Lecturer In Power Systems at Imperial College London
London, England, United Kingdom
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Summary
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Rockstar
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Top School
Yunjie Gu is a power-systems researcher and lecturer at Imperial College London with nine years’ experience bridging industry and academia on renewable integration and grid stability. Previously at GE Global Research he led investigations into wide-band oscillations in wind farms, authored GE’s white paper on renewable grid integration, and holds a patent related to suppressing sub-synchronous oscillations. His current research focuses on power-electronic solutions for decarbonization, model-data methods for stability in power-electronics-dominated systems, and numerical simulation of stiff cross-domain dynamics. A hands-on developer, he is an international maintainer of the widely used RT-Thread RTOS and co-founder of the open-source Simplus Grid-Tool and real-time Simplus Real-Time system, combining software, hardware and real-time computing expertise. Trained at Zhejiang University (PhD), he blends deep theoretical analysis with practical real-time implementations that directly address challenges in modern grids.
9 years of coding experience
1 year of employment as a software developer
Doctor of Philosophy - PhD, Electrical and Electronics Engineering, Distinguished Dissertation Nomination, Doctor of Philosophy - PhD, Electrical and Electronics Engineering, Distinguished Dissertation Nomination at Zhejiang University
RT-Thread is an open source IoT Real-Time Operating System (RTOS).
Role in this project:
Embedded Systems Engineer / IoT Developer
Contributions:35 reviews, 6 commits, 15 PRs in 2 months
Contributions summary:Yunjie contributed to the RT-Thread real-time operating system, primarily focusing on the TMS320F28379D BSP (Board Support Package). Their work involved fixing compilation issues, adapting the system for the C28x architecture, and improving code compatibility. The user also addressed issues related to the kernel, specifically `rt_memset` and `rt_vsnprintf`, adapting them for the 16-bit architecture. Furthermore, they added features like zero-latency interrupt support, which shows involvement in the core RTOS functionality and hardware interaction.
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