Software-defined Imaging Radar

Developed at Zadar Labs

Our software-first radar platform combines a powerful Radar Operating System with novel statistical signal processing algorithms and flexible hardware platforms.

We call this integrated philosophy Software-Defined Imaging Radar.

Our full-stack approach breaks the barrier between intelligent machines and the environment, unleashing the true potential of radar for a 250x detection performance improvement over existing technology.

Flowchart showing software components and their interactions, including any software stack, zVUE Radar OS, zPROX, zSIGNAL, zPRIME, and 3rd Party, with arrows indicating data flow among them.

Our unified ecosystem provides 250x improved performance

Zadar's software-defined imaging radar platform is an easy-to-use, high performance sensing solution for intelligent and automated systems that plugs directly into your perception stack.

Bar chart showing relative sensing performance: existing radars without SDIR on the left with 1x, existing radars with zVue OS in the middle with 10x, and Zadar radars with zVue OS on the right with 250x.

Zadar outperforms Lidar capabilities at a fraction of the cost

Our full-stack solution allows us to optimize all elements of the radar pipeline, unleashing the true power of radar and surpassing lidar's capability at a fraction of the cost. Full-stack SDIR delivers the prime sensing performance required for deployable autonomous driving, mobile robotics, and smart infrastructure.

Zadar SDIR sensor platform benefits

  • Super-resolution imaging

    Based on optical super-resolution microscopy techniques, our novel beamforming framework achieves angular resolution beyond aperture diffraction limits.

  • Action potential neural detector

    Our detector is not like CFAR or other classic thresholding techniques. Our neural algorithm detects true targets with sensitivity and confidence.

  • 4D Porcessing Engine

    Conventional processing steps have been reengineered into a unified processing engine to improve resolution and dynamic range.

  • Dynamic intrinsic calibration

    High resolution and excellent calibration go hand-in-hand for accurate results. Our normalizer dramatically improves calibration accuracy.

  • RFTDMA Modulation

    Our modulation scheme randomizes waveforms in frequency and time and is inspired by modern communication links. RFTDMA prevents interference and extends 4D performance.

  • Virtual antenna array manifold

    Custom antenna array designs maximize range and spatial resolution while minimizing size in concert with our SDIR philosophy.

 Frequently Asked Questions