Private Network Check Readiness - TeckNexus Solutions

Rohde & Schwarz and Taiwan Space Agency deliver a dual-function satellite test chamber

A new joint solution from Rohde & Schwarz (R&S) and the Taiwan Space Agency (TASA) consolidates electromagnetic compatibility (EMC) and antenna measurements into a single, production-grade test chamber, signaling a shift in how satellite payloads will be validated for Non-Terrestrial Network (NTN) and mission-critical services. By integrating both disciplines in one chamber, TASA can validate RF performance, emissions, and immunity under consistent test conditions and configurations, improving time-to-launch and de-risking interoperability with terrestrial networks. The TASA deployment combines R&S hardware, software, and engineering with a locally built Compact Antenna Test Range (CATR) reflector to achieve dual-mode EMC and antenna measurements in one chamber.
Rohde & Schwarz and Taiwan Space Agency deliver a dual-function satellite test chamber
Image Credit: Rohde & Schwarz and Taiwan Space Agency

A new joint solution from Rohde & Schwarz (R&S) and the Taiwan Space Agency (TASA) consolidates electromagnetic compatibility (EMC) and antenna measurements into a single, production-grade test chamber, signaling a shift in how satellite payloads will be validated for Non-Terrestrial Network (NTN) and mission-critical services.

Why It Matters for NTN and Mission-Critical Services


Satellite payloads are becoming more complex as operators pursue 5G NTN, direct-to-device services, and multi-band connectivity across LEO/MEO/GEO orbits. Traditional lab set-ups split EMC and over-the-air (OTA) antenna testing into separate, costly facilitiesslowing schedules and introducing correlation risk. By integrating both disciplines in one chamber, TASA can validate RF performance, emissions, and immunity under consistent test conditions and configurations, improving time-to-launch and de-risking interoperability with terrestrial networks.

What Telecom and Enterprise Buyers Should Know

With 3GPP Release 17 introducing NTN support and Release 18 advancing 5G Advanced features, operators and device ecosystems must prove reliable satellite-cellular interworking across fading, Doppler, and spectrum-sharing scenarios. This solution enables agencies and primes to tighten requirements, run repeatable campaigns, and verify real-world performance before field trialsessential for SLAs spanning IoT, mobility, and government-grade communications.

What Rohde & Schwarz delivered

The TASA deployment combines R&S hardware, software, and engineering with a locally built Compact Antenna Test Range (CATR) reflector to achieve dual-mode EMC and antenna measurements in one chamber.

Single-Chamber Workflow: Seamless EMC and OTA Testing

The facility can switch between EMC compliance/immunity and antenna/OTA characterization without moving the device under test (DUT) to a separate room. This reduces logistics overhead, eliminates re-cabling variability, and improves correlation across testscritical when tuning payloads, phased arrays, or transceiver chains that span wide frequency ranges.

Instruments and Software: R&S ZNA43 and AMS32

An R&S ZNA43 vector network analyzer provides high-dynamic-range S-parameter and gain/phase characterization up to 43.5 GHz, covering key satcom bands and supporting precise calibration for active arrays and feed networks. Customized R&S AMS32 measurement software orchestrates chamber control, test sequencing, and data capture to align EMC and antenna workflows with consistent metadata, traceability, and automation hooks for CI/CD-style test operations.

CATR with Diamond-Shaped Reflector for Clean Quiet Zone

The chamber integrates a CATR reflector, co-developed with a Taiwan-based third-party supplierusing a patented diamond-shaped geometry. The design minimizes chamber interactions by reducing blockage and scattering between the reflector, feed, and the DUT positioner. The result is a cleaner, quieter zone, lower multipath, and higher measurement fidelity for complex payloads and beamforming antennas.

Localized Integration with Global-Grade Metrology

R&S engineered the system to interoperate with local components while ensuring performance integrity, demonstrating a practical model for agencies and primes that want global-class metrology combined with regional supply chains, serviceability, and cost control.

Strategic implications for NTN, 5G Advanced, and satellite programs

Converged EMC/antenna validation strengthens cross-domain reliability targets that span space, ground, and consumer devices.

Validating Coexistence with Terrestrial 3GPP Networks

As satellites link with cellular base stations and user equipment, lab setups must prove coexistence, emissions, and receiver robustness in scenarios aligned to 3GPP NTN profiles. An integrated chamber supports iterative optimization of RF front ends, filtering, and beam management against interference and spurious emissions that could degrade terrestrial operations.

Reduce Cost, Footprint, and Test Schedules

Single-chamber investments can replace or defer separate EMC and OTA rooms, reduce facility square footage, and compress test schedules. For programs navigating tight launch windows, the approach also reduces rework and retest loops caused by cross-facility discrepancies.

Technical challenges and how the design addresses them

EMC and OTA testing impose conflicting requirements on chambers, instrumentation, and fixturing; this design balances both without compromising accuracy.

Balancing EMC Requirements with OTA Accuracy

EMC setups demand shielding effectiveness, absorber performance across wide bands, and controlled emissions/immunity paths, while antenna tests require a high-fidelity quiet zone and precise far-field emulation. The CATR-based approach and tailored absorber layout enable both modes with fast reconfiguration and stable calibration.

