Academic literature on the topic 'Leaflet Javascript'

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Journal articles on the topic "Leaflet Javascript"

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Щекотилов, Владимир Геннадьевич, Мария Владимировна Шалаева, and Светлана Николаевна Щекотилова. "TOPONYM COMPLEX STUDY ENVIRONMENT MULTI-SHEET PLAN OF GIVING XIX V. OF VETLUZHSKY DISTRICT KOSTROMA PROVINCE." Вестник Тверского государственного университета. Серия: География и геоэкология, no. 1(33) (March 23, 2021): 48–56. http://dx.doi.org/10.26456/2226-7719-2021-1-48-56.

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Предложена информационная и программная среда исследования комплекса топонимов многолистного плана дач на примере сел Новоуспенского и Хмелевицкого Ветлужского уезда Костромской губернии. Основой информационной среды является электронная карта объединения листов плана дач и геокодированные списки топонимов: населенные места, урочища, гидрография и другие. Основой программной среды является библиотека LeafLet на языке программирования JavaScript. Предложенная среда ориентирована на использование Интернета. Подход может быть использован для большого количества аналогичных многолистных планов дач XIX в. The information and program environment of the study of the toponyms of the multi-leaf summer cottages is proposed using the example of giving of the villages of Novouspen and Khmelevitsky Vetluzhsky district of Kostroma province. The basis of the information environment is an electronic map of combining sheets of the summer cottages plan and geocoded lists of toponyms: settlements, lessons, hydrography and others. The basis of the software environment is the library LeafLet in the programming language JavaScript. The proposed environment is focused on the use of the Internet. The approach can be used for a large number of similar multi-leaf cottage plans of the XIX century.
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Grujić, Nastasija. "GEOPORTAL ZA 3D PRIKAZ GRADSKIH PODRUČJA." Zbornik radova Fakulteta tehničkih nauka u Novom Sadu 34, no. 02 (2019): 381–84. http://dx.doi.org/10.24867/01ko03grujic.

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Prikazani su tehnički aspekti vezani za razvijanje Geoportala, standardi i regulative koje se prime­njuju u oblasti upravljanja prostornim podacima, kao i koncepti 3D vizuelizacije gradova. U okviru studije slučaja urađena je vizuelizacija prostornih podataka korišćenjem Leaflet i MapBox JavaScript biblioteke, pri čemu je Map­Box biblioteka iskorišćena za 3D vizuelizaciju gradova, dok je Leaflet iskorišćena za 2D vizuelizaciju vektorskih podataka. Izvršena je i 3D vizuelizacija oblaka tačaka koji su nastali terestričkim laserskim snimanjem Petrovara­dinske tvrđave u Novom Sadu. Svi ti podaci su integerisani u jednu web aplikaciju koja čini simulaciju Geoportala. Za implementaciju aplikacije, iskorišćena su besplatna soft­verska rešenja: Django sa ekstenzijom GeoDjango, Post­greSQL sa ektenzijom PostGIS i RESTful web servisi.
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Gong, X., F. Erwee, and V. Rautenbach. "GEOMETRY VIEWER FOR PGADMIN4: A PROCESS GUIDED BY THE GOOGLE SUMMER OF CODE." ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences XLII-4/W14 (August 23, 2019): 79–83. http://dx.doi.org/10.5194/isprs-archives-xlii-4-w14-79-2019.

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<p><strong>Abstract.</strong> The latest version of pgAdmin4 was released in mid-2016 and moved to a web-based application that was written in Python and jQuery with Bootstrap, using the Flask framework. This new architecture of pgAdmin4 provided an excellent opportunity to integrate a geometry viewer into the application. This progress started as the geometry viewer was selected as a project for the 2018 Google Summer of Code (GSoC). The requirements for the geometry viewer was elicited through conversations with the mentors and emails to the discussion list of PostGIS and pgAdmin. Once the formal design was finalized the development started. The spatial technology stack implemented to expand pgAdmin4 with a geometry viewer was the JavaScript mapping library Leaflet JS and WKX - parser/serializer library that supports several spatial vector formats. Both these fulfilled the requirements of the coding standard of pgAdmin that all client-side code must be developed in JavaScript using jQuery and other plugins. Leaflet JS is well known for its ease of use and compatibility. WKX is lesser known but well supported and concise to the need to parse the spatial data before rendering on the Leaflet map. The decision on both of these libraries was motivated by their minimal size and possibilities for expansion for future extensions of the viewer. The first version of the geometry viewer was well-received and is currently integrated into the latest versions of pgAdmin4.</p>
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Rio Ariswendi and Chairuddin . "Pemetaan Penyebaran Titik Rawan Kriminalitas di Kota Bandung Menggunakan Leaflet Javascript Library Berbasis Website." INFORMASI (Jurnal Informatika dan Sistem Informasi) 13, no. 1 (2021): 47–60. http://dx.doi.org/10.37424/informasi.v13i1.76.

