Master's in Civil Engineering
Accreditation
Study Program Contact
Civil Engineering Graduate Program, Institut Teknologi Bandung
Jl. Ganesha No. 10, Bandung, Jawa Barat, Indonesia 40132
Body of Knowledge
Body of Knowledge Program Studi Magister
Civil Engineering
The Master's Program in Civil Engineering encompasses a broad spectrum of scientific disciplines alongside rapid advancements in science and technology. As a continuation of the Undergraduate Program in Civil Engineering, a strong integration is established between the undergraduate and master's programs, where the master's program offers advanced specialization and concentration tracks beyond the undergraduate level, which primarily aims to produce graduates equipped with civil engineering design capabilities. This integration emphasizes the depth of competence in specific specialization areas: while the undergraduate level focuses on foundational knowledge, the master's level requires advanced competencies spanning analysis, synthesis, and evaluation of complex problems within specific civil engineering concentrations. To date, the Master's Program in Civil Engineering offers 5 (five) areas of specialization, namely: Structural Engineering, Geotechnical Engineering, Water Resources Engineering, Construction and Infrastructure Management, and Transportation Engineering.
Equipped with fundamental sciences, civil engineering principles, and professional practices acquired at the undergraduate level, the Master's Body of Knowledge encompasses advanced civil engineering disciplines closely aligned with the life-cycle phases of physical infrastructure: planning, design, construction execution, as well as operation and maintenance (O&M). An overview of the Body of Knowledge (BoK) for the Master's Program in Civil Engineering can be seen in the figure below.
Challenges Faced
Educational and Professional Challenges in
Civil Engineering
Fundamentally, the challenges faced by graduates of the Master’s Program in Civil Engineering are similar to those faced by undergraduate civil engineering graduates. The additional challenge is that master's graduates must possess deeper competencies in their chosen area of specialization and demonstrate superior capability in conducting research within that field.
Thus, adopting the American Society of Civil Engineers' vision for civil engineering in 2025 (ASCE, 2007), the future civil engineering profession must accommodate needs surrounding globalization, sustainability, emerging technologies, and the increasing complexity of challenges faced, while steadfastly prioritizing public safety, health, and welfare. Furthermore, with the high demand for civil engineering professionalism in such an environment, licensing requirements for professional civil engineers have escalated beyond holding merely a bachelor’s degree to requiring a postgraduate degree. This aligns closely with ITB's objective to integrate its undergraduate (bachelor's) and graduate (master's) curricula, as well as industry workforce requirements mandating professional competency certification for construction personnel in Indonesia.
Furthermore, graduates of the Master's Program in Civil Engineering must earn the trust of society to create a sustainable world and enhance the global quality of life, carried out competently, collaboratively, and ethically by serving as:
Roles of Civil Engineering Master's Graduates
- Planners, designers, constructors, and operators of economic and social infrastructure as integral parts of the built environment.
- Stewards of the natural environment and its resources through the application of sustainable development principles.
- Innovators and integrators of ideas and technology capable of bridging collaboration between the public, private, and academic sectors.
- Managers of risk and uncertainty arising from natural disasters, accidents, and other potential threats.
- Leaders in shaping public policy related to environmental and infrastructure development oriented toward the public interest.
The demand for Civil Engineering Master's graduates who can contribute across specialized civil engineering fields remains high, driven by extensive ongoing infrastructure development to improve the economy and public welfare. Furthermore, given Indonesia's geographical vulnerability to earthquake disasters, the need for master's graduates capable of planning, designing, and managing earthquake-resistant infrastructure is exceptionally relevant.
The Master’s Program in Civil Engineering has achieved an "A" accreditation from the National Accreditation Board for Higher Education (BAN-PT). Additionally, as part of the global civil engineering community, the vision and mission of civil engineers globally adopt the ASCE's Vision for Civil Engineering in 2025. Numerous professional associations in Indonesia across civil engineering specializations have actively collaborated to provide insights into current conditions, expectations, challenges, and curriculum development. Benchmarking against curricula from international universities is continuously conducted by the coordinators of each specialization area.
Several references utilized for the development of the 2013 curriculum are as follows:
- ASCE, The Vision of Civil Engineering in 2025, The Summit on the Future of Civil Engineering—2025, June 21–22, 2006. ASCE, 2007.
- ASCE, Achieving the Vision of Civil Engineering in 2025: A Roadmap for the Profession. ASCE, 2009.
