Nestack Agent Care
Industries / Transportation / Fleet-maintenance planner

Transportation AI agent · Maintenance

Fleet-Maintenance Planner AI Agent

Schedule maintenance from condition signals and your own intervals, report the precision and lead time behind each alert, and leave certifying, releasing and clearing to a qualified inspector.

4–6 weeksTypical delivery
Your stackDeployment
Pre-inspectionInspector signs
Agent CareAfter launch

What this agent does

Schedules the work, never certifies it

In
01

Ingest condition signals, fault codes, DVIR entries and service intervals from supported maintenance sources.

02

Normalise unit, component and fault fields, and carry each reading forward with the source it came from.

Reason
03

Rank units against your own intervals and the open defects already reported on them.

04

Raise an alert with the precision it has on your data and the lead time it bought, per component.

05

Say when a signal is thin, because a rarer failure gives the same model a worse precision.

Decide
06

Hold the periodic inspection on its own schedule — a prediction adds work, it never subtracts it.

07

Route the job to the shop, and every certifying act to a qualified inspector.

Out
08

Retain the signal, the interval, the decision taken and the decision not taken, against the unit.

09

Execute write actions only inside the approval boundaries agreed during implementation.

Product statement

The planner schedules; a qualified inspector under 49 CFR 396.19 signs, and the carrier keeps the systematic duty under 396.3.

Example workflow

One unit, signal to shop

AgentHuman
1Condition signal receivedTelematics feed, fault code, DVIR entry or service record
2History and intervals gatheredUnit history, service intervals, open DVIR defects and component signals, each with its source
3Work proposedJob, priority, alert precision and lead time
4Controls appliedInterval checks, open-defect holds, out-of-service holds and confidence threshold
No human action required

Stages 1 to 4 run unaided and certify nothing — scheduling is not signing, and the inspector's lane opens at the confidence gate.

5DecisionBranches at the confidence threshold
High confidence

Goes to the shop to schedule.

Low confidence

Adds a planner's read first.

Inspector signature

The job is held with its signal, the interval behind it and the confidence.

Schedule · Adjust · Send to the shop
Signed — released by a person
6Maintenance systems updatedOnly where write access and approval policy allow it
7Outcome evaluatedAlerts raised, no-defect-found visits, lead time gained and what the shop actually found
Adjustments

Every shop adjustment is counted in the evaluation.

What should not run autonomously

Human approval stays in control

Outside the boundary — human approval required8 items
Certifying a repair or a periodic inspection.
Releasing a unit back into service after repair.
Clearing or closing a defect reported on a DVIR.
Lifting an out-of-service marking from a unit.
Automation boundaryAgent acts unaided
Rank units against your own intervals and their signals.
Report the alert precision and lead time on your own data for the named owner.
Book the work into the shop diary and the unit's file.
Block dispatch on an open defect and hold the unit for the shop.
Any write happens inside the boundaries agreed at implementation, never ahead of approval.
Deferring a periodic inspection on a prediction.
Judging whether a brake inspector is qualified.
Deciding a unit is roadworthy for the next run.
Changes to the interval set or alert thresholds.

Example output

One unit, annotated

Everything the planner proposes is attached to the signal it was raised from.

Maintenance output · single unitIllustrative example
Unit
Proposed job
Lead time
Signal source
Confidence
Who signs
Day-cab tractor
Air-pressure trend outside the configured band
9 days of lead
Telematics air-system channel
86%
A qualified inspector under 396.19
As receivedTaken from the telematics channel and the unit's service file — nothing on this side is predicted by the agent.
Signals used Air-system channel trend Prior work on this unit Open DVIR entries
Why it was raisedIt is an inspection to book, not a fault found — the shop decides what is there.
ActionScheduleAdjustSend to the shop
What the score decidesBelow the configured threshold the job picks up a planner's read before the shop sees it.

Value

Where AI adds value

The same four claims, placed at the point in the workflow where each one applies.

Where the value landsValue 01 – 04
Every unitFrom telematics and the service file
03Scheduling

Schedule against your intervals

Draw on your own service intervals, the unit's history and the condition signals you already collect.

01Approved path

Schedule it, do not certify it

Routine interval work and inspection due-dates arrive already booked.

02Human review

Hand the rest to the shop

Thin signals, open defects and low-confidence jobs are marked, so the shop's read starts where risk concentrates.

04Build an evidence trail

The condition signal, the interval behind it and the mechanic who signed it stay on the unit.