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Kota Bandung sebagai Ibu kota Propinsi Jawa Barat menjadi pusat perekonomian yang akan berdampak besar terhadap peningkatan pergerakan dan mobilitas. Bandung juga memiliki masalah yang pada umumnya dimiliki kota besar lainnya, yaitu kriminal. Kota Bandung merupakan salah satu kota di Jawa Barat yang memiliki jumlah kasus kriminal yang cukup tinggi dengan banyak kasus kriminal yang terjadi di sekitar jalan raya. Salah satu solusi yang dapat dilakukan untuk mengurangi kasus kriminal di jalan raya adalah dengan memberikan informasi mengenai daerah mana saja yang rawan kriminal yang terjadi sebelumnya. Titik wilayah merupakan salah satu cara untuk menyajikan informasi tersebut. Dalam pendataan dan kolaborasi dengan Leaflet.Js sebagai perpustakaan yang digunakan untuk pembuatan peta WEBGIS, sehingga pengguna dapat dengan mudah mengaksesnya dimanapun dan kapanpun sebagai informasi tentang penyebaran titik rawan kriminalitas di kota Bandung.
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Lebedeva, Kseniya S., and Petr Yu Bugakov. "DEVELOPMENT OF METHODOLOGY FOR BUILDING A GEOINFORMATION SYSTEM FOR ANALYSIS OF NOVOSIBIRSK CYCLING INFRASTRUCTURE." Vestnik SSUGT (Siberian State University of Geosystems and Technologies) 26, no. 4 (2021): 55–64. http://dx.doi.org/10.33764/2411-1759-2021-26-4-55-64.

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The article discusses the development of a methodology for creating a geographic information system for the analysis of cycling infrastructure in the city of Novosibirsk. A publicly available GIS for analyzing cycling infrastructure with an up-to-date database should ensure efficient control over the state of the city's cycling infrastructure, its use and development, as well as access to the cycling infrastructure information to all interested citizens with the ability to contribute to its improvement. To im-plement GIS in practice the following basic instruments were used: full-featured software for preparing mapping materials – ArcGis; JavaScript library, intended to display maps on websites – Leaflet. As a result the article represents technological scheme of GIS creation, gives the description of structural content for attributive information, offers the methods for analysis of the condition and development of cycling infrastructure, as well as describes tools for the creation of the interactive map with the help of Leaflet.
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Renaldi, Ridwan, and Dimas Aryo Anggoro. "Sistem Informasi Geografis Pemetaan Sekolah Menengah Atas/Sederajat di Kota Surakarta menggunakan Leaflet Javascript Library berbasis Website." Emitor: Jurnal Teknik Elektro 20, no. 02 (2020): 123–30. http://dx.doi.org/10.23917/emitor.v20i02.10945.

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Kurach, Tamara Mykolayivna, and Iryna Aleksandrovna Pidlisetskaya. "CREATION OF THE WEB-MAP OF THE BOGUSLAVSKY DISTRICT." GEOGRAPHY AND TOURISM, no. 47 (2019): 129–39. http://dx.doi.org/10.17721/2308-135x.2019.47.129-139.

