Hadi Alidoust

Hadi Alidoust

• RF & Microwave Engineer • Computational Imaging • Wave Physics

About Me

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Expertise

Professional Experience

R&D Engineer – Ultrasonics

Allseas Engineering, Eindhoven, Netherlands | 2025–Present

  • Phased-array ultrasonic inspection for oil & gas pipelines
  • Non-destructive testing systems, vision-based inspection
  • Signal processing and imaging algorithm development

PhD Researcher – Communication & Sensing

University of Twente, Enschede, Netherlands | 2020–2024

  • Developed system-level models and optimization frameworks for 6G joint communication and sensing
  • Designed tiled-array RF front-end architectures with reduced hardware complexity for simultaneous communication and sensing.
  • Developed mmWave radar signal processing and imaging algorithms for human posture and vital-sign monitoring

Microwave Network Engineer

Huawei, Tehran, Iran | 2016–2018

  • Designed and implemented tailored solutions for network expansion and optimization, focusing on enhancing performance and meeting customer requirements.
  • Managed wireless communication infrastructure and NOC services, contributing to overall network performance monitoring and improvements.

Selected Projects

PhD Thesis: Joint communication and sensing using tiled arrays for human-centric applications

Designed scenario-aware tiled antenna apertures for multi-user communication and multi-target sensing using optimization-driven channel matching techniques.

Technologies: MATLAB, HFSS, mmWave radar, Optimization, Beamforming

JCAS Tiled Array

Tiled-array architecture for Joint Communication and Sensing

Health Monitoring

MmWave radar for posture and vital-sign monitoring

M.Sc. Thesis: Microwave Imaging

  • Developed microwave imaging systems for industrial monitoring and biomedical applications using inverse scattering methods, HFSS electromagnetic simulations, and qualitative reconstruction algorithms.
  • The project included microwave pipeline monitoring, breast tumor imaging, cavity-based sensing systems, and multifrequency electromagnetic imaging techniques.

Technologies: MATLAB, HFSS, CST, Microwave imaging, Inverse problems

HFSS Simulation

HFSS simulation of cavity-based microwave imaging system

Pipeline Imaging

Pipeline monitoring with microwaves

Breast HFSS

HFSS simulation of cavity-based breast imaging

Breast Imaging

Breast tumor detection with microwaves

B.Sc. Thesis: Mechanical RF Switching System

  • Designed and developed a mechanical microwave switching structure for RF signal routing applications.
  • Investigated RF performance, insertion loss, signal isolation, and switching behavior for microwave systems.
Technologies: HFSS, Keysight ADS, Microwave engineering, Circuit model

Mechanical RF Switch

Simulation of RF switching structure in HFSS

RF Switch Simulation

Circuit model of the RF switch in ADS

RF Projects

5 GHz Low-Noise Amplifier Design

Designed and simulated a 5 GHz microstrip low-noise amplifier in Keysight ADS.

  • Achieved 11.1 dB small-signal gain at 5 GHz.
  • Obtained a simulated noise figure of 0.88 dB.

Technologies: Keysight ADS, LNA design

Keysight ADS schematic of the 5 GHz low-noise amplifier
LNA schematic
Simulation results for the 5 GHz LNA
Simulated S-parameters, noise figure, stability factors, and Smith charts

Conformal Capsule Antenna

Reproduced and simulated a conformal loop antenna for wireless capsule endoscopy using Ansys HFSS. The antenna is wrapped around the capsule surface and intended for in-body communication near the ISM band.

  • Created the capsule, flexible substrate, and conformal copper geometry in HFSS.
  • Assigned tissue-equivalent dielectric properties to study in-body operation.
  • Evaluated impedance matching, resonance frequency, and electromagnetic fields.

Design reference: Based on the antenna presented in “Antenna Systems for Wireless Capsule Endoscope: Design, Analysis and Experimental Validation”

Technologies: Ansys HFSS, antenna design, biomedical RF, conformal antennas.

HFSS model of the conformal capsule antenna
Conformal capsule antenna model developed in Ansys HFSS
Reflection coefficient of the capsule antenna
Simulated reflection coefficient and antenna resonance

Technical Skills

RF Engineering Radar Signal Processing Ultrasonic Imaging Microwave Imaging Joint Communication & Sensing Phased Arrays Electromagnetic Simulation HFSS & CST Altium & ADS MATLAB & Python Signal Processing Optimization Algorithms Inverse Problems Wireless Communication NDT Systems 6G Systems mmWave Systems Vision Inspection

Contact

Hobbies & Interests

Painting, cinema Reading (art and philosophy) Sports (running and gym)