scholarly journals Web-Based Geographic Information System Development of Hotspots Distribution for Monitoring Forest and Land Fires Using Leaflet JavaScript Library (Case Study: Ogan Komering Ilir Regency, South Sumatera)

2021 ◽  
Vol 936 (1) ◽  
pp. 012010
Author(s):  
Bangun Muljo Sukojo ◽  
Diya Rochima Lisakiyanto

Abstract Forest and land fires are a disaster that occurs almost every year on Sumatra Island. Ogan Komering Ilir is one of the regencies in South Sumatra Province with a high number of hotspots causing forest and land fires every year. Prevention efforts are important to reduce the impact caused by forest and land fires on various aspects of life. One of them is by building a web-based Geographic Information System (WebGIS) for the distribution of hotspots as a form of early warning and detection system by utilizing VIIRS Nightfire (VNF) data from the remote sensing technology of the Suomi-NPP satellite which has Visible Infrared Imaging Radiometer Suite (VIIRS) active sensors which have been processed with the Nightfire algorithm. The Leaflet JavaScript library plays an important role in adding to the functionality of WebGIS with a wide selection of available plugins and easy-to-read source code to make web-based spatial information more interactive. The prototype of WebGIS with the name OKIApi has been successfully developed and has several key features such as displaying information on the distribution of hotspots that have been classified by temperature; the priority level of firefighting areas and the vulnerability level of flammable areas based on the type of land cover; route to the hotspot or the fire department locations; a chart of the estimated burned area from the source footprint of hotspot; and a chart of the number of hotspots per day that have been classified by temperature. The percentage value of the web feasibility for the functionality test to 13 WebGIS features is 100% with a very good predicate, the usability test is 91.5% with a very good predicate, and the portability test on 18 web browsers applications is 100% with a very good predicate.

2020 ◽  
Vol 7 (5) ◽  
pp. 1029
Author(s):  
Muhammad Darul Husni Santoso ◽  
Ikbal Jamaludin ◽  
Evi Dewi Sri mulyani

