1000 resultados para Robótica e Informática Industrial
Resumo:
3D crop reconstruction with a high temporal resolution and by the use of non-destructive measuring technologies can support the automation of plant phenotyping processes. Thereby, the availability of such 3D data can give valuable information about the plant development and the interaction of the plant genotype with the environment. This article presents a new methodology for georeferenced 3D reconstruction of maize plant structure. For this purpose a total station, an IMU, and several 2D LiDARs with different orientations were mounted on an autonomous vehicle. By the multistep methodology presented, based on the application of the ICP algorithm for point cloud fusion, it was possible to perform the georeferenced point clouds overlapping. The overlapping point cloud algorithm showed that the aerial points (corresponding mainly to plant parts) were reduced to 1.5%–9% of the total registered data. The remaining were redundant or ground points. Through the inclusion of different LiDAR point of views of the scene, a more realistic representation of the surrounding is obtained by the incorporation of new useful information but also of noise. The use of georeferenced 3D maize plant reconstruction at different growth stages, combined with the total station accuracy could be highly useful when performing precision agriculture at the crop plant level.
Resumo:
En los últimos tiempos los esfuerzos se están centrando en mejorar los métodos de interacción entre el humano y el robot. El objetivo es conseguir que esa relación parezca simple y que se produzca de la manera más natural posible entre el humano y el robot. Para ese fin se está investigando en métodos de reconocimiento e interpretación del lenguaje corporal, gestos, expresiones de la cara y de sonidos que emite el humano para que la máquina se de cuenta de las intenciones y deseos de los humanos sin recibir órdenes muy específicas. Por otro lado interesa saber cómo se podría aplicar estas técnicas a la comunicación entre robots, pensando aquí en grupos de robots que trabajan en equipos realizando tareas ya asignadas. Estas máquinas se tienen que comunicar para entender las situaciones, detectar necesidades puntuales (si una máquina falla y necesita refuerzo, si pasan acontecimientos inesperados) y reaccionar a ello. Ejecutar estas tareas y realizar las comunicaciones para desarrollar las tareas entre las máquinas resultan especialmente difíciles en entornos hostiles, p.ej. debajo del agua, por lo que el objetivo de este proyecto fin de carrera es investigar las posibles aplicaciones de las técnicas de comunicación entre humanos y máquinas a grupos de robots, como refuerzo o sustitución de los métodos de comunicación clásicos. ABSTRACT. During the last years, many efforts are made to improve the interaction between humans and robots. The aim is to make this relationship simpler and the most natural as possible. For these purpose investigations on the recognition and interpretation of body language, gestures, facial expressions etc are carried out, in order to understand human intentions and desires without receiving specific orders. On the other hand, it is of interest investigate how these techniques could be applied to the communication among robots themselves, e.g. groups of robots which are working in teams resolving certain tasks. These machines have to communicate in order to understand the situations, detect punctual necessities and react to them (e.g. if a machines fails and needs some support, or when some unexpected event happens). The execution of certain tasks and the involved communication, happen to be especially hard in hostile environments, i.e. under water. The objective of this final thesis is to investigate the possible applications of the communication techniques between human and machines to groups of robots, as reinforcement or substitution for the classical communication methods.
