scholarly journals Geographic Information System for Mapping and Complaint of Damaged Roads

Author(s):  
Widiana Putra Winarta ◽  
I Nyoman Piarsa ◽  
Ni Made Ika Marini Mandenni

Indonesia is a massive archipelago of 1.919.400 km², containing roads that span at 542.000 km across various terrain conditions. This diverse geographic environment is a challenge to road constructions and repairs across the country, which has lead to disruption in public service and traffic accidents each year. We propose the Geographic Information System for Mapping and Complaint of Damaged Roads, a solution which can provide users a digital interface to report damaged roads to the transportation department in their area. This research uses Google Maps API to digitize and make a complaint about damaged roads. The result of this research is an android application for the users and a website application for the road managers. The android application is used by the users to make complaints of damaged roads. The web application is used by road managers to draw the road on Google Maps using polyline feature. With this our goal is to systematize the handling of damaged roads information, leading to faster service times and hopefully help reduce the level of traffic accidents in Indonesia. Keywords: Complaint, Damaged road, Geographic Information System, Google Maps, Road digitization.

Author(s):  
М.Р.  Вагизов ◽  
Д.А. Дубов

Рассматривается необходимость разработки специализированной геоинформационной системы для отрасли охотничьего хозяйства. Указаны основные принципы проектирования и разработки приложения. Определены необходимые требования к проектируемой ГИС и задачи, которые способна решать система. Проведено описание организационной структуры геоинформационной системы и функции, подлежащие визуализации. Составлено схемотехнические решение и визуализация графического интерфейса взаимодействия пользователя с системой. В соответствии со Стратегией развития охотничьего хозяйства РФ до 2030 года, требуется повышать программно-информационное обеспечение охотпользователей. Обоснованием разработки является отсутствие единой системы сбора, хранения и систематизации данных о состоянии охотхозяйств, численности популяций и проведении необходимых мероприятий. Разработка специальной ГИС способна обеспечить поддержку в системе принятия решений человеком в интересах управления территориями охотхозяйств. Разработка продуманного интерактивного интерфейса позволит вывести ГИС на наиболее качественный уровень взаимодействия. Общеизвестно, что пространственные данные являются основой информационного обеспечения геоинформационных систем, в том числе локальных ГИС. Для непрерывного обновления геоданных требуется своевременная актуализация информации на сервере, в которой данная система развернута. Поэтому в качестве технологической основы выбрано проектирование именно веб-приложения, работающего через предустановленный браузер пользователя. Реализация функций данной ГИС, продуманный человеко-машинный интерфейс, включенный в ее состав, позволит использовать данную систему не только охотпользователям, но и заинтересованным специалистам в смежных отраслях: лесное хозяйство, картография, геоинформатика, зоогегография, охотоведение. Разработанная система может использоваться в учебном процессе при подготовке студентов по различным направлениям в высших образовательных учреждениях. Discusses the necessity of developing a specialized geographic information system for hunting groung. Carried out a description of the organizational structure of geoinformation systems and functions to be rendering. Determined necessary requirements for the design of the GIS and the tasks which the system are able to solve. The organizational structure of the geographic information system and the functions to be visualized are described. Compiled technical scheme and visualization GUI. In accordance with the strategy of development of the hunting industry of the Russian Federation until 2030, it is required to increase the software and information support for hunting users. The basis for development is the lack of a unified system of collection, storage and systematization of data on the state of hunting, population and carry out the necessary measures. The development of a special GIS is able to provide support in the system of decision-making by a person in the interests of managing the territories of hunting farms. The development of a thoughtful interactive interface will bring the GIS to the most high-quality level of interaction. It is well known that the spatial data are the basis for information support of geographic information systems, including local GIS. For continuous updates of the geodata requires a timely update information on the server in which the system is deployed. Therefore, as the technological base of the selected design it is the web application running through a preset user's browser. The implementation of the functions of this GIS, intelligent man-machine interface, included in its composition, will allow you to use this system not only hunters, but also to interested professionals in related industries, forestry, cartography, geoinformatics, zoogeography, and hunting. The developed system can be used in educational process for training students in various areas in higher educational institutions.


