
Warehouse Operations Automation Course
Take full control of modern warehouse automation — from conveyor systems and robotic picking to WMS configuration and AMR fleet deployment. This course gives operations professionals the technical knowledge and strategic tools to design, implement, and manage automated warehouse environments. If you're ready to move beyond manual processes, this is where you start.
What you will learn:
You'll build a complete understanding of warehouse automation technologies, starting with maturity assessments and business case development. You'll learn how to configure Warehouse Management Systems, integrate barcode and RFID auto-ID solutions, and operate conveyor and sortation equipment. The course covers AS/RS design, autonomous mobile robot deployment, and robotic picking and palletizing cells. You'll also work through data integration, cybersecurity, safety compliance, and workforce training. By the end, you'll be able to develop a full automation roadmap and lead a successful go-live.
How you study in practice Warehouse Operations Automation Course
How you practise Warehouse Operations Automation Course
For companies looking to train their team
With Dedika for Business, the course includes exercises and examples tailored to your own business and the way your company needs.
Course Content
8 Chapters • 38 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Warehouse Automation
Foundations of Warehouse Automation
Lesson 1 • Warehouse Operations Fundamentals
Core warehouse functions—receiving, storage, picking, packing, shipping—are defined and linked to automation opportunities. Establishes vocabulary for the entire course.
Lesson 2 • Automation Maturity and Readiness
Introduces maturity models to assess current-state operations before selecting technology. Students evaluate readiness gaps and prioritization criteria.
Lesson 3 • Taxonomy of Automation Technologies
Classifies fixed, flexible, and autonomous automation across mechanical, software, and data layers. Provides a reference framework used throughout the course.
Lesson 4 • Automation Drivers and Business Case
Examines labor costs, throughput demands, and error rates that justify automation investment. Connects operational pain points to technology solutions.
Chapter 2HideHide detailsSee detailsWarehouse Management Systems
Warehouse Management Systems
Lesson 1 • Inventory Control and Cycle Counting
Automates inventory accuracy through system-directed cycle counts, ABC classification, and discrepancy resolution. Directly supports picking accuracy downstream.
Lesson 2 • WMS Reporting and Analytics
Builds dashboards and KPI reports from WMS transaction data to monitor operational performance. Enables data-driven decisions for continuous improvement.
Lesson 3 • Inbound and Receiving Automation
Configures WMS-directed receiving, license plate tracking, and putaway rules. Reduces manual decision-making at the dock.
Lesson 4 • Outbound Order Management
Covers wave planning, order release logic, and cartonization within the WMS. Links order management to picking and shipping execution.
Lesson 5 • WMS Architecture and Data Model
Covers database structure, location hierarchies, and item master data that drive WMS logic. Foundational for all subsequent configuration and integration topics.
Chapter 3HideHide detailsSee detailsBarcode, RFID, and Auto-ID Systems
Barcode, RFID, and Auto-ID Systems
Lesson 1 • RFID Technology Principles
Explains RFID frequency bands, read range, and tag types for warehouse environments. Prepares students to evaluate RFID feasibility for specific use cases.
Lesson 2 • Barcode Symbologies and Standards
Compares 1D and 2D barcode formats, print quality standards, and global labeling conventions. Establishes the data-capture foundation for WMS and automation integration.
Lesson 3 • Mobile and Fixed Scanning Hardware
Covers handheld scanners, vehicle-mounted terminals, and fixed tunnel scanners used in warehouse workflows. Guides hardware selection based on task and environment.
Lesson 4 • Auto-ID System Integration
Connects auto-ID hardware to WMS and automation controllers via middleware and APIs. Students configure data flows and validate read accuracy.
Chapter 4HideHide detailsSee detailsConveyor and Sortation Systems
Conveyor and Sortation Systems
Lesson 1 • System Integration with WMS
Explains warehouse control system middleware that translates WMS orders into conveyor and sorter commands. Students trace a carton from scan to sort destination.
Lesson 2 • Maintenance and Uptime Management
Establishes preventive maintenance schedules, fault diagnostics, and uptime KPIs for conveyor systems. Directly impacts throughput reliability in automated operations.
Lesson 3 • Sortation Technologies
Covers sliding shoe, pop-up wheel, tilt-tray, and cross-belt sorters and their throughput profiles. Students match sorter type to order profile and product characteristics.
Lesson 4 • Conveyor Controls and PLC Basics
Introduces programmable logic controllers, sensors, and zone control logic that govern conveyor operation. Bridges mechanical systems to software-driven automation.
Lesson 5 • Conveyor System Types and Design
Surveys belt, roller, chain, and overhead conveyor types and their load and speed specifications. Provides the mechanical baseline for sortation and integration topics.