Maximizing Quiet-Zone Fidelity and DUT Placement

The diamond-shaped reflector geometry reduces coupling among the feed, reflector, and positioneroften a primary source of quiet-zone distortion. Cleaner plane-wave conditions elevate confidence in gain, pattern, and polarization metrics for phased arrays and reflector-fed payloads.

What network and satellite teams should do next?

Program leaders should align test strategies with NTN roadmaps, multi-orbit architectures, and emerging regulatory expectations to avoid late-stage integration surprises.

Actions for Satellite OEMs and Primes

Audit current EMC and OTA workflows for correlation gaps, then standardize on a unified calibration and data model across both domains. Prioritize instrumentation that spans intended frequency roadmaps, including Ka and beyond, and invest in automation to accelerate regression testing during late-stage tuning.

Actions for MNOs and NTN service providers

Define lab scenarios that reflect real deployment conditionsDoppler profiles, synchronization, and adjacent-channel emissions require suppliers to demonstrate end-to-end performance across satellite and base-station links. Tie acceptance criteria to service KPIs such as link availability, spectral efficiency, and device power performance.

Procurement: Standards, Integration, and Upgrade Paths

Favor platforms that integrate third-party components without sacrificing measurement integrity. Look for vendor support on standards-based EMC regimes (e.g., CISPR/MIL-STD/ECSS-class requirements) and antenna metrics, with clear upgrade paths as new bands and waveforms emerge.

2025–2026 Outlook: Standards, Automation, Supply

Technology, standards, and supply dynamics will shape how quickly dual-function chambers become the norm for satcom validation.

Standards and Test Cases: 3GPP Rel-18/19 Expansion

Expect expanded NTN test profiles in 3GPP Release 18/19 and increasing emphasis on coexistence with terrestrial spectrum users. Agencies will seek tighter mapping between lab conditions and flight operations, including phased-array calibration stability across temperature and power states.

Measurement automation and digital twins

Deeper integration between chamber control, network emulation, and system simulators will enable closed-loop optimization, with digital twins guiding what to test and when. Unified data pipelines will support faster root-cause analysis across EMC and OTA findings.

Automation and Digital Twins for Closed-Loop Testing

The TASA modelglobal metrology with localized manufacturing, will gain traction as programs pursue sovereignty, cost efficiency, and faster service response. Expect more joint builds that blend international test IP with regional integration partners.

Regionalization and Supply Resilience Models

By merging EMC and antenna measurement in a single chamber with a CATR and diamond-shaped reflector, ZNA43 instrumentation, and AMS32 automationRohde & Schwarz and TASA have set a new benchmark for satellite payload validation that aligns with the practical demands of NTN-era services.


Recent Content

Samsung Electronics and KT Corporation have entered a strategic partnership to develop 6G network technologies, focusing on improving signal quality and system performance. Their research prioritizes advanced antenna systems like X-MIMO and AI-driven wireless communication enhancements. The companies aim to tackle high-frequency signal loss in the 7 GHz band and improve network reliability through beamforming and multi-spatial transmission.
India’s telecom sector is rapidly evolving with AI and automation enhancing network operations, customer service, and 5G deployment. With over 125 million 5G users and major investments from companies like Reliance Jio and Bharti Airtel, AI technologies are proving essential for scalability and efficiency. Despite challenges like infrastructure integration and talent gaps, India’s growing AI ecosystem and government support are driving the future of smart telecom solutions.
Private 5G is poised to transform India’s telecom and industrial landscape, enabling Industry 4.0 through automation, AI, and ultra-reliable connectivity. At the 5GCongress, TRAI chief AK Lahoti and DoT’s Manish Sinha projected ₹4 lakh crore revenue for the telecom sector by 2026, highlighting private 5G’s critical role in enhancing machine-to-machine communication, operational efficiency, and real-time data exchange. Government support through spectrum allocation and Make in India initiatives further boosts industry momentum.
Alcatel-Lucent Enterprise has launched its first Private 5G solution in partnership with Celona. This new offering enhances secure, low-latency connectivity across enterprise environments like manufacturing plants, ports, and campuses. Integrated with ALE’s OmniVista, OmniSwitch, and OmniAccess Stellar platforms, the network supports ultra-reliable industrial IoT applications and introduces advanced features like MicroSlicing, Aerloc, and Zero Trust Network Access.
MATRIXX Software introduces dynamic billing support for satellite and non-terrestrial network (NTN) services, enabling telecom operators to expand coverage, monetize emerging LEO partnerships, and unify revenue management. The platform supports flexible commercial models, powering growth in underserved regions and across consumer, enterprise, and wholesale markets.
AMD and Rapt AI are partnering to improve AI workload efficiency across AMD Instinct GPUs, including MI300X and MI350. By integrating Rapt AI’s intelligent workload automation tools, the collaboration aims to optimize GPU performance, reduce costs, and streamline AI training and inference deployment. This partnership positions AMD as a stronger competitor to Nvidia in the high-performance AI GPU market while offering businesses better scalability and resource utilization.

Currently, no free downloads are available for related categories. Search similar content to download:

  • Reset

It seems we can't find what you're looking for.

Download Magazine

With Subscription

Subscribe To Our Newsletter

Private Network Awards 2025 - TeckNexus
Scroll to Top

Private Network Awards

Recognizing excellence in 5G, LTE, CBRS, and connected industries. Nominate your project and gain industry-wide recognition.
Early Bird Deadline: Sept 5, 2025 | Final Deadline: Sept 30, 2025