scholarly journals Sistem Informasi Geografis Lokasi Kualitas Air Pada PDAM Patriot Bekasi

2020 ◽  
Vol 1 (2) ◽  
pp. 165-178
Author(s):  
Yoga Saputra ◽  
Abrar Hiswara ◽  
Rafika Sari

The digital information technology as humans today is a very important thing. Clean water is a basic human need that is met, so the need for a web-based Geographic Information System (GIS) as a digital information media about service requirements, sub-district boundaries, residential buildings, existing pipelines and locations of air quality specifically PDAM Tirta Patriot Bekasi city. The system development method used is the waterfall model. Data collection is a method of interview, observation, study of literature. The system design uses UML, the system is built using the PHP programming language, Javascript, with a MySQL database, on system testing with Blackbox Testing. Converting vector data into GeoJSON on the Quantum GIS application. It is hoped that this can help the PDAM Tirta Patriot of the City of Bekasi in providing information requested services, sub-district boundaries, housing buildings, pipelines in the distribution of clean air to the community, then provide information to customers of the Tirta Patriot City of Bekasi in viewing the point location of water quality in 3 housing complexes with the highest number of customers of PDAM Tirta Patriot of Bekasi City, Results that are in accordance with the service location and district area of the City of Bekasi, residential buildings, existing pipelines, and the location of the customer complaint water point from GIS information based on customer satisfaction survey data.   Keywords: Geographic Information System, PDAM, Waterfall, Google Maps, OpenStreetMap.   Abstrak   Kebutuhan akan teknologi informasi digital sebagai manusia zaman sekarang merupakan hal pokok yang sangat diperlukan. Air bersih merupakan suatu kebutuhan yang mendasar manusia sebagai kelangsungan hidupnya, maka perlu adanya Sistem Informasi Geografis (SIG) berbasis web sebagai media informasi peta digital mengenai cakupan layanan, batas wilayah kecamatan, bangunan perumahan, jaringan pipa existing dan lokasi kualitas air khususnya PDAM Tirta Patriot Kota Bekasi. Metode pengembangan sistem yang digunakan model waterfall. Pengumpulan datanya yaitu metode wawancara, observasi, studi pustaka. Perancangan sistem menggunakan UML, sistem ini dibangun menggunakan bahasa pemrograman PHP, Javascript, dengan basis data MySQL, pada pengujian sistem dengan Blackbox Testing. Konversasi data vektor ke dalam GeoJSON pada aplikasi Quantum GIS. Yang diharapkan ini bisa membantu PDAM Tirta Patriot Kota Bekasi dalam menyajikan informasi cakupan layanan, batas wilayah kecamatan, bangunan perumahan, jaringan pipa existing dalam distribusi air bersih kepada masyarakat, kemudian memberikan informasi pada pelanggan PDAM Tirta Patriot Kota Bekasi dalam melihat titik lokasi kualitas air di 3 perumahan dengan jumlah pelanggan terbanyak PDAM Tirta Patriot Kota Bekasi, Hasil yang ditampilkan berupa peta cakupan layanan dan wilayah kecamatan Kota Bekasi, bangunan perumahan, jaringan pipa existing, dan lokasi titik air keluhan pelanggan dari informasi GIS berdasarkan data survei kepuasan pelanggan.   Kata kunci: Geographic Information System, PDAM, Waterfall, Google Maps, OpenStreetMap.


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



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.



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>



2017 ◽  
Vol 2 (1) ◽  
Author(s):  
Yosef Murya Kusuma Ardhana

The aim of this study was to design geographic information system based on Android. This would be used to map the ATM machines in Yogyakarta in which later on could help people to search the address or the geographic location of the ATM machines. The researcher used Java and XML program in developing the geographic information system. Java was used to build the system, and XML was used to build user interface or display interface. On the other hand, data base which was used in this study was MySQL.The system development methodology used in this study was Waterfall methodology. This methodology had some steps, they are analysis, design, implementation, testing, and maintenance. In data collecting process, the researcher used observation, interview, and literature methods. Output which would be produced in developing geographic information system was an application of Geographic Information System mapping ATM machine facilities.The application of Geographic Information System mapping ATM machine facilities was tested using product testing methodology ISO 9126. The scores were > 3.0 to each criteria from ISO 9126. The functionality score was 4,24. The reliability score was 4,27. The usability score was 4,42, and the efficiency score was 4,61. Therefore, the application of Geographic Information System mapping ATM machine facilities could fulfil the need of ATM machine userKeywords : Geographic Information System, ISO 9126, Google Maps, Android, Waterfall



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


2021 ◽  
Vol 1 (137) ◽  
pp. 73-80
Author(s):  
Zahraa Najim

This research study the distribution of hospitals in the province of Baghdad Using geographic information system to focus on the shortage of hospitals in specific regions in comparison with other regions. In the distribution of hospitals in the city of Baghdad using Arc GIS program, we noticed that there is a shortage in the number of hospitals in the city of Kadhimiya, Sadr city and other areas compared to the increase in the population in these areas. There are enough hospitals in the area of Andalus square.



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.



2016 ◽  
Vol 12 (1) ◽  
Author(s):  
Rahma Wayan Lestari ◽  
Indra Kanedi ◽  
Yode Arliando

The purpose of this research is to create a geographic information system Bengkulu city flood-prone areas using ArcView. Apply the knowledge obtained during the lecture, especially relating to the development of Geographic Information Systems. To be able to produce a system that is accurate and useful information for the community. Where the research was conducted in the city of Bengkulu BASARNAS. Bengkulu BASARNAS office specializing in Search and Rescue (SAR), is the body that manage the flood of data that is still done manually, using Microsoft Word and Microsoft Excel. Thus experiencing problems in delivering information directly to the office because the SAR agencies require a long time.Keywords: Geographic Information System, Flood Prone Area



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).



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