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The goal is to develop a tourist interactive map "Landmarks of Bohuslav". The methodology. The methodological and theoretical basis of the study is modern geographical and cartographic science in the field of thematic mapping with the involvement of web-mapping technologies. Results. A large-scale tourist web map of the cultural heritage of the Boguslavsky region - “Sights of Boguslavshchina” was created. Scientific novelty. Approbation of the methodology and technology for the development of interactive large-scale web maps of tourism topics involving the Leaflet JavaScript library. Practical value. An interactive tourist web map of the historical and cultural heritage sites “Sights of Bohuslavshchina” will be published on the website of the health-improving institution of sanatorium-type “Chaika”. Convenient using, visualization, prompt receipt of information will help to increase the attractiveness of tourist Boguslavschina routes.
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Vacca, G., D. R. Fiorino, and D. Pili. "A WEBGIS FOR THE KNOWLEDGE AND CONSERVATION OF THE HISTORICAL BUILDINGS IN SARDINIA (ITALY)." ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences XLII-4/W2 (July 5, 2017): 171–78. http://dx.doi.org/10.5194/isprs-archives-xlii-4-w2-171-2017.

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The presented work is part of the research project, titled "Tecniche murarie tradizionali: conoscenza per la conservazione ed il miglioramento prestazionale" (Traditional building techniques: from knowledge to conservation and performance improvement). This research project has the purpose of studying the building techniques of the 13<sup>th</sup>&amp;ndash;18<sup>th</sup> centuries in the Sardinia Region (Italy) for their knowledge, conservation, and promotion. The end purpose of the entire study is to improve the performance of the examined structures. In particular, the task of the authors within the research project was to build a WebGIS to manage the data collected during the examination and study phases. This infrastructure was entirely built using Open Source software. <br><br> The work consisted of designing a database built in PostgreSQL and its spatial extension PostGIS, which allows storing and managing feature geometries and spatial data. The data input is performed via a form built in HTML and PHP. The HTML part is based on Bootstrap, an open tools library for websites and web applications. The implementation of this template used both PHP and Javascript code. The PHP code manages the reading and writing of data to the database, using embedded SQL queries. The database is published on the Internet as a WebGIS built using the Leaflet Javascript open libraries, which allows creating map sites with background maps and navigation, input and query tools. This too uses an interaction of HTML, Javascript, PHP and SQL code. The Database can be accessed in QGIS via a PostgreSQL connection. <br><br> As of today, we surveyed and archived more than 300 buildings, belonging to three main macro categories: fortification architectures, religious architectures, residential architectures.
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Vacca, G., D. Pili, D. R. Fiorino, and V. Pintus. "A WEBGIS FOR THE KNOWLEDGE AND CONSERVATION OF THE HISTORICAL WALL STRUCTURES OF THE 13<sup>TH</sup>&ndash;18<sup>TH</sup> CENTURIES." ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences XLII-5/W1 (May 16, 2017): 551–56. http://dx.doi.org/10.5194/isprs-archives-xlii-5-w1-551-2017.

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The presented work is part of the research project, titled "Tecniche murarie tradizionali: conoscenza per la conservazione ed il miglioramento prestazionale" (Traditional building techniques: from knowledge to conservation and performance improvement), with the purpose of studying the building techniques of the 13<sup>th</sup>&amp;ndash;18<sup>th</sup> centuries in the Sardinia Region (Italy) for their knowledge, conservation, and promotion. The end purpose of the entire study is to improve the performance of the examined structures. In particular, the task of the authors within the research project was to build a WebGIS to manage the data collected during the examination and study phases. This infrastructure was entirely built using Open Source software. <br><br> The work consisted of designing a database built in PostgreSQL and its spatial extension PostGIS, which allows to store and manage feature geometries and spatial data. The data input is performed via a form built in HTML and PHP. The HTML part is based on Bootstrap, an open tools library for websites and web applications. The implementation of this template used both PHP and Javascript code. The PHP code manages the reading and writing of data to the database, using embedded SQL queries. <br><br> As of today, we surveyed and archived more than 300 buildings, belonging to three main macro categories: fortification architectures, religious architectures, residential architectures. The masonry samples investigated in relation to the construction techniques are more than 150. <br><br> The database is published on the Internet as a WebGIS built using the Leaflet Javascript open libraries, which allows creating map sites with background maps and navigation, input and query tools. This too uses an interaction of HTML, Javascript, PHP and SQL code.
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Setiawan, Ari, Budi Sutomo, and Andreas Perdana. "SISTEM INFORMASI GEOGRAFIS UNTUK PEMETAAN HASIL PEMILIHAN UMUM DI KACAMATAN SEKAMPUNG." International Research on Big-Data and Computer Technology: I-Robot 4, no. 1 (2020): 26–30. http://dx.doi.org/10.53514/ir.v4i1.175.