<p class="Abstrak">Kabupaten Majalengka merupakan wilayah yang mengalami perkembangan pesat yang memiliki sumber daya alam yang beraneka ragam yang dapat diolah menjadi bentuk berbagai produk. Dengan berkembangnya Usaha Mikro Kecil Menengah (UMKM) di Kabupaten Majalengka dapat menggerakan perekonomian masyarakat, khususnya di sektor bawah, yaitu untuk usaha mikro kecil menengah. Pada saat ini, di Kabupaten Majalengka belum memiliki sistem yang mampu memberikan informasi yang ditampilkan secara spasial mengenai persebaran lokasi UMKM, dimana nantinya sistem ini bertujuan untuk memberikan informasi yang dapat dijadikan bahan pertimbangan yang tepat dalam menentukan kebijakan yang berkaitan dengan pertumbuhan Usaha Mikro Kecil Menengah (UMKM) di Kabupaten Majalengka, seperti pengadaan pelatihan usaha, pemberian modal usaha dan lain sebagainya. Maka dari itu untuk membantu mengawasi pertumbuhan UMKM tersebut, diperlukan adanya sebuah sistem yang berbasis geografis yang dapat memberikan informasi lokasi  pertumbuhan UMKM secara spasial bagi Dinas terkait, yang direpresentasikan dengan sistem koordinat ditunjukan melalui penyimpanan titik <em>longitude</em> <em>(long)</em> dan <em>latitude</em> <em>(lat) </em> dalam <em>database </em>pada setiap lokasinya sebagai dasar pertimbangan dalam menentukan kebijakan Pemerintah di Kabupaten Majalengka. Pada penelitian ini, metode yang digunakan dalam pembangunan sistem ini menggunakan <em>System Development Life Cycle (SDLC</em>)<em>, </em>sistem ini akan dirancang dengan berbasis Web Geographic Information System (<em>WebGIS</em>) yang  menggunakan fasilitas dari Google Maps dan sistem ini diuji dengan menggunakan metode <em>blackbox. </em>Dengan dibangunnya sistem ini, maka informasi mengenai titik lokasi serta data UMKM yang sesuai dengan kegiatan usahanya dapat ditampilkan. Hasil penelitian ini berupa sistem informasi geografis, dimana sistem ini dapat memberikan informasi kepada Dinas Koperasi dan UMKM di Kabupaten Majalengka mengenai informasi lokasi penyebaran UMKM secara spasial yang dapat membantu dalam pengelolaan dan pengawasan terhadap pertumbuhan usaha berdasarkan lokasi dan jenis UMKM tersebut<em>.</em></p><p class="Abstrak"> </p><p class="Abstrak"><em><strong>Abstract</strong></em></p><p class="Abstract"><em>Majalengka Regency is a region that is experiencing rapid development that has diverse natural resources that can be processed into various forms of products. With the development of Micro, Small and Medium Enterprises (MSMEs) in Majalengka Regency, it can move the community's economy, especially in the lower sector, namely for micro small and medium businesses. At present, Majalengka Regency does not yet have a system capable of providing information that is displayed spatially about the distribution of MSME locations, where later this system aims to provide information that can be used as appropriate consideration in determining policies relating to the growth of Micro, Small and Medium Enterprises ( MSMEs) in Majalengka Regency, such as procurement of business training, provision of venture capital and so on. Therefore to help oversee the growth of MSMEs, a geographic based system is needed that can provide spatial information on MSME growth locations for the relevant Dinas, represented by a coordinate system shown through storing longitude and latitude points at each location as a basis for consideration in determining Government policy in Majalengka Regency. In this study, the method used in the construction of this system uses the System Development Life Cycle (SDLC), this system will be designed with a Web-based Geographic Information System (WebGIS) that uses facilities from Google Maps and the system is tested using the blackbox method. With the construction of this system, information about the location points as well as MSME data in accordance with their business activities can be displayed. The results of this study are in the form of a geographic information system, in which this system can provide information to the Cooperative and MSME Service Offices in Majalengka Regency regarding spatial information on MSME distribution locations that can assist in the management and supervision of business growth based on the location and type of MSME.</em></p><p class="Abstrak"><em><strong><br /></strong></em></p>


Author(s):  
Ferly Ardhy

Geographic Information System is a special information system that manages data that has spatial information (spatial reference). Or in a narrower sense, is a computer system that has the ability to build, store, manage and display geo-referenced information, such as data identified by its location in a database. With this rapid technological progress, the author tries to implement one of the GIS application program into the form of Kost Home layout information in Kotabumi. The author tries to build an application that will help to simplify the search such as information about home boarding services, home boarding locations, and strategic location of boarding house. The system to be created is "Geographic Information System Provider of Kost Home Based Website". The development used in this research is the development with Object Oriented model that uses several tools such as Use Case, Activity Diagram, and Class Diagram. And for system development method used is Prototyping development method. Keywords: GIS; Object Oriented; Prototyping.


2020 ◽  
Vol 2 (2) ◽  
pp. 141-150
Author(s):  
Nur Rachmat Fajar Ramadhani ◽  
Eka Prasetyaningrum ◽  
Lukman Bachtiar

Geographical Information System is an information system that is specialized in processing data that has spatial information (spatial reference). In a narrower sense, a Geographical Information System is a computer system that has the ability to build, store, manage and display geographic information, for example, data that is identified according to its location in a database. The purpose of this geographic information system is to find out information on the location of the distribution of pharmacies and drug data information in East Kotawaringin, so as to help people and people who are not native to East Kotawaringin. The development of a web-based pharmacy geographic information system in East Kotawaringin uses the programming language PHP and MySQL as the database system.


