About the Study Program
The Doctoral Program in Electrical Engineering and Informatics aims to prepare students to conduct independent research in their field of interest and actively contribute to the fields of electrical engineering and informatics. The doctoral degree will be awarded to students who demonstrate a deep understanding of the relevant field and the ability to conduct independent and original research that is publishable in journals.
The Electrical Engineering and Informatics doctoral program covers the fields of Electrical Power Engineering, Telecommunications, Electronics, Computers, Control Systems & Computers, Biomedicine, Software & Data Engineering, Informatics, and Information Technology. This program is designed so that graduates can demonstrate the ability and skills to research independently in one or more branches covered in the above fields in original research. The results of this research should also add to the existing knowledge of electrical engineering and informatics or reveal new problems that, according to the rules of engineering science, can be proven in a dissertation without doubt.
Promotor
The promoter in the Electrical Engineering and Informatics Doctoral Program acts as the primary supervisor who accompanies students during the dissertation preparation process, provides academic direction, assists in the selection and development of research topics, and ensures that research is conducted systematically, scientifically, and originally to achieve reputable scientific publication standards. STEI promoters are experienced academics and researchers in various relevant fields of expertise, with a strong track record of research and publications, thus being able to provide quality and globally competitive guidance. (See Profile and Expertise of the Promoter of the Electrical Engineering and Informatics Doctoral Program)
Program Objectives
- Graduates will be able to become independent professional researchers in the field of Electrical Engineering and Informatics or related fields.
- Graduates will be able to supervise student research at all levels of higher education or carry out product/technology innovations in their workplace.
- Graduates will demonstrate leadership in research activities or in their professional careers.
Graduate Outcomes of the Study Program
- Critical Thinking Skills:
- Able to identify relevant scientific publications in the field of Electrical Engineering and Informatics, and able to understand, evaluate, and apply the information contained within them.
- Possesses an in-depth mastery of current theories, techniques, and tools in their area of specialization, and is able to apply them creatively in research activities.
- Ability to Identify Research Problems:
- Fully understands the characteristics, developments, stages, and ethical values of scientific research.
- Able to extract the essence and novelty from existing research findings, and critically evaluate them within the scope of Electrical Engineering and Informatics.
- Able to identify new research problems whose solutions fall within the scope of the knowledge and expertise they possess.
- Ability to Conduct a Research Program:
- Able to develop a systematic research plan that can be executed within the given time constraints and available resources.
- Understands and masters research methodologies, techniques, and scientific approaches, and is proficient in applying them to problem-solving in the field of Electrical Engineering and Informatics, especially in their area of specialization.
- Able to improve existing techniques or develop new techniques in the process of solving complex research problems, thereby contributing to the body of scientific knowledge.
- Ability to Communicate Research Findings:
- Able to actively participate in the academic community, communicate with peers in the scientific community, and engage with the broader public related to the field of Electrical Engineering and Informatics.
- Able to organize research findings into scientific reports and publish them in reputable journals.
- Becomes a respected expert in the field of Electrical Engineering and Informatics, particularly in the branch of knowledge related to their dissertation.
Program Stages
In general terms, the Curriculum of the Doctoral Program in Electrical Engineering and Informatics is divided into 4 Stages, namely:
Stage I or the Qualification Stage
At this stage, doctoral students are required to attend a number of courses, including the Qualifying Exam. These courses are taken to partially fulfill residency requirements and, if necessary, as preparation for the qualifying exam. The Qualifying Exam can only be taken after students have registered and taken courses for at least one semester. Students are deemed to have completed this stage if they pass the qualifying exam. This first stage must be completed within a maximum of two semesters.
The components assessed in the Qualification Examination stage are as follows:
- Issues discussed
- Methodology in the papers
- Main results of the papers
- Novelty elements of the papers reviewed
- Further development
- Mastery of the scientific basis for the field to be researched
Stage II or the Proposal Preparation Stage
At this stage, students are required to prepare a research proposal. Students are deemed to have completed this stage if their proposal is approved by the advisory team and deemed suitable for doctoral research by the assessment team. Students must complete this second stage within four semesters of starting the doctoral program.