The objectives of the Master’s Program in Civil Engineering are:
- To cultivate graduates of independent character who possess professional responsibility, enabling them to actively participate in the development of safe and environmentally sound infrastructure in the era of globalization, regional autonomy, and privatization/corporatization, while remaining responsive to public participation.
- To serve as a sustainable higher education platform for nurturing individuals of independent, noble, disciplined, and resilient character, who demonstrate empathy and actively participate in resolving humanitarian challenges, preserving Indonesia's natural environment, and addressing global issues at large.
- To produce graduates equipped with foundational capabilities capable of advancing in higher education, such as doctoral programs, where research aptitude, creativity, and original innovation are required.
The graduate competencies of the Master’s Program in Civil Engineering are:
- An ability to advance and continuously update knowledge and technology in the chosen Civil Engineering specialization by mastering and understanding scientific approaches, methods, and principles, accompanied by practical application skills.
- An ability to design and conduct experiments or research in Civil Engineering, perform thorough analyses, and interpret as well as present data effectively.
- An ability to identify, formulate, and solve Civil Engineering problems (specifically defining problem scopes) within complex process systems.
- An ability to enhance professional performance characterized by acute problem analysis, comprehensive literature reviews, and cohesive problem-solving or comparable professional practices.
- An ability to design complex Civil Engineering systems, processes, or components to meet desired needs.
- A broad knowledge and comprehensive understanding of the implications of the civil engineering profession in a global context, engaging effectively with contemporary issues such as technological advancements, environmental impacts, and life-cycle analysis.
Struktur Kurikulum Program Studi Magister
Civil Engineering
The curriculum of the Master's Program in Civil Engineering is designed to produce graduates with academic, professional, and engineering competencies aligned with advancements in science and technology, as well as the needs of industry and society.
Course Structure of the Structural Engineering Research Group
| Semester I | Semester II | ||||||||
|---|---|---|---|---|---|---|---|---|---|
| No | Kode | Nama Matakuliah | Credits | P | No | Kode | Nama Matakuliah | Credits | P |
| 1 | SI5101 (MKWP) |
Analisis Rekayasa Teknik Sipil | 3 | 1 | SI5098 (MKWI) |
Metodologi Penelitian & Literasi Digital, AI | 3 | ||
| 2 | SI5102 (MKWP) |
Komputasi Teknik Sipil | 3 | 2 | SI5212 (MKOP) |
Dinamika Struktur Lanjut | 3 | ||
| 3 | SI5112 (MKOP) |
Mekanika Bahan Lanjut | 3 | 3 | SI6223 (MKOP) |
Metoda Elemen Hingga | 3 | ||
| 4 | SIXX (MKPB) |
Mata Kuliah Pilihan | 6 | 4 | SIXX (MKPB) |
Mata Kuliah Pilihan | 3 | ||
| Total | 15 | Total | 12 | ||||||
