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Internship Phase-Noise-Resilient Architectures for Large MIMO FMCW Automotive Radars

NXP Semiconductors


Job Location:

Eindhoven - Netherlands

Monthly Salary: Not provided by the employer
Posted: 21 August 2026 (30+ days ago)
Application Deadline: 18 November 2026
Vacancies: 1 Vacancy

Job Summary

Job Responsibility:

The internship focuses on the exploration and evaluation of next-generation automotive radar architectures that combine the benefits of large-scale MIMO imaging and phased-array beam steering.

  • Investigate the impact of phase noise accumulation and multipath propagation in large MIMO FMCW radar systems employing DDMA and related techniques.

  • Develop mathematical models and simulation frameworks to analyze radar system performance including angle resolution Doppler resolution detection capability and phase-noise robustness.

  • Research and evaluate hybrid radar architectures that combine MIMO imaging capability with directional phased-array transmission.

  • Explore beam-scanning strategies DDMA-based transmission schemes sparse transmit activation methods and subarray-based beamforming concepts.

  • Design and perform MATLAB and/or Python simulations to compare alternative radar architectures and quantify associated system trade-offs.

Project Deliverables

  • Literature review on MIMO radar phased-array radar DDMA processing and phase-noise effects.

  • Simulation framework for evaluating hybrid radar architectures.

  • Analysis of trade-offs between angular resolution Doppler resolution frame rate phase-noise robustness and implementation complexity.

  • Evaluation of array configurations beam scheduling approaches and waveform design alternatives.

  • Final technical report and presentation summarizing findings and recommendations.

Learning Objectives

During this internship the student will gain hands-on experience in:

  • Advanced FMCW automotive radar systems and signal processing.

  • MIMO radar phased-array beamforming and imaging radar concepts.

  • Array signal processing and direction-of-arrival estimation techniques.

  • System-level radar architecture design and performance optimization.

  • Research methodologies involving theoretical analysis simulation and engineering trade-off evaluation.

Job Qualification:

  • The candidate must be pursuing a Masters degree in Electrical Engineering Signal Processing Applied Mathematics Physics or a related technical discipline.

  • Strong interest in radar systems wireless communications signal processing and sensing technologies.

  • Familiarity with FMCW radar MIMO radar phased arrays beamforming antenna arrays and RF impairments such as phase noise is highly beneficial.

  • Good understanding of FFT-based processing range-Doppler processing detection theory estimation theory array signal processing and direction-of-arrival estimation.

  • Experience with MATLAB and/or Python for modeling simulation visualization and algorithm development.

  • Knowledge of structured software development practices and version control tools such as Git is a plus.

  • Self-motivated curious analytical and comfortable working on open research questions with both independent and collaborative work styles.

  • Strong written and verbal communication skills with the ability to document technical findings and present results clearly.

More information about NXP in the Netherlands...

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Required Experience:

Intern


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