5G NTN NB-IoT
Validation Platform

Validate, integrate, and de‑risk your NTN NB‑IoT system with a proven, standards‑aligned environment built for accuracy, speed, and confidence.

Gatehouse Satcom provides the software, hardware, core emulation, channel realism, and automated testing needed to move seamlessly from lab validation to field trials and early operations.

Precision in Testing.
Confidence in Orbit.

The validation platform helps operators confirm technical and commercial feasibility before committing major investments. Early validation reduces redesign cycles and supports strong governance decisions.

This approach reflects more than a decade of NTN development and validation experience, and is engineered to match 3GPP requirements with high fidelity.

Validate your architecture early

Gain a structured setup for testing system assumptions, link behavior, and business case feasibility. This reduces uncertainty before major investment decisions.

Verify end-to-end interoperability

Confirm how your NTN NB-IoT components operate together. From UE and emulator to eNodeB and core elements, you get clarity on compatibility and performance.

Demonstrate a repeatable, real-world setup

Show internal and external stakeholders a working NTN NB-IoT environment. Gatehouse Satcom tailors the setup, supports validation activities, and helps interpret results to strengthen confidence and accelerate rollout readiness.

Strengthen your commercial case

Use evidence-based validation to support investment decisions. Proven NTN NB-IoT performance and documented test results help you build a solid business case and reduce commercial uncertainty.

From Concept to Confidence Across Your 5G NTN journey

The 5G NTN NB-IoT Validation Platform supports both technical validation and business readiness. It enables operators, service providers, and developers to build evidence, refine architecture, and demonstrate capability together with Gatehouse Satcom’s engineering team.

Lab Integration and Validation

Shorten integration cycles and reduce risk before investing in hardware or satellite resources.

Verify eNodeB, UE, emulator, and core interoperability in a controlled test environment. Configure link conditions, run systematic tests, and resolve issues early with direct support from Gatehouse engineers.

Architecture Qualification

Gain technical confidence and data-backed evidence to support funding and program decisions.

Confirm system architecture assumptions and performance margins. Explore link budgets, propagation behaviour, and capacity under GEO, MEO or LEO conditions using reproducible scenarios.

Partner or Customer Demonstration

Accelerate stakeholder alignment and strengthen your position in bids or commercial negotiations.

Demonstrate interoperability, standards alignment, and real-world feasibility for partners, investors, or customers. Gatehouse supports staging, execution, and interpretation of results.

Pre-Operational System Demonstration

Before activating live services, verify that UE, eNodeB, and core behaviours meet operational expectations under realistic GEO, MEO and LEO conditions.

Identify and correct issues early to reduce troubleshooting during initial service roll-out.

Joint Innovation Projects

Stay ahead of standard evolution and shape the next generation of NTN capabilities.

Use Validation Platform for collaborative development, research, or early evaluation of upcoming 3GPP features.

How the Platform Fits Into Your NTN NB-IoT architecture

The 5G NTN NB-IoT Validation Platform brings software components, hardware options, and engineering support together in a single environment designed to shorten setup time, ensure interoperability, and provide full visibility into system behavior.

Different Deployment Scenarios

Choose a view to see how the same platform supports different stages of your NTN NB-IoT program.
Architecture Switch
In Lab - Setup

Controlled E2E validation using reference UE or COTS UE, eNodeB , and core network (NEMU emulator or commercial). Orbit channel conditions via emulator; OAM/FCAPS (NETCONF) for configuration and metrics; automated Test Control orchestrates runs.

In Orbit - Transparent Mode

In‑orbit validation with ground‑based eNodeB and satellite as transparent relay. Core network (NEMU or commercial). Operator OAM/FCAPS connects to eNodeB.

In Orbit - Regenerative Mode

In‑orbit validation with eNodeB onboard the satellite (regenerative). Ground station provides RF path; core network (NEMU or commercial). Operator OAM/FCAPS supervises eNodeB.

Perspectives

Proven through real-world validation and trusted collaborations

  • The Gatehouse Satcom technical and program management support has been excellent. No obvious areas for improvement.

    Myriota
    Position/Company
  • The Gatehouse team has been a great partner. They have operated like a partner and not a vendor and have been open to feedback and provided own feedback as well.

