Xi'an, China

Lu Zeng


Average Co-Inventor Count = 16.0

ph-index = 1


Company Filing History:


Years Active: 2024

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1 patent (USPTO):Explore Patents

Title: Innovations in Autonomous Vehicle Control: The Contributions of Lu Zeng

Introduction

Lu Zeng, an innovative inventor hailing from Xi'an, China, has made significant strides in the field of autonomous vehicle technology. With a focus on enhancing lane-changing safety and efficiency for connected and autonomous vehicles (CAVs), his work addresses pressing challenges in the automotive industry.

Latest Patents

Lu Zeng holds a patent for a "Smooth Cooperative Lane Change Control Method for Multi-Connected and Autonomous Vehicles (CAVs)." This groundbreaking invention outlines a systematic approach to managing lane changes by acquiring detailed vehicle information from both the lane-changing vehicle and its surroundings. The process involves constructing predictive models of vehicle motion states, optimizing control values for safe maneuvering, and implementing control measures that enhance overall traffic flow among multiple vehicles.

Career Highlights

Currently, Lu Zeng is affiliated with Chang'an University, where he collaborates on cutting-edge research and development initiatives within the domain of automotive engineering. His dedication to advancing CAV technology positions him as a key figure in the ongoing evolution towards smarter transportation systems.

Collaborations

In his professional journey, Lu has had the opportunity to work with skilled colleagues, including Siyuan Gong and Kang Sun. Their teamwork reflects a commitment to innovation and collaboration that is essential for pushing the boundaries of modern automotive research.

Conclusion

Lu Zeng’s contributions to autonomous vehicle technology through his patented methods represent a significant advancement in the quest for safer and more efficient driving solutions. As vehicles become increasingly connected, the importance of such innovations cannot be overstated, promising a brighter future for transportation safety and functionality.

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