| Semester III | ||||
|---|---|---|---|---|
| No | Kode | Nama Matakuliah | Credits | P |
| 1 | SIXX (MKPB) |
Mata Kuliah Pilihan | 9 | |
| 2 | SI6098 (MKWP) |
Tesis | 6 | |
| Total | 15 | |||
Course Structure of the Geotechnical Engineering Research Group
| Semester I | Semester II | ||||||||
|---|---|---|---|---|---|---|---|---|---|
| No | Kode | Nama Matakuliah | Credits | P | No | Kode | Nama Matakuliah | Credits | P |
| 1 | SI5101 (MKWP) |
Analisis Rekayasa Teknik Sipil | 3 | 1 | SI5098 (MKWI) |
Metodologi Penelitian & Literasi Digital, AI | 3 | ||
| 2 | SI5102 (MKWP) |
Komputasi Teknik Sipil | 3 | 2 | SI5211 (MKOP) |
Rekayasa Fondasi Lanjut | 3 | ||
| 3 | SI5121 (MKOP) |
Mekanika Tanah Lanjut | 3 | 3 | SI5222 (MKOP) |
Masalah Stabilitas Geoteknik | 3 | ||
| 4 | SI5122 (MKOP) |
Penyelidikan Tanah dan Laboratorium | 3 | 4 | SIXX (MKPB) |
Mata Kuliah Pilihan 1 | 3 | ||
| 5 | SI5123 (MKOP) |
Perilaku Tanah | 3 | ||||||
| Total | 15 | Total | 12 | ||||||
| Semester III | ||||
|---|---|---|---|---|
| No | Kode | Nama Matakuliah | Credits | P |
| 1 | SI6121 (MKOP) |
Dinamika Tanah dan Rekayasa Gempa | 3 | |
| 2 | SIXX (MKPB) |
Mata Kuliah Pilihan 2 | 6 | |
| 3 | SI6098 (MKWP) |
Tesis dan Penelitian | 6 | |
| Total | 15 | |||
Course Structure of the Transportation Engineering Research Group
| Semester I | Semester II | ||||||||
|---|---|---|---|---|---|---|---|---|---|
| No | Kode | Nama Matakuliah | Credits | P | No | Kode | Nama Matakuliah | Credits | P |
| 1 | SI5101 (MKWP) |
Analisis Rekayasa Teknik Sipil | 3 | 1 | SI5098 (MKWI) |
Metodologi Penelitian & Literasi Digital, AI | 3 | ||
| 2 | SI5102 (MKWP) |
Komputasi Teknik Sipil | 3 | 2 | SI5241 (MKOP) |
Simulasi dan Optimasi dalam Rekayasa Transportasi | 3 | ||
| 3 | SI5141 (MKOP) |
Ekonomi Transportasi | 3 | 3 | SIXX (MKPB) |
Mata Kuliah Pilihan | 3 | ||
| 4 | SI5144 (MKOP) |
Pemodelan Sistem Transportasi | 3 | 4 | SIXX (MKPB) |
Mata Kuliah Pilihan | 3 | ||
| 5 | SI5143 (MKOP) |
Kebijakan dan Perencanaan Transportasi | 3 | ||||||
| Total | 15 | Total | 12 | ||||||
| Semester III | ||||
|---|---|---|---|---|
| No | Kode | Nama Matakuliah | Credits | P |
| 1 | SI6041 (MKOP) |
Proyek Kelompok | 3 | |
| 2 | SIXX (MKPB) |
Mata Kuliah Pilihan | 6 | |
| 3 | SI6098 (MKWP) |
Tesis | 6 | |
| Total | 15 | |||
Course Structure of the Construction Engineering and Infrastructure Management Research Group
| Semester I | Semester II | ||||||||
|---|---|---|---|---|---|---|---|---|---|
| No | Kode | Nama Matakuliah | Credits | P | No | Kode | Nama Matakuliah | Credits | P |
| 1 | SI5101 (MKWP) |
Analisis Rekayasa Teknik Sipil | 3 | 1 | SI5098 (MKWI) |
Metodologi Penelitian & Literasi Digital, AI | 3 | ||
| 2 | SI5102 (MKWP) |
Komputasi Teknik Sipil | 3 | 2 | SI5251 (MKOP) |
Penyelenggaraan Proyek & Manajemen Kontrak | 3 | ||
| 3 | SI5151 (MKOP) |
Ekonomi Konstruksi dan Pendanaan Infrastruktur | 3 | 3 | SI5252 (MKOP) |
Manajemen Operasi Konstruksi | 3 | ||
| 4 | SI5152 (MKOP) |
Sistem Manajemen Aset Infrastruktur | 3 | 4 | SIXX (MKPB) |
Mata Kuliah Pilihan | 3 | ||
| 5 | (MKPB) | Mata Kuliah Pilihan | 3 | ||||||