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Pemilihan Umum adalah suatu mekanisme dalam memilih orang -orang untuk mengisi jabatan politik tertentu, mulai dari jabatan presiden, kepala daerah, sampai dengan kepala desa Pemilu diselenggarakan oleh KPU (komisi pemilihan umum). Ketika pemilu selesai diselenggarakan masyarakat hanya bisa melihat hasil pemilu melalui kantor KPU atau melalui TPS (tempat pemungutan suara) terdekat, selain itu data yang diberikan masih konvensional, jadi masyarakat belum mengetahui secara pasti perolehan suara tiap TPS. Penelitian ini bertujuan agar masyarakat dapat melihat hasil pemilu tiap TPS yang dapat diakses di mana dan kapan saja. Untuk menjawab masalah tersebut peneliti membangun Geographic Information System (GIS) berbasis web. Sistem ini dirancang dengan library dari leaflet javascript. Metode pengembangan sistem yang digunakan yaitu metode waterfall, karena metode ini dirasa cocok untuk pengembangan sebuah sistem informasi. Sistem informasi geografis pemetaan hasil pemilu ini memiliki 3 menu utama yaitu pemetaan, informasi TPS dan tentang aplikasi yang masing masing menu memiliki submenu.
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Dissertations / Theses on the topic "Leaflet Javascript"

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Olsson, Jimmy. "Visualisera parkeringsplatser med JavaScript-ramverk och Leaflet." Thesis, Högskolan i Skövde, Institutionen för informationsteknologi, 2021. http://urn.kb.se/resolve?urn=urn:nbn:se:his:diva-20046.

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Smarta parkeringsplatser har blivit allt vanligare och för det behövs applikationer som kan visa upp lediga parkeringsplatser med låga svarstider. Filtrering och visualisering är två viktiga verktyg för att presentera data för en användare och göra den lättläst och förståelig. I den här studien kommer JavaScript-ramverken Vue.js och AngularJS jämföras mot varandra med JavaScript-biblioteket Leaflet för att filtrera och visualisera parkeringsplatser med syftet att se vilket ramverk som har kortast svarstider. Ett tekniskt experiment genomfördes för att se vilket av ramverken som har kortast svarstider där två implementationer byggdes, en med Vue.js och Leaflet och en med AngularJS och Leaflet. Det utfördes mätningar på båda implementationerna med tre olika datamängder av parkeringsplatser och resultatet visar att Vue.js har kortare svarstider vid mindre datamängder och AngularJS har kortare svarstider vid större datamängder. För framtida arbete hade det varit intressant att mäta med flera olika datamängder och testa andra tekniker för visualisering

Det finns övrigt digitalt material (t.ex. film-, bild- eller ljudfiler) eller modeller/artefakter tillhörande examensarbetet som ska skickas till arkivet.

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Anglesjö, Alice. "Interaktiv visualisering av stora dataset med webbtekniker : En jämförelse mellan JavaScript-biblioteken Leaflet och OpenLayers." Thesis, Högskolan i Skövde, Institutionen för informationsteknologi, 2020. http://urn.kb.se/resolve?urn=urn:nbn:se:his:diva-18774.

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Visualisering är ett kraftfullt sätt att ge människor en förståelse för data med hjälp av mönster. Fördelarna med att kunna visualisera data på rätt kan resultera i förbättrat beslutsfattande, bättre inriktad dataanalys och bättre samarbete och informationsdelning. Visualisering av stora datamängder medför en rad olika utmaningar tack vare dess storlek och struktur. I och med att dagens webbteknologier utvecklats så pass mycket att de kan mäta sig med desktop-applikationer är webbtekniker ett utmärkt hjälpmedel vid visualisering av data för att också göra det mer tillgängligt. I arbetet skapas två applikationer med hjälp av webbteknikerna i MEAN-stacken där datapunkter kommer att skrivas ut på två olika kartor skapade med Leaflet och OpenLayers. Därefter genomförs sedan ett experiment som mäter laddningstider vid utritning av datapunkterna samt vid interaktion med kartapplikationen. Arbetet ska i sin helhet analysera laddningstider hos en interaktiv karta som visualiserar Big Data med hjälp av webbtekniker.
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Kvist, Sebastian, and Richard Landén. "UTREDNING SAMT UTVECKLING AV ETT PLATTFORMSOBEROENDE GEOGRAFISKT INFORMATIONSSYSTEM." Thesis, Tekniska Högskolan, Högskolan i Jönköping, JTH, Data- och elektroteknik, 2012. http://urn.kb.se/resolve?urn=urn:nbn:se:hj:diva-18841.

