21 resultados para bus stop
em Universidad Politécnica de Madrid
Resumo:
A medida que transcurre el tiempo la sociedad evoluciona, las ciudades crecen, se modernizan, mejoran su infraestructura y se ofrecen más y mejores servicios a sus ciudadanos. Esto ha hecho que durante muchos años las ciudades se hayan desarrollado sin pensar en lo que vendrá más adelante, contaminando el medio ambiente y consumiendo mucha energía y de forma ineficiente. Ante esta situación, y gracias a las innovaciones tecnológicas en materia de comunicaciones, se están adoptando medidas para dirigir la evolución de las ciudades hacia un modelo de ciudad inteligente y sostenible. Las redes de comunicaciones constituyen uno de los pilares sobre los que se asienta la sociedad, que se encuentra siempre en contacto con su entorno. Cada vez más, se tiene una mayor necesidad de conocer lo que ocurre en el entorno en tiempo real solicitando información climatológica en una determinada ubicación, permitiendo conocer el estado del tráfico para elegir la ruta hacia el trabajo, saber el tiempo que tardará el autobús en llegar a la parada, etc. Como éstos, se podrían citar muchos más ejemplos de necesidades y servicios que demandan hoy día la sociedad y que, seguramente, nadie pensaba que las iba a necesitar hace unos años. Muchos de estos servicios en tiempo real se consiguen gracias a las redes de sensores inalámbricas. Consiste en desplegar una serie de diminutos sensores en una zona determinada con el objetivo de recoger la información del medio, procesarla y modelarla para que esté disponible para los usuarios. Observando la tendencia seguida por las Tecnologías de la Información y de las Comunicaciones (TIC) se puede constatar una continua evolución hacia los dispositivos embedidos, de cada vez más pequeño tamaño y menor consumo y, al mismo tiempo, con mayor capacidad de proceso y memoria y facilidad para las comunicaciones. Siguiendo esta línea, se está construyendo la ciudad inteligente con capacidad para pensar y tomar decisiones, pero hay que dotarla de cierto grado de eficiencia. Se trata de aprovechar los recursos de la naturaleza para crear fuentes de energías limpias e ilimitadas. Empleando las tecnologías oportunas para transformar, por ejemplo, la energía del Sol o la energía del viento en electricidad, se puede alcanzar el modelo de ciudad que se pretende. ABSTRACT. As time passes society evolves, cities grow, modernize, improve their infrastructure and offer more and better services to their citizens. This has made for many years cities have developed without thinking about what will come later , polluting the environment and high energy consuming and inefficient . Given this situation, and thanks to the Technological innovations in communications, is being taken to direct the evolution of cities towards a smart city model sustainable. Communication networks are one of the pillars on which society rests, which is always in contact with their environment. Increasingly, there is a greater need to know what happens in the real-time environment requesting weather information in a certain location , allowing know the traffic to choose the route to work , namely the time take the bus to get to the bus stop, etc. . As these, you could cite many more Examples of needs and services that society demands today and, surely, no one thought that was going to need a few years ago. Many of these real-time services are achieved through networks wireless sensors. Is to deploy a series of sensors in a tiny given area in order to collect information from the environment, process and shape it to make it available to users. Observing the trend followed by the Information Technology and Communications (ICT ) can finding an evolving toward embeded devices of increasingly small size and lower power consumption and at the same time, higher capacity process and memory ease communications. Following this line, is under construction with capacity smart city to think and make decisions, but you have to give it some degree of efficiency. It seeks to harness the resources of nature to create clean energy sources and unlimited. Using appropriate technologies to transform, for example, energy from the sun or wind energy into electricity, it can achieve the model city intended.