| Total | 15 | Total | 12 | ||||||
| Semester III | ||||
|---|---|---|---|---|
| No | Kode | Nama Matakuliah | Credits | P |
| 1 | SIXX (MKPB) |
Mata Kuliah Pilihan | 9 | |
| 2 | SI6098 (MKWP) |
Tesis | 6 | |
| Total | 15 | |||
Course Structure of the Water Resources Engineering Research Group
| Semester I | Semester II | ||||||||
|---|---|---|---|---|---|---|---|---|---|
| No | Kode | Nama Matakuliah | Credits | P | No | Kode | Nama Matakuliah | Credits | P |
| 1 | SI5102 (MKWP) |
Komputasi Teknik Sipil | 3 | 1 | SI5098 (MKWI) |
Metodologi Penelitian & Literasi Digital, AI | 3 | ||
| 2 | SI5101 (MKWP) |
Analisis Rekayasa | 3 | 2 | SI5232 (MKOP) |
Hidraulika Lanjut | 3 | ||
| 3 | SI5131 (MKOP) |
Mekanika Fluida Lanjut | 3 | 3 | SIXX / SAXX (MKPB) |
Mata Kuliah Pilihan | 9 | ||
| 4 | SI5231 (MKOP) |
Metoda Numerik Teknik SDA | 3 | ||||||
| 5 | SIXX / SAXX (MKPB) |
Mata Kuliah Pilihan | 4 | ||||||
| Total | 16 | Total | 15 | ||||||
| Semester III | ||||
|---|---|---|---|---|
| No | Kode | Nama Matakuliah | Credits | P |
| 1 | SIXX (MKPB) |
Mata Kuliah Pilihan | 5 | |
| 2 | SI6098 (MKWP) |
Tesis | 6 | |
| Total | 11 | |||
| Kuliah Pilihan | Konsentrasi Terkait | ||||||||
|---|---|---|---|---|---|---|---|---|---|
| No | Kode | Nama Matakuliah | Credits | P | K1 | K2 | K3 | K4 | K5 |
| 1 | SI5113 | Teknologi Beton Lanjut | 3 | 3 | |||||
| 2 | SI5114 | Perilaku Struktur Beton | 3 | 3 | |||||
| 3 | SI6117 | Desain Berbasis Kinerja | 3 | 3 | |||||
| 4 | SI6118 | Rekayasa Angin untuk Struktur | 3 | 3 | |||||
| 5 | SI5111 | Elastisitas dan Plastisitas | 3 | 3 | |||||
| 6 | SI5001 | Metoda Numerik Lanjut | 3 | 3 | |||||
| 7 | SI5211 | Perilaku Struktur Rangka Baja | 3 | 3 | |||||
| 8 | SI6111 | Dinamika Eksperimental dan Kontrol | 3 | 3 | |||||
| 9 | SI6112 | Rekayasa Jembatan | 3 | 3 | |||||
| 10 | SI6113 | Teori Stabilitas | 3 | 3 | |||||
| 11 | SI6114 | Disain Plastis | 3 | 3 | |||||
| 12 | SI6115 | Earthquake Engineering | 3 | 3 | |||||
| 13 | SI6116 | Probabilitas dan Reliabilitas Struktur | 3 | 3 | |||||
| 14 | SI6211 | Optimasi dalam Rekayasa Struktur | 3 | 3 | |||||
| 15 | SI6212 | Metode Eksperimental dalam Rekayasa Sipil | 3 | 3 | |||||
| 16 | SI6213 | Perbaikan, Perkuatan, dan Retrofit | 3 | 3 | |||||
| 17 | SI6221 | Perbaikan Tanah | 3 | 3 | |||||
| 18 | SI6222 | Topik Khusus Rekayasa Geoteknik | 3 | 3 | |||||
| 19 | SI6223 | Metode Elemen Hingga | 3 | 3 | |||||
| 20 | SI6224 | Mekanika Batuan | 3 | 3 | |||||
| 21 | SI6225 | Dinamika Pondasi | 3 | 3 | |||||
| 22 | SI6227 | Mekanika Tanah Takjenuh | 3 | 3 | |||||
| 23 | SI6228 | Rekayasa Gempa Geoteknik Lanjut | 3 | 3 | |||||
| 24 | SI5241 | Model Simulasi Sistem Transportasi | 3 | 3 | |||||
| 25 | SI5242 | Rekayasa Lalu Lintas Lanjut | 3 | 3 | |||||
| 26 | SI5243 | Sistem Transportasi Perkotaan Berkelanjutan | 3 | 3 | |||||
| 27 | SI6142 | Analisis Kebijakan dan Pendanaan Transportasi | 3 | 3 | |||||
| 28 | SI6143 | Analisis Sistem Infrastruktur Bandara | 3 | 3 | |||||
| 29 | SI6144 | Analisis Sistem Infrastruktur Pelabuhan | 3 | 3 | |||||
| 30 | SI6145 | Analisis Dampak Lalu Lintas dan Keselamatan Transportasi | 3 | 3 | |||||
