19 resultados para Model transformation learning
em Universidad Politécnica de Madrid
Resumo:
This paper analyzes the role of Computer Algebra Systems (CAS) in a model of learning based on competences. The proposal is an e-learning model Linear Algebra course for Engineering, which includes the use of a CAS (Maxima) and focuses on problem solving. A reference model has been taken from the Spanish Open University. The proper use of CAS is defined as an indicator of the generic ompetence: Use of Technology. Additionally, we show that using CAS could help to enhance the following generic competences: Self Learning, Planning and Organization, Communication and Writing, Mathematical and Technical Writing, Information Management and Critical Thinking.
Resumo:
Los sistemas técnicos son cada vez más complejos, incorporan funciones más avanzadas, están más integrados con otros sistemas y trabajan en entornos menos controlados. Todo esto supone unas condiciones más exigentes y con mayor incertidumbre para los sistemas de control, a los que además se demanda un comportamiento más autónomo y fiable. La adaptabilidad de manera autónoma es un reto para tecnologías de control actualmente. El proyecto de investigación ASys propone abordarlo trasladando la responsabilidad de la capacidad de adaptación del sistema de los ingenieros en tiempo de diseño al propio sistema en operación. Esta tesis pretende avanzar en la formulación y materialización técnica de los principios de ASys de cognición y auto-consciencia basadas en modelos y autogestión de los sistemas en tiempo de operación para una autonomía robusta. Para ello el trabajo se ha centrado en la capacidad de auto-conciencia, inspirada en los sistemas biológicos, y se ha explorado la posibilidad de integrarla en la arquitectura de los sistemas de control. Además de la auto-consciencia, se han explorado otros temas relevantes: modelado funcional, modelado de software, tecnología de los patrones, tecnología de componentes, tolerancia a fallos. Se ha analizado el estado de la técnica en los ámbitos pertinentes para las cuestiones de la auto-consciencia y la adaptabilidad en sistemas técnicos: arquitecturas cognitivas, control tolerante a fallos, y arquitecturas software dinámicas y computación autonómica. El marco teórico de ASys existente de sistemas autónomos cognitivos ha sido adaptado para servir de base para este análisis de autoconsciencia y adaptación y para dar sustento conceptual al posterior desarrollo de la solución. La tesis propone una solución general de diseño para la construcción de sistemas autónomos auto-conscientes. La idea central es la integración de un meta-controlador en la arquitectura de control del sistema autónomo, capaz de percibir la estado funcional del sistema de control y, si es necesario, reconfigurarlo en tiempo de operación. Esta solución de metacontrol se ha formalizado en cuatro patrones de diseño: i) el Patrón Metacontrol, que define la integración de un subsistema de metacontrol, responsable de controlar al propio sistema de control a través de la interfaz proporcionada por su plataforma de componentes, ii) el patrón Bucle de Control Epistémico, que define un bucle de control cognitivo basado en el modelos y que se puede aplicar al diseño del metacontrol, iii) el patrón de Reflexión basada en Modelo Profundo propone una solución para construir el modelo ejecutable utilizado por el meta-controlador mediante una transformación de modelo a modelo a partir del modelo de ingeniería del sistema, y, finalmente, iv) el Patrón Metacontrol Funcional, que estructura el meta-controlador en dos bucles, uno para el control de la configuración de los componentes del sistema de control, y otro sobre éste, controlando las funciones que realiza dicha configuración de componentes; de esta manera las consideraciones funcionales y estructurales se desacoplan. La Arquitectura OM y el metamodelo TOMASys son las piezas centrales del marco arquitectónico desarrollado para materializar la solución compuesta de los patrones anteriores. El metamodelo TOMASys ha sido desarrollado para la representación de la estructura y su relación con los requisitos funcionales de cualquier sistema autónomo. La Arquitectura OM es un patrón de referencia para la construcción de una metacontrolador integrando los patrones de diseño propuestos. Este meta-controlador se puede integrar en la arquitectura de cualquier sistema control basado en componentes. El elemento clave de su funcionamiento es un modelo TOMASys del sistema decontrol, que el meta-controlador usa para monitorizarlo y calcular las acciones de reconfiguración necesarias para adaptarlo a las circunstancias en cada momento. Un proceso de ingeniería, complementado con otros recursos, ha sido elaborado para guiar la aplicación del marco arquitectónico OM. Dicho Proceso de Ingeniería OM define la metodología a seguir para construir el subsistema de metacontrol para un sistema autónomo a partir del