Resumo:
El presente proyecto tiene como objetivo la realización de un cuadricóptero de bajo coste desarrollado con herramientas de software libre, con el fin de permitir el acceso y modificación del mismo a cualquiera que posea los conocimientos necesarios. Los cuadricópteros se definen como un vehículo aéreo no tripulado con cuatro rotores en los extremos. Los ejemplos existentes de estos tipos de vehículos son casi siempre de grandes cuadricópteros, los cuales utilizan diferentes tecnologías en los motores y control de los mismos. Los cuadricópteros de similar tamaño al que se pretende realizar son por lo general de compañías con hardware y software cerrado. En el caso de este proyecto se ha realizado un cuadricóptero de tamaño menor a 5 x 5 cm. La innovación que se propone con este proyecto es una forma de detectar obstáculos para cuadricópteros de tamaño similar, en los que la limitación del peso del dron supone una disminución de las opciones disponibles. Se desea que el cuadricóptero sea capaz de realizar un vuelo estable detectando y esquivando obstáculos sin necesidad de ayuda externa como operadores con mando de radio frecuencia. Para la creación del cuadricóptero, se ha realizado tanto el diseño de los esquemáticos como el diseño de las huellas para la utilización en el desarrollo de la PCB. Para ello se ha hecho uso de herramientas de software libre como es Kicad, software para el desarrollo de esquemáticos y placas de circuito impreso con las funcionalidades principales de cualquier software privativo relacionado. Se pretende de esta forma aportar a la literatura, un aspecto práctico de la realización de cuadricópteros, tanto desde los aspectos teóricos del diseño como los aspectos prácticos de la fabricación y soldadura de los componentes del cuadricóptero. En la realización del presente proyecto se ha tenido en cuenta los diferentes algoritmos que existen para la fusión de datos de la unidad de medida inercial, tanto la facilidad de implementación de los mismos como la facilidad de los cálculos resultantes de esta implementación. Se ha hecho una implementación de un filtro complementario, dando resultados satisfactorios debido a las características intrínsecas de la unidad de medida inercial. Además del filtro complementario, se ha realizado una implementación del filtro diseñado por Sebastian Madgwick [1]. Este filtro está especialmente diseñado para la fusión de los datos provenientes de la unidad de medida inercial, proporcionando la orientación del sistema haciendo uso de la representación en cuaternios de los datos del acelerómetro y giróscopo, permitiendo el uso del método del gradiente para el cálculo del error del giróscopo. Para la selección de los componentes, se ha hecho un análisis pormenorizado de las diferentes opciones disponibles, tomando como punto de partida los cuadricópteros que existen en la actualidad. Se han elegido estos componentes en función de las características de los mismos, prestando especial atención al tamaño, relacionado directamente con el peso de los mismos así como del precio, para lograr un cuadricóptero fácilmente reproducible de bajo coste. En este análisis se ha tenido en cuenta las dificultades existentes en la selección de determinados componentes como son los motores y las hélices. Al ser estos dos componentes caracterizados mediante tablas creadas por los fabricantes y usuarios de los mismos, la selección de los mismos se ha visto dificultada a la hora de elegir componentes de coste reducido al poseer poca información sobre los mismos. En especial, las formulas desarrolladas para el cálculo del empuje de los motores están directamente relacionados con los parámetros de las hélices. Estos parámetros están caracterizados para la mayoría de las hélices comerciales utilizadas en cuadricópteros. Para caracterizar las hélices se utiliza un banco de trabajo en donde es posible medir el empuje realizado por el conjunto del motor y hélice. En el caso del presente proyecto, no se disponía de la herramienta necesaria por lo que se ha realizado una estimación de los parámetros en función de las tablas disponibles para hélices similares de mayor tamaño. Para la elección de los sensores para la detección de los obstáculos se ha realizado un estudio de los diferentes sensores disponibles, analizando las ventajas y desventajas de los mismos para la elección del más adecuado para el proyecto. Se ha decidido el uso de sensores de distancia basados en tecnología infrarroja por ser los únicos que se adaptan a los requisitos de peso impuesto por el modelo. Además en este proyecto se ha realizado el montaje y soldadura de los componentes de la PCB. Estos componentes al ser de tamaño reducido, se ha comprobado que para la soldadura de los mismos es necesario el uso de herramientas especializadas, como puede ser estaciones de soldadura y pistola de aire caliente lo que dificulta su soldadura de manera no profesional. Al término de este proyecto se ha comprobado la dificultad de la realización de una correcta soldadura de los componentes, lo que introduce errores de conectividad entre los componentes, en concreto se ha detectado errores entre el microprocesador y unidad de medida inercial. Además de estos errores, se ha comprobado la dificultad de regular el sistema, no logrando un vuelo estable en el tiempo de escritura del presente proyecto. Por último se presenta el prototipo creado a lo largo del proyecto, al cual se le pueden hacer diferentes modificaciones como posibles líneas futuras, entre las que se encuentran una mejor regulación que permita el vuelo de un conjunto de drones.
Resumo:
Currently, there is a plethora of solutions regarding interconnectivity and interoperability for networked robots so that they will fulfill their purposes in a coordinated manner. In addition to that, middleware architectures are becoming increasingly popular due to the advantages that they are capable of guaranteeing (hardware abstraction, information homogenization, easy access for the applications above, etc.). However, there are still scarce contributions regarding the global state of the art in intermediation architectures for underwater robotics. As far as the area of robotics is concerned, this is a major issue that must be tackled in order to get a holistic view of the existing proposals. This challenge is addressed in this paper by studying the most compelling pieces of work for this kind of software development in the current literature. The studied works have been assessed according to their most prominent features and capabilities. Furthermore, by studying the individual pieces of work and classifying them several common weaknesses have been revealed and are highlighted. This provides a starting ground for the development of a middleware architecture for underwater robotics capable of dealing with these issues.
