University of Virginia

USA
1 Scholarships 153 Programs 3 Degree levels
PhD

PhD in Electrical, Electronics, and Communications Engineering

Offered at University of Virginia, USA
DegreePhD
FieldElectrical, Electronics, and Communications Engineering.
A

Cost & earnings at University of Virginia What students borrow here, and what they go on to earn

You borrow $17,500 median federal debt
You repay $199/mo over 10 years
Graduates earn $86,863 10 yrs after entry
Debt clears in 0.4 yrs of the salary premium
US Department of Education figures See the full breakdown →
F

Communication Disorders Sciences graduates earn a median $26,353 Across 308 US programmes, two years after finishing

See the degree grade →

The PhD in Electrical, Electronics, and Communications Engineering at the University of Virginia is a research-focused doctorate for candidates who want to advance theoretical and applied knowledge in communications, signal processing and related electrical engineering fields. It suits students aiming for careers in academic research, industrial R&D or advanced technical leadership where original contributions to communications systems and technologies are expected.

What you'll study

The programme is built around in-depth research supervised by faculty in the Department of Electrical and Computer Engineering, supported by advanced coursework. Typical research specialisms include wireless communications and networking, information and coding theory, signal processing, RF and microwave systems, photonics and optical communications, antenna and propagation, and communications for embedded and cyber‑physical systems.

Coursework normally covers advanced topics such as stochastic processes and estimation, information theory, modern digital communications, multi‑antenna systems and MIMO, error‑correcting codes, statistical signal processing, wireless protocol design and networked systems. Students also take seminars in current research, elective courses that match their research focus, and may take relevant classes in Computer Science, Systems, Materials Science or Mathematics.

The degree follows a common doctoral progression: completion of required coursework, passing a qualifying or preliminary examination, admission to candidacy after presenting a research proposal, and completion and defence of an original doctoral dissertation. Students spend the majority of their time conducting supervised research in laboratories or collaborative research groups.

Typical modules and activities

  • Advanced Digital Communications and Modulation
  • Information Theory and Coding
  • Statistical Signal Processing and Estimation Theory
  • Wireless Systems, Cellular and 5G/6G Research Topics
  • Antenna Design and Electromagnetic Propagation
  • Optical and Photonic Communications
  • Networked Systems and Protocols
  • Research seminars, paper presentations and teaching or mentoring duties

Entry requirements

Applicants are normally expected to hold a strong honours degree (or equivalent) in electrical engineering, electronics, computer engineering, applied physics or a closely related field. Many successful applicants have a relevant master's degree with substantial research experience.

Typical application materials include academic transcripts, a curriculum vitae, a statement of research interests, at least two academic references, and examples of prior research (publications, thesis or project reports). For applicants whose first language is not English, an approved English language qualification is required. The department assesses applicants for research fit with faculty expertise; identifying potential supervisors and describing a coherent research direction in the statement of purpose strengthens applications.

Additional requirements often include satisfactory performance in any departmental screening or qualifying examinations and evidence of the mathematical and programming background necessary for advanced research. Admissions committees look for demonstrated potential for independent research, clarity of research goals and alignment with departmental research areas.

Career prospects

Graduates from this PhD programme move into a range of careers where deep expertise in communications and electronics is valued. Common paths include academic roles (postdoctoral positions and faculty appointments), industrial research and development in telecommunications, semiconductor and networking companies, and senior engineering positions in aerospace, defence and embedded systems firms.

Other career outcomes include technical leadership in startups, product research teams, data science and machine learning roles that leverage signal processing skills, and positions in national laboratories and government research organisations. The combination of rigorous theory, practical experimentation and interdisciplinary collaboration prepares graduates for roles that require both innovation and the ability to translate research into deployable systems.

Why study at University of Virginia

The University of Virginia offers this doctorate within a department known for strong faculty in communications and signal processing and for collaborative, interdisciplinary research. Students benefit from research groups and laboratories that focus on modern wireless systems, networking and related hardware and software, enabling close mentorship and access to experimental testbeds.

UVA emphasises a research culture that integrates theory and application, with opportunities to work across departments such as Computer Science, Materials Science and Biomedical Engineering. The department supports professional development through seminars, teaching experience and industry engagement, and students often collaborate with regional companies and national research labs. The university’s research resources and community environment provide a supportive setting for completing an ambitious, original doctoral project in communications engineering.

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Programme details are indicative and may change — always verify current information with the official university website before applying.