| 31 | SI6146 | Sistem Manajemen Aset Infrastruktur Transportasi | 3 | 3 | |||||
| 32 | SI6148 | Rekayasa dan Management Perkeretapian | 3 | 3 | |||||
| 33 | SI6241 | Rekasaya Terminal | 3 | 3 | |||||
| 34 | SI6243 | Perencanaan Jaringan Transportasi dan Logistik | 3 | 3 | |||||
| 35 | SI6244 | Ekonometrik dalam rekayasa Transportasi | 3 | 3 | |||||
| 36 | SI6042 | Topik Khusus Rekayasa Transportasi | 3 | 3 | |||||
| 37 | SI5142 | Rekayasa Infrastruktur Transportasi | 3 | 3 | |||||
| 38 | SI6151 | Kualitas, Kesehatan, Keselamatan, dan Lingkungan | 3 | 3 | |||||
| 39 | SI6052 | Topik Khusus Konstruksi dan Manajemen Infrastruktur | 3 | 3 | |||||
| 40 | SI6152 | Manajemen Risiko Infrastrutkur | 3 | 3 | |||||
| 41 | SI6153 | Manajemen Bisnis Konstruksi | 3 | 3 | |||||
| 42 | SI6154 | Sistem Industri Konstruksi | 3 | 3 | |||||
| 43 | SI6251 | Metode Konstruksi Maju | 3 | 3 | |||||
| 44 | SI6155 | Infrastruktur Berkelanjutan dan Tangguh Bencana | 3 | 3 | |||||
| 45 | SI6253 | BIM untuk Konstruksi dan Aset Infrastruktur | 3 | 3 | |||||
| 46 | SI6131 | Pemodelan Air Tanah | 3 | 3 | |||||
| 47 | SI6132 | Model Fisik Hidraulik | 3 | 3 | |||||
| 48 | SI6135 | Bangunan Pantai | 3 | 3 | |||||
| 49 | SI6232 | Pembelajaran Mesin dan Kecerdasan Buatan SDA | 3 | 3 | |||||
| 50 | SA5032 | Hidraulika dan Pengendalian Sedimen | 3 | 3 | |||||
| 51 | SA5034 | Pemodelan Kualitas Air Lanjut | 3 | 3 | |||||
| 52 | SA5035 | Rekayasa Bangunan Air | 3 | 3 | |||||
| 53 | SA5041 | Pengembangan dan Pengelolaan Rawa Berkelanjutan | 3 | 3 | |||||
| 54 | SA5041 | Rekayasa Sungai dan Pengendalian Banjir | 3 | 3 | |||||
| 55 | SA5042 | Rekayasa dan Pengelolaan Irigasi | 3 | 3 | |||||
| 56 | SA5043 | Rekayasa Muara dan Pantai | 3 | 3 | |||||
| 57 | SA5044 | Pengelolaan Air Tanah | 3 | 3 | |||||
| 58 | SA5053 | Pengelolaan Bendungan | 3 | 3 | |||||
| 59 | SA6021 | Pengambilan Keputusan SDA | 3 | 3 | |||||
| 60 | SA6022 | Pengelolaan Infrastruktur SDA Terpadu | 3 | 3 | |||||
| 61 | SA6023 | Analisis Risiko Daya Rusak Air | 3 | 3 | |||||
| 62 | SA6031 | Geomorfologi Sungai | 3 | 3 | |||||
| 63 | SA6032 | Perbaikan dan Pengaturan Sungai | 3 | 3 | |||||
| 64 | SA6081 | Pemodelan Terapan Hidrologi dan Hidrualika | 3 | 3 | |||||
| 65 | SB6125 | Pemodelan Iklim | 3 | 3 | |||||
| Total | 183 | 36 | 21 | 41 | 24 | 60 | |||
Academic Staff
- Abdul Kadir Alhamid, Ph.D. (Waseda University, Jepang)
- Ade Sjafruddin, Ph.D. (The Technical University of Denmark, Denmark), Prof.
- Adrianto Oktavianus, Ph.D. (Technische Universitat Berlin, Jerman)
- Aine Kusumawati, Dr. (Nanyang Technological University, Singapura)
- Ana Nurganah Chaidar, Dr. (Institut Teknologi Bandung, Indonesia)
- Andhika Sahadewa, Ph.D. (University of Michigan, Amerika Serikat)
- Aris Aryanto, Dr. Eng. (Tokyo Institute of Technology, Jepang)
- Arno Adi Kuntoro, Dr. Eng. (Hiroshima University, Jepang)
- Biemo W. Soemardi, Ph.D. (University of Kentucky, Amerika Serikat), Prof.
- Budi Hasiholan, Ph.D. (Hokkaido University, Jepang)
- Dantje Kardana Natakusumah, Ph.D. (University of Wales, Inggris), Prof.
