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GMV leads ARGUS to enhance
Europe’s spectrum and space domain awareness
capabilities
September 17, 2026
The European Space Astronomy
Centre (ESAC), located in Villanueva de la Cañada,
Madrid, hosted today’s official launch event and
contract-signing ceremony for the consolidation
phase of the IRIS² Low-LEO Pre-Operational and
De-Risk Activities under the European Space Agency’s
(ESA) Programme Related to EU Secure Connectivity.
In this context, Enrique Fraga, GMV’s General
Manager of Space Systems, signed the agreement,
reaffirming GMV’s leadership in the ARGUS project.
Europe’s growing reliance on
space-based services, increasingly congested orbits,
and rising levels of radio-frequency interference
are driving the need for sovereign capabilities to
monitor both the orbital environment and the
radio-frequency spectrum used by critical
communications and infrastructure. Against this
backdrop, technology multinational GMV is leading
ARGUS, a mission concept designed to strengthen
European autonomy through persistent, coordinated
space surveillance. ARGUS was conceived in response
to the IRIS² Low-LEO Pre-Operational and De-Risk
Activities within the European Space Agency's (ESA)
Programme Related to EU Secure Connecitivity, which
aims to demonstrate and validate new European
governmental services in spectrum and interference
awareness and space security.
ARGUS addresses Europe’s
swelling need for sovereign capabilities on
radio-frequency spectrum, detect and characterize
interference, safeguard critical space services and
infrastructure, and improve awareness of today’s
increasingly congested orbital environment.
The name ARGUS comes from Argus
Panoptes, the guardian of Greek mythology known as
“the all-seeing one,” whose hundred eyes allowed him
to maintain an almost constant watch. This idea
captures the philosophy behind the mission:
providing persistent observation of both the
electromagnetic spectrum and the orbital environment
through a distributed network of space-based
sensors.
The pre-operational mission
concept envisages a constellation of up to five 16U
CubeSats equipped with spectrum awareness payloads
and optical observation capabilities based on
advanced star trackers. The RF payloads would
support interference detection and characterization,
covering both emitter geolocation and emitters in
orbit. Complementing these capabilities, the optical
sensors would detect and track satellites, space
objects, and orbital debris, contributing to
enhanced space domain awareness, the identification
of emitters relevant to spectrum and interference
awareness services, and the protection of the
constellation itself.
One of ARGUS’s key
differentiators is its federated architecture. Data
collected by the different satellites would be
combined on the ground using advanced data
processing and fusion techniques, enabling the
generation of higher-value products for users. The
architecture is also designed to accommodate
additional sensors in the future, including hosted
payloads on other satellites and external data
sources. This would facilitate a gradual evolution
toward a scalable and interoperable European space
surveillance infrastructure compatible with IRIS².
ARGUS also adopts an approach
focused on rapid deployment and risk reduction,
based on the reuse of flight-proven technologies,
operational infrastructure, and previously validated
engineering assets. The concept builds on GMV’s and
Alén Space’s experience in fast-paced missions,
demonstrating their ability to develop, launch, and
bring systems into orbital operation within short
time frames. arcsec also contributes to the
initiative through its ongoing technology
developments aimed at adapting optical star-tracking
sensors for space surveillance use cases,
complementing ARGUS’s primary mission.
At this consolidation stage,
GMV is leading ARGUS through its subsidiaries in
Spain and Portugal, with the participation of Alén
Space, also part of the GMV Group, and arcsec. The
team brings together capabilities in space-based
surveillance, SST/STM, RF monitoring and
geolocation, software-defined radio technologies,
agile small-satellite development, mission
operations, and optical surveillance systems.
Through ARGUS, the consortium
aims to demonstrate the potential of combining a
distributed constellation of small satellites,
advanced data processing, and a service-oriented
architecture to strengthen Europe’s capabilities in
interference detection, and spectrum and space
domain awareness. The concept thus lays the
groundwork for a potential evolution toward
operational European services capable of integrating
into the future IRIS² ecosystem.

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