VGA-SNT · Ground and air traffic systems

Sentinel-ATM

One track per aircraft, assembled from six sources that never quite agree.

Talk to the Sentinel-ATM team

Sentinel-ATM is surveillance data fusion and controller tooling for regional air navigation service providers — the layer between a collection of sensors and a controller who needs one unambiguous picture.

6supported Sensor types
1,200 Tracks, concurrent
1s Display update
99.99% Availability

01 — Why it is built this way

Fusion, not selection

A track is built from every source that can see the aircraft, weighted by each source's measured accuracy in that volume. Systems that simply pick a preferred sensor inherit that sensor's blind spots wholesale.

Disagreement is displayed, not hidden

When sources disagree beyond the expected envelope the controller is told. Quietly averaging a conflict away produces a confident display and an uninformed controller.

Recording that satisfies an investigator

Every input, every fused track and every display state is recorded and replayable. An investigation should not depend on what somebody remembered to screenshot.

Built for the size of service that exists

Most air navigation providers are not continental. Sentinel is sized and priced for regional operations, and it does not require a programme office to run.

Fig. 11Acceptance testing against recorded live traffic. Every scenario is replayed from real data before the system carries an operational load.

02 — Origin

The aircraft that was in two places

A regional provider asked us to look at intermittent duplicate tracks — one aircraft appearing twice, a few hundred metres apart, for a few seconds at a time, always in the same sector.

The cause was a boundary between two radar coverage volumes where the existing system switched preferred source. During the switch it briefly maintained both tracks. Every individual component was working exactly as specified.

Fusing rather than selecting removed the class of problem rather than that instance of it. That distinction — fixing the class, not the instance — is what the programme is built around.

03 — Architecture

Sentinel-ATM fusion pipeline

Six input classes, one track store, and a recording tap that sees everything.

Primary radarPSRSecondary radarSSR / Mode SADS-B1090ESMultilaterationWAMFlight plansFPLNormalisationTIME ALIGNFusion engineWEIGHTEDTrack store1 200 TRACKSCWPSafety netsSTCA / MSAWRecordingFULL REPLAY

04 — Detail

Fitting an existing operation

Nobody replaces an air traffic system in one step. Sentinel is built to arrive alongside what is already there.

Transition

Shadow mode

Runs alongside the incumbent system on live data for as long as the provider wants, producing a comparison record rather than an assurance.

Source by source

Sensors are migrated individually. There is no day when everything changes at once.

Rollback

A documented and rehearsed path back to the incumbent, exercised during commissioning rather than assumed.

Interfaces

ASTERIX throughout

Standard EUROCONTROL categories for input and output, so the system is replaceable — including by something that is not ours.

Open recording format

The archive is documented and readable without our software. A recording you can only read with the vendor's tool is not really evidence.

Flight data integration

AFTN and flight plan correlation with manual override where the correlation is ambiguous.

SNT-1200 · Rev C · issued 2025-09-30
Input categoriesASTERIX CAT 001/002/021/034/048/062
Output categoryASTERIX CAT 062
Concurrent tracks1,200
Display update rate1s
Fusion cycle250ms
Safety netsSTCA, MSAW, APW
RecordingAll inputs, tracks and display state
Replay speed0.25× to 16×
Availability, dual node99.99%
Failover time< 4s
Flight dataAFTN, FPL correlation
Working positionsup to 24

Full interface control documents, environmental qualification reports and the traceability matrix are released under NDA. Ask for the document index rather than a brochure.

Request the document index

05 — Qualification

How a unit gets signed off

STEP 01

Coverage survey

Actual sensor performance measured across the operational volume from the provider's own recordings, rather than assumed from siting data.

STEP 02

Fusion tuning

Source weightings derived from that survey, so the model matches the real installation and not a generic one.

STEP 03

Shadow operation

Sentinel runs alongside the incumbent on live data, producing a continuous comparison record for as long as the provider wants it.

STEP 04

Controller evaluation

Working position design refined with the controllers who will use it, against replayed live traffic.

STEP 05

Safety case

Built from shadow-mode evidence, which means it rests on measurement rather than on argument.

STEP 06

Progressive cutover

Source by source, position by position, with a rehearsed rollback at every step.

Fig. 12Sentinel is developed and supported from Farnborough, with Asia-Pacific installations supported out of Singapore. Both…

06 — Where it is built

Farnborough and Singapore

Sentinel is developed and supported from Farnborough, with Asia-Pacific installations supported out of Singapore. Both sites keep a full replay environment loaded with each customer's recorded traffic.

That matters more than it sounds. When a provider reports odd behaviour we reproduce it against their own data, in their own airspace geometry, usually the same day.

Controller evaluation sessions are run at the customer's operations room wherever possible. A simulator in our building tells you less than a bad afternoon in theirs.

07 — Who uses it

Regional ANSPs

Three regional air navigation providers run Sentinel operationally.

Military airfields

Two joint-use airfields with mixed civil and military traffic.

Training organisations

Replay environments supplied for controller training at two academies.

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Next step

Send us the environment, not the part number.

Tell us what it has to survive and how long it has to keep working. We will tell you whether Sentinel-ATM is the right answer — including when it is not.

Talk to an engineer