North America autonomous mobile robots market size was USD 465.89 million in 2023 and the market is projected to touch USD 2,748.58 million by 2032, at a CAGR of 21.8 % during the forecast period. AMRs are robots that can operate independently, performing tasks without human involvement, which boosts productivity and efficiency. These robots leverage cutting-edge technologies such as artificial intelligence, sensors, and computer vision to understand their surroundings and make smart choices. As companies in North America seek cost-effective and adaptable automation options, they are turning to AMRs to optimize their operations, cut labour expenses, and enhance efficiency. The North American Autonomous Mobile Robots (AMRs) is growing due to the increasing need for automation in industries like manufacturing, logistics, healthcare, and retail.
Automated Mobile Robots (AMRs) have many benefits compared to traditional Automated Guided Vehicles (AGVs). They are more flexible and can easily adapt to different environments, allowing them to work closely with humans without compromising safety. In sectors like online retail and storage, AMRs are vital for automating tasks like sorting, packaging, and moving items. The COVID-19 has pushed more companies to embrace AMRs in order to limit person-to-person contact and keep operations running smoothly.
North America Autonomous Mobile Robots report scope and segmentation.
Report Attribute |
Details |
Base Year |
2023 |
Forecast Years |
2024 – 2032 |
Estimated Market Value (2023) |
USD 465.89 Million |
Projected Market Value (2032) |
USD 2,748.58 Million |
Segments Covered |
By Type, By Battery Type, By Application, By End-User, & By Region. |
Forecast Units |
Value (USD Million or Billion) |
Quantitative Units |
Revenue in USD million/billion and CAGR from 2024 to 2032. |
Regions Covered |
North America |
Countries Covered |
U.S., Canada, Mexico |
North America Autonomous Mobile Robots dynamics
The North American market for Autonomous Mobile Robots (AMRs) is experiencing significant growth due to various trends and factors. A key driver of this growth is the rapid progression of technology, specifically in artificial intelligence, sensor fusion, and autonomous navigation algorithms. These advancements are allowing AMRs to become more intelligent, adaptable, and proficient in carrying out a wide range of complex tasks in different industries. Also, there is an increasing focus on improving efficiency, cutting costs, and enhancing safety in sectors like manufacturing and logistics, which is leading to the extensive adoption of AMRs as businesses strive to find innovative ways to streamline their operations and stay competitive in the marketplace.
One major trend influencing the AMR market in North America is the growing need for automation solutions. This demand is driven by various factors including shortages in labour, increasing labour expenses, and the necessity for enhanced operational flexibility. As a consequence, businesses are turning to AMRs to streamline repetitive and labour-heavy tasks, decreasing their reliance on human workers and enhancing efficiency. Moreover, the COVID-19 pandemic has highlighted the significance of automation in sustaining business operations and ensuring resilience in times of disruptions. Sectors such as online retail, healthcare, and food and beverage are speeding up their use of AMRs to increase efficiency, reduce human interaction, and adjust to changing market conditions.
North America Autonomous Mobile Robots drivers
Technological Advancements
The North American AMR market is seeing significant growth due to advancements in technologies like artificial intelligence, machine learning, and sensor fusion. These innovations are making AMRs smarter, more efficient, and more adaptable to different tasks and environments. For instance, AMRs now have improved sensor capabilities that help them navigate complex environments more accurately and safely. Also, AI algorithms have been enhanced to improve their decision-making skills.
Labor Shortages and Rising Labor Costs
The North American market for Autonomous Mobile Robots (AMRs) is driven by labour shortages and rising costs of human labour. Manufacturing, logistics, and warehousing industries are struggling to find and keep skilled workers, creating a need for automation solutions like AMRs. By automating tasks typically done by humans, AMRs reduce reliance on labour, address labour shortages, and cut operational costs. AMRs can also collaborate with human workers to enhance productivity in the workplace.
High Initial Investment Costs
One of the main challenges for the North American AMR market is the expensive upfront cost of implementing AMR systems. Although AMRs can lead to savings and improved efficiency in the long run, the initial expenses for buying and setting up these systems can be quite high, particularly for smaller businesses. Also, incorporating AMRs into current operations can necessitate additional spending on training, software enhancements, and infrastructure updates, ultimately raising the overall adoption cost.