Chapter 5HideHide detailsSee detailsAutomated Storage and Retrieval Systems
Automated Storage and Retrieval Systems
Lesson 1 • AS/RS Control and WMS Integration
Covers warehouse execution system commands, crane scheduling algorithms, and WMS task interleaving. Students configure task sequences to balance throughput and travel time.
Lesson 2 • Storage Density and Slotting
Applies slotting logic, velocity profiling, and aisle configuration to maximize storage density. Directly affects AS/RS throughput and energy consumption.
Lesson 3 • AS/RS Technology Overview
Classifies unit-load, mini-load, vertical lift module, and shuttle-based AS/RS by capacity and speed. Sets the selection criteria used in later design exercises.
Lesson 4 • AS/RS Performance and Safety
Defines throughput metrics, aisle safety protocols, and emergency stop procedures for AS/RS environments. Prepares students for safe daily operations and audits.
Lesson 5 • Goods-to-Person Picking Integration
Connects AS/RS retrieval to goods-to-person workstations for ergonomic, high-accuracy picking. Covers tote sequencing, batch management, and workstation ergonomics.
Chapter 6HideHide detailsSee detailsAutonomous Mobile Robots in Warehousing
Autonomous Mobile Robots in Warehousing
Lesson 1 • Facility Mapping and Environment Design
Covers map creation, traffic lane design, and obstacle management for AMR deployment. Students design floor layouts that maximize robot efficiency and safety.
Lesson 2 • Fleet Management Software
Configures task dispatching, priority rules, and fleet monitoring dashboards in fleet management software. Links robot task execution to WMS order streams.
Lesson 3 • AMR Types and Navigation Technologies
Distinguishes AMRs from AGVs and covers SLAM, QR-code, and natural feature navigation methods. Provides the technical basis for deployment and environment design.
Lesson 4 • AMR Use Cases and Workflow Design
Applies AMRs to goods-to-person, zone-to-zone transport, and cycle count workflows. Students design task flows that reduce travel time and human walking distance.
Lesson 5 • AMR Safety and Compliance
Covers pedestrian detection, speed zoning, and safety certification requirements for AMR operations. Ensures students can conduct safety audits and incident reviews.
Chapter 7HideHide detailsSee detailsRobotic Picking and Palletizing
Robotic Picking and Palletizing
Lesson 1 • Robot Cell Integration and OEE
Integrates robot cells with conveyors, WMS, and safety systems and measures overall equipment effectiveness. Students diagnose downtime causes and improve cell performance.
Lesson 2 • Industrial Robot Fundamentals
Covers robot arm types, degrees of freedom, payload ratings, and reach envelopes relevant to warehouse tasks. Establishes mechanical literacy for gripper and cell design.
Lesson 3 • Gripper and End-Effector Selection
Compares vacuum, mechanical, and soft grippers for varied SKU shapes, weights, and surface textures. Students match gripper type to product characteristics and cycle time.
Lesson 4 • Machine Vision for Picking
Introduces 2D and 3D vision systems for object detection, pose estimation, and bin-picking applications. Connects vision accuracy to picking success rates.
Lesson 5 • Robotic Palletizing and Depalletizing
Covers pallet pattern programming, layer formation logic, and mixed-SKU depalletizing workflows. Students program a palletizing cell for a defined product mix.
Chapter 8HideHide detailsSee detailsAutomation Strategy and Change Management
Automation Strategy and Change Management
Lesson 1 • Continuous Improvement and Governance
Establishes governance structures, KPI review cadences, and continuous improvement cycles for sustained automation performance. Closes the course with an operational excellence framework.
Lesson 2 • Project Implementation and Go-Live
Manages site preparation, system acceptance testing, parallel run, and cutover planning for automation projects. Reduces go-live risk through structured validation steps.
Lesson 3 • Change Management for Automation
Applies stakeholder analysis, communication planning, and resistance management to automation deployments. Addresses workforce concerns and role transition planning.
Lesson 4 • Vendor Selection and RFP Process
Covers requirements documentation, RFP structure, vendor scoring, and reference site evaluation. Students draft an RFP for a defined automation scope.
Lesson 5 • Automation Roadmap Development
Structures a phased automation roadmap aligned to business growth, budget cycles, and technology maturity. Synthesizes all prior course content into a strategic planning tool.
Your valid completion certificate
This course is for you:
Warehouse supervisor: ready to lead technology upgrades at their facility.
Supply chain analyst: wanting to connect data insights to physical automation systems.
Industrial engineer: seeking hands-on knowledge of robotics and sortation equipment.
Logistics coordinator: aiming to transition into an automation specialist or consultant role.
Operations manager: responsible for reducing labor costs through smarter warehouse technology.
Career changer: coming from manufacturing or retail and targeting warehouse tech roles.
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