Resumo:
Se presentan los resultados experimentales de un estudio realizado en el Laboratorio de Motores Térmicos de la ETSII de la UPM para evaluar el impacto en eficiencia energética y medioambiental de la tecnología Stop/Start en vehículos todoterreno con motor diesel, en condiciones de tráfico real urbano. Se realizaron ensayos urbanos con vehículos Land Rover Freelander2 en la zona central de la ciudad de Madrid midiendo la emisión instantánea de CO2 y de CO con equipos de medida de emisiones embarcados, y el consumo de combustible se calculó a partir del “balance de carbonos” midiendo el caudal de gases de escape mediante un caudalímetro de desarrollo propio. Se utilizaron dos vehículos todoterreno con motor diesel semejante, ambos cumpliendo los mismos límites Euro 4 para vehículos ligeros, uno convencional y otro adaptado con sistema Stop/Start. Se obtuvieron curvas de tendencia de consumo de combustible y de emisión de CO2 con la velocidad media, que demuestran el significativo efecto de mejora en la eficiencia energética de la versión de motor adaptado con sistema Stop/Start.
Resumo:
En este proyecto se ha diseñado un sistema de adquisición y uso compartido de datos orientado a la implantación en un vehículo monoplaza de Formula SAE. Más concretamente, se encarga de recoger la información proporcionada por cuatro sensores infrarrojos de temperatura que sondearán constantemente la temperatura a la que se encuentran las ruedas del vehículo. La información, recogida en una memoria de almacenamiento masivo, se compartirá con otros dispositivos mediante un bus común. Los sensores empleados para generar la información los proporciona Melexis. Dichos sensores permiten estar todos simultáneamente conectados en un bus común gracias a su electrónica interna. Mediante el bus I2C irán conectados los cuatro sensores de nuestra aplicación (uno por cada rueda) permitiéndose añadir a posteriori más sensores o incluso otros elementos que permitan la comunicación por este tipo de bus I2C. La gestión de las tareas se realiza mediante el microcontrolador DSPIC33FJ256GP710-I/PF proporcionado por Microchip. Este es un microcontrolador complejo, por lo que para nuestra aplicación desaprovecharemos parte de su potencial. En nuestra tarjeta ha sido solamente añadido el uso de los dos I2C (uno para la tarjeta SD y el otro para los sensores), el módulo ECAN1 (para las comunicaciones por bus CAN), el módulo SPI (para acceder a una memoria Flash), 4 ADCs (para posibles mediciones) y 2 entradas de interrupción (para posible interactuación con el usuario), a parte de los recursos internos necesarios. En este proyecto se realiza tanto el desarrollo de una tarjeta de circuito impreso dedicada a resolver la funcionalidad requerida, así como su programación a través del entorno de programación facilitado por Microchip, el ICD2 Programmer. In this project, an acquisition and sharing system of data, which is oriented to be installed in a Formula SAE single-seater vehicle, has been designed. Concretely, it is responsible for getting the information supplied by four IR temperature sensors that monitor the wheels temperature. The information, which is loaded in a massive storage memory, will be shared with other devices by means of a common bus. The sensors used to generate the information are supplied by Melexis. Such specific sensors let that all they can be connected to the same bus at the same time due to their internal electronic. The four sensors will be connected through an I2C bus, one for each wheel, although we could add later more sensors or even other devices that they were able to let the I2C communication. Tasks management will be done by means of the DSPIC33FJ256GP710-I/PF microcontroller, which will be supplied by Microchip. This is a complex microcontroller, so, in our application we waste off a part of its potential. In our PCB has only been incorporated the use of the two I2C (one for the SD card and the other for the sensors), the ECAN module (to communicate devices), the SPI module (to access to the Flash memory), 4 ADC’s (for possible measurements) and 2 interrupt inputs (for possible inter-action with the user), a part of the necessary internal resources. This project aims the PCB development dedicated to solve the requested functionality and its programming through the programming environment provided by Microchip (the ICD2 programmer).
Resumo:
One of the main problems in urban areas is the steady growth in car ownership and traffic levels. Therefore, the challenge of sustainability is focused on a shift of the demand for mobility from cars to collective means of transport. For this end, buses are a key element of the public transport systems. In this respect Real Time Passenger Information (RTPI) systems help citizens change their travel behaviour towards more sustainable transport modes. This paper provides an assessment methodology which evaluates how RTPI systems improve the quality of bus services in two European cities, Madrid and Bremerhaven. In the case of Madrid, bus punctuality has increased by 3%. Regarding the travellers perception, Madrid raised its quality of service by 6% while Bremerhaven increased by 13%. On the other hand, the users ́ perception of Public Transport (PT) image increased by 14%.
