Automotive radar has become an indispensable technology in advanced driver assistance systems (ADAS) and the evolution towards fully autonomous vehicles. By utilising millimetre wave signals, these ...
BrainChip has introduced a new Radar Reference Platform designed to improve real‑time object identification at the edge, addressing what the company describes as a longstanding limitation in ...
A novel IO-ICP makes radar-SLAM more accurate than other sensor-based SLAM applications.
Multifunction radar systems have evolved to perform a host of tasks from surveillance to target tracking, realising complex electronic support measures with high precision. At the heart of these ...
Modern communications and sensing technologies have revolutionized the way cars are designed. To increase safety and move toward autonomous driving (AD), new vehicles must include systems that can ...
The emergence of 5G and 6G telecommunications, along with the rise of data centre demand and advanced automotive radar systems, is presenting a need for low-loss materials to optimise transmission. As ...
Radar devices are among the most important RF applications, with direct impact on aerospace missions, military endeavors, ship and submarine navigation, and road traffic control and monitoring. The ...
SANM delivers integrated manufacturing solutions for defense and aerospace, producing advanced electronics for radar, satellites, avionics and mission systems.
Radar and LiDAR are two key technologies for sensing the surrounding environment, widely used in industries such as automotive, robotics, security, and environmental monitoring. The fundamental ...
Visit NAP.edu/10766 to get more information about this book, to buy it in print, or to download it as a free PDF. Active electro-optical (EO) sensing systems employ a transmitted optical field ...
Artificial intelligence and machine learning (AI/ML) are driving the development of next-generation radar perception. However, these AI/ML-based perception models require enough data to learn patterns ...
This chapter examines technological issues that are central to the concept of a longer-term technological view of a national weather radar system. The results are intended to extend 20–25 years into ...