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    1. Kultur
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    Controller Design for Industrial Applications

    AvArindam Mondal,Souvik Ganguli

    Inbunden, Engelska, 2025

    2 134 kr

    Beställningsvara. Skickas inom 5-8 vardagar. Fri frakt över 249 kr.

    Beskrivning

    Controller Design for Industrial Applications is essential for anyone looking to master the advanced techniques of intelligent controller design, enabling you to effectively tackle the complexities of modern industrial processes and optimize performance in an ever-evolving landscape. Industrial processes are often complex and dynamic, making it challenging to design controllers that can maintain stable and optimal operation. Traditional controllers, such as PID controllers, have been widely used in industrial applications but have limitations in handling non-linear and uncertain systems. Intelligent controllers offer an alternative solution that can adapt to changing system dynamics and disturbances. The use of intelligent controllers in industrial applications has gained increasing attention in recent years, with numerous successful implementations in various fields, such as process control, robotics control, HVAC control, power systems control, and autonomous vehicle control. However, the design and implementation of intelligent controllers require careful consideration of hardware and software requirements, as well as simulation and testing procedures to ensure reliable and safe operation. In the rapidly evolving industrial landscape, it is essential to develop advanced control techniques to enhance productivity, minimize costs, and ensure safety. Traditional control methods often struggle to handle complex systems and unpredictable environments. However, with the emergence of intelligent control techniques, there is a great opportunity to improve industrial automation and control systems. Controller Design for Industrial Applications aims to provide a comprehensive understanding of intelligent controller design for industrial applications, from theoretical concepts to practical implementation. It will cover the fundamental concepts of intelligent control theory and techniques, their application in various industrial fields, and practical implementation and design considerations.

    Produktinformation

    • Utgivningsdatum:2025-06-10
    • Vikt:624 g
    • Format:Inbunden
    • Språk:Engelska
    • Antal sidor:416
    • Förlag:John Wiley & Sons Inc
    • ISBN:9781394287079

    Utforska kategorier

    • Designböcker inom Kultur
    • Teknik: allmänt inom Naturvetenskap och teknik

    Mer om författaren

    Arindam Mondal, PhD, is a co-private investigator for a Technology Development Program project under the Indian Department of Science and Technology. He has published 33 research papers in reputed international journals, conferences, and book chapters and has 12 patents published in his credit. His research interests include digital controller design, system identification, fractional order control and signal processing, Internet of Things, bioinformatics, load frequency control, and quantum computing. Souvik Ganguli, PhD, is an assistant professor at the Thapar Institute of Engineering and Technology, Patiala. He has published 17 papers in international journals, 36 SCOPUS-indexed papers, book chapters, and conference papers, and has been granted nine Indian patents, four German patents, and two South African patents. His research interests include model order reduction, identification and control, nature-inspired metaheuristic algorithms, electronic devices, and renewable energy applications.