modelo funcional del mismo. La librería OMJava proporciona una implementación del meta-controlador OM que se puede integrar en el control de cualquier sistema autónomo, independientemente del dominio de la aplicación o de su tecnología de implementación. Para concluir, la solución completa ha sido validada con el desarrollo de un robot móvil autónomo que incorpora un meta-controlador con la Arquitectura OM. Las propiedades de auto-consciencia y adaptación proporcionadas por el meta-controlador han sido validadas en diferentes escenarios de operación del robot, en los que el sistema era capaz de sobreponerse a fallos en el sistema de control mediante reconfiguraciones orquestadas por el metacontrolador. ABSTRACT Technical systems are becoming more complex, they incorporate more advanced functionalities, they are more integrated with other systems and they are deployed in less controlled environments. All this supposes a more demanding and uncertain scenario for control systems, which are also required to be more autonomous and dependable. Autonomous adaptivity is a current challenge for extant control technologies. The ASys research project proposes to address it by moving the responsibility for adaptivity from the engineers at design time to the system at run-time. This thesis has intended to advance in the formulation and technical reification of ASys principles of model-based self-cognition and having systems self-handle at runtime for robust autonomy. For that it has focused on the biologically inspired capability of self-awareness, and explored the possibilities to embed it into the very architecture of control systems. Besides self-awareness, other themes related to the envisioned solution have been explored: functional modeling, software modeling, patterns technology, components technology, fault tolerance. The state of the art in fields relevant for the issues of self-awareness and adaptivity has been analysed: cognitive architectures, fault-tolerant control, and software architectural reflection and autonomic computing. The extant and evolving ASys Theoretical Framework for cognitive autonomous systems has been adapted to provide a basement for this selfhood-centred analysis and to conceptually support the subsequent development of our solution. The thesis proposes a general design solution for building self-aware autonomous systems. Its central idea is the integration of a metacontroller in the control architecture of the autonomous system, capable of perceiving the functional state of the control system and reconfiguring it if necessary at run-time. This metacontrol solution has been formalised into four design patterns: i) the Metacontrol Pattern, which defines the integration of a metacontrol subsystem, controlling the domain control system through an interface provided by its implementation component platform, ii) the Epistemic Control Loop pattern, which defines a modelbased cognitive control loop that can be applied to the design of such a metacontroller, iii) the Deep Model Reflection pattern proposes a solution to produce the online executable model used by the metacontroller by model-to-model transformation from the engineering model, and, finally, iv) the Functional Metacontrol pattern, which proposes to structure the metacontroller in two loops, one for controlling the configuration of components of the controller, and another one on top of the former, controlling the functions being realised by that configuration; this way the functional and structural concerns become decoupled. The OM Architecture and the TOMASys metamodel are the core pieces of the architectural framework developed to reify this patterned solution. The TOMASys metamodel has been developed for representing the structure and its relation to the functional requirements of any autonomous system. The OM architecture is a blueprint for building a metacontroller according to the patterns. This metacontroller can be integrated on top of any component-based control architecture. At the core of its operation lies a TOMASys model of the control system. An engineering process and accompanying assets have been constructed to complete and exploit the architectural framework. The OM Engineering Process defines the process to follow to develop the metacontrol subsystem from the functional model of the controller of the autonomous system. The OMJava library provides a domain and application-independent implementation of an OM Metacontroller than can be used in the implementation phase of OMEP. Finally, the complete solution has been validated in the development of an autonomous mobile robot that incorporates an OM metacontroller. The functional selfawareness and adaptivity properties achieved thanks to the metacontrol system have been validated in different scenarios. In these scenarios the robot was able to overcome failures in the control system thanks to reconfigurations performed by the metacontroller.
