Isbn: 9781394402731 - neurodynamic methods for continuum robot control (16 resultados)

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Hardback. Condición: New. Exploration on how neurodynamic methods can be effectively applied to control complex, flexible robotic systems in research, and real-world settings Neurodynamic Methods for Continuum Robot Control presents a comprehensive exploration of neurodynamic control methods for continuum robots-a new generation of soft, flexible robotic systems inspired by nature. The book is organized into seven thematic parts and eleven chapters, progressing from fundamental analytical techniques to advanced hybrid and adaptive control systems. After the introduction chapter, each chapter includes detailed theoretical derivations, algorithm design, and extensive validation through simulations and physical experiments. This book explores how continuum robots are controlled effectively and robustly in real time, without requiring complex modeling or extensive data training. The solution explored throughout this book is a suite of neurodynamic control algorithms, which offer a powerful alternative to traditional model-based and learning-based approaches. These neurodynamic methods-particularly gradient neurodynamics (GND) and zeroing neurodynamics (ZND)-allow for fast, adaptive, and model-free solutions to inverse kinematics and trajectory tracking problems. Written by a team of highly qualified authors with extensive experience in the field, this book includes information on: Inherent challenges in modeling and controlling continuum robots, including model uncertainty, high dimensionality, and elastic deformationMathematical foundations of GND and ZND and the derivation and application of Jacobian-based and model-free kinematic control methodsAdvanced neurodynamic models including predefined-time convergent, time-synchronized, and varying-parameter schemesHybrid intelligent methods such as fuzzy logic-enhanced neurodynamics and cerebellum-inspired architecturesBenefits of neurodynamic control, including real-time performance, robustness, adaptability, and simplicity in deployment Discussing theory, design, and applications to deliver state-of-the-art research, Neurodynamic Methods for Continuum Robot Control is an essential resource on the subject for researchers, graduate students, and advanced practitioners-not only a technical reference, but also a visionary guide to the future of intelligent robotics.…

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Condición: New. Brand New! Fast Delivery This is an International Edition and ship within 24-48 hours. Deliver by FedEx and Dhl, & Aramex, UPS, & USPS and we do accept APO and PO BOX Addresses. Order can be delivered worldwide within 6-10 days and we do have flat rate for up to 2LB. Extra shipping charges will be requested if the Book weight is more than 5 LB. This Item May be shipped from India, United states & United Kingdom. Depending on your location and availability.…

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Hardback. Condición: New. Exploration on how neurodynamic methods can be effectively applied to control complex, flexible robotic systems in research, and real-world settings Neurodynamic Methods for Continuum Robot Control presents a comprehensive exploration of neurodynamic control methods for continuum robots-a new generation of soft, flexible robotic systems inspired by nature. The book is organized into seven thematic parts and eleven chapters, progressing from fundamental analytical techniques to advanced hybrid and adaptive control systems. After the introduction chapter, each chapter includes detailed theoretical derivations, algorithm design, and extensive validation through simulations and physical experiments. This book explores how continuum robots are controlled effectively and robustly in real time, without requiring complex modeling or extensive data training. The solution explored throughout this book is a suite of neurodynamic control algorithms, which offer a powerful alternative to traditional model-based and learning-based approaches. These neurodynamic methods-particularly gradient neurodynamics (GND) and zeroing neurodynamics (ZND)-allow for fast, adaptive, and model-free solutions to inverse kinematics and trajectory tracking problems. Written by a team of highly qualified authors with extensive experience in the field, this book includes information on: Inherent challenges in modeling and controlling continuum robots, including model uncertainty, high dimensionality, and elastic deformationMathematical foundations of GND and ZND and the derivation and application of Jacobian-based and model-free kinematic control methodsAdvanced neurodynamic models including predefined-time convergent, time-synchronized, and varying-parameter schemesHybrid intelligent methods such as fuzzy logic-enhanced neurodynamics and cerebellum-inspired architecturesBenefits of neurodynamic control, including real-time performance, robustness, adaptability, and simplicity in deployment Discussing theory, design, and applications to deliver state-of-the-art research, Neurodynamic Methods for Continuum Robot Control is an essential resource on the subject for researchers, graduate students, and advanced practitioners-not only a technical reference, but also a visionary guide to the future of intelligent robotics.…

