Real Time Control Engineering: Systems And Automation - Practical
Real Time Control Engineering: Systems And Automation - Practical
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In this review of Real Time Control Engineering: Systems And Automation the bottom line is clear: this book is for practicing engineers and advanced students who need a practical, system-level guide to modern control electronics and electrical applications. It focuses on real-world control problems and presents state-of-the-art techniques across microprocessor and PLC-based designs, making it most valuable for readers who implement control on hardware rather than only studying theory. The review highlights the book's balanced coverage of electronics, electrical systems and programming examples that support applied design.
Key Features
- Electronics control coverage: Provides essential information on microprocessor, microcontroller and mechatronics topics so readers can design embedded control circuits with confidence.
- Low-level programming examples: Includes assembly-level routines for basic input/output control and motor control to illustrate direct hardware interaction.
- Motor control applications: Demonstrates practical control of stepper motors and PWM dc motors useful for robotics and motion systems design.
- Electrical systems design: Examines complete elevator PLC system design and process control to guide industrial automation projects.
- Advanced techniques: Covers neural network plant control, load flow analysis and machine vision topics to show modern approaches for complex control tasks.
Who It's For
This book suits graduate students, control engineers and technicians who need applied examples of electronics and electrical control systems, including embedded programming and PLC design. The hands-on assembly examples and detailed system descriptions are most useful to readers who will implement or debug hardware-level control.
Beginners with only theoretical background or readers seeking a mathematically rigorous control textbook may find this book less focused on proofs and derivations; similarly, those looking for high-level management overviews of automation strategy should look elsewhere.
Pros & Cons
Pros
- Comprehensive mix of electronics and electrical topics that bridge embedded systems and industrial control.
- Practical assembly programming and circuit diagrams that help translate concepts into working prototypes.
- Relevant real-life examples such as elevator PLC systems and motor control that apply directly to projects.
Cons
- Assembly language focus may feel dated to readers preferring higher-level languages or modern toolchains.
Specifications
| Title | Real Time Control Engineering: Systems And Automation |
| Series | Studies in Systems, Decision and Control, 65 |
| Author / Brand | Tian Seng Ng |
| Coverage | Microprocessor, microcontroller, mechatronics, electronics and PLC systems |
| Applications | Stepper motor control, PWM dc motor, elevator PLC, neural network control, load flow, machine vision |
| Programming | Low-level assembly examples for I/O and motor control |
Our Verdict
Real Time Control Engineering is a pragmatic, applied resource that connects embedded electronics with industrial automation. Engineers and advanced students who implement control hardware will find the assembly routines, circuit diagrams and system examples good value for practical design work. It is less suitable for readers seeking a purely theoretical or high-level management text.
Frequently Asked Questions
Does the book include programming examples?
Yes, it contains low-level assembly programming examples for basic I/O and motor control tasks.
Are industrial systems like PLCs covered?
Yes, the book addresses complete elevator PLC system design and other process control topics.
Is this suitable for beginners in control theory?
It is best for those with some background who want applied, hardware-focused guidance rather than introductory theory.
Editor's Take
A pragmatic, applied resource that links embedded electronics and industrial automation; ideal for engineers and advanced students who implement control hardware and want practical examples and assembly-level guidance.

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