Resumo:
Desde mediados de los 90, gracias a las posibilidades de la World Wide Web, se liberó la cartografía de su dependencia del medio físico, posibilitando el acceso y visualización de millones de mapas almacenados en formatos gráficos a través de Internet. En este contexto, el papel de la Información Geográfica (IG) en la vida cotidiana adquirió relevancia en la medida que el acceso a la misma resultaba cada vez más fácil gracias a múltiples herramientas y aplicaciones para distribuir y acercar los mapas en distintos formatos a la sociedad en general. Sin embargo, dado que esa información enseguida pasaba a estar desactualizada, surgió una demanda desde distintos ámbitos (seguridad, medio ambiente transporte, servicios, etc.) y de la sociedad en general para disponer de la información más actual. Como respuesta a esta demanda, surgen las iniciativas denominadas Infraestructuras de Datos Espaciales (IDE). Estas iniciativas, mediante la acción coordinada de un conjunto de tecnologías, estándares, normas y políticas, brindan la posibilidad a los usuarios de acceder, a través de Internet, a IG actualizada producida por instituciones y organismos oficiales, en un marco colaborativo y sustentada en una estructura organizativa. En este contexto, el ámbito educativo no ha permanecido ajeno representando uno de los espacios más propicios para la difusión de las potencialidades y usos de las IDE. En esta tesis se propone la utilización de las IDE en el contexto educativo, específicamente en la Educación Secundaria Obligatoria (ESO). Utilizar las IDE en el contexto educativo implica asignarle un papel en el proceso de enseñanza-aprendizaje y en el marco de esta tesis se presentan los fundamentos teóricos que permiten afirmar que las IDE son un re-curso educativo que responde a las características de las Tecnologías de la Información y la Comunicación (TIC). Esto se explicita a través de un concepto más amplio que hemos denominado “recurso educativo TIC”. En este contexto se analizan las posibilidades que ofrece las IDE para alcanzar los objetivos de aprendizaje de asignaturas de la ESO relacionadas con IG y se identifican contenidos susceptibles de ser abordados utilizándolas. Por otra parte, atendiendo al modelo educativo del aprendizaje basado en competencias, se exponen las posibilidades y potencialidades que ofrecen las IDE para desarrollar la competencia digital. Una vez planteado el marco teórico se desarrollaron dos estrategias de formación y difusión de las IDE orientadas al profesorado de la ESO. En primer lugar, utilizando el Modelo de Diseño Instruccional ADDIE, se diseñaron, desarrollaron, implementaron y evaluaron tres cursos e-learning para el profesorado de ESO de las asignaturas Ciencias Sociales, Ciencias de la Naturaleza y Tecnología. En segundo lugar, con objetivo de complementar los resultados obtenidos de los cursos e-learning, se realizó una actividad en dos Institutos de Educación Secundaria orientada a difundir las IDE. La puesta en práctica de estas estrategias ofreció al profesorado la información necesaria sobre qué son las IDE y proporcionó ejemplos concretos de uso de las mismas en su asignatura, permitiéndoles disponer de los conocimientos e información para emitir una valoración sobre las posibilidades que ofrecen las IDE como un recurso educativo TIC. Since about the middle of the 1990 decade, owing to the potential of the World Wide Web, cartography freed itself from its dependence on its physical support, enabling the access and visualisation of millions of maps stored in graphical formats through the Internet. In this context, the role of Geographic Information (GI) in daily life became relevant in as much as its access turned out to be ever easier due to multiple tools and applications to distribute and bring maps in different formats closer to society in general. Yet, since the information available often became outdated, a demand for updated information arose from different specific fields (security, environment, transport, services, etc.) and from the general public. As a response to this demand, the so-called Spatial Data Infrastructure (SDI) initiatives arose which, through the coordinated action of a set of technologies, stan-dards, and policies, enabled users to access updated GI created by organisations and official institutions, through the Internet, within a cooperative framework and an organisational structure. In this context the educational world has not remained aloof, since it represented one of the most propitious scope for the dissemination of the potentials and uses of SDI. In this thesis the utilization of SDI in the educational context is proposed, specifically in the Spanish Compulsory Secondary Education (Educación Secundaria Obligatoria – ESO). This utilization implies assigning SDI a role in the teaching-learning process; here the theo-retical foundation is presented which allows asserting that SDI is an educational resource fitting in with the characteristics of the Information and Communication Technologies (ICT). This is made explicit by means of a broader concept we have called “ICT educa-tional resource”. The possibilities offered by SDI to reach the objective of learning ESO subjects related to GI are analyzed, and contents apt to be addressed by using them are identified. On the other hand, attending to the educational model of learning based on competences, the possibilities and potentials the SDI offer to develop the digital compe-tence are exposed. After having set forth the theoretical frame, two strategies of training and dissemination of SDI were developed, oriented to the ESO teaching staff. First, using the ADDIE Instruc-tional Design Model, three learning courses were designed, developed, implemented and evaluated for the ESO teaching staff in the subjects of Social Sciences, Natural Sciences and Technology. In the second place, with the purpose of supplementing the results ob-tained from the e-learning courses, an activity was carried out in two High Schools, ori-ented to disseminate the SDI. The implementation of these strategies offered the teaching staff the needed information concerning the SDI and provided specific instances of utilisa-tion thereof in their subject, thus enabling them to acquire the knowledge and information to issue an assessment of the possibilities the SDI offer as an ICT educational resource