Resumo:
Underwater acoustic sensor networks (UASNs) have become more and more important in ocean exploration applications, such as ocean monitoring, pollution detection, ocean resource management, underwater device maintenance, etc. In underwater acoustic sensor networks, since the routing protocol guarantees reliable and effective data transmission from the source node to the destination node, routing protocol design is an attractive topic for researchers. There are many routing algorithms have been proposed in recent years. To present the current state of development of UASN routing protocols, we review herein the UASN routing protocol designs reported in recent years. In this paper, all the routing protocols have been classified into different groups according to their characteristics and routing algorithms, such as the non-cross-layer design routing protocol, the traditional cross-layer design routing protocol, and the intelligent algorithm based routing protocol. This is also the first paper that introduces intelligent algorithm-based UASN routing protocols. In addition, in this paper, we investigate the development trends of UASN routing protocols, which can provide researchers with clear and direct insights for further research.
Resumo:
In this work is addressed the topic of estimation of velocity and acceleration from digital position data. It is presented a review of several classic methods and implemented with real position data from a low cost digital sensor of a hydraulic linear actuator. The results are analyzed and compared. It is shown that static methods have a limited bandwidth application, and that the performance of some methods may be enhanced by adapting its parameters according to the current state.
Resumo:
This paper discusses the target localization problem in wireless visual sensor networks. Additive noises and measurement errors will affect the accuracy of target localization when the visual nodes are equipped with low-resolution cameras. In the goal of improving the accuracy of target localization without prior knowledge of the target, each node extracts multiple feature points from images to represent the target at the sensor node level. A statistical method is presented to match the most correlated feature point pair for merging the position information of different sensor nodes at the base station. Besides, in the case that more than one target exists in the field of interest, a scheme for locating multiple targets is provided. Simulation results show that, our proposed method has desirable performance in improving the accuracy of locating single target or multiple targets. Results also show that the proposed method has a better trade-off between camera node usage and localization accuracy.
Resumo:
The field of exoskeletons and wearable devices for walking assistance and rehabilitation has advanced considerably over the past few years. Currently, commercial devices contain joints with stiff actuators that cannot adapt to unpredictable environments. These actuators consume more energy and may not be appropriate for human-machine interactions. Thus, adjustable compliant actuators are being cautiously incorporated into new exoskeletons and active orthoses. Some simulation-based studies have evaluated the benefits of incorporating compliant joints into such devices. Another reason that compliant actuators are desirable is that spasticity and spasmodic movements are common among patients with motor deficiencies; compliant actuators could efficiently absorb these perturbations and improve joint control. In this paper, we provide an overview of the requirements that must be fulfilled by these actuators while evaluating the behavior of leg joints in the locomotion cycle. A brief review of existing compliant actuators is conducted, and our proposed variable stiffness actuator prototype is presented and evaluated. The actuator prototype is implemented in an exoskeleton knee joint operated by a state machine that exploits the dynamics of the leg, resulting in a reduction in actuation energy demand and better adaptability to disturbances.
Resumo:
This work presents a systematic process for building a Fault Diagnoser (FD), based on Petri Nets (PNs) which has been applied to a small helicopter. This novel tool is able to detect both intermittent and permanent faults. The work carried out is discussed from theoretical and practical point of view. The procedure begins with a division of the whole system into subsystems, which are the devices that have to be modeled by using PN, considering both the normal and fault operations. Subsequently, the models are integrated into a global Petri Net diagnoser (PND) that is able to monitor a whole helicopter and show critical variables to the operator in order to determine the UAV health, preventing accidents in this manner. A Data Acquisition System (DAQ) has been designed for collecting data during the flights and feeding PN diagnoser with them. Several real flights (nominal or under failure) have been carried out to perform the diagnoser setup and verify its performance. A summary of the validation results obtained during real flight tests is also included. An extensive use of this tool will improve preventive maintenance protocols for UAVs (especially helicopters) and allow establishing recommendations in regulations
Resumo:
This paper presents an online C compiler designed so that students can program their practical assignments in Programming courses. What is really innovative is the self-assessment of the exercises based on black-box tests and train students’ skill to test software. Moreover, this tool lets instructors, not only proposing and classifying practical exercises, but also evaluating automatically the efforts dedicated and the results obtained by the students. The system has been applied to the 1st-year students at the Industrial Engineering specialization at the Universidad Politecnica de Madrid. Results show that the students obtained better academic performance, reducing the failure rate in the practical exam considerably with respect to previous years, in addition that an anonymous survey proved that students are satisfied with the system because they get instant feedback about their programs.