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This thesis have been performed at Sweco Position in Jönköping. The work was split into two, where one part included an investigation regarding the possibility of developing a cross-platform GIS (geographic information system) with HTML5 and CSS3. A prototype would also be developed within this part. The second part included development of a cross-platform GIS for a client to Sweco Position. The client operates in the forest sector and had already an existing solution, with many problems. The client required an application with delimited functionality and which was not bound to a specific hardware. As the client users often were located in areas with limited Internet access, one additional requirement was that there would be some offline support. The students handle subjects within development of GIS, for example map projections, map services and mapping libraries. The application came to be developed in HTML5 and ASP.net. The mapping library that was used, was Leaflet 0.3.1. The result of this thesis is a cross-platform GIS with offline support. Examples of functionality included is to log positions manually, execute an automatic log function and support for managing which layers and logs that should be visible in the interface.
Detta examensarbete har utförts på företaget Sweco Positon i Jönköping. Arbetet var tudelat, där den ena delen omfattade en utredning kring möjligheterna att utveckla ett plattformsoberoende GIS(geografiskt informationssystem) med HTML5 och CSS3. För denna utredning skulle även en prototyp tas fram. Den andra delen omfattades av utvecklingen av ett plattformsoberoende GIS åt en kund till Sweco Position. Kunden verkar inom skogsbranschen och hade en redan befintlig lösning med många problem. Denne ville få fram en applikation med avgränsad funktionalitet och som ej heller var bunden till någon specifik hårdvara. Då kundens användare ofta befann sig i områden med tveksam uppkoppling, krävdes även ett visst offlinestöd. Studenterna går bland annat igenom delar som berör utveckling av GIS i form av kartprojektioner, karttjänster och kartkomponenter. Kartlösningen skulle komma att utvecklas i  HTML5 samt ASP.net. Den kartkomponent som användes i projektet var Leaflet 0.3.1. Resultatet av examensarbetet är ett plattformsoberoende GIS med offlinestöd. Exempel på funktionalitet är att logga manuella punkter, exekvera autologgning samt hantera visning lager och sparade loggar.
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Sköld, Anton. "Visualization of Geographic Data in ASP.NET." Thesis, Linköpings universitet, Interaktiva och kognitiva system, 2020. http://urn.kb.se/resolve?urn=urn:nbn:se:liu:diva-166926.

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This paper explores the development and implementation of an in-browser map with the purpose of visualizing large sets of geographic data. The map is implemented into a pre-existing search engine of geographic data. Two mapping frameworks are compared in terms of performance, ease-of-use, and functionality. These frameworks are Leaflet and Google Maps. This paper also explores which issues may arise when implementing these mapping frameworks within a pre-existing ASP.NET project. These aspects were evaluated through performance tests, documentation reading, and compiling experiences gained through implementing the map within the search engine. The experiments show that both Leaflet and Google Maps are viable frameworks to use when developing in-browser maps, but also that they have their pros and cons. Google Maps sports a generally higher level of performance, and a larger set of paid available services. Leaflet is a free, open-source alternative with a large plugin repository, but relies on third-party services for features such as geocoding.
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Latta, Martin. "Vektorové letecké mapy s "high a low trajektoriemi"." Master's thesis, Vysoké učení technické v Brně. Fakulta informačních technologií, 2016. http://www.nusl.cz/ntk/nusl-255378.