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Librería: AHA-BUCH GmbH, Einbeck, AlemaniaAHA-BUCH GmbH
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Buch. Condición: Neu. Neuware - Exploration on how neurodynamic methods can be effectively applied to control complex, flexible robotic systems in research, and real-world settings Neurodynamic Methods for Continuum Robot Control presents a comprehensive exploration of neurodynamic control methods for continuum robots-a new generation of soft, flexible robotic systems inspired by nature. The book is organized into seven thematic parts and eleven chapters, progressing from fundamental analytical techniques to advanced hybrid and adaptive control systems. After the introduction chapter, each chapter includes detailed theoretical derivations, algorithm design, and extensive validation through simulations and physical experiments. This book explores how continuum robots are controlled effectively and robustly in real time, without requiring complex modeling or extensive data training. The solution explored throughout this book is a suite of neurodynamic control algorithms, which offer a powerful alternative to traditional model-based and learning-based approaches. These neurodynamic methods-particularly gradient neurodynamics (GND) and zeroing neurodynamics (ZND)-allow for fast, adaptive, and model-free solutions to inverse kinematics and trajectory tracking problems. Written by a team of highly qualified authors with extensive experience in the field, this book includes information on: - Inherent challenges in modeling and controlling continuum robots, including model uncertainty, high dimensionality, and elastic deformation- Mathematical foundations of GND and ZND and the derivation and application of Jacobian-based and model-free kinematic control methods- Advanced neurodynamic models including predefined-time convergent, time-synchronized, and varying-parameter schemes- Hybrid intelligent methods such as fuzzy logic-enhanced neurodynamics and cerebellum-inspired architectures- Benefits of neurodynamic control, including real-time performance, robustness, adaptability, and simplicity in deployment Discussing theory, design, and applications to deliver state-of-the-art research, Neurodynamic Methods for Continuum Robot Control is an essential resource on the subject for researchers, graduate students, and advanced practitioners-not only a technical reference, but also a visionary guide to the future of intelligent robotics.…

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Condición: New. 2026. 1st Edition. hardcover. . . . . . Books ship from the US and Ireland.

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Hardcover. Condición: new. Hardcover. Exploration on how neurodynamic methods can be effectively applied to control complex, flexible robotic systems in research and real-world settings Neurodynamic Methods for Continuum Robot Control presents a comprehensive exploration of neurodynamic control methods for continuum robotsa new generation of soft, flexible robotic systems inspired by nature. The book is organized into seven thematic parts and eleven chapters, progressing from fundamental analytical techniques to advanced hybrid and adaptive control systems. After the introduction chapter, each chapter includes detailed theoretical derivations, algorithm design, and extensive validation through simulations and physical experiments. This book explores how continuum robots are controlled effectively and robustly in real time, without requiring complex modeling or extensive data training. The solution explored throughout this book is a suite of neurodynamic control algorithms, which offer a powerful alternative to traditional model-based and learning-based approaches. These neurodynamic methodsparticularly gradient neurodynamics (GND) and zeroing neurodynamics (ZND)allow for fast, adaptive, and model-free solutions to inverse kinematics and trajectory tracking problems. Written by a team of highly qualified authors with extensive experience in the field, this book includes information on: Inherent challenges in modeling and controlling continuum robots, including model uncertainty, high dimensionality, and elastic deformationMathematical foundations of GND and ZND and the derivation and application of Jacobian-based and model-free kinematic control methodsAdvanced neurodynamic models including predefined-time convergent, time-synchronized, and varying-parameter schemesHybrid intelligent methods such as fuzzy logic-enhanced neurodynamics and cerebellum-inspired architecturesBenefits of neurodynamic control, including real-time performance, robustness, adaptability, and simplicity in deployment Discussing theory, design, and applications to deliver state-of-the-art research, Neurodynamic Methods for Continuum Robot Control is an essential resource on the subject for researchers, graduate students, and advanced practitionersnot only a technical reference, but also a visionary guide to the future of intelligent robotics. This item is printed on demand. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.…