Resumo:
En el marco del Espacio Europeo de Educación Superior los estudios deben de estar orientados a facilitar la movilidad de los futuros egresados para que su inclusión en mundo laboral sea global y en este contexto, los sistemas educativos deben introducir cambios en el proceso de enseñanza – aprendizaje y en la gestión. Como uno de los elementos básicos de la creación del EEES es el aprendizaje a lo largo de la vida, se deben adoptar metodologías que doten al estudiante de capacidades para poder enfrentarse a todos los retos de la vida laboral. A través de la presente investigación se trata de aportar una visión real de la aplicación efectiva de un modelo de Aprendizaje Basado en Problemas y el Método del Caso acompañados de una fuerte Acción Tutorial y el uso de la Tecnología de la Información y Comunicación en la Universidad (TIC). Se considera asimismo de gran interés para la mejora del aprendizaje conocer cuál es la opinión real de los estudiantes universitarios, ya que son los principales implicados en relación a un modelo formativo apoyado en el Aprendizaje Basado en Problemas, el Método del Caso, la Acción Tutorial y utilización de las TIC. A través de este estudio se pretende comprobar y valorar cual es la visión real que los alumnos tienen de estas aplicaciones y como las utilizan. Para ello durante los últimos cursos se ha trabajado con alumnos de los últimos cursos de la Escuela Técnica Superior de Ingeniería Civil de la Universidad Politécnica de Madrid aplicando técnicas de Aprendizaje Basado en Problemas y el Método del Caso conjuntamente con la utilización de un Modelo de Acción Tutorial y el uso de la TIC. La tarea se ha centrado en desarrollar, a lo largo de los cursos 2009-10, 2010-11, 2011-12 y 2013-14, un modelo de Acción Tutorial con los alumnos matriculados en las asignaturas de Caminos I, Caminos II, Aforos y Ordenación del Tráfico, asignaturas de la titulación de Ingeniería Técnica de Obras Públicas, y por otro lado, en la asignatura de Caminos, perteneciente a la titulación de Ingeniería Civil. Mediante cuestionarios al inicio y final del curso, se ha conocido cuál es la opinión que poseen los alumnos sobre esta acción. A continuación, durante los cursos 2010-11, 2011-12 y 2013-14 se desarrolla un modelo experimental para evaluar las mejoras, tanto de rendimiento como de adquisición de competencias, utilizando el Aprendizaje Basado en Problemas y el Método del Caso acompañados de las TIC en el proceso de enseñanza–aprendizaje como modelo de Acción Tutorial con alumnos. ABSTRACT Abstract In the frame of the European Higher Education Area, the studies must be faced to facilitate mobility of future graduates for inclusion in the workplace is global and in this context, educational systems must introduce changes in the process of education-learning and management. Since one of the basic elements of the creation of the EHEA is learning throughout life, there must be adopted methodologies that provide the student of aptitudes to be able to face all the challenges of the labor life. Through this research it is provided a real vision of the effective application of a Model of Learning Based on Problems and the Case Method accompanied by a strong Tutorial Action and the use of ITC in the University. It is also considered of great interest for the improvement of learning to know what the real opinion of the college students is, as they are the main players in relation in a training model based on Problem-Based Learning, the Case Method, the Tutorial Action and Use of ICT. Through this study it is expected to verify and assess which is the real vision that students have about these applications and how they use them. In order to achieve the goal of this research project, during the last three years I have been working with students of last courses of the Civil Engineering School of the Technical University of Madrid applying with them techniques of Problem-Based Learning and the Case Method together with the use of a Model Action Tutorial and the Use of Information Technology and Communication (ICT). The task has focused on developing, over the 2009-10, 2010-11, 2011-12 and 2013-14 courses, a model of Tutorial Action with students enrolled in the subjects of Roads I, Roads II, Traffic Gauging and Traffic Management, all of them of the old degree in Civil Engineering (1971 Study Plan), and secondly, on the subject of Roads which belong to the current degree of Civil Engineering. Using questionnaires at the beginning and end of the course the perception that students have on this action.. Then, during the 2010-11, 2011-12 and 2013-14 courses an experimental model is developed to evaluate improvements in both performance and skills acquisition, using Problem-Based Learning and the Case Method together with the ICT in Teaching-Learning Pprocess as a model of Tutorial Action with students.
