The startup develops navigational systems that combine global navigation satellite systems and inertial navigation systems to achieve centimeter-level position and velocity accuracy with dual-frequency real-time kinematics. Their technology enables autonomous vehicles to accurately detect and differentiate road elements such as curbs, pavements, and traffic signs, enhancing situational awareness and response capabilities.
Funding
$4M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.
Founders
Product
Problem
Autonomous vehicles and advanced mapping applications require highly accurate and reliable navigation solutions, especially in GNSS-denied environments or areas with limited satellite visibility. Traditional navigation systems often struggle to maintain accuracy in these challenging conditions, leading to degraded performance and potential safety concerns.
Solution
PolyExplore provides high-precision GNSS/INS (Global Navigation Satellite System/Inertial Navigation System) solutions designed to deliver centimeter-level accuracy for positioning and orientation, even in challenging environments. Their tightly coupled systems integrate multi-frequency GNSS receivers with tactical-grade IMUs (Inertial Measurement Units) to provide robust and reliable navigation data. PolyExplore's product line includes a range of GNSS/INS systems and mobile mapping solutions, along with cloud-based software for HD map creation and editing. These solutions cater to diverse applications, including autonomous driving, aerial surveying, HD mapping, and digital twin creation.
Target Audience
PolyExplore's primary customers include developers of autonomous vehicles, providers of mobile mapping services, and organizations involved in creating and maintaining high-definition maps for various applications.
Features
- Tightly coupled GNSS/INS integration for enhanced accuracy and reliability in GNSS-denied environments
- Support for multi-constellation GNSS signals (GPS, GLONASS, BeiDou, Galileo) on multiple frequencies (L1/L2/L5)
- Real-time Kinematic (RTK) engine for centimeter-level positioning accuracy
- Dual-antenna support for rapid and accurate heading determination
- PolyMapper series of mobile mapping systems with high-performance LiDAR and industrial cameras
- PolyMap Editor, a cloud-based platform for HD map creation, editing, and management with AI-based feature extraction
- Support for various data output formats, including SHP, OpenDRIVE, GeoJSON