- Dayu Apoji, Ph.D. (Imperial College London, Inggris)
- Dedi Apriadi, Ph.D. (Chulalongkorn University, Thailand)
- Dhemi Harlan, Ph.D. (University of Wales, Inggris)
- Dyah Kusumastuti, Ph.D. (State University of New York, Amerika Serikat)
- Ediansjah Zulkifli, Dr.-Ing. (Technische Universitat Dresden, Jerman)
- Eka Oktariyanto Nugroho, Dr. Eng. (Nagoya Institute of Technology, Jepang)
- Eliza Rosmaya Puri, Ph.D. (Kochi University of Technology, Jepang)
- Endra Susila, Ph.D. (University of Michigan, Amerika Serikat)
- Eri Susanto Hariyadi, Dr. (Institut Teknologi Bandung, Indonesia)
- Erwin Lim, Ph.D. (National Taiwan University, Taiwan)
- Erza Rismantojo, Ph.D. (Purdue University, Amerika Serikat)
- Faizal Immaddudin Wira Rohmat, Ph.D. (Colorado State University, Amerika Serikat)
- Febri Zukhruf, Dr. Eng. (Kyoto University, Jepang)
- Hadi Kardhana, Ph.D. (Tohoku University, Jepang)
- Harun Al Rasyid, Ph.D. (University of Leeds, Inggris), Prof.
- Hasbullah Nawir, Dr. Eng. (The University of Tokyo, Jepang), Prof.
- Herlien Dwiarti Soemari, Dr. (Ecole Centrale de Lyon, Prancis), Prof.
- I Wayan Sengara, Ph.D. (University of Wisconsin, Amerika Serikat), Prof.
- Ima Fatima, Dr. (Institut Teknologi Bandung, Indonesia)
- Indratmo, Ph.D. (University of Strahclyde, Inggris), Prof.
- Iris Mahani, Dr. (Institut Teknologi Bandung, Indonesia)
- Iswandi Imran, Ph.D. (University of Toronto, Kanada), Prof.
- Ivan Sandi Darma, Ph.D. (Hokkaido University, Jepang)
- Joko Nugroho, Ph.D. (Nanyang Tecnological University, Singapura)
- Kardina Nawassa Setyo Ayuningtyas (Institut Teknologi Bandung, Indonesia)
- Made Suarjana, Ph.D. (The Lelan Stanford Junior University, Amerika Serikat), Prof.
- Masyhur Irsyam, Dr. (University of Micihigan, Amerika Serikat), Prof.
- Mohammad Bagus Adityawan, Ph.D. (Tohoku University, Jepang)
- Mohammad Farid, Ph.D. (Tohoku University, Jepang)
- Muhamad Abduh, Ph.D. (Purdue University, Amerika Serikat), Prof.
- Muhammad Syahril Badri Kusuma, Ph.D. (Univ. De Nantes-Ecole Nationale Superieure De Mecanique, Prancis), Prof.
- Muslinang Moestopo, Ph.D. (University of Wisconsin-Madison, Amerika Serikat), Prof.
- Patria Kusumaningrum, Ph.D. (National University of Singapore, Singapura)
- Prasanti Widyasih Sarli, Ph.D. (The University of Tokyo, Jepang)
- Randy Tenderan, Dr. Eng. (Tokyo Institute Of Technology, Jepang)
- Rangga Adiprima Sudisman, Dr. Eng. (Saitama University, Jepang)
- Rani Gayatri Kusumawardhani P., Ph.D. (University of Wisconsin, Amerika Serikat)
- Reini Wirahadikusumah, Ph.D. (Purdue University, Amerika Serikat), Prof.
- Rudy Hermawan Karsaman, Ph.D. (University of Leeds, Inggris), Prof.
- Russ Bona Frazila, Dr. (Hiroshima University, Jepang)
- Socio Jiwapatria, Dr. (Institut Teknologi Bandung, Indonesia)
- Sony Sulaksono Wibowo, Ph.D. (Chulalongkorn University, Thailand)
- Sugeng Krisnanto, Ph.D. (Nanyang Technology University, Singapura)
- Taufiq Suryo Nugroho, Ph.D. (University of Leeds, Inggris)
- Widyaningtias, Ph.D. (Tohoku University, Jepang)
- Widyarini Weningtyas, Dr. Eng. (Hiroshima University, Jepang)
- Yadi Suryadi, Dr. (Institut Teknologi Bandung, Indonesia)
- Yuamar Imarrazan Basarah, Ph.D. (University of Illinois at Urbana-Champaign, Amerika Serikat)