Resumo:
El concepto de algoritmo es básico en informática, por lo que es crucial que los alumnos profundicen en él desde el inicio de su formación. Por tanto, contar con una herramienta que guíe a los estudiantes en su aprendizaje puede suponer una gran ayuda en su formación. La mayoría de los autores coinciden en que, para determinar la eficacia de una herramienta de visualización de algoritmos, es esencial cómo se utiliza. Así, los estudiantes que participan activamente en la visualización superan claramente a los que la contemplan de forma pasiva. Por ello, pensamos que uno de los mejores ejercicios para un alumno consiste en simular la ejecución del algoritmo que desea aprender mediante el uso de una herramienta de visualización, i. e. consiste en realizar una simulación visual de dicho algoritmo. La primera parte de esta tesis presenta los resultados de una profunda investigación sobre las características que debe reunir una herramienta de ayuda al aprendizaje de algoritmos y conceptos matemáticos para optimizar su efectividad: el conjunto de especificaciones eMathTeacher, además de un entorno de aprendizaje que integra herramientas que las cumplen: GRAPHs. Hemos estudiado cuáles son las cualidades esenciales para potenciar la eficacia de un sistema e-learning de este tipo. Esto nos ha llevado a la definición del concepto eMathTeacher, que se ha materializado en el conjunto de especificaciones eMathTeacher. Una herramienta e-learning cumple las especificaciones eMathTeacher si actúa como un profesor virtual de matemáticas, i. e. si es una herramienta de autoevaluación que ayuda a los alumnos a aprender de forma activa y autónoma conceptos o algoritmos matemáticos, corrigiendo sus errores y proporcionando pistas para encontrar la respuesta correcta, pero sin dársela explícitamente. En estas herramientas, la simulación del algoritmo no continúa hasta que el usuario introduce la respuesta correcta. Para poder reunir en un único entorno una colección de herramientas que cumplan las especificaciones eMathTeacher hemos creado GRAPHs, un entorno ampliable, basado en simulación visual, diseñado para el aprendizaje activo e independiente de los algoritmos de grafos y creado para que en él se integren simuladores de diferentes algoritmos. Además de las opciones de creación y edición del grafo y la visualización de los cambios producidos en él durante la simulación, el entorno incluye corrección paso a paso, animación del pseudocódigo del algoritmo, preguntas emergentes, manejo de las estructuras de datos del algoritmo y creación de un log de interacción en XML. Otro problema que nos planteamos en este trabajo, por su importancia en el proceso de aprendizaje, es el de la evaluación formativa. El uso de ciertos entornos e-learning genera gran cantidad de datos que deben ser interpretados para llegar a una evaluación que no se limite a un recuento de errores. Esto incluye el establecimiento de relaciones entre los datos disponibles y la generación de descripciones lingüísticas que informen al alumno sobre la evolución de su aprendizaje. Hasta ahora sólo un experto humano era capaz de hacer este tipo de evaluación. Nuestro objetivo ha sido crear un modelo computacional que simule el razonamiento del profesor y genere un informe sobre la evolución del aprendizaje que especifique el nivel de logro de cada uno de los objetivos definidos por el profesor. Como resultado del trabajo realizado, la segunda parte de esta tesis presenta el modelo granular lingüístico de la evaluación del aprendizaje, capaz de modelizar la evaluación y generar automáticamente informes de evaluación formativa. Este modelo es una particularización del modelo granular lingüístico de un fenómeno (GLMP), en cuyo desarrollo y formalización colaboramos, basado en la lógica borrosa y en la teoría computacional de las percepciones. Esta técnica, que utiliza sistemas de inferencia basados en reglas lingüísticas y es capaz de implementar criterios de evaluación complejos, se ha aplicado a dos casos: la evaluación, basada en criterios, de logs de interacción generados por GRAPHs y de cuestionarios de Moodle. Como consecuencia, se han implementado, probado y utilizado en el aula sistemas expertos que evalúan ambos tipos de ejercicios. Además de la calificación numérica, los sistemas generan informes de evaluación, en lenguaje natural, sobre los niveles de competencia alcanzados, usando sólo datos objetivos de respuestas correctas e incorrectas. Además, se han desarrollado dos aplicaciones capaces de ser configuradas para implementar los sistemas expertos mencionados. Una procesa los archivos producidos por GRAPHs y la otra, integrable en Moodle, evalúa basándose en los resultados de los cuestionarios. ABSTRACT The concept of algorithm is one of the core subjects in computer science. It is extremely important, then, for students to get a good grasp of this concept from the very start of