Author(s):  
Khaerul Yasin ◽  
Ahmat Adil

Basically, Indonesia is traversed by three active tectonic plates namely the Indo-Australian Plate in the south, and the Eurasian Plate in the north and the Pacific Plate in the east. The plates collide with each other because the Indo-Australian Plate movement drops below the Eurasian plate. As a result of this accumulation, it caused earthquakes, volcanoes, and faults or faults in parts of Indonesia. In the Geographic Information System evacuation routes will be used by Google maps Api to implement the spatial map making of evacuation routes. Google Map Api is an application interface that can be accessed via javascript so that Google Map can be displayed on the web page that we are building. The result or output to be achieved is the creation of a geographic information system mapping natural disaster evacuation route in the North Lombok district that can be run on a Web platform. Based on the trials conducted it can be concluded that this application can help the community to find the location of evacuation routes and gathering points in accordance with the districts and villages where they live.


2017 ◽  
Vol 2 (1) ◽  
pp. 1-6
Author(s):  
Achmad Fadri Saputra ◽  
Andi Patombongi

Sistem Informasi Geografis adalah sistem informasi yang digunakan untuk menyimpan dan mengolah data bereferensi geografis atau geospital, untuk membantu salah satunya dalam mencari lokasi. Pada penulisan ini, penulis membuat Sistem Informasi Geografis apotek di Kota Kendari berbasis web dengan menggunakan Google Maps API untuk menampilkan peta Kendari, bahasa pemrograman PHP dan Javascript serta pengelolaan database menggunakan MySQL yang nantinya akan ditampilkan diwebsite. Sistem yang dibuat diharapkan dapat memudahkan pengguna untuk mendapatkan informasi dalam menemukan lokasi apotek di Kota Kendari.


2017 ◽  
Vol 1 (2) ◽  
pp. 27
Author(s):  
I Made Arsa Suyadnya ◽  
Duman Care Khrisne

Southern part of Bali, especially the regency of Badung, in addition to having natural beauty and popular tourist attraction, it has a high potential for disaster. The fact is the coastline of Bali in the south is prone to tsunami because Bali is located close to the colliding zone between the Indo-Australian plate and the Eurasia plate, which presents the main source of local tsunami that could hit the island of Bali. This research undertakes the design and development of a Geographic Information System (GIS) that can provide information and socialization of potential tsunami impact areas and safe gathering places for coastal tourism area in Badung regency. This application is built web-based by using Google Maps API v3. In this Geographic Information System, users can identify potential tsunami impact areas, obtain information on evacuation methods in the event of a tsunami disaster and can find the nearest safe gathering places to do evacuation. By utilizing geolocation and direction services from Google Maps API v3, simulation of the nearest evacuation route has been successfully built. Evacuation is done by considering two possible evacuation sites. The first possibility is to evacuate to the nearest vertical high building, and the second evacuation site is away from the danger zone (red zone) and towards the safe zone (yellow zone or outside the yellow zone).


2018 ◽  
Vol 6 (1) ◽  
pp. 116-124
Author(s):  
Keukeu Rohendi ◽  
Luri Setiawan

In search of boarding house and rented especially in Padang city, students and the general public to get information from communications with others or directly looking into the field, is caused by the absence of a system providing information about boarding and rented, the owners of the kost and boarding house publish a service boarding services and rented still in the form of brochures or banners, resulting in students not able to find information about boarding or rented as they wish.This study aims to provide a means of information about the boarding house and rented shaped geographic information system where the application is able to search and rent boarding house and its location using the Google Maps API. This application can also detect the point of boarding and search locations were rented so that the search can determine the location of the point of kost and boarding house the closest location.


2019 ◽  
Vol 7 (2) ◽  
pp. 187-198
Author(s):  
Achmad Baroqah Pohan ◽  
Herlin Widasiwi Setianingrum