Integrations

Typical integrations

Five system groups connect to the same agent. Which of them are in scope is decided in discovery.

Maintenance systemsTMT Fleet · Dossier
Fleetio · Whip Around
Telematics and diagnosticsSamsara · Motive
Geotab · Noregon
Parts and shopParts catalogues · vendors
Shop diaries · work orders

Agent

Fleet-maintenance planning

Reads the signal
Schedules the work
Holds for the inspector

Dispatch and inspectionTMS · dispatch boards
DVIR · inspection records
Observability & evaluationOpenTelemetry · Langfuse
Supported monitoring/evaluation sources

Integration availability depends on the client's existing systems and API access.

Agent controls

Six layers between the model and the unit

Each control encloses the last. Whatever slips past all of them is named below.

L6 · Outermost — last line of defenceInward → L1 · closest to the model
L6Rollback / safe modeCut back to interval scheduling when evaluation or production signals degrade.Roll back
L5Version monitoringTrack model, prompt, interval-rule and threshold configuration changes.Track
L4TraceabilityRecord the signal, the interval, the job and who signed it off.Record
L3Inspector signatureHold every certifying act for a qualified inspector; it governs who signs, not what the unit is.Gate
L2Interval guardrailsTest each job against your intervals and the open-defect holds; a failure returns it unscheduled.Restrict
L1Confidence thresholdsRoute low-confidence jobs to a planner's read before the shop sees them.Require review
Model coreJob proposed — the component, the priority, the alert precision and the lead time
L1 – L2Test whether a job may stand
L3Puts the signature in an inspector's hands
L4 – L5Keep the signal and the interval behind it
L6Cuts back to interval scheduling when signals degrade

How Nestack evaluates it

Evaluate the whole planning workflow — not only the alert at the end.

Coverage runs the whole depth of the workflow, and every layer is cut by slice.

Surface — the job the shop receives
Depth of coverage ▼
E1Final-output evaluationDid the shop find what the alert said was there?
E2Step-level evaluationDid the planner use the right intervals, history and signal channels?
E3Tool evaluationDid it read the correct unit and write the correct work order?
E4Confidence calibrationDo low-confidence jobs actually end in no defect found?
E5Slice evaluationHow does precision change across specific component families?
E6Business outcomeHow many alerts were dismissed, and how much lead time did the rest buy?
Floor — the unit that has to pass inspection

Failure modes

Where each failure originates in the agent

Seven ways a schedule goes wrong, at its own stage.

Agent lifecycleDirection of processing →
01 · Retrieval1 mode
AM-03

Stale service record

The interval is read from a record the shop has since updated.

Stage gathersUnit history, intervals, open defects and signals
02 · Reasoning2 modes
AM-04

Alert without precision

A component is flagged with no precision behind the flag.

AM-06

Interval quietly deferred

A periodic inspection slips because a model called it healthy.

Stage proposesThe component, the priority and the lead time
03 · Tool / write2 modes
AM-02

Job released without a person

A write books or closes work before anyone has signed.

AM-05

Repeat alert on one unit

The same signal raises a job the shop already dismissed.

Stage writesOnly where write access and approval policy allow it
04 · Output1 mode
AM-01

Open defect not held

An open DVIR defect does not stop the unit being scheduled out.

Stage returnsThe job the shop reads and the unit it books
05 · Change / Version1 mode
AM-07

Silent threshold regression

A model or rule change quietly widens what raises an alert.

Stage tracksModel, prompt, interval rules and thresholds
Sev-1 · a unit is released without a signature Sev-2 · a required inspection is missed Sev-3 · a signal degrades, job routes to review

Affected slices

One pooled precision hides the rarer component

Precision moves with the base rate, not only with the model, so a family whose failures are rarer returns more no-defect-found visits from the same alert engine. Nestack reports that rate by component family, not only in total.

Slice performance — reported separately, not only in aggregateIllustrative example
SliceFailure rateLift Lift vs. thresholdStatus
Aftertreatment and DPF signals7.1%3.3× Review
Air-system and brake wear6.2%2.9× Review
Battery and charging signals4.3%2.0× Watch
Air-pressure (APS) signals1.9%0.9× Normal
Bar: no-defect-found-rate lift vs. air-pressure-signal baseline · scale 0–4.0× · tick marks the 2.0× review threshold 2 of 4 slices over threshold

Evidence-linked improvement

Close it with a case, not a theory

The cycle does not end in a post-mortem. It ends in a case the next release has to clear, and that suite is what the next unit scheduled is measured against.

