Implementasi Konsep Kadaster 3D Untuk Analisis Perubahan Unit Ruang Pada Objek Gedung Berdasarkan Pp Nomor 13 Tahun 2021 Dan Pp Nomor 18 Tahun 2021

Maulana, Muhammad Hengki Maulana (2026) Implementasi Konsep Kadaster 3D Untuk Analisis Perubahan Unit Ruang Pada Objek Gedung Berdasarkan Pp Nomor 13 Tahun 2021 Dan Pp Nomor 18 Tahun 2021. Other thesis, Institut Teknologi Sepuluh Nopember.

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Abstract

Pemanfaatan ruang vertikal pada gedung bertingkat menyebabkan konfigurasi unit ruang semakin kompleks dan berubah dari waktu ke waktu. Penelitian ini menerapkan konsep kadaster 3D secara teknis-konseptual untuk memodelkan dan menganalisis perubahan unit ruang Gedung Timur Teknik Geomatika ITS berdasarkan kondisi tahun 2013 dan 2026. Model fisik bangunan dan unit ruang volumetrik dibangun menggunakan Autodesk Revit, atributnya diekstraksi melalui data schedule dan disimpan dalam PostgreSQL, sedangkan model divisualisasikan secara interaktif menggunakan CesiumJS. Hasil penelitian menunjukkan jumlah unit ruang meningkat dari 63 menjadi 67 unit atau 6,35%, tetapi total luas berkurang 25,80 m² dan total volume berkurang 90,56 m³. Validasi geometrik terhadap 50 segmen menghasilkan RMSE total 0,0623 m. PP Nomor 13 Tahun 2021 digunakan untuk membaca batas, identitas, dan pemisahan unit ruang, sedangkan PP Nomor 18 Tahun 2021 digunakan untuk membaca perubahan konfigurasi berupa pemecahan dan penggabungan ruang. Permenpera Nomor 11 Tahun 2008 digunakan secara analogis untuk membaca komposisi fungsi ruang. Sistem menampilkan kode, nama, fungsi, lantai, luas, volume, status, tahun data, serta perubahan ruang secara visual dan atributif. Namun, sistem belum memuat pihak, hak, pembatasan, tanggung jawab, dan status legal sehingga bukan merupakan implementasi kadaster 3D legal-administratif secara penuh.
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Vertical space utilization in multi-storey buildings creates complex space-unit configurations that change over time. This study applies the 3D cadastre concept to model and analyze changes in space units in the East Building of Geomatics Engineering, ITS, based on the 2013 and 2026 conditions. The physical building model and volumetric space units were developed using Autodesk Revit, while attributes were extracted through data schedules, stored in PostgreSQL, and visualized using CesiumJS. The results show that the number of space units increased from 63 to 67 units, or by 6.35%, while the total area decreased by 25.80 m² and the total volume decreased by 90.56 m³. Geometric validation of 50 segments produced a total RMSE of 0.0623 m. Government Regulation No. 13 of 2021 was used to interpret space-unit boundaries, identification, and separation, whereas Government Regulation No. 18 of 2021 was used to interpret splitting and merging. Permenpera No. 11 of 2008 was used analogically to interpret functional space composition. The system displays codes, names, functions, floors, areas, volumes, statuses, data years, and space changes. However, it does not include parties, rights, restrictions, responsibilities, or legal status and is therefore not a full legal-administrative 3D cadastre implementation.

Item Type: Thesis (Other)
Uncontrolled Keywords: Kadaster 3D, Unit Ruang 3D, Perubahan Konfigurasi Ruang, Basis Data Atribut, PostgreSQL, CesiumJS, 3D Cadastre, 3D Space Unit, Space Configuration Change, Attribute Database, PostgreSQL, CesiumJS.
Subjects: G Geography. Anthropology. Recreation > G Geography (General) > G70.217 Geospatial data
G Geography. Anthropology. Recreation > GA Mathematical geography. Cartography > GA109.5 Multipurpose cadastres.
T Technology > T Technology (General) > T57.5 Data Processing
Divisions: Faculty of Civil, Planning, and Geo Engineering (CIVPLAN) > Geomatics Engineering > 29202-(S1) Undergraduate Thesis
Depositing User: Muhammad Hengki Maulana
Date Deposited: 01 Aug 2026 05:39
Last Modified: 01 Aug 2026 05:39
URI: http://repository.its.ac.id/id/eprint/141447

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