Concerns Over Safety and Reliability
Safety and reliability concerns are holding back the North American AMR market. Even with technological advancements, businesses still have reservations about deploying AMRs in environments where they interact with human workers and equipment. Challenges like collision avoidance, emergency response procedures, and system malfunctions carry potential risks for both humans and AMRs involved.
Expansion of E-commerce and Logistics
The North American AMR market is experiencing significant growth due to the rise of e-commerce and the demand for efficient logistics solutions. The surge in online shopping has put pressure on businesses to fulfil orders in a timely and accurate manner, leading to a need for automated warehousing and order fulfilment systems. AMRs provide a versatile and scalable solution for streamlining warehouse operations, such as moving goods, managing inventory, and picking orders. This technology helps businesses meet customer demands and enhance supply chain efficiency.
By Type, North American AMR market is segmented into autonomous inventory robots, goods-to-person picking, self-driving forklifts, and unmanned aerial vehicles (UAVs). Autonomous Inventory Robots are robots that can move around warehouses on their own, check inventory, and find items. They help to make sure inventory is accurate and operations run smoothly. Goods-to-Person Picking systems use these robots to bring products to workers faster, saving time and improving productivity in e-commerce and distribution centres. Self-Driving Forklifts also help out by handling tasks like moving pallets and loading/unloading in warehouses and factories, making operations more efficient and safer. Unmanned Aerial Vehicles (UAVs), also known as drones, come equipped with advanced autonomous navigation systems. These drones are commonly used for aerial surveillance, tracking inventory, and managing outdoor logistics operations. They provide quick and adaptable solutions for overseeing and transporting goods within extensive facilities and outdoor settings.
By battery type, the North American AMR market is segmented into Nickel-based Batteries, Lead Batteries, and Lithium-Ion Batteries. Nickel-based batteries, like nickel-cadmium (Ni-Cd) and nickel-metal hydride (Ni-MH), deliver strong performance and durability, making them ideal for tough industrial applications. Lead batteries offer a budget-friendly energy storage option for AMRs, striking a balance between performance and affordability, even with their lower energy density and shorter lifespans. Lithium-Ion batteries are gaining popularity for their high energy density, extended cycle life, and rapid charging abilities, allowing AMRs to run for longer periods and recharge swiftly, reducing downtime and boosting productivity.
North America Autonomous Mobile Robots Overview by Country
The United States and Canada are dominating the market with their strong industrial sectors, technological progress, and supportive regulatory policies. In the US, key industries like manufacturing, logistics, healthcare, and retail are adopting AMRs to boost productivity, cut expenses, and manage workforce issues. Leading companies in the AMR sector are expanding their reach and committing to research and development to meet the increasing need for automation solutions. In addition, collaborations among businesses, universities, and governmental organizations are promoting teamwork and sparking creativity in the field of AMR technologies.
North America Autonomous Mobile Robots market competitive landscape
Key players such as Amazon Robotics, Clearpath Robotics, Fetch Robotics, and Locus Robotics dominate the market with their comprehensive product portfolios, extensive industry experience, and strong market presence. These businesses provide a variety of AMR options designed for various industries such as warehouse automation, logistics, healthcare, and manufacturing. Partnerships and alliances between AMR companies, software developers, and system integrators are fuelling innovation and market growth. Upcoming start-ups and tech companies are also playing a role in the competitive landscape with new technologies, specialized solutions, and flexible business approaches.