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Hardcover. Condición: new. Hardcover. Exploration on how neurodynamic methods can be effectively applied to control complex, flexible robotic systems in research, and real-world settings Neurodynamic Methods for Continuum Robot Control presents a comprehensive exploration of neurodynamic control methods for continuum robotsa new generation of soft, flexible robotic systems inspired by nature. The book is organized into seven thematic parts and eleven chapters, progressing from fundamental analytical techniques to advanced hybrid and adaptive control systems. After the introduction chapter, each chapter includes detailed theoretical derivations, algorithm design, and extensive validation through simulations and physical experiments. This book explores how continuum robots are controlled effectively and robustly in real time, without requiring complex modeling or extensive data training. The solution explored throughout this book is a suite of neurodynamic control algorithms, which offer a powerful alternative to traditional model-based and learning-based approaches. These neurodynamic methodsparticularly gradient neurodynamics (GND) and zeroing neurodynamics (ZND)allow for fast, adaptive, and model-free solutions to inverse kinematics and trajectory tracking problems. Written by a team of highly qualified authors with extensive experience in the field, this book includes information on: Inherent challenges in modeling and controlling continuum robots, including model uncertainty, high dimensionality, and elastic deformationMathematical foundations of GND and ZND and the derivation and application of Jacobian-based and model-free kinematic control methodsAdvanced neurodynamic models including predefined-time convergent, time-synchronized, and varying-parameter schemesHybrid intelligent methods such as fuzzy logic-enhanced neurodynamics and cerebellum-inspired architecturesBenefits of neurodynamic control, including real-time performance, robustness, adaptability, and simplicity in deployment Discussing theory, design, and applications to deliver state-of-the-art research, Neurodynamic Methods for Continuum Robot Control is an essential resource on the subject for researchers, graduate students, and advanced practitionersnot only a technical reference, but also a visionary guide to the future of intelligent robotics. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability.…

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Hardcover. Condición: new. Hardcover. Exploration on how neurodynamic methods can be effectively applied to control complex, flexible robotic systems in research, and real-world settings Neurodynamic Methods for Continuum Robot Control presents a comprehensive exploration of neurodynamic control methods for continuum robotsa new generation of soft, flexible robotic systems inspired by nature. The book is organized into seven thematic parts and eleven chapters, progressing from fundamental analytical techniques to advanced hybrid and adaptive control systems. After the introduction chapter, each chapter includes detailed theoretical derivations, algorithm design, and extensive validation through simulations and physical experiments. This book explores how continuum robots are controlled effectively and robustly in real time, without requiring complex modeling or extensive data training. The solution explored throughout this book is a suite of neurodynamic control algorithms, which offer a powerful alternative to traditional model-based and learning-based approaches. These neurodynamic methodsparticularly gradient neurodynamics (GND) and zeroing neurodynamics (ZND)allow for fast, adaptive, and model-free solutions to inverse kinematics and trajectory tracking problems. Written by a team of highly qualified authors with extensive experience in the field, this book includes information on: Inherent challenges in modeling and controlling continuum robots, including model uncertainty, high dimensionality, and elastic deformationMathematical foundations of GND and ZND and the derivation and application of Jacobian-based and model-free kinematic control methodsAdvanced neurodynamic models including predefined-time convergent, time-synchronized, and varying-parameter schemesHybrid intelligent methods such as fuzzy logic-enhanced neurodynamics and cerebellum-inspired architecturesBenefits of neurodynamic control, including real-time performance, robustness, adaptability, and simplicity in deployment Discussing theory, design, and applications to deliver state-of-the-art research, Neurodynamic Methods for Continuum Robot Control is an essential resource on the subject for researchers, graduate students, and advanced practitionersnot only a technical reference, but also a visionary guide to the future of intelligent robotics. This item is printed on demand. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability.…