The components assessed in the Proposal Test stage are as follows:
- Mastery of basic supporting scientific knowledge
- Understanding of the research problem
- Understanding of methodology
- Knowledge of the state of the art of the research topic State of The Art .
- Readiness to work independently
- Work drive and motivation and motivation
Stage III or the Research Stage
At this stage, students conduct research and are required to regularly report on their progress. At this stage, students also write up their research results in a dissertation and a scientific paper for publication as an international scientific publication. Students are considered to have completed this stage if:
- All courses, except the Dissertation Examination course, have been passed,
- the student has met the requirements for scientific publication, and
- the dissertation prepared by the student and approved by the supervisory team has been declared worthy of a doctoral dissertation by the assessment team.
The Doctoral Program Research Stage at STEI is divided into four stages of research progress as follows:
- Research and Progress Seminar I
- Prerequisites: Pass the Qualifying Exam and Research Proposal
- Graduation Requirements: Must be able to defend a convincing method for solving a research problem. Demonstrated by a report that includes acceptable analysis and arguments.
- Research and Progress Seminar II
- Prerequisites: Passed Research and Progress Seminar I
- Graduation Requirements: Have explored the proposed solution method in the First Progress Seminar as evidenced by the results of initial research.
- Research and Progress Seminar III
- Prerequisites: Passed Research and Progress Seminar II
- Graduation Requirements: Have produced a scientific contribution that can be published at an international conference in their field, as evidenced by a draft paper that has been approved by the Supervisory Team.
- Research and Progress Seminar IV
- Prerequisites: Passed Research and Progress Seminar III and International Conference Paper has been accepted.
- Graduation Requirements: Have produced a complete scientific contribution that is worthy of being written in a dissertation and draft for an international journal that has been approved by the supervisor.
Systematics of the Research Progress Seminar Report for Doctoral Students
Stage IV or the Dissertation Examination Stage
At this stage, students take exams to defend their dissertation and refine their writing. This fourth stage must be completed within a maximum of 10 semesters.
Curriculum Structure
| No | Code | Course | Credits |
|---|---|---|---|
| 1 | EI7011 | Research Methodology | 3 |
| 2 | EI7012 | Qualification Exam | 3 |
| 3 | EI7080 | Philosophy of Science | 2 |
| 4 | WI7001 | Digital Literacy, AI, & Academic Ethics | 2 |
| Credit Total | 10 | ||
| No | Code | Course | Credits |
|---|---|---|---|
| 1 | EI7021 | Proposal Preparation | 5 |
| Credit Total | 5 | ||
| No | Code | Course | Credits |
|---|---|---|---|
| 1 | EI8011 | Doctoral Research I | 8 |
| 2 | EI8012 | Seminar Kemajuan I | 2 |
| Credit Total | 10 | ||
| No | Code | Course | Credits |
|---|---|---|---|
| 1 | EI8021 | Doctoral Research II | 8 |
| 2 | EI8022 | Seminar Kemajuan II | 2 |
| Credit Total | 10 | ||
| No | Code | Course | Credits |
|---|---|---|---|
| 1 | EI8031 | Doctoral Research III | 8 |
| 2 | EI8032 | Seminar Kemajuan III | 2 |
| Credit Total | 10 | ||
| No | Code | Course | Credits |
|---|---|---|---|
| 1 | EI8041 | Doctoral Research IV | 8 |
| 2 | EI8091 | Penulisan Disertasi | 3 |
| 3 | EI8099 | Doctoral Session | 3 |
| Credit Total | 14 | ||
Registration and Selection of New Students
Doctoral Scholarships for Indonesian Lecturers in 2026
For permanent lecturers of higher education who are interested in continuing their studies in the Doctoral Program in Electrical Engineering and Informatics at STEI ITB, information is available on the 2026 Doctoral Program Scholarship for Indonesian Lecturers.
