your eyesight. I'll post one today.
okhxyyo Talking
Relationship between gain and feedback resistance R in transimpedance amplifier
As shown in the figure, V0=Ip*R. Is the gain calculated like this? G=20lgR? I feel that the resistor R is the amplification factor, so it should be correct to calculate it this way. According to the g
魔双月壁 Analog electronics
MSP430 Hardware I2C Explanation 4
: [font=Microsoft Yahei, Hei, Tahoma, SimHei, sans-serif][b]Uint8_teeprom_writepage( uint8_t word_addr, uint8_t *pword_buf, uint8_t len) [/b][/font] [font=Microsoft Yahei, Hei, Tahoma, SimHei, sans-se
fish001 Microcontroller MCU
NIOS design process example explanation (Part 2)
Next, we will add our "digital tube controller" to the SOPC Builder system. Now almost all books on Nios will mention custom user peripherals, and they all use the example PWM provided by Altera. The
心仪 FPGA/CPLD
Daily Questions
3. Using basic knowledge of digital circuits, explain why even if all the signals at the input of a combinational logic change at the same time, it is impossible for the individual signals at its outp
奔跑的蜗牛 FPGA/CPLD

Recommended Content

可能感兴趣器件

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

About Us Customer Service Contact Information Datasheet Sitemap LatestNews


Room 1530, 15th Floor, Building B, No.18 Zhongguancun Street, Haidian District, Beijing, Postal Code: 100190 China Telephone: 008610 8235 0740

Copyright © 2005-2024 EEWORLD.com.cn, Inc. All rights reserved 京B2-20211791 京ICP备10001474号-1 电信业务审批[2006]字第258号函 京公网安备 11010802033920号