999 resultados para Web Route Planner


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This route planner, funded by the Palm Beach Metropolitan Planning Organization (MPO), is a joint effort by Florida International University GIS Center and University of Florida Geomatics Program at Fort Lauderdale Research and Education Center. It is designed as a planning tool for bicyclists. Assistance was received from the Palm Beach County Bicycle, Greenways, Pedestrian Advisory Committee.

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This route planner, funded by the Miami-Dade Metropolitan Planning Organization(MPO), is a joint effort by Florida International University GIS Center and University of Florida Geomatics Program at Fort Lauderdale Research and Education Center. It is designed as a planning tool for bicyclists. Assistance was received from the Miami-Dade County Bicycle/Pedestrian Advisory Committee and various cyclists and transportation professionals.

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This route planner, funded by the Broward Metropolitan Planning Organization (MPO), is a joint effort by Florida International University GIS Center and University of Florida Geomatics Program at Fort Lauderdale Research and Education Center. It is designed as a planning tool for bicyclists. Assistance was received from the Broward County Bicycle/Pedestrian Advisory Committee and various cyclists and transportation professionals.

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This poster presentation features three route planning applications developed by the Florida International University GIS Center and the Geomatics program at the University of Florida, and outlines their context based differences. The first route planner has been developed for cyclists in three Florida counties, i.e. Miami Dade County, Broward County, and Palm Beach County. The second route planner computes safe pedestrian routes to schools and has been developed for Miami Dade County. The third route planner combines pre-compiled cultural/eco routes and point-to-point route planning for the City of Coral Gables. This poster highlights the differences in design (user interface) and implementation (routing options) between the three route planners as a result of a different application context and target audience.

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This paper presents a mobile information system denominated as Vehicle-to-Anything Application (V2Anything App), and explains its conceptual aspects. This application is aimed at giving relevant information to Full Electric Vehicle (FEV) drivers, by supporting the integration of several sources of data in a mobile application, thus contributing to the deployment of the electric mobility process. The V2Anything App provides recommendations to the drivers about the FEV range autonomy, location of battery charging stations, information of the electricity market, and also a route planner taking into account public transportations and car or bike sharing systems. The main contributions of this application are related with the creation of an Information and Communication Technology (ICT) platform, recommender systems, data integration systems, driver profile, and personalized range prediction. Thus, it is possible to deliver relevant information to the FEV drivers related with the electric mobility process, electricity market, public transportation, and the FEV performance.

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Nelle smart cities moderne, la mobilità di veicoli elettrici (EV) è considerata un fattore determinante nella riduzione del consumo di combustibili fossili e conseguenti emissioni inquinanti. Tuttavia, nonostante gli interessi e investimenti a livello globale, l'accettazione da parte degli utenti è ancora bassa, principalmente a causa della mancanza di infrastrutture e servizi a supporto dei guidatori di EV. Queste mancanze sono la causa principale della cosiddetta range anxiety (timore che il veicolo non abbia autonomia sufficiente per raggiungere la destinazione) e hanno portato al preconcetto che gli EV siano adatti alla sola percorrenza di brevi tragitti. Per contrastare questi problemi, in questo documento è proposta un'applicazione di route planning che supporti mobilità di EV anche su percorsi medio-lunghi, mediante utilizzo di un modello di predizione del consumo energetico e considerazione dell'eventuale necessità di ricarica. Saranno descritte tecniche per determinare il tragitto che un EV sia in grado di percorrere per arrivare a destinazione, in considerazione di restrizioni energetiche, fattore altimetrico del percorso ed eventuali operazioni di ricarica necessarie. Il modello di consumo e l'algoritmo che determina il miglior percorso (dal punto di vista energetico) sono implementati da un web service che interagisce con i servizi di Google Maps (per ottenere indicazioni stradali, dati altimetrici e informazioni in tempo reale sul traffico) e con servizi che offrono informazioni sulle stazioni di ricarica e relative posizioni. Dopo aver descritto il modello di consumo e l'algoritmo per la ricerca del percorso, sarà presentata l'architettura del servizio implementato. Sarà quindi fornita una valutazione del servizio, analizzandone performance e scalabilità, nonché l'efficacia nel supporto di percorsi di EV all'interno di scenari su larga scala (nello specifico la regione Emilia Romagna), attraverso tecniche di simulazione.