their training. In this respect, having a tool that helps and shepherds students through the process of learning this concept can make a huge difference to their instruction. Much has been written about how helpful algorithm visualization tools can be. Most authors agree that the most important part of the learning process is how students use the visualization tool. Learners who are actively involved in visualization consistently outperform other learners who view the algorithms passively. Therefore we think that one of the best exercises to learn an algorithm is for the user to simulate the algorithm execution while using a visualization tool, thus performing a visual algorithm simulation. The first part of this thesis presents the eMathTeacher set of requirements together with an eMathTeacher-compliant tool called GRAPHs. For some years, we have been developing a theory about what the key features of an effective e-learning system for teaching mathematical concepts and algorithms are. This led to the definition of eMathTeacher concept, which has materialized in the eMathTeacher set of requirements. An e-learning tool is eMathTeacher compliant if it works as a virtual math trainer. In other words, it has to be an on-line self-assessment tool that helps students to actively and autonomously learn math concepts or algorithms, correcting their mistakes and providing them with clues to find the right answer. In an eMathTeacher-compliant tool, algorithm simulation does not continue until the user enters the correct answer. GRAPHs is an extendible environment designed for active and independent visual simulation-based learning of graph algorithms, set up to integrate tools to help the user simulate the execution of different algorithms. Apart from the options of creating and editing the graph, and visualizing the changes made to the graph during simulation, the environment also includes step-by-step correction, algorithm pseudo-code animation, pop-up questions, data structure handling and XML-based interaction log creation features. On the other hand, assessment is a key part of any learning process. Through the use of e-learning environments huge amounts of data can be output about this process. Nevertheless, this information has to be interpreted and represented in a practical way to arrive at a sound assessment that is not confined to merely counting mistakes. This includes establishing relationships between the available data and also providing instructive linguistic descriptions about learning evolution. Additionally, formative assessment should specify the level of attainment of the learning goals defined by the instructor. Till now, only human experts were capable of making such assessments. While facing this problem, our goal has been to create a computational model that simulates the instructor’s reasoning and generates an enlightening learning evolution report in natural language. The second part of this thesis presents the granular linguistic model of learning assessment to model the assessment of the learning process and implement the automated generation of a formative assessment report. The model is a particularization of the granular linguistic model of a phenomenon (GLMP) paradigm, based on fuzzy logic and the computational theory of perceptions, to the assessment phenomenon. This technique, useful for implementing complex assessment criteria using inference systems based on linguistic rules, has been applied to two particular cases: the assessment of the interaction logs generated by GRAPHs and the criterion-based assessment of Moodle quizzes. As a consequence, several expert systems to assess different algorithm simulations and Moodle quizzes have been implemented, tested and used in the classroom. Apart from the grade, the designed expert systems also generate natural language progress reports on the achieved proficiency level, based exclusively on the objective data gathered from correct and incorrect responses. In addition, two applications, capable of being configured to implement the expert systems, have been developed. One is geared up to process the files output by GRAPHs and the other one is a Moodle plug-in set up to perform the assessment based on the quizzes results.
Resumo:
OntoTag - A Linguistic and Ontological Annotation Model Suitable for the Semantic Web
1. INTRODUCTION. LINGUISTIC TOOLS AND ANNOTATIONS: THEIR LIGHTS AND SHADOWS
Computational Linguistics is already a consolidated research area. It builds upon the results of other two major ones, namely Linguistics and Computer Science and Engineering, and it aims at developing computational models of human language (or natural language, as it is termed in this area). Possibly, its most well-known applications are the different tools developed so far for processing human language, such as machine translation systems and speech recognizers or dictation programs.
