

Distributed Autonomous Robotic Systems by M Ani Hsieh
Distributed robotics is a rapidly growing and maturing interdisciplinary research area lying at the intersection of computer science, network science, control theory, and electrical and mechanical engineering. The goal of the Symposium on Distributed Autonomous Robotic Systems (DARS) is to exchange and stimulate research ideas to realize advanced distributed robotic systems.
This volume of proceedings includes 31 original contributions presented at the 2012 International Symposium on Distributed Autonomous Robotic Systems (DARS 2012) held in November 2012 at the Johns Hopkins University in Baltimore, MD USA. The selected papers in this volume are authored by leading researchers from Asia, Europa, and the Americas, thereby providing a broad coverage and perspective of the state-of-the-art technologies, algorithms, system architectures, and applications in distributed robotic systems. The book is organized into five parts, representative of critical long-term and emerging research thrusts in the multi-robot community: Coordination for Perception, Coverage, and Tracking; Task Allocation and Coordination Strategies; Modular Robots and Novel Mechanisms and Sensors; Formation Control and Planning for Robot Teams; and Learning, Adaptation, and Cognition for Robot Teams.
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Comparative Performance of US Econometric Models
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Robotics Research
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Ergonomics in Robotics: Advances and Innovations
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Applied Guidance Methodologies for Off-road Vehicles
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Robot Dynamic Manipulation
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Reinforcement Learning of Bimanual Robot Skills
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Shoaling with Fish: Using Miniature Robotic Agents to Close the Interaction Loop with Groups of Zebrafish Danio rerio
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Wording Robotics
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Human-Aware Robotics: Modeling Human Motor Skills for the Design, Planning and Control of a New Generation of Robotic Devices
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Self-Organizing Robots
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Structure from Motion using the Extended Kalman Filter
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Visual Perception and Robotic Manipulation
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Stochastic Reactive Distributed Robotic Systems
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Software Engineering for Experimental Robotics
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Type Synthesis of Parallel Mechanisms
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Cable-Driven Parallel Robots
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Delft Pneumatic Bipeds
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Incremental Learning for Motion Prediction of Pedestrians and Vehicles
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Musical Robots and Interactive Multimodal Systems
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Learning Motor Skills
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FastSLAM
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The DARPA Urban Challenge
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Random Finite Sets for Robot Mapping & SLAM
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Multiple Heterogeneous Unmanned Aerial Vehicles
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The Human Hand as an Inspiration for Robot Hand Development
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Algorithmic Foundations of Robotics VIII
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Approaches to Probabilistic Model Learning for Mobile Manipulation Robots
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Experimental Robotics IX
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Algorithmic Foundations of Robotics IX
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Robotic Systems for Handling and Assembly
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Advances in Robotics Research: From Lab to Market
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Analysis and Synthesis of Compliant Parallel MechanismsScrew Theory Approach
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Cells and Robots
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Visual Guidance of Unmanned Aerial Manipulators
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Exoskeletons in Rehabilitation Robotics
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The DARPA Robotics Challenge Finals: Humanoid Robots To The Rescue
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Efficient Topology Estimation for Large Scale Optical Mapping
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Field and Service Robotics
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| Title | Distributed Autonomous Robotic Systems |
| Author | M Ani Hsieh |
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| Condition | Unavailable |
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| Cover note | Book picture is for illustrative purposes only, actual binding, cover or edition may vary. |
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