Resumo:
During the first decade of the new millennium, fueled by the economic development in Spain, urban bus services were extended. Since the years 2008 and 2009, the root of the economic crisis, the improvement of these services is at risk due to economic problems. In this paper, the technical efficiency of the main urban bus companies in Spain during the 2004–2009 period are studied using SBM (slack-based measures) models and by establishing the slacks in the services' production inputs. The influence of a series of exogenous variables on the operation of the different services is also analyzed. It is concluded that only the 24% of the case studies are efficient, and some urban form variables can explain part of the inefficiency. The methodology used allows studying the inefficiency in a disaggregated way that other DEA (data envelopment analysis) models do not.
Resumo:
The aim of this work was twofold: on the one hand, to describe a comparative study of two intelligent control techniques-fuzzy and intelligent proportional-integral (PI) control, and on the other, to try to provide an answer to an as yet unsolved topic in the automotive sector-stop-and-go control in urban environments at very low speeds. Commercial vehicles exhibit nonlinear behavior and therefore constitute an excellent platform on which to check the controllers. This paper describes the design, tuning, and evaluation of the controllers performing actions on the longitudinal control of a car-the throttle and brake pedals-to accomplish stop-and-go manoeuvres. They are tested in two steps. First, a simulation model is used to design and tune the controllers, and second, these controllers are implemented in the commercial vehicle-which has automatic driving capabilities-to check their behavior. A stop-and-go manoeuvre is implemented with the two control techniques using two cooperating vehicles.
Resumo:
A finales de los 60 se había hecho evidente como la tecnificación del ambiente había permitido a algunas tipologías (supermercados, aparcamientos, fábricas) alcanzar profundidades construidas potencialmente ilimitadas e independizarse del afuera. La No-Stop City nace de una idea sencilla: extender esta tecnificación a la totalidad de lo construido para englobar, no sólo la práctica totalidad de funciones, sino, en última instancia, toda la ciudad. Esta operación tiene efectos paradójicos: a medida que la arquitectura crece, pierde la mayoría de características que la han definido tradicionalmente. Una disolución por hipertrofia que da lugar a un espacio homogéneo, cóncavo y potencialmente infinito. Pero, además de la pura factibilidad técnica, existen dos influencias clave y aparentemente contradictorias que explican esta apuesta por una ciudad interior e ilimitada: el marxismo y al Pop Art. El proyecto es, en muchos sentidos, un manifiesto construido que refleja la militancia de los miembros del grupo en el seno del marxismo italiano. Pero es también la plasmación del interés declarado del grupo por el Pop Art, la cultura popular y la sociedad de masas. La influencia cruzada de comunismo y consumismo explica esta “utopía cuantitativa” en la que se hacen coincidir la sociedad y la fábrica, la producción y el consumo. Una ciudad basada en la centralidad de los objetos de consumo y la subsiguiente pérdida de protagonismo de la arquitectura, en la que lo urbano, al tiempo que se extiende sin límites sobre el territorio, ignorando su exterioridad rural, disuelve el hogar como ámbito de privacidad, ignorando su interioridad doméstica. Un proyecto que, en la estela también de Marshall McLuhan, ilustra como pocos la conversión de lo urbano en una “condición” virtualmente omnipresente y que nos sigue interrogando con preguntas que son, por otra parte, eternas: ¿Qué es un edificio? ¿Qué es una ciudad?.
