Micro-Deformation Radar System
High-precision sensing system for geotechnical monitoring and infrastructure stability analysis, incorporating phased-array components and SFCW (stepped-frequency continuous-wave) techniques for micro-deformation detection.
Contact: info@wizconn.com
Overview
Wizconn’s micro-deformation radar system targets real-world monitoring needs such as slope stability, landslide risk assessment, and infrastructure health. The system is designed around an RF-to-cloud architecture: radar capture and processing pipelines can be integrated with remote telemetry and cloud analytics workflows.
By incorporating phased-array components, the platform supports scalable front-end architectures for improved spatial control and sensing workflows.
Key Capabilities
Stepped-Frequency
Designed around SFCW techniques to enable high-precision displacement sensing workflows.
Micro-Deformation
Targets micro-scale deformation tracking in operational monitoring environments.
Scalable Front-End
Incorporates phased-array components for scalable sensing front-end architectures.
Telemetry Workflows
Integrates with remote telemetry and cloud analytics for alerting and reporting.
Typical Applications
- Geotechnical monitoring: slope stability and landslide risk
- Infrastructure health monitoring
- Remote sensing deployments where telemetry and alerting are required
- Engineering validation and field trials for high-precision sensing
Technical Summary
| Sensing Method | SFCW (stepped-frequency continuous-wave) radar workflow |
| Front-End | Phased-array components and scalable RF architecture |
| System Chain | Radar capture → processing → (optional) uplink → cloud analytics / alerts |
| Best Fit | High-precision monitoring applications requiring field-deployable sensing |
Deployment Fit
We can align the sensing workflow to your site conditions and operational requirements.
- Target range, update rate and precision goals
- Site geometry and mounting constraints
- Telemetry requirements: alerts, reporting and cloud dashboards
- Field trials and validation workflow planning