Prospective applicants need to pay attention to the selection stages at ITB, the issuance of LoA, and scholarship registration according to the official provisions announced on the ITB Admission page.
| Activity | Gel. 1 | Gel. 2 | Gel. 3 | Catatan |
|---|---|---|---|---|
| Participant Registration via https://admission.itb.ac.id |
8 – 28 September 2026 (Pkl. 15.00 WIB) |
6 – 26 Oktober 2026 (Pkl. 15.00 WIB) |
3 November – 2 Desember 2026 (Pkl. 15.00 WIB) |
Make sure the uploaded requirements are complete and verified by admission. |
| Submission of additional requirements to the Study Program: 1. Research Topic Form 2. Residency Declaration Form 3. Agency Permit Form 4. CV containing a list of publications (free format) |
28 September 2026 | 26 Oktober 2026 | 2 Desember 2026 | The form can be downloaded from the following link: https://stei.itb.ac.id/program-pascasarjana/doktor-elektro-informatika/ and sent via email: nurhayati.elif@itb.ac.id Confirmation via WA: |
| Written test | 5 Oktober 2026 Pkl. 13.00 WIB Gd. Benny Subianto (Labtek V) Lantai 2 |
2 November 2026 Pkl. 13.00 WIB Gd. Benny Subianto (Labtek V) Lantai 2 |
9 Desember 2026 Pkl. 13.00 WIB Gd. Benny Subianto (Labtek V) Lantai 3 |
The written selection is carried out offline. |
| Tes Wawancara | 7/8 Oktober 2026 | 4/5 November 2026 | 14/15 Desember 2026 | – Interview with potential promoters Presentation of research track record, publications, and research proposals – Conducted offline or online. Information regarding the interview selection schedule will be provided by the study program administrator. |
| Materi Ujian Tes Tertulis | Participants choose one of the following 6 exam materials:
a. Algoritma & Pemrograman + Matematika Diskrit |
|||
Materi Ujian Tes Tertulis
Participants choose one of the following 6 exam materials:
- Algoritma & Pemrograman + Matematika Diskrit
- Algorithms & Programming + Engineering Mathematics
- Rangkaian Elektrik + Matematika Diskrit
- Electrical Circuits + Engineering Mathematics
- Signal Processing + Matematika Diskrit
- Signal Processing + Engineering Mathematics
Kisi-Kisi Materi Tes Tertulis
Prospective Doctoral Students of the Electrical Engineering and Informatics Study Program at STEI-ITB
- Electrical Circuit
- Analisis Rangkaian, transient, teorema rangkaian, fasor
- Buku: Fundamentals of Electric Circuits
- Analisis Rangkaian, transient, teorema rangkaian, fasor
- Algoritma & Pemrograman
- Write procedural programs (conditionals, loops, arrays) using programming languages (choose one): Pascal, C/C++, Java, Fortran, Python.
- Discrete Mathematics
- Logika: proposisi, tabel kebenaran, hukum-hukum logika, proposisi bersyarat
- Sets: subsets, power sets, disjoint sets, set laws, set operations
- Relations and Functions
- Kombinatorial: kaidah dasar menghitung, permutasi, kombinasi
- Graphs: modeling with graphs, terminology in graphs, graph representation, isomorphic graphs, planar graphs, Eulerian paths and circuits, Hamiltonian paths and circuits, graph coloring
- Algorithm complexity: time complexity, space complexity, Big-Oh notation, Big-Theta notation, Big-Omega notation
- Trees: properties of trees, spanning trees, binary trees, n-ary trees, traversal in trees
- Kenneth H. Rosen, Discrete Mathematics and Application to Computer Science 7th Edition, McGraw-Hill.
- Dr. Ir. Rinaldi Munir, M.T., Diktat kuliah Matematika Diskrit (Edisi Keempat), Teknik Informatika ITB, 2003.