These tools for processing human language are commonly referred to as linguistic tools. Apart from the examples mentioned above, there are also other types of linguistic tools that perhaps are not so well-known, but on which most of the other applications of Computational Linguistics are built. These other types of linguistic tools comprise POS taggers, natural language parsers and semantic taggers, amongst others. All of them can be termed linguistic annotation tools.
Linguistic annotation tools are important assets. In fact, POS and semantic taggers (and, to a lesser extent, also natural language parsers) have become critical resources for the computer applications that process natural language. Hence, any computer application that has to analyse a text automatically and ‘intelligently’ will include at least a module for POS tagging. The more an application needs to ‘understand’ the meaning of the text it processes, the more linguistic tools and/or modules it will incorporate and integrate.
However, linguistic annotation tools have still some limitations, which can be summarised as follows:
1. Normally, they perform annotations only at a certain linguistic level (that is, Morphology, Syntax, Semantics, etc.).
2. They usually introduce a certain rate of errors and ambiguities when tagging. This error rate ranges from 10 percent up to 50 percent of the units annotated for unrestricted, general texts.
3. Their annotations are most frequently formulated in terms of an annotation schema designed and implemented ad hoc.
A priori, it seems that the interoperation and the integration of several linguistic tools into an appropriate software architecture could most likely solve the limitations stated in (1). Besides, integrating several linguistic annotation tools and making them interoperate could also minimise the limitation stated in (2). Nevertheless, in the latter case, all these tools should produce annotations for a common level, which would have to be combined in order to correct their corresponding errors and inaccuracies. Yet, the limitation stated in (3) prevents both types of integration and interoperation from being easily achieved.
In addition, most high-level annotation tools rely on other lower-level annotation tools and their outputs to generate their own ones. For example, sense-tagging tools (operating at the semantic level) often use POS taggers (operating at a lower level, i.e., the morphosyntactic) to identify the grammatical category of the word or lexical unit they are annotating. Accordingly, if a faulty or inaccurate low-level annotation tool is to be used by other higher-level one in its process, the errors and inaccuracies of the former should be minimised in advance. Otherwise, these errors and inaccuracies would be transferred to (and even magnified in) the annotations of the high-level annotation tool.
Therefore, it would be quite useful to find a way to
(i) correct or, at least, reduce the errors and the inaccuracies of lower-level linguistic tools;
(ii) unify the annotation schemas of different linguistic annotation tools or, more generally speaking, make these tools (as well as their annotations) interoperate.
Clearly, solving (i) and (ii) should ease the automatic annotation of web pages by means of linguistic tools, and their transformation into Semantic Web pages (Berners-Lee, Hendler and Lassila, 2001). Yet, as stated above, (ii) is a type of interoperability problem. There again, ontologies (Gruber, 1993; Borst, 1997) have been successfully applied thus far to solve several interoperability problems. Hence, ontologies should help solve also the problems and limitations of linguistic annotation tools aforementioned.
Thus, to summarise, the main aim of the present work was to combine somehow these separated approaches, mechanisms and tools for annotation from Linguistics and Ontological Engineering (and the Semantic Web) in a sort of hybrid (linguistic and ontological) annotation model, suitable for both areas. This hybrid (semantic) annotation model should (a) benefit from the advances, models, techniques, mechanisms and tools of these two areas; (b) minimise (and even solve, when possible) some of the problems found in each of them; and (c) be suitable for the Semantic Web. The concrete goals that helped attain this aim are presented in the following section.
2. GOALS OF THE PRESENT WORK
As mentioned above, the main goal of this work was to specify a hybrid (that is, linguistically-motivated and ontology-based) model of annotation suitable for the Semantic Web (i.e. it had to produce a semantic annotation of web page contents). This entailed that the tags included in the annotations of the model had to (1) represent linguistic concepts (or linguistic categories, as they are termed in ISO/DCR (2008)), in order for this model to be linguistically-motivated; (2) be ontological terms (i.e., use an ontological vocabulary), in order for the model to be ontology-based; and (3) be structured (linked) as a collection of ontology-based
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