2021 ◽  
Vol 5 (5) ◽  
pp. 41-50
Author(s):  
Sasalak Tongkaw

The objective of this research is to develop the data for durian resources with a data collection system via the web-based system and the development of geographic information systems for durian resource management, and the local wisdom of Thai durian gardeners by designing the implement in the same database system, then presenting the durian data in southern Thailand by linking the geographic information system visualization to the map. In this research, the system method is designed using the System Development Life Cycle (SDLC), which includes six steps: requirement gathering and analysis, system design, implementation, integration and testing, development of a system, and maintenance. The results will show the visualization from both systems form and provide the report data with durian gardeners' needs.


2020 ◽  
Vol 16 (4) ◽  
pp. 101-145
Author(s):  
Raja Sher Afgun Usmani ◽  
Ibrahim Abaker Targio Hashem ◽  
Thulasyammal Ramiah Pillai ◽  
Anum Saeed ◽  
Akibu Mahmoud Abdullahi

Geographic information system (GIS) is designed to generate maps, manage spatial datasets, perform sophisticated “what if” spatial analyses, visualize multiple spatial datasets simultaneously, and solve location-based queries. The impact of big data is in every industry, including the GIS. The location-based big data also known as big spatial data has significant implications as it forces the industry to contemplate how to acquire and leverage spatial information. In this study, a comprehensive taxonomy is created to provide a better understanding of the uses of GIS and big spatial data. The taxonomy is made up of big data technologies, GIS data sources, tools, analytics, and applications. The authors look into the importance of big spatial data and its implications, review the data sources, and GIS analytics, applications, and GIS tools. Furthermore, in order to guide researchers interested in GIS, the challenges that require substantial research efforts are taken into account. Lastly, open issues in GIS that require further observation are summarized.


2021 ◽  
Vol 2 (4) ◽  
pp. 257-267
Author(s):  
Dwi Puji Rahmat ◽  
Darius Antoni ◽  
Heri Suroyo

The result of this research is a web-based WebGIS or Geographic Information System design using ArcGIS software, then input into ArcGIS online and system development using the Unified Process (UP). Geographic information system for mapping the area using Arcgis (Case Study of the Location of Religious Community Organizations in Palembang City) in its use, this Web-based GIS aims to facilitate various parties, especially KESBANGPOL Palembang City and KEMENAG Palembang in mapping the distribution of CSOs, especially in this case is Religious categories that have been registered and types    the information. With the geographical information system mapping the location of religious organizations, it is hoped that it will be useful and assist in knowing the layout of the location and information for these organizations so that the delivery of information becomes more effective.


1977 ◽  
Author(s):  
William B. Mitchell ◽  
Robin G. Fegeas ◽  
Katherine A. Fitzpatrick ◽  
Cheryl A. Hallam

2019 ◽  
Vol 2 (1) ◽  
pp. 23-34
Author(s):  
Ari Waluyo ◽  
Satria Budi Santoso

The purpose of this research is to know the geographic information system of tourism that is in Dinas Kepemudaan dan Olahraga dan Pariwisata Kebumen Regency and develop it Research methods used by doing observationin Dinas Kepemudaan dan Olahraga dan Pariwisata Kebumen Regency, then proceed with the system development method. the research method used is by the method of SDLC (System Development Life Cycle). By using the Software Notepad ++ to build tourism Geographical Information System web-based. PHP as a programming language, MySQL as the database server and the design of the map using the Google Maps API. The object-oriented approach that is used UML (Unified Modeling Language) can explain the flow of the existing system. Dinas Kepemudaan dan Olahraga dan Pariwisata Kebumen Regency has been doing promotion through mass media such as newspapers and brochures in the delivery of information. But the way is not enough to inform tourism and places of attractions. It is therefore through the design of Geographical information system of tourism was able to resolve the issue. After the results of the study of geographic information systems is expected delivery of tourism information becomes more widespread, and the tourists could be quick and precise in finding information a tourist want to visit.


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