    Innehållsförteckning

    • Preface xv1 Fuzzy Logic Control for Industrial Applications 1Srabanti Maji and Souvik Ganguli1.1 Introduction 21.2 The Evaluation of Fuzzy Logic Control: From Theory to Industrial Applications 41.3 Basics of Fuzzy Logic Control: A Comprehensive Overview 61.4 Merits of Fuzzy Logic Control 91.5 Industrial Applications of Fuzzy Logic Control 131.6 Discussions and Future Scope of Work 161.7 Conclusions 182 Artificial Neural Network for Industrial Applications 21Biswajit Saha and Gour Sundar Mitra Thakur2.1 Introduction 222.2 Neural Network Models for Industrial Applications 242.3 Challenges and Limitations 312.4 Industry Use Cases and a Sample Case Study 332.5 Future Directions and Emerging Trends 352.6 Conclusion 363 Artificial Neural Network-Based Sliding Mode Controller for a Class of Nonlinear System 41Sheetla Prasad, Rammurti Meena and Vipin Chandra Pal3.1 Introduction 423.2 Problem Formulation 443.3 Artificial Neural Network Structure 463.4 Neural Network Observer-Based SMC 473.5 Simulation and Demonstrations 493.6 Conclusion 524 Finite Control Set Model Predictive Control for Permanent Magnet Synchronous Motor Drives 55Ravi Eswar Kodumur Meesala, Phani Teja Bankupalli and Chinta Praveen Kumar4.1 Introduction 564.2 Mathematical Model of PMSM Drive 634.3 Optimal Control Concepts of Finite Control Set Model Predictive Control (FCSMPC) 694.4 Constraints in FCSMPC Operation 774.5 Real-Time Implementation of FCSMPC for PMSM Drive 785 Kinematic and Dynamic Modeling of Robots 89Suman Lata Tripathi and Deepika Ghai5.1 Introduction 905.2 Required Block for Robotic Model 915.3 Robotic Arm Model 915.4 Tool Description 935.5 Methodology/Design Steps 935.6 Result and Discussion 965.7 Applications and Future Scope 995.8 Conclusion 1016 Design of FUZZY-(1+PD)-FOPID Controller for Hybrid Two-Area Power System 105Susmit Chakraborty and Arindam Mondal6.1 Introduction 1066.2 Plant Model 1076.3 Controller Design 1076.4 Tree-Seed Algorithm 1126.5 Result and Analysis 1146.6 Conclusion 1207 Design of MPC-TSA Controller for Hybrid Two-Area Power System 125Susmit Chakraborty and Arindam Mondal7.1 Introduction 1267.2 Plant Model 1277.3 Model Predictive Controller 1287.4 Tree-Seed Algorithm 1327.5 Result and Analysis 1347.6 Conclusion 1368 Wide-Area Monitoring, Protection, Automation and Control (WAMPAC) System 141Sanchita Kumari and Amrita Sinha8.1 Introduction 1428.2 Blackouts 1438.3 Supervisory Control and Data Acquisition System 1458.4 Phasor Measurement Units (PMU) 1498.5 Intelligent Electronic Devices (IEDs) 1578.6 Communication Protocols 1608.7 Conclusions 1629 An Efficient Smart Prepaid Interface Design for Power Industries 167Antara Kundu, Harsh Kumar Shaw and Maitrayee Chakrabarty9.1 Introduction 1689.2 Literature Survey 1709.3 Proposed System 1789.4 Industrial Designing Application for Power Systems Control 1859.5 Conclusion 18510 PV System Maximum Power Point Tracking Under Partial Shadowing Using Gray Wolf Optimization Algorithm 189Snehashis Ghoshal and Arindam Mondal10.1 Introduction 18910.2 Analysis and Modeling of Solar PV Systems 19010.3 Impact of Partial Shading in a PV System 19310.4 Performance Optimization of Solar Panel During Partial Shading Condition 19410.5 Significance of MPPT in Partial Shading Conditions 19610.6 MPPT Techniques for Partially Shaded Scenario 19710.7 Simulation Result and Analysis 19910.8 Conclusion 20711 An Efficient Optimization Approach for Solving the Relay Coordination Problem 211Maitrayee Chakrabarty, Sudipta Chakraborty, Suparna Pal and Raju Basak11.1 Introduction 21211.2 Literature Survey 21311.3 Overview of the System 21511.4 Problem Formulation and Constraint Criterion 21611.5 Proposed PSO Algorithm 21911.6 Simulation Outcomes and Discussions 22011.7 Industrial Application Design Consideration 22711.8 Conclusion 22812 Intelligent Control for Energy-Efficient HVAC System Modeling and Control 233R. Sanjeevi, J. Anuradha, Sandeep Tripathi and Prashantkumar B. Sathvara12.1 Introduction 23412.2 Challenge in HVAC System 23612.3 HVAC Control Applications 23712.4 Advanced Control Strategies Mentioned for HVAC Systems 23812.5 Energy Efficiency and Sustainability in HVAC System 24112.6 Human-Centric HVAC Control 24612.7 Indoor Environmental Quality 24812.8 Case Studies 24912.9 Conclusion 25113 Enhancing UAV Navigation in Partially Observable 2D Environments: An Optimized Obstacle Avoidance Approach 257Jun Jet Tai and Swee King Phang13.1 Introduction 25813.2 Background 25913.3 Overview of the Proposed Method 26213.4 Implementation and Deployment 27013.5 Results 27013.6 Conclusion 28214 Fast Inner and Outer Dynamics Control of Multi-Rotor UAVs with Novel SIPIC and RPT Controllers Design 287Swee King Phang and Jun Jet Tai14.1 Introduction 28814.2 Dynamic Model of Quadrotor UAV 28914.3 Control Strategy for High-Speed Maneuver 29414.4 Simulation and Flight Results 30214.5 Conclusions 30415 Type 1 Cascaded Fuzzy Logic-Based Autonomous Vehicles Control Applications 309Eshan Samanta, Sagarika Pal and Anupam De15.1 Introduction 31015.2 Mathematical Kinematic Model 31115.3 Control Architectures for Autonomous Vehicles 31415.4 Perception and Sensor Fusion for Autonomous Navigation 31515.5 Intelligent Control for Path Planning and Collision Avoidance 31615.6 Case Studies of Intelligent Control in Autonomous Vehicles 32415.7 Conclusion 32616 AI-Driven Electric Vehicle Integration for Sustainable Transportation 331Loveneet Mishra, Usha Chauhan and Manasi Pattnaik16.1 Introduction 33216.2 Overview of Electric Vehicle Charging 33616.3 Rate Control Oriented at the Power Grid 33716.4 Model of the System 33916.5 Future of AI-Enabled EV Charging 34116.6 Conclusion 34617 Wireless EV Charging System Design 351Koushik Majumder, Maitrayee Chakrabarty, Rakesh Das and Raju Basak17.1 Introduction 35217.2 Literature Survey 35317.3 Problem Statement 35617.4 Methodology 35717.5 Principle of WPT 35917.6 Advantages 35917.7 WPT Method 36017.8 Performance Analysis for Three Case Studies 37017.9 Proposed Method for Power Source by Renewable Energy Source 37117.10 Future Scope for Contactless Power Transfer Method 37217.11 Conclusion 372References 373Index 375