Abstract   Depok city, West Java, Indonesia is located in the south of Jakarta, between Jakarta and Bogor. This city has 2.1 million people in 2016 with a high mobility society characteristic. Therefore, they need adequate transportation mode for supporting their activities. The availability of information for public transportation route is a mandatory requirement for Depok city. The use of Internet technology for the implementation of geographic information system is expected to contribute to the success factor of public transportation service. In this study, the proposed system utilized Google Maps in processing and visualizing the public transport route map. The system is designed using Rapid Application Development software development that suitable for faster system development. With this information system, the community is expected to be easier to get information about public transport in Depok city. In addition, the purposed system could give the benefits, i.e. increasing the use of public transport, decreasing the use of private vehicle in people daily activities, and reducing the traffic jams in the city. The proposed system this study was a web-based GIS application that provides information about public transport service in the city of Depok.   Keywords: Rapid Application Development, Geographic Information System, Public Transportation, Web   Abstrak   Kota Depok adalah sebuah kota di provinsi Jawa barat yang terletak tepat di selatan jakarta, yakni diantara Jakarta dan bogor. Populasi kota Depok pada tahun 2016 mencapai 2,1 juta penduduk dengan mobilitas masyarakatnya yang tinggi. Hal tersebut menjadikan masyarakat kota Depok sangat membutuhkan moda transportasi yang memadai untuk menjalankan segala aktifitasnya. Kemudahan informasi mengenai rute rute transportasi umum juga menjadi sebuah kebutuhan wajib bagi masyarakat kota Depok. Pemanfaatan teknologi internet untuk membangun sebuah sistem informasi geografis diharapkan dapat berkontribusi memberikan kemudahan bagi masyarakat dalam mendapatkan rute angkutan umum. Sistem ini memanfaatkan Google Maps dalam mengolah dan memvisualisasikan peta rute angkutan umum. Sistem dirancang dengan menggunakan metode pengembangan perangkat lunak Rapid Application Development, dengan harapan sistem lebih cepat diimplementasikan. Dengan adanya sistem informasi ini, diharapkan masyarakat lebih mudah mendapatkan informasi mengenai rute angkutan umum di kota Depok. Selain itu tujuan penelitian ini dapat berdampak peningkatan penggunaan transportasi umum oleh masyarakat dibandingkan penggunaan kendaraan pribadi saat melakukan aktifitas harian yang secara tidak langsung dapat mengurangi angka kemacetan di kota Depok. Hasil dari penelitian ini adalah sebuah aplikasi GIS berbasis web yang memberikan informasi rute rute angkutan umum di kota Depok.   Kata kunci: Rapid Application Development, Sistem Informasi Geografis, Transportasi Umum, Web


2020 ◽  
Vol 12 (01) ◽  
pp. 297
Author(s):  
Arinalhaq Arinalhaq ◽  
Totok Wahyu Wibowo

AbstractKawasan Taman Nasional Gunung Merapi (TNGM) memiliki ragam potensi keunikan keanekaragaman hayati, alam, budaya dan sosial ekonomi, sehingga keberadaan kawasan ini penting dalam menciptakan hubungan yang berkelanjutan antara manusia dan lingkungan alam. Ancaman akan kelestarian TNGM salah satunya datang dari kegiatan perambahan yang dilakukan oleh manusia. Penelitian ini bertujuan untuk menyusun peta tingkat potensi perambahan di TNGM dengan menggnakan pemodelan spasial berbasis Sistem Informasi Geografis (SIG). Pengetahuan tentang tingkat potensi perambahan tersebut dapat dimanfaatkan untuk mengetahui distribusi wilayah yang perlu disarankan untuk tindakan pengawasan. Pemodelan potensi ancaman perambahan disusun berdasarkan parameter ketinggian tempat, kemiringan lereng, jarak dari jaringan jalan, jarak dari jaringan sungai, jarak dari penggunaan lahan, dan jarak dari permukiman. Proses analisis yang digunakan adalah analisis tumpang susun dengan menggunakan metode kuantitatif berjenjang tertimbang. Hasil pemetaan potensi ancaman kemudian diintegrasikan dengan peta zonasi kawasan untuk menghasilkan rekomendasi tindakan pengawasan. Berdasarkan peta potensi ancaman diketahui bahwa bagian selatan dari daerah kajian memiliki tingkat ancaman yang paling tinggi, yang mana merupakan daerah di sekitar batas TNGM. Analisis rekomendasi tindakan pengawasan menunjukkan bahwa terdapat 1.194,71 hektar (58.35%) dari daerah kajian disarankan untuk diawasi. Daerah tersebut memiliki nilai potensi ancaman perambahan yang relatif tinggi dan termasuk dalam Zona Inti. Tepatnya berada dekat dengan batas kawasan yang kemungkinan besar terpengaruh oleh aktivitas masyarakat.Kata kunci: TNGM, Potensi Ancaman Perambahan, Sistem Informasi Geografis, Pemodelan Spasial. Mount Merapi National Park (TNGM) has a variety of potential uniqueness of biodiversity, nature, culture and socio-economic. The existence of this region is critical in creating sustainable relationships between humans and their natural environment. One of the threats to TNGM sustainability comes from encroachment activities carried out by humans. This study aims to perform spatial modeling by utilizing Geographic Information System to produce potential encroachment level map and uncover the areas that need monitoring. There are six parameters used to develop an encroachment threat model, namely elevation, slope, distance from the road, distance from the hydrological network, distance from land use, and distance from the settlement. Overlay analysis was implemented using a quantitative weighted scoring method. The result is then integrated with the TNGM zonation map to produce recommendations for supervision actions. The map of the potential level of encroachment threat show there are five classes of threat varying from high to low. The high-threat spatial arrangement dominates the southern area which is around the TNGM boundary. Recommendation analysis of supervisory actions shows that there are 1194.71 hectares (58.35%) of the study area recommended being monitored. Those were the region that both have a relatively high potential threat of encroachment and settled in the Core Zone. Precisely located near the boundaries of the area which are commonly affected by community activities.Key words: TNGM, Potential encroachment threat, Geographic Information System, Spatial modelling.


