Reliable positioning infrastructure for the autonomous world.
SteadyPosition designs and operates resilient RTK/GNSS reference networks for cities, agriculture, transportation, drones, autonomous robots and ports.
Positioning is becoming critical infrastructure.
Modern machines do not just need to know where they are. They need to know that the position they receive can be trusted.
Outages
A failed reference station or network link can interrupt correction services.
Connectivity
Single-carrier cellular connectivity creates an unnecessary dependency.
Power
Remote infrastructure needs resilience against power interruptions.
GNSS attacks
Jamming and spoofing can degrade or manipulate positioning information.
What is RTK?
Real-Time Kinematic positioning uses precisely surveyed reference stations to generate correction data that can bring GNSS positioning from meter-level accuracy to centimeter-level accuracy in real time.
Signals from space
Known positions
Positioning corrections
Internet delivery
Centimeter-level position
It is a positioning infrastructure that enables machines to operate precisely in the physical world.
High-Availability RTK infrastructure.
SteadyPosition designs the complete system — from reference station placement and connectivity to power, monitoring, correction delivery and integrity detection.
Our baseline architecture starts with three or more independent reference stations, creating redundancy and enabling cross-station consistency checks.
Station A
GNSS · 4G/5G · UPS
Station B
GNSS · Ethernet · UPS
Station C
GNSS · Multi-SIM · Solar
NTRIP · Integrity · Monitoring · Failover
Don't trust a single GNSS source.
A positioning attack can become a physical-world attack. SteadyPosition adds an integrity layer by continuously comparing independent reference stations and detecting abnormal GNSS behavior.
GNSS Spoofing
An attacker transmits manipulated GNSS signals designed to make a receiver calculate a false position or time.
Cross-station integrity
Independent observations are continuously compared to identify deviations that may indicate spoofing, interference or other GNSS anomalies.
Observe
Collect continuous GNSS observations, corrections and station health data.
Compare
Cross-check independent reference stations and establish normal network behavior.
Detect
Identify abnormal positioning, timing, signal and station-to-station behavior.
Alert
Surface potential integrity events to operators and connected systems.
Isolate
Prevent a compromised infrastructure element from becoming a trusted correction source.
Recover
Continue operations using healthy network infrastructure and restore the affected component.
It is designed into the positioning network from day one — alongside redundancy, connectivity and power resilience.
One positioning network. Many physical-world applications.
Precision Agriculture
RTK tractors, autonomous machinery, planting, spraying, harvesting, field mapping and machine guidance.
Smart Cities
Surveying, GIS, construction, infrastructure monitoring, municipal fleets and autonomous systems.
Transportation
Metro-area positioning for autonomous vehicles, public transport, road infrastructure, rail and logistics.
Drones & UAV
Mapping, surveying, inspection, agriculture, autonomous flight and BVLOS operations.
Delivery Robots
Precise localization for sidewalk robots, autonomous logistics, campuses and industrial robotics.
Ports & Maritime
Port automation, container handling, autonomous yard vehicles, crane positioning, vessel positioning and marine navigation.
More than an RTK base station.
Every deployment is engineered as a resilient infrastructure system, not just a GNSS receiver on a roof.
Reference Stations
Professional GNSS reference stations designed for continuous operation and precise positioning.
Connectivity
Multi-carrier 4G/5G and Ethernet backhaul reduce dependency on a single communication path.
Power
UPS protection with optional solar power for remote and infrastructure-critical locations.
Monitoring
Remote visibility into GNSS, connectivity, power, temperature, correction streams and integrity.
Turn every station into a multifunctional edge node.
Once resilient power, connectivity and a secure outdoor installation are already in place, the same infrastructure can host additional sensing and communications.
Weather Stations
Temperature, humidity, pressure, wind and precipitation data for agriculture, cities and environmental monitoring.
LoRaWAN
Deploy gateways and field infrastructure for agricultural, industrial and smart-city sensor networks.
One network. Complete visibility.
Every reference station becomes part of a continuously monitored positioning infrastructure.
| Station | Connectivity | Power | GNSS | Integrity |
|---|---|---|---|---|
| SP-001 · City Center | 4G + Ethernet | UPS | Healthy | Normal |
| SP-002 · North | 5G + Ethernet | Solar + UPS | Healthy | Normal |
| SP-003 · Port | 4G + Ethernet | UPS | Healthy | Normal |
From network planning to 24/7 operation.
We can take a positioning network from initial coverage analysis through installation, commissioning and continuous monitoring.
Network Design
Analyze the coverage area and determine optimal reference station locations.
Installation
Deploy GNSS antenna, receiver, communications, power and monitoring infrastructure.
Commissioning
Calibrate and integrate reference stations into the network.
Integrity Validation
Establish baseline network behavior and validate cross-station consistency.
Continuous Monitoring
Monitor infrastructure, positioning and network health around the clock.
Expansion
Add stations and capabilities as the coverage area and requirements grow.
Turn your city into a positioning platform.
Deploy a city-wide GNSS reference network that can serve surveying, transportation, robotics, drones, construction and future autonomous systems.
Precision
Centimeter-level RTK positioning across the service area.
Availability
3+ stations, redundant communications and resilient power.
Integrity
Cross-station GNSS monitoring and anomaly detection.
Build on top of precise positioning infrastructure.
Connect vehicles, robots, drones and software systems to a managed correction and integrity platform.
Integration layer
Designed for future access to:
Tell us where you need centimeter-level positioning.
We'll design the reference station network, connectivity and redundancy required to operate it reliably.