- Pengolahan Sinyal
- Linear Time Invariant: Continuous Time
- Discrete Time System: Transfer Function
- Konvolusi
- Figure of discrete time filter configuration and solution of discrete equations
- Engineering Mathematics
- Persamaan Linear
- Sebaran peluang diskrit & kontinu
- Persamaan diferensial
- Vektor
- Konvolusi
- Buku : Kreyszig, Advanced Engineering Mathematics
Webinar on Preparing PhD Research Proposals
To download the video, click here
Graduate Dissertation Topics
- Software Engineering and Intelligent Systems
- Data Science, Machine Learning & Big Data
- Control Systems, Robotics and Electric Vehicles
- Telecommunications & Computer Networks
- Information Security & Distributed Systems
- Signal Processing, Biomedicine & Bioinformatics
- Artificial Intelligence and Natural Language Processing
- Technology-Based Education
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Novianto Budi Kurniawan
Development of System Engineering Methodology for Service-Based Computing Using Service Oriented Architecture
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Aradea
Model Requirements Engineering for Developing Self-Adaptive Systems to Handle Contextual Requirements Uncertainty
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Seno Adi Putra
Intelligent System Based on Multiagent Systems for Autonomous Bridge Condition Assessment Using Wireless Sensor Networks
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Ade Romadhony
Development of Event Schema Based on Open IE Relation Tuples with Knowledge Base Utilization
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Mohamad Syafri Tuloli
Multi-Objective Coevolutionary Optimization Method in Mutation Testing
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Sawung Murdha Anggara
Development of a Public Sector Digital Services Transformation Framework
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Ayu Latifah
Development of Fuzzy Adaptive Multi-Objective Optimization Algorithm for Thermal Comfort and Energy Efficiency in Smart Buildings with Digital Twin Approach
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Ahmad Ali Hakam Dani
Digital Twin Data Visualization to Improve Interactivity and Accuracy
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Noor Falih
Development of a Framework to Assess the Feasibility of Automation Processes using Robotic Process Automation (RPA) as a Complementary Sensing Technology in Intelligent Systems
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Sen Yung
Value Index Model for Financial Product Engineering with its application to Digital Loan
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Leni Fitriani
A Conceptual Model of Artificial Intelligence Adoption for Organizational Architecture
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Fetty Fitriyanti Lubis
Course Recommendation Method Based on User Interest Learning on MOOC Aggregator
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Imelda Atastina
Parallel Facetnet Algorithm with Vertex Cut for Community Evolution Detection on Big Graph
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Dian Andriana
Enhancement of Capacity and Accuracy in Moving Object Tracking Using Multiple Features
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Karel Octavianus
DGA Data Interpretation Method for Transformer Fault Identification Using Cognitive AI
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Ade Chandra Nugraha
Data-Driven Track Geometry Degradation Prediction Model with Explainable AI Approach.
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Fitri Susanti
Performance Improvement of Embedding-Based Link Prediction with Vector Clustering
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Sussi
Automatic Extraction and Reconstruction of Road Networks from Ultra-High Resolution Orthophotos
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Riyanto
CoM-ZMP Regulation with Gravity Compensation and Posture Control in Bipedal Robots
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Rina Ristiana
Battery-Vehicle Integrated Modeling and Optimal PID Control for Electric Vehicle Energy Saving
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Alfi Satria
Sensorless Starting of BLDC Motors for Electric Vehicles
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Anwar Muqorobin
A Study on Current Ripple of PWM Inverter-Fed Multiphase AC Motors
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Retno Aita Diantari
Improving the Performance of Outdoor Ceramic Insulators with a New Material Coating
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Didik Fauzi Dakhlan
Oscillation Detection in Interconnected Systems Using Phasor Data
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Wakhyu Dwiono
Decentralized Control System of DC PV-Battery Microgrid Cluster Using PWA Model and PV Operation Mode Transition Function
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M. Vicky Ghahi Aziz
Real-Time Simulator for Spatio-Temporal Optimal Network Traffic
