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We have 132 signal processing PhD Projects, Programmes & Scholarships

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signal processing PhD Projects, Programmes & Scholarships

We have 132 signal processing PhD Projects, Programmes & Scholarships

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Optoelectronic Chromatic Dispersion in photodiodes and photovoltaic cells for miniaturized optical spectroscopy driven by machine learning and supported by 3D physics simulations

  Research Group: Electrooptics and quantum optics Group
Photodetectors and photovoltaic cells are ubiquitous devices used for optical power measurements and energy harvesting. We are developing a new class of optoelectronic sensors for optical spectroscopy and material sensing based on these devices. Read more
 Supervisor: Prof S Sternklar
 Year round applications  PhD Research Project  Funded PhD Project (Students Worldwide)
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Sonars for precise underwater autonomous vehicle (AUV) navigation.

  Research Group: Communication Technologies
There is a great interest in underwater autonomous vehicles (AUVs) and currently many companies develop AUVs for multiple applications. Read more
 Supervisor: Dr Y Zakharov
 Year round applications  PhD Research Project  Self-Funded PhD Students Only
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High-frequency underwater acoustic communication for image transmission.

  Research Group: Communication Technologies
Communication using acoustic waves is the main underwater communication technology, since electro-magnetic waves quickly attenuate underwater. Read more
 Supervisor: Dr Y Zakharov
 Year round applications  PhD Research Project  Self-Funded PhD Students Only
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Nanoplasmonic Semiconductor Light Detector — Device Design, Fabrication & Optimisation

This PhD focuses on developing a working photodetector that uses a nanoplasmonic semiconductor composite as the active material. Read more
 Supervisor: Dr A Kaplan
 Year round applications  PhD Research Project  Competition Funded PhD Project (Students Worldwide)
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Audio Repair and Recovery via Audio Recognition Techniques

This research project addresses the critical challenge of repairing and recovering degraded audio signals through advanced machine listening techniques. Read more
 Supervisor: Dr SL Li
 Year round applications  PhD Research Project  Funded PhD Project (Students Worldwide)
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Reverse Engineering for Generative Audio Signals

This research proposes a novel reverse engineering framework to detect and analyse generative audio signals. By employing advanced signal processing and machine learning techniques, the project aims to identify the underlying generative models, source audio content, and training datasets used to create synthetic audio. Read more
 Supervisor: Dr SL Li
 Year round applications  PhD Research Project  Funded PhD Project (Students Worldwide)
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Intelligent Proprioceptive Anthropomorphic Robotic Hands

  Research Group: Intelligent Systems and Robotics
Robotic hands and grippers are pivotal in robotic handling or interactions with objects, and similarly, a robot can intelligently manipulate an object. Read more
 Supervisor: Dr BJ Jamil
 Year round applications  PhD Research Project  Self-Funded PhD Students Only
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Robust Model-based Predictive Control for Hybrid Robotic Arms

  Research Group: Intelligent Systems and Robotics
In contrast to conventional robots, hybrid (soft-rigid) robots offer enhanced interaction safety alongside sensorised, repeatable performance. Read more
 Supervisor: Dr BJ Jamil
 Year round applications  PhD Research Project  Self-Funded PhD Students Only
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Dexterous Manipulation for Hybrid Robots Using Reinforcement Learning

  Research Group: Intelligent Systems and Robotics
Hybrid Robotic manipulators combine soft and rigid components that allow them to be safer and more reliable than their rigid counterparts during their interactions with the world. Read more
 Supervisor: Dr BJ Jamil
 Year round applications  PhD Research Project  Self-Funded PhD Students Only
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Autonomous Sensor Design and Verification

  Research Group: Intelligent Systems and Robotics
Sensing is essential for machines to interact intelligently and safely with the external environment, much like humans do[1, 2]. Human tactile sensing, for instance, allows us to handle a variety of objects, from delicate berries to heavy payloads – by adapting our touch and pressure accordingly. Read more
 Supervisors: Dr BJ Jamil, Prof A M Tyrrell
 Year round applications  PhD Research Project  Self-Funded PhD Students Only
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Listening in the Wild: Understanding Everyday Audio Exposure and Its Impact

Billions of people use headphones, earbuds, and loudspeakers every day, yet we still know surprisingly little about how loud they really listen, how long they are exposed, and what this means for long-term hearing health. Read more
 Supervisors: Dr I McGregor, Dr RS Selfridge
 Year round applications  PhD Research Project  Self-Funded PhD Students Only
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Reimagining Hospital Soundscapes through Audio Augmented Reality (AAR)

Hospitals are among the most acoustically complex and stressful environments. Alarms overlap, conversations cross thin curtains, and background noise prevents rest. Read more
 Supervisors: Dr I McGregor, Dr RS Salzano
 Year round applications  PhD Research Project  Self-Funded PhD Students Only
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Intelligent Metamaterials/Metasurfaces for 5G/6G Wireless Networks

Background and Motivation. Within the framework of 5G/6G infrastructure, advancements in network architectures and service integration are enabling emerging technologies such as Intelligent Metamaterials and Metasurface antenna systems. Read more
 Supervisors: Dr NOP Ojaroudi Parchin, Prof C H See
 Year round applications  PhD Research Project  Self-Funded PhD Students Only
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Integration of Advanced Multi-Modal Sensors into ROV Platforms for Autonomous Marine Pollution Monitoring

The proposed PhD will focus on the design, integration, and validation of advanced sensor technologies into Remotely Operated Vehicles (ROVs) for autonomous marine pollution monitoring. Read more
 Supervisors: Dr A Kerrouche, Dr LM Manjakkal
 Year round applications  PhD Research Project  Self-Funded PhD Students Only
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Development of a new model of muscle mechanics – in vivo mechanics of a single muscle

Project Description. The goal of this project is to develop and validate a new phenomenological model of muscle contraction—the Active Spring Muscle Model (ASMM)—through in vivo experiments on single muscles in small animals (mouse/rat). Read more
 Supervisor: Dr S-H Yeo
 Year round applications  PhD Research Project  Self-Funded PhD Students Only

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