Improvement cycle · five stagesSwitchback — the path turns at Improve and returns at Learn
01Detect

No-defect-found rate rises in a component family.

02Diagnose

Read the alerts against what the shop actually found, until one cause holds.

03Improve

Each change carries a version and the units that forced it.

04Verify

Release waits on the affected cases going green again.

05Learn

The case is kept for good, and the maintenance programme is rewritten.

Learn → DetectThe return edge. The next detection runs against a suite one case longer.

Typical build scope

Twelve workstreams across six weeks

The build scope read against the delivery timeline. Week structure follows the six-week plan — discovery, sources, planning workflow, evaluation, integration, then production validation and handover.

Workstream Week 1Week 2Week 3Week 4Week 5Week 6
01Maintenance workflow discovery and boundary definition.
02Telematics and shop-system assessment.
03Service interval, defect-hold and threshold mapping.
04Signal and service-record ingestion.
05Scheduling logic and interval binding.
06Confidence scoring and defect routing.
07Inspector signature workflow.
08Maintenance and shop-system integration.
09Defect and interval cases.
10Guardrails and out-of-service controls.
11Unit-trail instrumentation.
12Deployment, documentation and Agent Care handover.
12 workstreams · 6 weeks · bar shows the weeks a workstream is active — several run in parallel Final scope and sequence confirmed in discovery

Engagement tiers

What each tier includes

Rows are the capabilities named in each tier's scope. Higher tiers include everything below them.

Capability✓ in scope · — not at this tier PilotOne terminal, one unit class ProductionProduction maintenance systems AdvancedMultiple terminals / classes
Introduced at Pilot
Scheduling to your own intervals
Inspector signature
Schedule-quality baseline
Introduced at Production
Reporting by unit class
Signature workflow in your systems
Approved write-back
Maintenance-system integration
Introduced at Advanced
Multi-class interval sets
Multi-stage shop approvals
High unit volume
Multi-terminal fleet controls
Build price From $5,000 From $8,000 Custom quote
Final build priceConfirmed after discovery based on integrations, workflow complexity, transaction volume, approval controls and deployment requirements.
Separate from buildBuild pricing is separate from recurring Agent Care, which covers managed monitoring, evaluations, incidents and verified improvements after launch.

What we need from you

What you bring, and what we build with it

Each input maps to a piece of build scope and a week in the delivery timeline.

You bringWe build with it
01Your service intervals and unit classes Signal and service-record ingestion and interval mappingWeek 1
02Representative historical work orders Scheduling baseline, interval binding and per-component precisionWeek 2
03Your defect holds and alert thresholds Service interval, defect-hold and threshold mappingWeek 1
04Access to relevant APIs, feeds or exports Telematics and shop-system assessment, then integration setupWeek 2
05Units you would not want released Defect cases and failure-mode testingWeek 4
06What must reach a qualified inspector before a unit rolls Confidence scoring, defect routing, guardrails and out-of-service controlsWeek 3
07Named qualified inspectors to sign Inspector signature workflow, then pilot and production validationWeeks 5–6
Nothing else is required Deployment, documentation and Agent Care handover are ours.

Delivery timeline

Four phases across six weeks

The bands sit on the weeks the work occupies, which is why the fifth carries two kinds at once.

Phase W1W2W3W4W5W6
Discovery W1
Build W2 – W3
Evaluate W4 – W5
Pilot & Launch W5 – W6
Week focus W1Maintenance workflow discovery, interval mapping and the boundary W2Telematics and shop-system integration and the scheduling baseline W3Planning workflow, confidence logic and signature controls W4Evaluation suite, defect cases and failure-mode testing W5Shop-system integration, a pilot unit class and targeted corrections W6One maintenance cycle planned under the shop, then Agent Care handover
Reading the bandEach bar covers only the weeks its work is named in. The week 5 overlap is real, not padding.
At the end of W6The cycle closes the validation and Agent Care takes over monitoring.
DurationSix-week plan shown · typical delivery 4–6 weeks depending on scope confirmed in discovery.

Next step · Transportation AI agent

Build a maintenance planner that schedules and leaves the signature alone.

Show us your intervals, your signals and your shop. Then answer one question: when a model calls a unit healthy, who signs that the inspection can wait? We set the boundary around that answer.

Nestack Agents · Fleet maintenanceAGT-TR-05 · Agent Care available after launch