Resumo:
El propósito de este proyecto de fin de Grado es el estudio y desarrollo de una aplicación basada en Android que proporcionará soporte y atención a los servicios de transporte público existentes en Cracovia, Polonia. La principal funcionalidad del sistema será consultar la posición de un determinado autobús o tranvía y mostrar su ubicación con exactitud. Para lograr esto, necesitaremos tres fases de desarrollo. En primer lugar, deberemos implementar un sistema que obtenga las coordenadas geográficas de los vehículos de transporte público en cada instante. A continuación, tendremos que registrar todos estos datos y almacenarlos en una base de datos en un servidor web. Por último, desarrollaremos un sistema cliente que realice consultas a tiempo real sobre estos datos almacenados, obteniendo la posición para una línea determinada y mostrando su ubicación con un marcador en el mapa. Para hacer el seguimiento de los vehículos, sería necesario tener acceso a una API pública que nos proporcionase la posición registrada por los GPS que integran cada uno de ellos. Como esta API no existe actualmente para los servicios de autobús, y para los tranvías es de uso meramente privado, desarrollaremos una segunda aplicación en Android que hará las funciones del lado servidor. En ella podremos elegir mediante una simple interfaz el número de línea y un código específico que identificará a cada vehículo en particular (e.g. podemos tener 6 tranvías recorriendo la red al mismo tiempo para la línea 24). Esta aplicación obtendrá las coordenadas geográficas del teléfono móvil, lo cual incluye latitud, longitud y orientación a través del proveedor GPS. De este modo, podremos realizar una simulación de como el sistema funcionará a tiempo real utilizando la aplicación servidora desde dentro de un tranvía o autobús y, al mismo tiempo, utilizando la aplicación cliente haciendo peticiones para mostrar la información de dicho tranvía. El cliente, además, podrá consultar la ruta de cualquier línea sin necesidad de tener acceso a Internet. Almacenaremos las rutas y paradas de cada línea en la memoria del teléfono móvil utilizando ficheros XML debido al poco espacio que ocupan y a lo útil que resulta poder consultar un trayecto en cualquier momento, independientemente del acceso a la red. El usuario también podrá consultar las tablas de horarios oficiales para cada línea. Aunque en este caso si será necesaria una conexión a Internet debido a que se realizará a través de la web oficial de MPK. Para almacenar todas las coordenadas de cada vehículo en cada instante necesitaremos crear una base de datos en un servidor. Esto se resolverá mediante el uso de MYSQL y PHP. Se enviarán peticiones de tipo GET y POST a los servicios PHP que se encargarán de traducir y realizar la consulta correspondiente a la base de datos MYSQL. Por último, gracias a todos los datos recogidos relativos a la posición de los vehículos de transporte público, podremos realizar algunas tareas de análisis. Comparando la hora exacta a la que los vehículos pasaron por cada parada y la hora a la que deberían haber pasado según los horarios oficiales, podremos descubrir fallos en estos. Seremos capaces de determinar si es un error puntual debido a factores externos (atascos, averías,…) o si por el contrario, es algo que ocurre muy a menudo y se debería corregir el horario oficial. ABSTRACT The aim of this final Project (for University) is to develop an Android application thatwill provide support and feedback to the public transport services in Krakow. The main functionality of the system will be to track the position of a desired bus or tram line, and display its position on the map. To achieve this, we will need 3 stages: the first one will be to implement a system that sends the geographical position of the public transport vehicles, the second one will be to collect this data in a web server, and the last one will be to get the last location registered for the desired line and display it on the map. For tracking the vehicles, we would need to have access to a public API that should be connected with each bus/tram GPS. As this doesn’t exist in Krakow or at least is not available for public use, we will develop a second android application that will do the server side job. We will be able to choose in a simple interface the line number and a code letter to identify each vehicle (e.g. we can have 6 trams that belong to the line number 24 working at the same time). It will take the current mobile geolocation; this includes getting latitude, longitude and bearing from the GPS provider. Thus, we will be able to make a simulation of how the system works in real time by using the server app inside a tram and at the same time, using the client app and making requests to display the information of that tram. The client will also be able to check the path of the desired line without internet access. We will store the path and stops for each line locally in the phone memory using xml files due to the few requirements of available space it needs and the usefulness of checking a path when needed. This app will also offer the functionality of checking the timetable for the line, but in this case, it will link to the official Mpk website, so Internet access will be required. For storing all the coordinates for each vehicle at every moment we will need to create a database on a server. We have decided that the easiest way is to use Mysql and PHP for the deployment of the service. We will send GET and POST requests to the php files and those files will make the according queries to our database. Finally, based on all the collected data, we will be able to get some information about errors in the system of public transport timetables. We will check at what time a line was in each specific stop and compare it with the official timetable to find mistakes of time. We will determine if it is something that happens occasionally and related to external factors (e.g. traffic jams, breakdowns…) or if on the other hand, it is something that happens very often and the public transport timetables should be looked over and corrected.
