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Industry & Operational Transformation

The pick path is the P&L.

Layout, slotting, picking strategy, labour sequencing and delivery routing — mapped on the floor first, then optimised, then enforced by the system.

The problem

Before optimisation, someone has to walk the floor and count the steps.

Warehouse economics are decided by layout, slotting and labour sequencing long before any system is chosen. A picker walking an unnecessary twelve metres per line, forty times an hour, is a cost that no software licence addresses.

We map the physical work first and then decide what the system should enforce. Applying AI to routing or forecasting before the layout is right optimises a bad path very efficiently.

Typical situations

What the floor shows.

Slotting set once, never revisited

Fast movers sit at the back because that is where they were placed when the range was different.

Double handling on receipt

Inbound freight is put down and picked up again because the receiving process assumes a layout that changed.

Picking strategy mismatched to order profile

Single-order picking on a profile of many small orders, or batch picking where accuracy matters more than speed.

Labour planned by headcount, not by wave

The same crew size regardless of the order profile that day, so the shift is over- or under-resourced by lunchtime.

Accuracy fixed by counting more

Cycle counts increase instead of fixing the process that generates the discrepancy.

Routes built by habit

Delivery runs follow the same geography they did five years ago, with drop density never recalculated.

What we assess

What we measure, on the floor.

Movement

Distance walked per pick linePicks per hour by zoneTravel versus touch timeCongestion points and aisle conflictDock-to-stock time

Profile

Order profile: lines, units, mixVelocity distribution across SKUsSeasonality and daily peaksCut-off times and wave structureReturns volume and handling

Accuracy & cost

Inventory accuracy and root causesPick error rate and costLabour cost per line and per orderOvertime and agency useDelivery cost per drop
What we do

What the engagement actually includes.

Walk and measure

On the floor, on shift: distance per pick line, travel versus touch time, congestion points and dock-to-stock. Measured, not estimated from a system report.

Re-slot to the order profile

Velocity-based slotting matched to the real order mix, with a re-slotting cadence so it does not drift back within a season.

Fix the receiving process

Remove double handling by aligning the receiving flow to the current layout, which is usually the fastest single gain available.

Choose the picking strategy

Single, batch, zone or wave — selected against the actual order profile rather than inherited, and enforced by the system.

Labour to the wave

Crew size and zone allocation planned against the day's order profile, so the shift is resourced to the work rather than to the roster.

Routing and drop density

Delivery runs rebuilt around current customer geography and order frequency, with cost per drop attributed to the customers that drive it.

Our approach

Floor first. System second.

01
Walk
On shift, measuring distance and time. Gate: the operators confirm the map.
02
Profile
Order mix, velocity and peaks analysed. Gate: an agreed order profile.
03
Redesign
Layout, slotting, receiving and picking strategy. Gate: the site manager signs.
04
Pilot
One zone re-slotted and measured. Gate: picks per hour improve.
05
Enforce
The system enforces the new strategy. Gate: no manual override needed.
06
Sustain
Re-slotting cadence and weekly review. Gate: the gain holds for 90 days.
What you receive

01Floor-measured movement and congestion map
02Order profile analysis by lines, units and mix
03Slotting design with velocity bands
04Redesigned receiving flow
05Picking strategy selection and configuration
06Labour planning model against the wave
07Route and drop density redesign
08Re-slotting cadence and sustain plan
Technology involved

The floor decides the economics; the system enforces what you decided. These are the components involved.

Odoo EnterpriseWarehouse managementBarcode & handheld scanningSlotting optimisationWave & labour planningRoute optimisationProof of delivery capture
What should change
+22%
Picks per hour
−31%
Cost per consignment
98.6%
Inventory accuracy
+18%
Drops per vehicle per day

Ranges observed on Al Jawad engagements. Your targets are agreed in assessment, before the work starts.

Questions we are asked

Do we need a WMS first?

No. Layout, slotting and receiving flow are decided before any WMS matters, and most of the first-phase gain comes from them. The system then enforces what you decided.

Where does AI actually apply?

Slotting optimisation, wave planning and route sequencing, once the physical process is right. Applied before that, it optimises a bad path efficiently.

How long does the floor work take?

Two to three weeks of measurement across shifts, including a peak day. Estimating from system reports instead is how most projects get the profile wrong.

Can you work across multiple sites?

We prove the redesign on one site first. Standardising operating definitions across sites usually matters more than the software consolidation that follows.

Let us walk one site.

Two weeks on the floor produces a measured movement map — usually the first time the cost of the pick path has been quantified.

Start a conversation.

Start a conversation.

Choose the one that fits where you are. None of them is a sales call. Each is an advisory conversation calibrated to a specific question.

60 minutesExecutive briefingFor a CEO, COO or CFO deciding whether the question is worth pursuing.Begin →
Two weeks, on siteTransformation assessmentFor an organisation that knows something is wrong and wants it named precisely.Begin →
One weekERP readiness assessmentFor a board or sponsor about to approve an ERP investment.Begin →