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Suyoto
Robust Time Synchronization for OFDM-Based Mobile and Cognitive Radio Systems
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Indrarini Dyah Irawati
Compressed Sensing for Matrix Traffic Reconstruction
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Sofia Naning Hertiana
Improving SDN Performance with Congestion Control, Multiple Path Routing, and Bandwidth Allocation
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Istikmal
Routing Performance Improvement and Congestion Control in Wireless Adhoc Networks
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Yomi Guno
Unmanned Aircraft Video Communication System Design
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Yuyun Siti Rohmah
Channel Coding Engineering Design in Free-Space Optics (FSO) Communication Systems for Future Technologies and Non-Terrestrial Networks (NTN)
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Teguh Nurhadi Suharsono
E-Voting Protocol Modeling to Improve Verifiability
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Dany Eka Saputra
Blockchain-Based Electronic Money and Signcryption for Peer-to-Peer Transactions
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Yudha Purwanto
A Cost-Risk Analysis Based Friendship Management Algorithm in Collaborative Attack Detection Networks
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Leonard Goeirmanto
Spatial Information Extraction of ECG Signals for Cardiac Contraction Analysis
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Dody Qori Utama
Color Test Based on Cone and Rod Cell in Human Eye
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Setyorini
Computing Bit-Parallelism Scores for Pairwise Sequence Alignment
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Ledya Novamizanti
A Robust and Reversible Watermarking Technique Based on Two-Stage with Non-Independent Embedding Domains
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Susetyo Bagas Bhaskoro
Identifying Causal Relationships in Indonesian Texts with Semantic Templates
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Arie Ardiyanti Suryani
Postprocessing Machine Translation Sunda–Indonesia menggunakan Analisis Morfologi
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Warih Maharani
Extraction, Categorization, and Aspect-Based Opinion Summarization
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Oktariani Nurul Pratiwi
Automating Heterogeneous Learning Group Formation for Cooperative Learning
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Documents and Forms
Document
- Guidelines for Writing the Preparation (Qualification) Exam
- Proposal Examination Writing Guidelines
- Progress Report Systematics for Doctoral Program
- Technical Guidelines for Dissertation Writing
- Dissertation Template
- Dissertation Proposal Template
- Cover and Approval Sheet Template for Qualification Examination Document
Form
- Research Topic Form (for Doctoral Program Selection)
- Institutional Permission Form (for Doctoral Program Selection)
- Residency Statement Form (for Doctoral Program Selection)
- Qualification Exam Proposal Form
- Revision Template after Qualification Exam
- Proposal Exam Proposal Form
- Revision Template after Proposal Exam
- Doctoral Defense Proposal Form
- Doctoral Progress Seminar Proposal Form
- Correction Form after Progress Seminar
- Template of Dissertation Review Revisions
- Student Guidance Form for Doctoral Students (to be submitted to the Doctoral Administration Office at the end of each semester)
- Dissertation Draft Review Proposal Form
Decrees and Academic Regulations
- Example of Author Name and ITB Affiliation Formatting in an International Journal
- ITB Rector’s Decree No. 241A of 2017 on the Publication Requirements in International Journals for Doctoral Graduation
- ITB Rector’s Decree No. 287 of 2011 on International Journal Requirements for Doctoral Program Graduation
- ITB Academic Senate Decree No. 08 of 2007 on Criteria for International Journals and Seminars
- Circular Letter on Code 5 Courses for Doctoral Program Students
- Information on Student Achievement Assessment, Study Duration, and Graduation Honors for Doctoral Program
News Doctor of Electrical Engineering and Informatics
Contact
Contact Us
Doctor of Electrical Engineering and Informatics
Labtek VIII/Achmad Bakrie Building, Jl. II, Lebak Siliwangi, Coblong, Bandung City, West Java 40132
Admin Prodi: Nurhayati, A.Md.
Phone/WA : +62-812-2233-6651
Parking at ITB
Vehicles on the ITB campus are restricted to employees and special guests. There are three main parking facilities:
- Sasana Budaya Ganesha (Sabuga) is the largest parking area for four-wheeled and two-wheeled vehicles. Access to this parking area is from Jalan Taman Sari or Jalan Siliwangi.
- Parkir Timur (SR) provides limited parking for four-wheeled and two-wheeled vehicles. This parking area is open 24/7, except on major holidays.
- Parkir Barat (Civil) is specifically for two-wheeled vehicle users.