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Tato diplomová práce se zabývá dynamickým vykreslováním vektorových leteckých map, především letových trajektorií a navigačních bodů do mapy. Mapy jsou integrovány do mobilních aplikací, které piloti používají během letu a které nahrazují původní papírové mapy. Práce obsahuje teoretický úvod do problematiky a základní pojmy používané v letectví a navigaci. Další částí práce je průzkum, popis a zhodnocení existujících řešení a aplikací společně s návrhem a designem nového řešení. Nakonec je prezentována implementace demo aplikace pomocí WebGL knihovny a výsledné vyhodnocení a porovnání.
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Books on the topic "Leaflet Javascript"

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III, Paul Crickard. Leaflet. js Essentials. Packt Publishing, Limited, 2014.

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Leaflet.js Essentials. Packt Publishing, 2014.

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Conference papers on the topic "Leaflet Javascript"

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Souto, Raquel Dezidério, Danielle Pereira Cintra, and Luciana Borges de Oliveira. "Mapa dinâmico com OpenStreetMap e biblioteca Leaflet: Um estudo de caso de mapeamento da COVID-19 no Brasil." In Congresso Latino-Americano de Software Livre e Tecnologias Abertas. Sociedade Brasileira de Computação - SBC, 2020. http://dx.doi.org/10.5753/latinoware.2020.18610.

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Apresentamos um estudo de caso de aplicação da base cartográfica colaborativa OpenStreetMap e a biblioteca JavaScript aberta Leaflet, em um mapa dinâmico disponibilizado na Internet (http://covid19.atlasnf.ivides.org), sobre os casos de COVID-19 nas Mesorregiões Norte e Noroeste Fluminense, no Estado do Rio de Janeiro (Brasil). O mapeamento dinâmico é uma iniciativa do Instituto Virtual para o Desenvolvimento Sustentável (IVIDES.org), em parceria com o Atlas Socioeconômico do Norte Fluminense, um projeto de extensão da Universidade Federal Fluminense, com patrocínio da Pró-Reitoria de Extensão (PROEXT-UFF). Os dados, armazenados em arquivo shapefile (.shp), são extraídos e exibidos no momento da interação com o mapa. A interação é proporcionada por funções JavaScript da biblioteca Leaflet. Três planos de informações são disponibilizados - infraestrutura de saúde, casos positivos ativos de COVID-19 e casos confirmados de COVID-19. O artigo inclui as principais funções utilizadas e aponta as vantagens e desvantagens da aplicação dessas tecnologias no caso em questão. As vantagens da utilização de mapas dessa natureza são muitas, tais como: acesso aos dados a partir de qualquer lugar com Internet disponível e independentemente do tipo de dispositivo ou sistema operacional, acesso a metadados associados a marcadores geolocalizados no mapa, alternância imediata entre camadas de informações, número quase ilimitado de camadas. Por outro lado, pode haver limitações no que tange ao uso de tais mapas dinâmicos online por pessoas com pouca familiaridade com novas tecnologias de informação. Além disso, o uso desse tipo de mapa requer a disponibilidade de um equipamento para comunicação via Internet Espera-se, com a publicação do artigo, contribuir para o uso de softwares livres nas aplicações cartográficas.
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Kacare, Marika, Ieva Pakere, and Armands Grāvelsiņš. "THE COUPLING OF THE SYSTEM DYNAMICS MODEL WITH GIS TO VISUALISE THE POTENTIAL OF RENEWABLE ENERGY." In 24-oji jaunųjų mokslininkų konferencijos „Mokslas – Lietuvos ateitis“ teminė konferencija APLINKOS APSAUGOS INŽINERIJA. Vilniaus Gedimino Technikos Universitetas, 2020. http://dx.doi.org/10.3846/aainz.2021.12.

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During the current economic growth and the global climate crisis, energy supply is a pressing concern. Local energy sources are an essential part of sustainable development, and they also provide workplaces and energy independence. Various biding legislative documents oblige prioritising renewable energy sources (RES) and focus on green, local energy. Society cannot do such a transition without estimating the available resources and understanding the links among various factors influencing the energy market. The study aims to visualise system dynamics (SD) model parameters using the interactive cartography tool to analyse the potential of renewable energy in Latvia. Data gaps in the model were filled using statistical estimations and ArcGIS Pro spatial analysis. A JavaScript library for interactive maps Leaflet and HTML were used for the graphic user interface. The coupling presented in this paper is not dynamic but provides an insight into the potential implementation of the spatial data into models.
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