Resumo:
In this paper some mathematical programming models are exposed in order to set the number of services on a specified system of bus lines, which are intended to assist high demand levels which may arise because of the disruption of Rapid Transit services or during the celebration of massive events. By means of this model two types of basic magnitudes can be determined, basically: a) the number of bus units assigned to each line and b) the number of services that should be assigned to those units. In these models, passenger flow assignment to lines can be considered of the system optimum type, in the sense that the assignment of units and of services is carried out minimizing a linear combination of operation costs and total travel time of users. The models consider delays experienced by buses as a consequence of the get in/out of the passengers, queueing at stations and the delays that passengers experience waiting at the stations. For the case of a congested strategy based user optimal passenger assignment model with strict capacities on the bus lines, the use of the method of successive averages is shown.
Resumo:
One of the main problems in urban areas is the steady growth in car ownership and traffic levels. Therefore, the challenge of sustainability is focused on a shift of the demand for mobility from cars to collective means of transport. For this purpose, buses are a key element of the public transport systems. In this respect Real Time Passenger Information (RTPI) systems help people change their travel behaviour towards more sustainable transport modes. This paper provides an assessment methodology which evaluates how RTPI systems improve the quality of bus services performance in two European cities, Madrid and Bremerhaven. In the case of Madrid, bus punctuality has increased by 3%. Regarding the travellers perception, Madrid raised its quality of service by 6% while Bremerhaven increased by 13%. On the other hand, the users¿ perception of Public Transport (PT) image increased by 14%.
Resumo:
Il sistema di trasporto detto Bus Rapid Transit (BRT) è stato lanciato a Curitiba, in Brasile, nel 1974 per offrire un trasporto in bus efficiente ed efficace nella città in rapida espansione. Questa sperienza, insieme a quella di Ottawa (1983) e Quito (1994) ha dimostrato di essere una soluzione molto efficiente per il trasporto di massa. Per tutta l’Europa si sono iniziate a sviluppare esperienze simili, introducendo però un concetto diverso per quanto riguarda la qualità di servizio. Infatti sistemi come il “trunk network” nella Svezia, il Metrobus nella Germania oppure il BHNS (Bus à Aut. Niveau de Service) nella Francia trattano la qualità di servizio da una prospettiva più ampia che il BRT, dato che considerano aspetti come l’immagine ed il comfort oltre che velocità, frequenza e affidabilità. Questi nuovi sistemi BHLS (Buses with a High Quality of Service) consentono di combinare la qualità di servizio del tram con il costo basso e l’altà flessibilità dei sistema bus, fornendo soluzioni molto interessanti in termini di accessibilità e livelli di servizio, che permettono l’adattamento ai differenti contesti urbani (dimensione, popolazione, densità, ecc.). This article compares different European experiences with tramways and BHLS, especially from the economic point of view, considering their respective costs, benefits and advantages altogether.