North America Autonomous Mobile Robots Recent Developments
Scope of North America Autonomous Mobile Robots report
North America Autonomous Mobile Robots report segmentation
ATTRIBUTE |
DETAILS |
By Type |
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By Battery Type |
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By Application |
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By End-User |
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Customization Scope |
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North America Autonomous Mobile Robots Market Table of Contents
Chapter 1. Market Scope and Research Methodology
1.1. Market Segmentation & Scope
1.2. Market Definition
1.3. Research Methodology
1.3.1. Our Internal Database
1.3.2. Paid Sources Database
1.3.3. Secondary Sources & Third-Party Perspectives
1.3.4. Primary Research, Experts Interviews and Market Surveys
1.4. Research Objective
1.5. Data Validation & Publishing
Chapter 2. Executive Summary
2.1. Market Outlook
2.2. Segmental Analysis
Chapter 3. North America Autonomous Mobile Robots Market Dynamics
3.1. Market Introduction
3.2. Market Drivers
3.2.1. Technological Advancements
3.2.2. Labor Shortages and Rising Labor Costs
3.3. Market Restraints
3.3.1. High Initial Investment Costs
3.3.2. Concerns Over Safety and Reliability
3.4. Industry Challenges
3.5. Industry Opportunities
3.6. Regulatory Frameworks
3.7. Patent Trends
3.8. Covid-19 Impact Analysis
3.9. Market Strategic Analysis
3.9.1. Industry Analysis – Porter’s
3.9.1.1. Supplier Power
3.9.1.2. Buyer Power
3.9.1.3. Substitution Threat
3.9.1.4. Threat from New Entrant
3.9.1.5. Competitive Rivalry
3.9.2. PESTEL Analysis
3.9.3. Consumer behaviour analysis
3.9.3.1. Consumer response to the product
3.9.3.2. Factors affecting buying decision
3.9.3.3. Other recommendations
Chapter 4. North America Autonomous Mobile Robots Market: Type Estimates &
Trend Analysis
4.1. Type Movement Analysis & Market Share, 2023 & 2032
4.2. Autonomous Inventory Robots
4.2.1. Market estimates and forecast, 2024-2032, (USD Million)
4.3. Goods-to-person Picking
4.3.1. Market estimates and forecast, 2024-2032, (USD Million)
4.4. Self-driving Forklifts
4.4.1. Market estimates and forecast, 2024-2032, (USD Million)
4.5. Unmanned Aerial Vehicles
4.5.1. Market estimates and forecast, 2024-2032, (USD Million)
Chapter 5. North America Autonomous Mobile Robots Market: Battery Type Estimates
& Trend Analysis
5.1. Battery Type Movement Analysis & Market Share, 2023 & 2032
5.2. Nickel-based Battery
5.2.1. Market estimates and forecast, 2024-2032, (USD Million)
5.3. Lead Battery
5.3.1. Market estimates and forecast, 2024-2032, (USD Million)
5.4. Lithium-Ion Battery
5.4.1. Market estimates and forecast, 2024-2032, (USD Million)
Chapter 6. North America Autonomous Mobile Robots Market: Application Estimates
& Trend Analysis
6.1. Application Movement Analysis & Market Share, 2023 & 2032
6.2. Warehouse Fleet Management
6.2.1. Market estimates and forecast, 2024-2032, (USD Million)
6.3. Sorting
6.3.1. Market estimates and forecast, 2024-2032, (USD Million)
6.4. Pick & Place
6.4.1. Market estimates and forecast, 2024-2032, (USD Million)
6.5. Tugging
6.5.1. Market estimates and forecast, 2024-2032, (USD Million)
6.6. Others
6.6.1. Market estimates and forecast, 2024-2032, (USD Million)
Chapter 7. North America Autonomous Mobile Robots Market: End-User Estimates &
Trend Analysis
7.1. End-User Movement Analysis & Market Share, 2023 & 2032
7.2. Manufacturing
7.2.1. Market estimates and forecast, 2024-2032, (USD Million)
7.3. Warehouse & Distribution Centres
7.3.1. Market estimates and forecast, 2024-2032, (USD Million)
Chapter 8. North America Autonomous Mobile Robots Market: Regional Estimates &
Trend Analysis
8.1. Regional Movement Analysis & Market Share, 2023 & 2032
8.2. North America
8.2.1. Market estimates and forecast, 2024-2032, (USD Million)
