LucentWave provides software‑defined super‑resolution signal processing that extracts far more information from existing radar, communication and biomedical signals while drastically cutting computational power use. By applying a neuroscience‑derived algorithm, the platform delivers higher‑fidelity imaging, micro‑motion tracking and precise diagnostics without additional hardware, enabling low‑power edge AI, 6G integrated sensing and advanced drone surveillance.
Funding
Funding not disclosed
Founders
Product
Problem
Current signal processing techniques in domains such as radar imaging, telecommunications, and biomedical monitoring often require high power consumption and provide limited resolution, restricting the performance and scalability of edge AI and sensing applications.
Solution
LucentWave leverages a neuroscience‑derived super‑resolution signal processing method to extract far more information from existing signals while dramatically reducing computational energy demands. The technology enhances the fidelity of radar and sensor data, enabling finer object detection, micro‑motion tracking, and precise health diagnostics without the need for additional hardware. By delivering higher‑resolution insights at a fraction of the power cost, it supports next‑generation 6G integrated sensing and communication (ISAC) and low‑power edge AI workloads. The approach is implemented as software‑defined modules that can be integrated into existing platforms, allowing customers to upgrade performance and sustainability simultaneously.
Target Audience
Primary customers include drone and radar system manufacturers, telecom operators developing 6G networks, and providers of medical or industrial monitoring devices that require high‑resolution, low‑power signal analysis.
Features
- Novel super‑resolution algorithm derived from brain research, delivering sub‑Nyquist signal reconstruction
- Energy‑efficient processing pipeline that reduces compute load and power consumption on edge devices
- Enhanced radar imaging for drones, providing sharper object detection and micro‑motion tracking
- Precision sensing module for 6G ISAC, enabling high‑accuracy channel estimation and low‑power inference
- Applicability to healthcare and infrastructure monitoring, improving diagnostic signal clarity without new sensors
- Software‑defined integration compatible with standard radar, communication, and biomedical hardware stacks