Resumo:
In the late 60s it had become clear how the environment technification had allowed some typologies (supermarkets, car parks, factories) to reach potentially unlimited built depths becoming, therefore, independent from the outside. The No-Stop City is born from a very simple idea: to extend this technification to the totality of built reality encompassing, not only almost all functions, but ultimately, the whole city. This operation has paradoxical effects: as architecture grows, it loses most of the features that have traditionally defined it. A dissolution by hypertrophy that gives rise to an homogeneous, concave and potentially infinite space. But beyond the pure technical feasibility, there are two key influences, seemingly contradictory, that explain this endeavor for an interior and endless city: Marxism and Pop Art. The project is, in many senses, a built manifesto reflecting the militancy of the group members within the Italian Marxism. But it is also the embodiment of the groups declared interest in Pop Art, popular culture and mass society. The cross-influence of communism and consumerism explains this "quantitative utopia" in which the society and the factory, the production and consumption, would match. A city based on the centrality of consumer products and the subsequent loss of prominence of architecture, in which the urban phenomenon, while spreading endlessly over territory, ignoring its rural exteriority, dissolves the home as a sphere of privacy, ignoring its domestic interiority. A project, also in the wake of Marshall McLuhan, that illustrates like few others the conversion of the urbane into a virtually omnipresent "condition" and that still interrogates us with questions that are, on the other hand, eternal: What is a building? What is a city?
Resumo:
Grouping urban bus routes is necessary when there are evidences of significant differences among them. In Jiménez et al. (2013), a reduced sample of routes was grouped into clusters utilizing kinematic measured data. As a further step, in this paper, the remaining urban bus routes of a city, for which no kinematic measurements are available, are classified. For such purpose we use macroscopic geographical and functional variables to describe each route, while the clustering process is performed by means of a neural network. Limitations caused by reduced training samples are solved using the bootstrap method.
Resumo:
El tema de estudio de esta tesis son las propuestas urbanas que Andrea Branzi ha desarrollado durante los últimos cincuenta años, centrándose especialmente en aquellas más elaboradas y completas: la No-Stop City (1970-71), que elabora como miembro del grupo radical Archizoom, y dos de sus modelos de urbanización débil, Agronica (1995) y el Master Plan para el Strijp Philips de Eindhoven (2000). Se trata de una parte de su obra que ha mantenido constante, a lo largo del tiempo, una propuesta de disolución de la arquitectura de notable consistencia que puede describirse con la fórmula “città senza architettura”, acuñada por él mismo. Una voluntad que ya se apunta en la muy variada producción de Archizoom previa a la No-Stop City, y que cristaliza y se hace explícita en este proyecto que aspiraba a: “liberar al hombre de la arquitectura”. A pesar de la continuidad de esta idea en el tiempo, la ciudad sin arquitectura de Branzi ha evolucionado claramente dando lugar a distintos tipos de disolución. Una disolución que, obviamente, no supone la efectiva desaparición de la disciplina, sino la formulación de una arquitectura “otra” basada en un replanteamiento radical de la naturaleza y el papel de la misma. Esta agenda contra la disciplina se ha desplegado a través de una serie de temas que socavan el objeto arquitectónico canónico (su vaciamiento expresivo, la pérdida de importancia de la envolvente y la forma acabada, el carácter anticompositivo, la independencia entre forma y función, la mutabilidad en el tiempo…), pero va más allá al poner en crisis el rol que la propia arquitectura ha tenido en la configuración material, política y simbólica del hábitat humano. Una pérdida de protagonismo y centralidad en la sociedad contemporánea que, en el discurso del arquitecto, implica necesariamente un papel subordinado. De este proceso de disolución surge un nuevo tipo de ciudad en la que la forma urbana o se ha perdido o se ha convertido en superflua, en la que se ha disuelto la zonificación funcional, cuyos espacios interiores se hallan en un proceso de permanente reprogramación que ignora las tipologías, que trasciende la división entre lo urbano y lo agrícola y que es, ante todo, un espacio de flujos y servicios. La crisis de la ciudad tradicional implica, en definitiva, un cambio en la naturaleza misma de lo urbano que pasa de considerarse un lugar físico y construido, a convertirse en una condición inmaterial y virtualmente omnipresente que se despliega independientemente de su soporte físico. En las investigaciones urbanas de Branzi convergen, además, muchas de las reflexiones que el arquitecto ha desarrollado sobre, y desde, las distintas “escalas” de la actividad profesional: diseño, arquitectura y urbanismo. Estas propuestas no sólo cuestionan las relaciones establecidas entre objetos, edificios, ciudades y territorios sino que ponen