Time-Varying Constrained Optimization and Robot Optimal Control : A Neurodynamic Approach with NCP Functions

Time-Varying Constrained Optimization and Robot Optimal Control: A Neurodynamic Approach with NCP Functions

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Time-Varying Constrained Optimization and Robot Optimal Control : A Neurodynamic Approach with NCP Functions

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Time-Varying Constrained Optimization and Robot Optimal Control: A Neurodynamic Approach with NCP Functions

Overall Rating: 2.4 / 5 (average from multiple review sources, as of 9 May 2026)
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This title will be released on August 12, 2026. Pre-order now. Express Delivery available with Amazon Prime.
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Time-Varying Constrained Optimization and Robot Optimal Control : A Neurodynamic Approach with NCP Functions

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Focusing on error-dynamics-based neurodynamic networks (EDNNs) for optimal control of real-world robots, this book interrogates the application of neurodynamic methods to time-varying constrained optimization (TVCO) problems. It presents a thorough examination of EDNNs and their applications in TVCO and optimal control of robots.The authors systematically introduce the theoretical foundations, design methodologies, and robotic applications of EDNNs, emphasizing their superiority to traditional optimization solvers.In doing so, this book aims to fill gaps in the application of EDNNs to constrained optimization tasks with a focus on both serial robots (e.g., the Franka Emika Panda robot) and parallel robots (e.g., the Gough-Stewart platform).Key industrial challenges, including obstacle avoidance, joint-limit avoidance, pose control, and high-precision path tracking, are addressed with groundbreaking systematic integration of EDNNs and robot control, as validated by robot simulations and
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