Automotive communication intelligence

See what changed.
Know what it affects.

K-Matrix Inspector turns complex communication definitions and diagnostic traces into a navigable model of ECUs, buses, messages, signals and routes—so teams can compare versions, verify runtime behaviour and find integration risk earlier.

K-Matrix version comparison Routing & timing verification Design-to-runtime traceability Optional AI-assisted analysis
K-Matrix Inspector
02Cycle time
2 fail
06Unexpected
6 fail
10Msg length
review
08Signal range
12 ok
Communication impact mapSelected ECU · anonymized product view
MessageRouteChangeImpact
Changed messageSource bus → Gateway → Target busChanged3 consumers
Added messageSource bus → Domain controllerAdded1 consumer
The engineering problem

Communication complexity grows faster than manual review.

01

Too many moving layers

ECU variants, software releases, network topologies and environment-specific behaviour change at different speeds.

02

Differences hide in structure

A changed route, removed signal, cycle-time drift or silent consumer impact can be buried across large files and traces.

03

Teams see different truths

Architecture, integration and test teams often interpret the same communication evidence through separate tools and views.

How it works

Compare K-Matrix versions first. Verify real-world behaviour when needed.

K-Matrix Inspector makes communication change visible across K-Matrix releases, then uses the selected version as the reference for optional system and field-log verification.

Core value pathK-Matrix version intelligence
STEP 01

Load K-Matrix versions

Bring the K-Matrix releases you want to inspect into one controlled, version-aware workspace.

K-Matrix version AK-Matrix version BVersion history
STEP 02

Visualize each version

Explore ECUs, buses, messages, signals, PDUs and their relationships as a navigable communication model.

Flat viewHierarchical viewSearch
STEP 03 — CORE VALUE

Analyse version differences

Compare two K-Matrix versions and reveal what was added, removed or changed across ECUs, messages, signals and communication relationships.

ECU deltasMessage deltasSignal deltasImpact
On-demand verification path

Does the implemented system conform to the selected K-Matrix version?

Use integration-system or field-test evidence when you need a rapid answer about actual software behaviour.

01 — SET THE REFERENCE Select a K-Matrix version and load a BLF or TTL log

The chosen K-Matrix version defines the expected communication behaviour for the analysis.

02 — VERIFY RUNTIME BEHAVIOUR Compare observed traffic with the K-Matrix version

Check message presence and content, payload or message length, cycle times and timing against the selected version.

Core capabilities

Follow a change from definition to network impact.

Each view answers a specific engineering question while using the same normalized communication model underneath.

01 — VIEW & SEARCH

Navigate the network as a graph, not a spreadsheet.

Explore ECU, bus, message and signal relationships in flat or hierarchical views. Select a node to reveal routes, message definitions, signal mappings and connected consumers.

Flat and hierarchical topology views
ECU, message, signal and bus search
Route-to-ECU highlighting
Message and signal detail tables
ProtocolCAN FD
Send typeCyclic
Cycle time20 ms
Connected consumers4 ECUs
02 — COMPARE

Make every added, removed and changed element explicit.

Compare complete baselines or focus on one ECU. Drill from bus-level differences to changed messages and signals, then review the affected connections and consumers.

Bus, ECU, message and signal comparison
K-Matrix version and selected baseline comparison
Added / removed / changed classification
ECU-focused incoming and outgoing deltas
Baseline Comparison
Release ARelease B
50all buses
43changed
6added
1removed
Network segment
Changed
Network segment
Diagnostic segment
Changed
Diagnostic segment
Legacy segment
Removed
Added
New segment
Ethernet segment
Changed
Ethernet segment
CAN segment
Changed
CAN segment
Expanded change
Messages
5 changed
Signals
18 affected
Properties
4 changed
Consumers
7 to verify
03 — VERIFICATION

Compare expected communication with measured behaviour.

Run measurement analysis against a selected baseline. See violations by category, inspect when they occurred and follow routing results down to individual messages.

Cycle-time and routing-latency checks
Missing and unexpected message detection
Message-length and signal-range validation
Some/IP consistency checks and error timeline
Measurement Verification
Trace loadedRun analysis
02cycle-time issues
06unexpected messages
08signal-range issues
02missing messages
10length mismatches
02Some/IP findings
Event log
04.10 s
Cycle time
18.40 s
Missing message
42.70 s
Route latency
68.20 s
Signal range
04 — IMPACT & ASSISTANCE

Move from “what changed?” to “what should we check?”

Focus on a selected ECU or change, see affected connections and use context-aware summaries to turn complex deltas into a prioritized engineering review.

Incoming and outgoing connection impact
Changed-message consumer mapping
Human-readable difference summaries
Page-aware product assistant (optional)
Impact Analysis
Selected ECUAI summary

✦ Analysis Assistant

Summarize the highest-risk changes.
Key changes
Eight incoming messages changed across three buses. One outgoing message was replaced.
Recommended checks
Verify downstream subscriptions, signal packing and the affected route in the next trace run.
Evidence
Links to changed buses, messages and consumers are preserved in the analysis view.
Engineering workflow fit

Add focused analysis without replacing established tools.

K-Matrix Inspector works alongside existing engineering environments and adds a dedicated workspace for K-Matrix visualization, version comparison and runtime verification.

Fits existing engineering workflows

Architecture and communication-design environments can remain the source of design intent. K-Matrix Inspector adds a version-aware analysis layer for comparison, routing inspection and runtime verification without forcing teams to replace their established authoring workflow.

K-Matrix baseline workflowControlled, repeatable version loading
Version contextSelected K-Matrix releases and visible deltas
ResultK-Matrix differences and runtime findings in one view
Where to use it

Built for the moments when communication risk becomes delivery risk.

01

Build-to-build regression

Compare consecutive baselines, classify deltas and focus verification on the messages, signals and consumers that actually changed.

02

Simulator ↔ test bench ↔ vehicle

Reveal environment-specific communication behaviour and verify expected routes, timing and message presence across test stages.

03

ECU-focused regression

Focus comparison on a selected ECU and review its incoming, outgoing and connected-message changes across K-Matrix versions.

04

Pre-delivery evidence

Create repeatable, version-aware analysis that reduces ambiguity between supplier, integration and validation teams.

Expected impact

Less manual trace review. Faster root-cause isolation.

By making structure, behaviour and diagnostic evidence visible in one analysis flow, teams can reduce repetitive review and move issues earlier in the lifecycle.

Fasterroot-cause isolation through connected version and runtime evidence
Less manual workthrough categorized differences and runtime findings
Earlierregression and integration issue detection
Clearerevidence and handoffs between engineering teams
Frequently asked

Product questions, answered.

Is K-Matrix Inspector only a file-diff tool?

No. File and baseline comparison is one capability. The product also builds a communication topology, maps routes and consumers, verifies measured traces and connects findings to the selected baseline.

What kinds of problems can the verification flow detect?

Depending on the available design and trace data, checks can cover missing or unexpected messages, cycle-time and routing-latency deviations, message-length mismatches, signal-range violations, routing failures and Some/IP consistency findings.

Does it replace architecture authoring tools?

No. It complements architecture and communication-design environments by adding focused K-Matrix visualization, version comparison, routing analysis and runtime validation.

How can it be deployed?

Deployment can be adapted to enterprise constraints, including controlled on-premise environments or scalable hosted execution. Data interfaces, identity, storage and retention should be defined during technical discovery.

Start with a focused proof of value

Bring one baseline pair, one target ECU and one representative trace.

We will map the comparison scope, identify the most relevant routing and verification checks, and define how K-Matrix Inspector fits your existing engineering toolchain.