Jurnal Teknik ◽  
2021 ◽  
Vol 19 (1) ◽  
pp. 32-41
Author(s):  
Harun Musa ◽  
Rahmayanti

Garbage collection locations scattered at various points often make it difficult for citizens to find the nearest garbage collection location. Therefore, it is necessary to provide media that could help the public in finding the nearest garbage collection location. This study aims to design a geographic information system of garbage collection locations in the Pohuwato Regency area. This system will utilize tools that could be accessed for free, namely Google Maps so that the locals readily access the information needed. The method used in this research was a descriptive method. The results showed that people in Pohuwato Regency could find garbage collection locations in each sub-district which was detected through the geographic information system and thus made it easier for people to find the nearest garbage collection point.


SinkrOn ◽  
2019 ◽  
Vol 3 (2) ◽  
pp. 56
Author(s):  
Danur Sugiharja ◽  
Omar Pahlevi ◽  
Reni Widyastuti

Child Friendly Integrated Public Space or also known by the abbreviation RPTRA is the concept of public space in the form of green open spaces or parks that are equipped with various interesting games. Currently RPTRA is already widely available in all DKI Jakarta, especially in Central Jakarta, but there are still many people who do not know the location of the location of RPTRA. The dijkstra algorithm applied to this Android-based RPTRA geographic information system application in the City of Central Jakarta is to use google maps as a navigation map, where the Algorithm: {When users select the Map menu in the main menu, users will see maps and points of all RPTRA locations in Central Jakarta City, select one of the RPTRA location points, after the user selects one RPTRA location point, select the image on the right bottom route, then the user will go to google maps to get the route to the selected RPTRA. } The location of RPTRA directly takes coordinates at each RPTRA located in Central Jakarta City. The results achieved in testing the application went well able to provide accurate data on the location points of RPTRA in Central Jakarta.


2018 ◽  
Vol 2 (1) ◽  
pp. 96
Author(s):  
Radius Prawiro ◽  
Azrai Sirait

Abstract - The content of this study is the construction of a Geographic Information System. The development of this Geographic Information System is expected to help the Education Office to record school needs displayed in the form of maps. In addition, it helps the community to know the location and needs of the school. This Geographic Information System is displayed in a web form so that everyone can access it. In building this Geographic Information System, the author uses google maps to determine coordinates. This coordinate point is the latitude and longitude points found on google maps. Using these coordinates, you will get the school location. Latitude and longitude values will be stored in the MySQL database and will be called using PHP programming. This Geographic Information System can run locally, namely using a local server such as XAMPP, provided that it must be connected to the internet. Geographic Information System Design uses UML modeling consisting of usecase, activity diagrams, class diagrams, sequential diagrams, statechart diagrams, package diagrams, component diagrams, deployment diagrams, and collaboration diagrams. Keywords - Geographic Information Systems, Google Maps, Latitude, Longitude, UML


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