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Back to the Essentials: HURYS Introduces a Cost-Effective, Fully Domestic Radar Solution for Adaptive Traffic Signal Control

On August 25, 2022, Jiang Rongjun, General Manager of HURYS, delivered a keynote presentation titled "Cost-Effective Radar Solutions for Adaptive Traffic Signal Control" at the 11th China Intelligent Transportation Market Annual Conference. 图片4.png Against the backdrop of growing industry attention on digital twins, holographic sensing, and other emerging technologies, the presentation emphasized the importance of returning to practical transportation challenges. HURYS shared its approach to developing radar-based sensing solutions that address the real needs of adaptive traffic signal control, particularly for small and medium-sized cities seeking efficient and affordable intelligent transportation upgrades.

The presentation received strong interest from industry professionals, highlighting the need for practical sensing technologies that improve traffic operations while delivering measurable value to transportation authorities.

Enabling the Transition to Real-Time Adaptive Signal Control

During his presentation, Mr. Jiang emphasized that traffic signal control is evolving from fixed-time scheduling toward real-time adaptive control, driven by accurate and timely traffic data.

"Traffic signal optimization should be based on current traffic conditions, using real-time data to solve real-time traffic challenges."

Adaptive signal control is widely recognized as one of the most effective traffic management strategies because it dynamically responds to continuously changing traffic demand. By adjusting signal timing based on live traffic conditions, adaptive control can significantly reduce unnecessary delays, minimize empty green phases, and improve overall intersection efficiency.

The effectiveness of adaptive control depends on accurate traffic detection across both spatial and temporal dimensions, making reliable sensing technology a critical component of modern intelligent transportation systems.

Designed for Practical Deployment

Although a variety of traffic detection technologies are available today, HURYS believes that deployment decisions should consider local traffic conditions, existing infrastructure, and investment efficiency. 图片5.png Developed entirely in-house using domestically engineered technologies, the HURYS Multi-Lane Microwave Radar Detector is specifically designed to meet the sensing requirements of adaptive traffic signal control. The solution delivers over 90% detection accuracy for key traffic parameters such as vehicle presence and traffic volume while providing an exceptional balance between performance and cost.

To simplify deployment and reduce implementation costs, the radar can be installed on existing traffic signal poles or traffic enforcement poles, eliminating the need for pavement cutting or intrusive civil engineering work. The system provides 24/7 all-weather operation, high-precision traffic sensing, and serves as an effective upgrade from traditional inductive loops and conventional video-based detection systems.

By combining high detection accuracy, flexible installation, and cost-effective deployment, the solution provides transportation agencies with a practical sensing platform for next-generation adaptive traffic control.

A Decade of Focus on Traffic Radar Innovation

For more than a decade, HURYS has remained dedicated to one mission—advancing radar technologies for intelligent transportation.

With a continued focus on adaptive traffic signal control, the company remains committed to understanding real-world transportation challenges and developing application-oriented radar solutions that deliver higher adaptability, greater reliability, and stronger long-term value.

Looking ahead, HURYS will continue to expand its portfolio of intelligent traffic radar products, supporting the development of smarter, safer, and more efficient transportation infrastructure while pursuing its vision of becoming a leading innovator in civil radar technologies.