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To promote the use of bicycle transportation mode in times of increasing urban traffic congestion, Broward County Metropolitan Planning Organization funded the development of a Web-based trip planner for cyclists. This presentation demonstrates the integration of the ArcGIS Server 9.3 environment with the ArcGIS JavaScript Extension for Google Maps API and the Google Local Search Control for Maps API. This allows the use of Google mashup GIS functionality, i.e., Google local search for selection of trip start, trip destination, and intermediate waypoints, and the integration of Google Maps base layers. The ArcGIS Network Analyst extension is used for the route search, where algorithms for fastest, safest, simplest, most scenic, and shortest routes are imbedded. This presentation also describes how attributes of the underlying network sources have been combined to facilitate the search for optimized routes.

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To promote the use of bicycle transportation mode in times of increasing urban traffic congestion, Broward County Metropolitan Planning Organization funded the development of a Web-based trip planner for cyclists. This presentation demonstrates the integration of the ArcGIS Server 9.3 environment with the ArcGIS JavaScript Extension for Google Maps API and the Google Local Search Control for Maps API. This allows the use of Google mashup GIS functionality, i.e., Google local search for selection of trip start, trip destination, and intermediate waypoints, and the integration of Google Maps base layers. The ArcGIS Network Analyst extension is used for the route search, where algorithms for fastest, safest, simplest, most scenic, and shortest routes are imbedded. This presentation also describes how attributes of the underlying network sources have been combined to facilitate the search for optimized routes.

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Con este proyecto se pretender dar una visión global de los SIG, y cuya aplicación principal es calcular y mostrar el camino a seguir entre dos puntos. Tanto el resultadoobtenido como los puntos de inicio y fin de la ruta deben mostrarse sobre un mapa enun navegador. Como particularidad del PFC, el mapa a mostrar corresponde a laciudad de Palma de Mallorca, y se establece como puntos de destino para las rutas losatractivos turísticos o puntos de interés de la ciudad.

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Pàgina web presentant una recopilació de rutes GPS i informació, consells, experiències, fotos... relatius a les rutes i basats en l'experiència de fa molts anys dels excursionistes de la Guyana Francesa. Actualment aquesta informació es troba molt disseminada i conseqüentment és difícil de trobar. El lloc web ofereix aquesta informació de forma molt visual i precisa, amb la possibilitat de descàrrega de les rutes GPS per fer l'excursionisme més segur i accessible a tothom. El lloc web té una filosofia "wiki": són els usuaris els qui animen el contingut afegint i editant les rutes que conté.

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Nowadays, when a user is planning a touristic route is very difficult to find out which are the best places to visit. The user has to choose considering his/her preferences due to the great quantity of information it is possible to find in the web and taking into account it is necessary to do a selection, within small time because there is a limited time to do a trip. In Itiner@ project, we aim to implement Semantic Web technology combined with Geographic Information Systems in order to offer personalized touristic routes around a region based on user preferences and time situation. Using ontologies it is possible to link, structure, share data and obtain the result more suitable for user's preferences and actual situation with less time and more precisely than without ontologies. To achieve these objectives we propose a web page combining a GIS server and a touristic ontology. As a step further, we also study how to extend this technology on mobile devices due to the raising interest and technological progress of these devices and location-based services, which allows the user to have all the route information on the hand when he/she does a touristic trip. We design a little application in order to apply the combination of GIS and Semantic Web in a mobile device.

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Nowadays, when a user is planning a touristic route is very difficult to find out which are the best places to visit. The user has to choose considering his/her preferences due to the great quantity of information it is possible to find in the web and taking into account it is necessary to do a selection, within small time because there is a limited time to do a trip. In Itiner@ project, we aim to implement Semantic Web technology combined with Geographic Information Systems in order to offer personalized touristic routes around a region based on user preferences and time situation. Using ontologies it is possible to link, structure, share data and obtain the result more suitable for user's preferences and actual situation with less time and more precisely than without ontologies. To achieve these objectives we propose a web page combining a GIS server and a touristic ontology. As a step further, we also study how to extend this technology on mobile devices due to the raising interest and technological progress of these devices and location-based services, which allows the user to have all the route information on the hand when he/she does a touristic trip. We design a little application in order to apply the combination of GIS and Semantic Web in a mobile device.