Abaz, Zumrotus Saadah (2026) Model Kesiapan Dan Iklim Teknologi Industri High Purity Manganese Sulphate Monohydrate (HPMSM) Di Indonesia Melalui Pendekatan Teknometrik, ANP Dan Topsis. Masters thesis, Institut Teknologi Sepuluh Nopember.
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Abstract
Lonjakan permintaan baterai kendaraan listrik global memicu tantangan pasokan prekursor High Purity Manganese Sulphate Monohydrate (HPMSM). Mengingat industri pengolahan bijih mangan oksida di Indonesia masih berada pada fase pra-konstruksi, penelitian ini bertujuan mengembangkan model kesiapan teknologi level pabrik guna mengukur kontribusi teknologi aktual dan merumuskan prioritas strategi pembangunannya. Evaluasi dilakukan dengan mengintegrasikan kapabilitas internal menggunakan metode Teknometrik (kerangka Technoware, Humanware, Infoware, Orgaware) dan dimensi eksternal berupa Iklim Teknologi. Penilaian dari 11 pakar diolah menggunakan Analytic Network Process (ANP) untuk pembobotan kriteria yang saling bergantung, dilanjutkan dengan metode TOPSIS untuk memprioritaskan alternatif strategi mitigasi. Hasil penelitian menunjukkan nilai Technology Contribution Coefficient (TCC) sebesar 0,707, yang menempatkan kesiapan agregat pada kategori Tinggi, namun dengan kesenjangan kritis (gap 0,503) pada komponen Infoware. Komputasi ANP menetapkan Technoware (0,379) dan Regulasi (0,072) sebagai kriteria internal dan eksternal paling dominan. Berdasarkan integrasi tersebut, metode TOPSIS memprioritaskan strategi Modifikasi Teknologi (A1) sebagai rekomendasi utama (skor preferensi 0,662), disusul oleh Regulasi Pasok (A6). Penelitian ini menyimpulkan bahwa penguasaan teknologi ekstraksi melalui modifikasi teknologi untuk memvalidasi parameter operasi bijih oksida lokal merupakan prasyarat mutlak sebelum investasi komersial dikucurkan, di mana langkah ini harus dikawal oleh kepastian regulasi hilirisasi dari pemerintah.
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The global surge in electric vehicle battery demand has created supply challenges for High Purity Manganese Sulphate Monohydrate (HPMSM) precursors. As Indonesia's oxide-type manganese processing industry remains in the pre-construction phase, this study aims to develop a plant-level technology readiness model to measure actual technological contributions and formulate priority development strategies. The evaluation integrates internal capabilities using the Technometrics framework (Technoware, Humanware, Infoware, Orgaware) and external dimensions via the Technology Climate. Assessments from 11 experts were processed using the Analytic Network Process (ANP) to weigh interdependent criteria, followed by the TOPSIS method to prioritize alternative mitigation strategies. The results revealed a Technology Contribution Coefficient (TCC) of 0.707 (High category), with a critical gap in the Infoware component (0.503). ANP identified Technoware (0.379) and Regulation (0.072) as the most dominant internal and external criteria. Consequently, TOPSIS prioritized the Technology Modification strategy (A1) as the main recommendation (preference score 0.662), followed by Supply Regulation (A6). The study concludes that mastering extraction technology via a technology modification to validate operating parameters is an absolute prerequisite before commercial investment, which must be strictly safeguarded by downstream regulatory certainty from the government.
| Item Type: | Thesis (Masters) |
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| Uncontrolled Keywords: | Baterai Kendaraan Listrik, HPMSM, Model Teknologi, Teknometrik, ANP, TOPSIS, Electric Vehicle Battery, Technology readiness model, Technometrics |
| Subjects: | T Technology > T Technology (General) > T58.62 Decision support systems T Technology > TL Motor vehicles. Aeronautics. Astronautics > TL220 Electric vehicles and their batteries, etc. |
| Divisions: | Interdisciplinary School of Management and Technology (SIMT) > 61101-Master of Technology Management (MMT) |
| Depositing User: | Zumrotus Saadah Abaz |
| Date Deposited: | 30 Jul 2026 02:47 |
| Last Modified: | 30 Jul 2026 02:47 |
| URI: | http://repository.its.ac.id/id/eprint/141044 |
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