SBG – Qinertia
GNSS+INS Post-Processing Software (PPK)
Precision Made Simple
Qinertia PPK software delivers an all-new level of high-precision positioning solutions, enabling robust georeferencing through advanced post-processing corrections. In a world that demands accuracy without compromise, our PPK software is emerging as the cornerstone for professionals and industries seeking unparalleled confidence in their location data.
| Post-processing software that really works | |
| Achieve unparalleled accuracy in your workflows by post-processing your raw location data through advanced corrections process. Qinertia is crucial in applications requiring centimeter-level accuracy such as geospatial surveying, mapping, and hydrography. | |
| Enhanced Positioning | Achieve centimeter-level precision, even in challenging environments. |
| User-friendly Interface | Intuitive design for quick learning and effective use. |
| Multiple Motion Profiles | Support a wide range of applications with diverse motion profiles. |
| Flexibility & Scalability | OEM integration capability and cloud-based offer for scalable solutions. |
GNSS capabilities
Qinertia supports full multi-constellation, multi-frequency GNSS processing, ensuring optimal accuracy, robustness, and performance in all environments.
Supported Constellations and Frequencies:
▶ GPS : L1, L2, L5
▶ Galileo : E1, E5a, E5b, E5(a+b), E6
▶ BeiDou : B1I, B2I, B3I
▶ Glonass : G1, G2
▶ QZSS : L1, L2, L5
Multi-frequency support improves ambiguity resolution, convergence time, and positioning accuracy. It also improves resilience in challenging environments, such as urban canyons, dense forests, or areas with high ionospheric activity.
Processing modes
Qinertia offers a comprehensive range of processing modes to adapt to any operational constraint:
▶ PPK with single base
▶ PPK with single base (Ionoshield mode)
▶ PPK with VBS (Virtuel base station)
▶ Near real time PPK with RTCM corrections
▶ Tightly coupled PPP (Precise Point Positioning) anywhere in the world.

| Functionalities | |
| Orbi AR – PPP with fixed ambiguity | Orbi AR in Qinertia enables Precise Point Positioning (PPP) with fixed ambiguities, delivering high-accuracy results without the need for a local base station. This innovative approach is ideal for operations in remote or challenging environments where CORS networks are unavailable or deploying a personal base station is impractical. |
| Geodesy engine | |
| The Geodesy Engine in Qinertia boasts an exhaustive suite of tools that are not only incredibly user-friendly but also highly versatile.
With an extensive selection of preconfigured Coordinate Reference Systems (CRS), Qinertia let you harness the essential official systems and transformations for your projects. You can also craft custom transformations tailored to your specific or scientific requirements. |
| Multi-sensors aiding | |
| Sensor aiding in Qinertia elevates post-processed kinematic performance by intelligently integrating external motion and velocity sensors into the PPK workflow. In addition to high-precision GNSS aiding, Qinertia supports DVL, odometer, magnetometer, general velocity, and air data inputs, allowing you to reinforce positioning accuracy and trajectory continuity, even in challenging environments where GNSS alone is not sufficient.
By combining these aiding sources during post-processing, Qinertia enables smoother trajectories, reduced drift, and more reliable navigation results across land, marine, and airborne applications. |
| PPK with live RTCM | |
| You can now achieve unparalleled accuracy in your PPK workflows by processing your data with RTCM corrections that are used in real-time operations. It’s important to note that this feature is specifically designed for real-time single-base scenarios and is incompatible with VBS setups.
RTCM Stream in Qinertia redefines precision and provides more options for your PPK. |
| RTS Smoothing | |
| An advanced processing option designed to refine your INS trajectory after the sensor fusion step. By applying the smoother, Qinertia removes all sharp transitions and sudden jumps, ensuring your final trajectory outputs are not only more accurate but also significantly smoother and more continuous. |