Resumo:
This paper presents an approach for the detection, localization and following of dynamic terrestrial objects using a mini-UAV. The development is intended to be used for surveillance of large infrastructures. The detection algorithm is based on finding several pre-defined characteristics of the target, such as color, shape and size. The process used to localize the target, once it is detected, is based on an inversion of the Pinhole camera model. The task of following the Summit XL was designed to keep the target inside the field of view of the camera, and it was implemented in the form of a PID controller. The system has been tested both in simulation and with real robots, showing promising results.
Resumo:
Multiple robot, single operator scenarios suppose a challenge in terms of human factors. Two relevant issues are keeping the situational awareness and managing the workload of operators. In order to address these problems, this work analyses the management of information and commands in multi-robot missions. About the information, this paper proposes a selection based on mission and operator states. Regarding the commands, this work reflects about the levels of automation and the methods of commanding.
Resumo:
The interest in missions with multiple Unmanned Aerial Vehicles (UAVs) has increased significantly in last years. These missions take advantage of the use of fleets instead of single UAVs to ensure the success, reduce the duration or increase the goals of the mission. In addition, they allow performing tasks that require multiple agents and certain coordination (e.g. surveillance of large areas or transport of heavy loads). Nevertheless, these missions suppose a challenge in terms of control and monitoring. In fact, the workload of the operators rises with the utilization of multiple UAVs and payloads, since they have to analyze more information, make more decisions and generate more commands during the mission. This work addresses the operator workload problem in multi-UAV missions by reducing and selecting the information. Two approaches are considered: a first one that selects the information according to the mission state, and a second one that selects it according to the operator preferences. The result is an interface that is able to control the amount of information and show what is relevant for mission and operator at the time.
Resumo:
This study focuses on the relationship between CO2 production and the ultimate hatchability of the incubation. A total amount of 43316 eggs of red-legged partridge (Alectoris rufa) were supervised during five actual incubations: three in 2012 and two in 2013. The CO2 concentration inside the incubator was monitored over a 20-day period, showing sigmoidal growth from ambient level (428 ppm) up to 1700 ppm in the incubation with the highest hatchability. Two sigmoid growth models (logistic and Gompertz) were used to describe the CO2 production by the eggs, with the result that the logistic model was a slightly better fit (r2=0.976 compared to r2=0.9746 for Gompertz). A coefficient of determination of 0.997 between the final CO2 estimation (ppm) using the logistic model and hatchability (%) was found.
Resumo:
During the process of design and development of an autonomous Multi-UAV System, two main problems appear. The first one is the difficulty of designing all the modules and behaviors of the aerial multi-robot system. The second one is the difficulty of having an autonomous prototype of the system for the developers that allows to test the performance of each module even in an early stage of the project. These two problems motivate this paper. A multipurpose system architecture for autonomous multi-UAV platforms is presented. This versatile system architecture can be used by the system designers as a template when developing their own systems. The proposed system architecture is general enough to be used in a wide range of applications, as demonstrated in the paper. This system architecture aims to be a reference for all designers. Additionally, to allow for the fast prototyping of autonomous multi-aerial systems, an Open Source framework based on the previously defined system architecture is introduced. It allows developers to have a flight proven multi-aerial system ready to use, so that they can test their algorithms even in an early stage of the project. The implementation of this framework, introduced in the paper with the name of “CVG Quadrotor Swarm”, which has also the advantages of being modular and compatible with different aerial platforms, can be found at https://github.com/Vision4UAV/cvg_quadrotor_swarm with a consistent catalog of available modules. The good performance of this framework is demonstrated in the paper by choosing a basic instance of it and carrying out simulation and experimental tests whose results are summarized and discussed in this paper.