8.2.2. Market estimates and forecast, by Type, 2024-2032, (USD Million)
8.2.3. Market estimates and forecast, by Battery Type, 2024-2032, (USD Million)
8.2.4. Market estimates and forecast, by Application, 2024-2032, (USD Million)
8.2.5. Market estimates and forecast, by End-User, 2024-2032, (USD Million)
8.2.6. U.S.
8.2.6.1. Market estimates and forecast, 2024-2032, (USD Million)
8.2.6.2. Market estimates and forecast, by Type, 2024-2032, (USD Million)
8.2.6.3. Market estimates and forecast, by Battery Type, 2024-2032, (USD
Million)
8.2.6.4. Market estimates and forecast, by Application, 2024-2032, (USD Million)
8.2.6.5. Market estimates and forecast, by End-User, 2024-2032, (USD Million)
8.2.7. Canada
8.2.7.1. Market estimates and forecast, 2024-2032, (USD Million)
8.2.7.2. Market estimates and forecast, by Type, 2024-2032, (USD Million)
8.2.7.3. Market estimates and forecast, by Battery Type, 2024-2032, (USD
Million)
8.2.7.4. Market estimates and forecast, by Application, 2024-2032, (USD Million)
8.2.7.5. Market estimates and forecast, by End-User, 2024-2032, (USD Million)
8.2.8. Mexico
8.2.8.1. Market estimates and forecast, 2024-2032, (USD Million)
8.2.8.2. Market estimates and forecast, by Type, 2024-2032, (USD Million)
8.2.8.3. Market estimates and forecast, by Battery Type, 2024-2032, (USD
Million)
8.2.8.4. Market estimates and forecast, by Application, 2024-2032, (USD Million)
8.2.8.5. Market estimates and forecast, by End-User, 2024-2032, (USD Million)
Chapter 9. Competitive Analysis
9.1. Key regional players, recent developments & their impact on the industry
9.2. Key Company/Competition Categorization (Key innovators, Market leaders,
Emerging players)
9.3. Vendor Landscape
9.3.1. Key company market share analysis, 2023
Chapter 10. Company Profiles
10.1. Amazon Robotics
10.1.1. Company Overview
10.1.2. Financial Analysis
10.1.3. Product Benchmarking
10.1.4. Key development
10.1.5. Business Strategy
10.1.6. SWOT Analysis
10.2. Clearpath Robotics
10.2.1. Company Overview
10.2.2. Financial Analysis
10.2.3. Product Benchmarking
10.2.4. Key development
10.2.5. Business Strategy
10.2.6. SWOT Analysis
10.3. Fetch Robotics
10.3.1. Company Overview
10.3.2. Financial Analysis
10.3.3. Product Benchmarking
10.3.4. Key development
10.3.5. Business Strategy
10.3.6. SWOT Analysis
10.4. Locus Robotics
10.4.1. Company Overview
10.4.2. Financial Analysis
10.4.3. Product Benchmarking
10.4.4. Key development
10.4.5. Business Strategy
10.4.6. SWOT Analysis
10.5. Aethon Inc.
10.5.1. Company Overview
10.5.2. Financial Analysis
10.5.3. Product Benchmarking
10.5.4. Key development
10.5.5. Business Strategy
10.5.6. SWOT Analysis
10.6. Mobile Industrial Robots ApS
10.6.1. Company Overview
10.6.2. Financial Analysis
10.6.3. Product Benchmarking
10.6.4. Key development
10.6.5. Business Strategy
10.6.6. SWOT Analysis
10.7. Seegrid Corporation
10.7.1. Company Overview
10.7.2. Financial Analysis
10.7.3. Product Benchmarking
10.7.4. Key development
10.7.5. Business Strategy
10.7.6. SWOT Analysis
10.8. 6 River Systems Inc.
10.8.1. Company Overview
10.8.2. Financial Analysis
10.8.3. Product Benchmarking
10.8.4. Key development
10.8.5. Business Strategy
10.8.6. SWOT Analysis
10.9. Vecna Robotics Inc.
10.9.1. Company Overview
10.9.2. Financial Analysis
10.9.3. Product Benchmarking
10.9.4. Key development
10.9.5. Business Strategy
10.9.6. SWOT Analysis
10.10. Omron Corporation
10.10.1. Company Overview
10.10.2. Financial Analysis
10.10.3. Product Benchmarking
10.10.4. Key development
10.10.5. Business Strategy
10.10.6. SWOT Analysis
10.11. Teradyne Inc.
10.11.1. Company Overview
10.11.2. Financial Analysis
10.11.3. Product Benchmarking
10.11.4. Key development
10.11.5. Business Strategy
10.11.6. SWOT Analysis
10.12. KUKA AG
10.12.1. Company Overview
10.12.2. Financial Analysis
10.12.3. Product Benchmarking
10.12.4. Key development
10.12.5. Business Strategy
10.12.6. SWOT Analysis
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