Logistics Resources and Supply Chain Insights | ODW Logistics

Warehouse Automation Technology: Where It Drives ROI and Where It Doesn't

Written by ODW Logistics | Aug 10, 2026, 2:05:12 PM

Automation isn't a single category. It's a collection of tools that work well in specific operational contexts and poorly in others. A 42% improvement in pick rates is achievable when the problem is pick throughput and the volume is there to justify AMR deployment. An autonomous inventory robot pays off when the problem is reconciliation lag and manual scanning hours. The trap is deploying automation because it sounds current, not because it solves a defined operational problem.

At ODW, warehouse automation decisions start with the operational constraint, not the technology catalog.

Three Types of Warehouse Automation and What Each One Solves

Autonomous inventory scanning (Dexory DexoryView)

Best for: high-SKU environments where inventory accuracy directly affects order fill rates or retail chargeback exposure.

What it replaces: manual cycle counts, periodic reconciliation, human-led pallet audits.

At ODW's Columbus, OH facility, the Dexory DexoryView robot scans 20,000+ storage locations per mission, multiple times per week, without interrupting floor operations. Results feed into a real-time digital twin of the facility, giving the operations team current visibility into pallet positions and inventory discrepancies.

Specific application: CHEP and PECO pallet auditing for retail clients. Rental pallet programs at major retailers create chargeback exposure when pallets aren't tracked accurately. DexoryView automates that audit process, catching discrepancies before they become billing disputes.

Kayla Watson, Sr. Inventory Manager at ODW Logistics: "The ability to complete autonomous scans, capture detailed data, and act on insights in real time has allowed our teams to work more efficiently, with fewer discrepancies and faster problem resolution."

AMR-enabled order picking (Zebra Symmetry Fulfillment)

Best for: high-velocity e-commerce operations where pick rate is the primary throughput constraint.

What it replaces: pick-to-tote workflows where labor is the bottleneck.

ODW's e-commerce operations have deployed Zebra's AMR platform and directed workflow software, transitioning from pick-to-tote to pick-to-shipper. Associates pick directly into shipping containers while AMRs handle transport between locations. Detachable baker's rack carts allow multi-SKU picks without waiting for conveyance to return. Anticipated pick rate improvement: 42%.

For clients running high-order-count e-commerce operations, that improvement translates to more orders fulfilled per shift on the same square footage, without proportional headcount increases.

Autonomous fulfillment robots (Chuck)

  • Best for: split-case picking environments where travel time between picks is the primary efficiency drain.
  • What it replaces: long pick walks and tote consolidation steps.

Chuck follows the picker through the warehouse rather than requiring the picker to travel to a central station. In health and beauty, CPG, and DTC fulfillment, where order profiles involve many SKUs in small quantities, the time between picks is often where most labor cost is lost. Chuck eliminates that travel overhead. ODW's e-commerce fulfillment operations have documented a 70% increase in units picked per hour for a national footwear client using automated picking solutions.

Where Automation Drives ROI

ROI is highest when four conditions are present:

  1. Volume is consistent. AMR deployment economics require utilization. A robot sitting idle during slow periods doesn't offset its capital and implementation cost. High-volume, year-round operations or operations with predictable seasonal peaks recover investment faster.
  2. The manual process has a measurable cost. Reconciliation hours, pick errors, chargeback rates, and OTIF violations are all quantifiable. When the cost of the manual process is visible, the ROI case for automation is straightforward.
  3. The automation layer connects to existing systems. An inventory robot that scans but doesn't sync with the WMS produces a separate data silo, not operational intelligence. Integration is what turns scan data into actionable findings.
  4. Labor reallocation is planned in advance. Automation frees associates for higher-value tasks. Operations that plan the reallocation before deployment capture more of the available savings than those that treat it as an afterthought.

For a broader view of how ODW approaches technology deployment as part of supply chain design, see Supply Chain Technology That Scales.

Where Automation Underperforms

Automation underperforms when volume is inconsistent and utilization economics are poor, when the integration with existing WMS or TMS requires sustained manual effort to maintain, or when implementation timing disrupts operations without enough lead time to stabilize.

A 3PL deploying automation in a client's dedicated facility needs to be clear-eyed about these constraints from the start. ODW's approach is OEM-agnostic: no single hardware vendor dictates the solution, which means the technology selected fits the operational problem rather than the vendor's catalog.

Questions to Ask Before Investing in Warehouse Automation

Before committing to an automation deployment, these questions should have clear answers:

  • What specific operational problem does this solve, and can you measure it today?
  • Is your volume consistent enough to justify AMR deployment, or do seasonal swings undercut utilization?
  • How will the automation layer connect to your current WMS?
  • What is the manual fallback during system downtime?
  • What is the provider's track record in your specific fulfillment environment: e-commerce pick operations, retail compliance, or contract logistics?

ODW has deployed automation across multiple points in the fulfillment chain. If you're evaluating whether automation makes sense for your operation, request a quote to start with your actual volume, pain points, and system requirements.