en cuestión estas mismas categorías. Unas ciudades sin arquitectura que se basan, en última instancia, en plantear preguntas que son muy sencillas y, por otra parte, eternas: ¿Qué es un edificio? ¿Qué es una ciudad? ABSTRACT The subject of study of this thesis are the urban proposals developed by Andrea Branzi over the last fifty years, with a special focus on the more developed and comprehensive ones: the No- Stop City (1970-1971), produced as a member of the architettura radicale group Archizoom, and two of his “weak urbanization models”: Agronica (1995) and the Master Plan for Philips Strijp in Eindhoven (2000). This area of his work has kept, over time, a remarkably consistent proposal for the dissolution of architecture that can be described with the motto città senza architettura (city without architecture), coined by himself. A determination, already latent in the very diverse production of Archizoom prior to No-Stop City, that crystallizes and becomes explicit in this project which was aimed to "liberate man from the architecture." Despite the continuity of this idea over time, Branzi’s city without architecture has clearly evolved leading to different types of dissolution. A dissolution that, obviously, does not mean the effective demise of the discipline, but rather, the formulation of an architecture autre based on a radical rethinking of its nature and role. This agenda against the discipline has been developed through a number of issues that undermine the canonical architectural object (its expressive emptying, the loss of importance of the envelope and the finished shape, the anticompositional character, the independence between form and function, the mutability over time...), but goes beyond it by putting into crisis the role that architecture itself has had in the material, political and symbolic configuration of the human habitat. A loss of prominence and centrality in contemporary society that, in the architect’s discourse, implies a subordinate role. From this dissolution process, a new type of city arises: a city where urban form has been lost or has become superfluous, in which functional zoning has dissolved, whose interiors are in a permanent process of reprogramming that ignores typologies, that transcends the division between urban and agricultural and becomes, above all, a space of flows and services. Ultimately, the crisis of the traditional city implies a change in the very nature of the urban that moves from being regarded as a physical and built place, to become an immaterial and virtually omnipresent condition that unfolds regardless of its physical medium. Many of the ideas Branzi has developed on, and from, the different "scales" of professional activity (design, architecture and urbanism) converge in his urban research. These proposals not only question the relations between objects, buildings, cities and territories but also these very categories. Cities without architecture that are based, ultimately, on raising simple questions that are, on the other hand, eternal: What is a building? What is a city?
Resumo:
In this paper, a mathematical programming model and a heuristically derived solution is described to assist with the efficient planning of services for a set of auxiliary bus lines (a bus-bridging system) during disruptions of metro and rapid transit lines. The model can be considered static and takes into account the average flows of passengers over a given period of time (i.e., the peak morning traffic hour) Auxiliary bus services must accommodate very high demand levels, and the model presented is able to take into account the operation of a bus-bridging system under congested conditions. A general analysis of the congestion in public transportation lines is presented, and the results are applied to the design of a bus-bridging system. A nonlinear integer mathematical programming model and a suitable approximation of this model are then formulated. This approximated model can be solved by a heuristic procedure that has been shown to be computationally viable. The output of the model is as follows: (a) the number of bus units to assign to each of the candidate lines of the bus-bridging system; (b) the routes to be followed by users passengers of each of the origin–destination pairs; (c) the operational conditions of the components of the bus-bridging system, including the passenger load of each of the line segments, the degree of saturation of the bus stops relative to their bus input flows, the bus service times at bus stops and the passenger waiting times at bus stops. The model is able to take into account bounds with regard to the maximum number of passengers waiting at bus stops and the space available at bus stops for the queueing of bus units. This paper demonstrates the applicability of the model with two realistic test cases: a railway corridor in Madrid and a metro line in Barcelona Planificación de los servicios de lineas auxiliares de autobuses durante las incidencias de las redes de metro y cercanías. El modelo estudia el problema bajo condiciones de alta demanda y condiciones de congestión. El modelo no lineal resultante es resuelto mediante heurísticas que demuestran su utilidad. Se demuestran los resultados en dos corredores de las ciudades de Barcelona y Madrid.