Sabila, Sabila (2026) Pengembangan WebGIS Berbasis SDLC Waterfall untuk Monitoring Batas Wilayah dan Toponimi secara Berkelanjutan di Kota Mojokerto. Diploma thesis, Institut Teknologi Sepuluh Nopember.
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Abstract
Pendokumentasian batas wilayah dan toponimi di Kota Mojokerto masih dilakukan secara manual dan belum terintegrasi secara digital, sehingga menghambat pemantauan, pembaruan data, dan meningkatkan potensi ketidaktepatan informasi. Penelitian ini bertujuan mengembangkan platform WebGIS bernama GEO BOUND (Geospatial Boundary Observation & Unified Network Dashboard) berbasis open source untuk menampilkan, menyimpan, dan memperbarui data batas wilayah serta toponimi secara terintegrasi, sekaligus membuka partisipasi publik dalam monitoring spasial di Kota Mojokerto. Pengembangan sistem menggunakan pendekatan System Development Life Cycle (SDLC) model waterfall yang terdiri atas tahap analisis kebutuhan, perancangan, implementasi, pengujian, dan pemeliharaan. Data yang digunakan mencakup empat lapisan spasial yaitu batas administrasi Kota Mojokerto, pilar batas, toponimi dari tiga kecamatan (Magersari, Prajurit Kulon, dan Kranggan) hasil survei lapangan, serta data kerentanan batas wilayah, yang seluruhnya disimpan dalam basis data spasial berbasis cloud. Platform dilengkapi fitur visualisasi peta interaktif berlapis, filter data spasial, informasi detail dengan foto dokumentasi lapangan, modul pelaporan publik dengan kode pelacakan unik, serta dasbor admin untuk pengelolaan laporan. Evaluasi kelayakan dilakukan menggunakan kuesioner berbasis Nielsen's Usability Attributes (NAU) yang mencakup enam aspek yaitu learnability, efficiency, memorability, errors, satisfaction, dan kebermanfaatan sistem, dengan melibatkan 30 responden. Seluruh 20 butir instrumen dinyatakan valid (r_hitung 0,439–0,838 > r_tabel 0,361) dan reliabel (Cronbach's Alpha α = 0,949). Nilai mean keseluruhan sebesar 4,59 dengan kategori Sangat Baik melebihi ambang batas kelayakan minimum (x̄ ≥ 3,41), menunjukkan bahwa platform GEO BOUND layak digunakan dan berpotensi mendukung peningkatan akurasi data, transparansi informasi, serta tata kelola data spasial pemerintahan yang akuntabel sesuai prinsip good governance dan SDGs poin 16 mengenai penguatan institusi yang efektif dan transparan.
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The documentation of administrative boundaries and toponyms in Mojokerto City has thus far been conducted manually and remains unintegrated digitally, thereby impeding monitoring, data updating, and increasing the potential for informational inaccuracies. This study aims to develop a WebGIS platform named GEO BOUND (Geospatial Boundary Observation & Unified Network Dashboard) based on open source technology to display, store, and update administrative boundary and toponym data in an integrated manner, while simultaneously enabling public participation in spatial monitoring across Mojokerto City. System development employs the waterfall model of the System Development Life Cycle (SDLC) approach, encompassing the stages of requirements analysis, design, implementation, testing, and maintenance. The data utilized covers four spatial layers, namely the administrative boundaries of Mojokerto City, boundary pillars, toponyms from three sub-districts (Magersari, Prajurit Kulon, and Kranggan) obtained through field surveys, and boundary vulnerability data, all of which are stored in a cloud-based spatial database. The platform is equipped with features including interactive multi-layer map visualization, spatial data filtering, detailed information with field documentation photographs, a public reporting module with a unique tracking code, and an admin dashboard for report management. System feasibility evaluation was conducted using a questionnaire based on Nielsen's Usability Attributes (NAU) encompassing six aspects, namely learnability, efficiency, memorability, errors, satisfaction, and system usefulness, involving 30 respondents. All 20 instrument items were declared valid (r_count 0.439–0.838 > r_table 0.361) and reliable (Cronbach's Alpha α = 0.949). The overall mean score of 4.59, classified as Very Good, exceeds the minimum feasibility threshold (x̄ ≥ 3.41), demonstrating that the GEO BOUND platform is fit for use and has the potential to support improvements in data accuracy, information transparency, and accountable governmental spatial data governance in accordance with the principles of good governance and SDGs Goal 16 regarding the strengthening of effective and transparent institutions.
| Item Type: | Thesis (Diploma) |
|---|---|
| Uncontrolled Keywords: | Nielsen's Usability Attributes, Pilar Batas, SDLC, Toponimi, WebGIS, Nielsen's Usability Attributes, Boundary Pillar, SDLC, Toponymy, WebGIS. |
| Subjects: | T Technology > T Technology (General) > T57.5 Data Processing T Technology > T Technology (General) > T58.6 Management information systems T Technology > T Technology (General) > T58.62 Decision support systems T Technology > TA Engineering (General). Civil engineering (General) > TA158.7 Computer network resources T Technology > TA Engineering (General). Civil engineering (General) > TA590 Topographical surveying |
| Divisions: | Faculty of Civil, Planning, and Geo Engineering (CIVPLAN) > Geomatics Engineering > 29202-(S1) Undergraduate Thesis |
| Depositing User: | Sabila Sabila |
| Date Deposited: | 23 Jul 2026 01:40 |
| Last Modified: | 23 Jul 2026 01:40 |
| URI: | http://repository.its.ac.id/id/eprint/136265 |
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