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Robust Planning for Autonomous Navigation of Mobile Robots in Unstructured, Dynamic Environments

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Release : 2002
Genre :
Kind : eBook
Book Rating : /5 ( reviews)

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Book Synopsis Robust Planning for Autonomous Navigation of Mobile Robots in Unstructured, Dynamic Environments by :

Download or read book Robust Planning for Autonomous Navigation of Mobile Robots in Unstructured, Dynamic Environments written by . This book was released on 2002. Available in PDF, EPUB and Kindle. Book excerpt: This report summarizes the analytical and experimental efforts for the Laboratory Directed Research and Development (LDRD) project entitled ''Robust Planning for Autonomous Navigation of Mobile Robots In Unstructured, Dynamic Environments (AutoNav)''. The project goal was to develop an algorithmic-driven, multi-spectral approach to point-to-point navigation characterized by: segmented on-board trajectory planning, self-contained operation without human support for mission duration, and the development of appropriate sensors and algorithms to navigate unattended. The project was partially successful in achieving gains in sensing, path planning, navigation, and guidance. One of three experimental platforms, the Minimalist Autonomous Testbed, used a repetitive sense-and-re-plan combination to demonstrate the majority of elements necessary for autonomous navigation. However, a critical goal for overall success in arbitrary terrain, that of developing a sensor that is able to distinguish true obstacles that need to be avoided as a function of vehicle scale, still needs substantial research to bring to fruition.

Autonomous Navigation in Dynamic Environments

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Author :
Release : 2007-10-14
Genre : Technology & Engineering
Kind : eBook
Book Rating : 228/5 ( reviews)

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Book Synopsis Autonomous Navigation in Dynamic Environments by : Christian Laugier

Download or read book Autonomous Navigation in Dynamic Environments written by Christian Laugier. This book was released on 2007-10-14. Available in PDF, EPUB and Kindle. Book excerpt: This book presents a foundation for a broad class of mobile robot mapping and navigation methodologies for indoor, outdoor, and exploratory missions. It addresses the challenging problem of autonomous navigation in dynamic environments, presenting new ideas and approaches in this emerging technical domain. Coverage discusses in detail various related challenging technical aspects and addresses upcoming technologies in this field.

Algorithms for Robust Autonomous Navigation in Human Environments

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Author :
Release : 2020
Genre :
Kind : eBook
Book Rating : /5 ( reviews)

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Book Synopsis Algorithms for Robust Autonomous Navigation in Human Environments by : Michael F. Everett

Download or read book Algorithms for Robust Autonomous Navigation in Human Environments written by Michael F. Everett. This book was released on 2020. Available in PDF, EPUB and Kindle. Book excerpt: Today’s robots are designed for humans, but are rarely deployed among humans. This thesis addresses problems of perception, planning, and safety that arise when deploying a mobile robot in human environments. A first key challenge is that of quickly navigating to a human-specified goal – one with known semantic type, but unknown coordinate – in a previously unseen world. This thesis formulates the contextual scene understanding problem as an image translation problem, by learning to estimate the planning cost-to-go from aerial images of similar environments. The proposed perception algorithm is united with a motion planner to reduce the amount of exploration time before finding the goal. In dynamic human environments, pedestrians also present several important technical challenges for the motion planning system. This thesis contributes a deep reinforcement learning-based (RL) formulation of the multiagent collision avoidance problem, with relaxed assumptions on the behavior model and number of agents in the environment. Benefits include strong performance among many nearby agents and the ability to accomplish long-term autonomy in pedestrian-rich environments. These and many other state-of-the-art robotics systems rely on Deep Neural Networks for perception and planning. However, blindly applying deep learning in safety-critical domains, such as those involving humans, remains dangerous without formal guarantees on robustness. For example, small perturbations to sensor inputs are often enough to change network-based decisions. This thesis contributes an RL framework that is certified robust to uncertainties in the observation space.

Adaptive State × Time Lattices: A Contribution to Mobile Robot Motion Planning in Unstructured Dynamic Environments

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Release : 2017-01-20
Genre : Electronic computers. Computer science
Kind : eBook
Book Rating : 800/5 ( reviews)

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Book Synopsis Adaptive State × Time Lattices: A Contribution to Mobile Robot Motion Planning in Unstructured Dynamic Environments by : Petereit, Janko

Download or read book Adaptive State × Time Lattices: A Contribution to Mobile Robot Motion Planning in Unstructured Dynamic Environments written by Petereit, Janko. This book was released on 2017-01-20. Available in PDF, EPUB and Kindle. Book excerpt: Mobile robot motion planning in unstructured dynamic environments is a challenging task. Thus, often suboptimal methods are employed which perform global path planning and local obstacle avoidance separately. This work introduces a holistic planning algorithm which is based on the concept of state.

Mobile Robots Navigation

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Author :
Release : 2020-11-13
Genre : Technology & Engineering
Kind : eBook
Book Rating : 706/5 ( reviews)

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Book Synopsis Mobile Robots Navigation by : Luis Payá

Download or read book Mobile Robots Navigation written by Luis Payá. This book was released on 2020-11-13. Available in PDF, EPUB and Kindle. Book excerpt: The presence of mobile robots in diverse scenarios is considerably increasing to perform a variety of tasks. Among them, many developments have occurred in the fields of ground, underwater, and flying robotics. Independent of the environment where they move, navigation is a fundamental ability of mobile robots so that they can autonomously complete high-level tasks. This problem can be efficiently addressed through the following actions: First, it is necessary to perceive the environment in which the robot has to move, and extract some relevant information (mapping problem). Second, the robot must be able to estimate its position and orientation within this environment (localization problem). With this information, a trajectory toward the target points must be planned (path planning), and the vehicle must be reactively guided along this trajectory considering either possible changes or interactions with the environment or with the user (control). Given this information, this book introduces current frameworks in these fields (mapping, localization, path planning, and control) and, in general, approaches to any problem related to the navigation of mobile robots, such as odometry, exploration, obstacle avoidance, and simulation.

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