    Iridium
    Position
    • 950+

      Simulations

    • 9500+ hrs

      Runtime

    • 20+

      Validation Campaigns

By validating 5G NTN NB-IoT technology in collaboration with operators and device partners, we have transformed research results into practical tools customers can apply directly.

Jesper NoerVP Commercial | Gatehouse Satcom

Technical Specifications

The 5G NTN NB-IoT Validation Platform provides a flexible, standards aligned environment rather than a single fixed configuration. The specifications below outline supported interfaces, configurations, and test capabilities so you can understand how the suite fits into your lab, HIL, or early field setup.

  • Aligned with 3GPP Releases 17 to 19 for NTN NB-IoT.
  • Supports transparent and regenerative satellite payload architectures.
  • Conforms to F1, NG, and OAM interface principles used in NTN NB-IoT deployments.
  • Regular updates in line with 3GPP work items and partner device evolutions.
  • Configurable for laboratory, HIL, or early field environments.
  • Supports integration with commercial UE from leading chipset and module vendors.
  • Compatible with GEO and LEO link profiles through channel emulators or NEMU.
  • Works with customer provided or Gatehouse provided hardware elements.
  • Optional pre-assembled integration rack for rapid lab setup.
  • UE to channel emulator RF or conducted interface.
  • NodeB interface to emulator, radio unit, or SDR platform.
  • Connectivity to customer core network components or emulator.
  • API access to test framework for automation and reporting.
  • Optional remote access for Gatehouse support and joint testing.
  • End to end protocol behaviour across UE, NodeB, and core elements.
  • Link performance under controlled delay, Doppler, fading, and power conditions.
  • Interoperability with multi vendor UE and third party components.
  • Verification of message flows, attach, coverage extension, and service behaviour.
  • Logging, reporting, and scenario based analysis through the test framework.
  • Setup guides and Interface Control Documents.
  • Configuration templates for common lab and field scenarios.
  • Access to test cases and reporting tools.
  • Training materials and optional on site onboarding.
  • Update roadmap aligned with ongoing NTN evolution.
  • Deployable on customer hardware or on Gatehouse provided SDR and radio units.
  • Compatible with standard lab channel emulators.
  • Requires network connectivity for test orchestration and reporting.
  • Optional integration rack includes power control, RF paths, and connectivity modules.

Ready to validate your NTN NB-IoT solution?

Raphaela Teixeira
Sales Executive

If you are planning validation activities, exploring feasibility, or preparing for early field testing, our team can help you identify the right next steps. We work with operators, integrators, and device partners to design test setups, interpret results, and support your NTN NB-IoT program.

Please reach out to me or fill out this form to start a conversation.

FAQ

Frequently asked questions on the subject of 5G NTN NB-IoT Validation Platform

A controlled test lab needs stable RF paths, correct eNodeB–NEMU provisioning, UE configuration, and isolation from external signals. 

The platform can introduce stress scenarios such as low‑SNR conditions, worst‑case Doppler, CE‑level challenges, burst attach attempts, large MO/MT payloads, and paging/TAU edge cases. 

Realistic NTN testing requires modelling delay, Doppler, SNR, fading, CE levels, tones (1/3/6/12), and 3.75/15 kHz subcarrier spacing. The Validation Platform supports these parameters through built‑in orbit/SNR emulation or external channel emulators. 

GEO introduces long, stable delays, minimal Doppler, and specific CE‑level and paging timing behaviours. Re‑creating these conditions requires consistent RF paths and accurate delay models. The platform provides controlled delay, channel behaviour, and full visibility of attach and paging flows. 

Testing NGSO regenerative mode requires handling fast Doppler shifts, dynamic timing, onboard scheduling, and SIB31/ephemeris synchronization. The Validation Platform models these effects so you can evaluate NGSO behaviour without needing real satellite access. 

The platform includes Gatehouse eNodeB software, Rel‑17 UE options, the NEMU core emulator, an automated Test Framework, and an optional 3U integration rack with RF front‑end and SDR radio. It provides everything needed for controlled, end‑to‑end NTN NB‑IoT testing in the lab. 

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