902 resultados para flying robots
Resumo:
Honeybees rely primarily on the oxidation of hexose sugars to provide the energy required for flight. Measurement of VCO2 (equal to VO2, because VCO2/VO2 = 1.0 during carbohydrate oxidation) during flight allowed estimation of steady-state flux rates through pathways of flight muscle energy metabolism. Comparison of Vmax values for flight muscle hexokinase, phosphofructokinase, citrate synthase, and cytochrome c oxidase with rates of carbon and O2 flux during flight reveal that these enzymes operate closer to Vmax in the flight muscles of flying honeybees than in other muscles previously studied. Possible mechanistic and evolutionary implications of these findings are discussed.
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The study of psychopathy is still in early stages with regard to gender differences. Historically, the majority of research has been conducted on male populations, resulting in a gender-biased construct that does not appear to be generalizable to female populations. This paper provides a review of the existing literature on psychopathy, as well as research on inherent gender differences (biology, chemistry, socialization, etc.). Connections between these bodies of research are supposed and suggestions for future study are provided.
Resumo:
El control seguro y efectivo de las malas hierbas según los principios establecidos por la Agricultura de Precisión requiere una tecnología específica, avanzada y de coste asumible dentro de los márgenes de beneficio. El uso de plataformas móviles autónomas tanto terrestres como aéreas equipadas con sistemas de percepción innovadores, sistemas inteligentes de toma de decisión y herramientas que permitan la aplicación precisa de los tratamientos herbicidas, reduce el coste asociado a la operación así como los potenciales daños ambientales y el riesgo para los agricultores. Varios son los grupos internacionales de investigación dedicados al desarrollo de tecnologías basadas en sistemas robóticos capaces de optimizar las operaciones complejas implicadas en este tipo de tratamientos de precisión. El desarrollo de sistemas autónomos de ayuda al tratamiento preciso, tanto de cultivos extensivos (malas hierbas) como de leñosos, es el objetivo principal del proyecto RHEA (Robot Fleets for Highly Effective Agriculture and Forestry Management), financiado por el 7º Programa Marco de la CE y dirigido a minimizar los insumos (agroquímicos, combustible, etc.) a la vez que garantizar la calidad y seguridad del producto así como cubrir totalmente el campo independientemente del tamaño que éste tenga. RHEA propone utilizar una flota de robots pequeños/medianos tanto aéreos como terrestres para la inspección/monitorización y posterior aplicación de fitosanitarios, lo que presenta múltiples ventajas frente al tratamiento basado en la habitual máquina de mayores dimensiones y más tradicional. Entre otras, una flota de robots de tamaño pequeño/mediano reduce el impacto sobre la compactación del suelo e interactúa de un modo más seguro con los operarios, ya que la detección e interacción se puede distribuir en varios sistemas de detección y gestión de fallos como los propuestos en la presente tesis. El trabajo de investigación presentado en esta tesis se ha desarrollado dentro de este proyecto europeo y está relacionado con el diseño, desarrollo y evaluación del nivel más alto de la arquitectura RHEA, en otras palabras, con los tres aspectos fundamentales para conseguir que los robots de la flota ejecuten el trabajo eficientemente y sin intervención humana, es decir, con la planificación, la supervisión y la gestión completa e integrada de las tareas de inspección y tratamiento...
Resumo:
This paper expands on a theoretical model that is used for aerial robots that are working cooperatively to complete a task. In certain situations, such as when multiple robots have catastrophic failures, the surviving robots could become isolated so that they never again communicate with another robot. We prove some properties about isolated robots flying in a grid formation, and we present an algorithm that determines how many robots need to fail to isolate at least one robot. Finally, we propose a strategy that eliminates the possibility of isolation altogether.
Resumo:
Comunicación presentada en el I Congrés Català d’Intel·ligència Artificial, Tarragona, Octubre de 1998.
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Robotics is an emerging field with great activity. Robotics is a field that presents several problems because it depends on a large number of disciplines, technologies, devices and tasks. Its expansion from perfectly controlled industrial environments toward open and dynamic environment presents a many new challenges. New uses are, for example, household robots or professional robots. To facilitate the low cost, rapid development of robotic systems, reusability of code, its medium and long term maintainability and robustness are required novel approaches to provide generic models and software systems who develop paradigms capable of solving these problems. For this purpose, in this paper we propose a model based on multi-agent systems inspired by the human nervous system able to transfer the control characteristics of the biological system and able to take advantage of the best properties of distributed software systems. Specifically, we model the decentralized activity and hormonal variation.
Resumo:
Humans and machines have shared the same physical space for many years. To share the same space, we want the robots to behave like human beings. This will facilitate their social integration, their interaction with humans and create an intelligent behavior. To achieve this goal, we need to understand how human behavior is generated, analyze tasks running our nerves and how they relate to them. Then and only then can we implement these mechanisms in robotic beings. In this study, we propose a model of competencies based on human neuroregulator system for analysis and decomposition of behavior into functional modules. Using this model allow separate and locate the tasks to be implemented in a robot that displays human-like behavior. As an example, we show the application of model to the autonomous movement behavior on unfamiliar environments and its implementation in various simulated and real robots with different physical configurations and physical devices of different nature. The main result of this study has been to build a model of competencies that is being used to build robotic systems capable of displaying behaviors similar to humans and consider the specific characteristics of robots.
Resumo:
This paper presents a new dynamic visual control system for redundant robots with chaos compensation. In order to implement the visual servoing system, a new architecture is proposed that improves the system maintainability and traceability. Furthermore, high performance is obtained as a result of parallel execution of the different tasks that compose the architecture. The control component of the architecture implements a new visual servoing technique for resolving the redundancy at the acceleration level in order to guarantee the correct motion of both end-effector and joints. The controller generates the required torques for the tracking of image trajectories. However, in order to guarantee the applicability of this technique, a repetitive path tracked by the robot-end must produce a periodic joint motion. A chaos controller is integrated in the visual servoing system and the correct performance is observed in low and high velocities. Furthermore, a method to adjust the chaos controller is proposed and validated using a real three-link robot.
Control and Guidance of Low-Cost Robots via Gesture Perception for Monitoring Activities in the Home
Resumo:
This paper describes the development of a low-cost mini-robot that is controlled by visual gestures. The prototype allows a person with disabilities to perform visual inspections indoors and in domestic spaces. Such a device could be used as the operator's eyes obviating the need for him to move about. The robot is equipped with a motorised webcam that is also controlled by visual gestures. This camera is used to monitor tasks in the home using the mini-robot while the operator remains quiet and motionless. The prototype was evaluated through several experiments testing the ability to use the mini-robot’s kinematics and communication systems to make it follow certain paths. The mini-robot can be programmed with specific orders and can be tele-operated by means of 3D hand gestures to enable the operator to perform movements and monitor tasks from a distance.