
Internet of Things (IoT) in Logistics Market Forecast, Trend Analysis & Competition Tracking - Global Market Industry 2015 to 2031
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Demand for Internet of Things (IoT) in Logistics from 2015 to 2020 Vs. Future Market Projections for 2021-2031
From 2015 to 2020, sales of the Internet of Things (IoT) in logistics were significantly high, expanding at under 14% CAGR. The rapid advancement of the Internet of Things (IoT) technology plays a crucial role in the growth of the IoT in the logistics market. Transportation needs depend on various aspects such as the supply of goods, passenger mobility, logistics, etc., making it a more integral part of linking the clients to the supply chain. Logistics is a comprehensive service that provides the availability of the right product in good condition to the exact place within the requested amount and time.
Internet of Things (IoT) promises far-reaching payoffs for logistics operators and their business customers, and end consumers. It results positively for the areas such as operational efficiency, safety and security, customer experience, and new business models. These benefits are extended across the entire logistics value chain consisting of warehousing operations, freight transportation, and last-mile delivery. These factors are expected to become inseparable fundamentals and impact the Internet of Things (IoT) in the logistics market in upcoming years.
The COVID-19 pandemic has promised new growth in expanding the transportation and logistics sector. The total logistics sector spending has increased and reached US$ 9,214 billion in 2020 and is further expected to reach US$ 11,863 billion in 2026. From 2021 to 2031, demand is expected to expand at a CAGR exceeding 7% as the growing e-commerce industry and rise in reverse logistics operations and rise in trade-related agreements.
Global Internet of Things (IoT) in Logistics Market Revenue Outlook:
The global Internet of Things (IoT) in logistics market was valued at US$ 34.6 Bn in 2019 and is projected to register а САGR of 13.5% by 2031.
Nonetheless, various industry players in the global Internet of Things (IoT) in the logistics market are increasing their focus on establishing successful collaborations, acquisitions, and joint venture activities to enhance their respective customer bases in rapidly developing economies. These players are also growing their supply capabilities to meet customer requirements on a local and global scale. This factor, paired with promising industrialization prospects in developing economies of the Asia-Pacific region, such as China, India, Taiwan, Indonesia, etc., are expected to create massive business opportunities for key players over the forecast period.
How Is The Demand For The Internet Of Things (Iot) In Logistics Increasing?
Due to consistent development and high adoption rate of mobile computing, consumerization of IT, 5G networks, and big data analytics increase demand for IoT-based solutions.
Following are the technology advancements of IoT in the logistics sector:
- Mobile computing growing steadily, with more mobile phones expected in 2020 than people in the world
- Sensor technology has become more mature and affordable for industrial purposes in the logistics sector
- Due to the introduction of 5G, wireless communication will reach a new level of maturity, connecting everything anytime
- Cloud computing and big data technologies will enable new data-based services
COVID-19 Impact On The Internet Of Things (IoT) In Logistics Market
The ongoing COVID-19 pandemic has resulted in a logistical slowdown. A significant decline in the movement of non-essential goods, shortage of laborers, capacity limitations in global supply networks and regional hubs, and increasing cautiousness among consumers regarding the purchase of several non-essential items have jointly contributed to the decreasing logistics demand and slowing down operations across the world. This resulted in a dip in the logistics demand, which has led to the decline in the IoT in the logistics market. In addition, supply chain disruptions in China has resulted in a decrease in transportation and logistical activities in China, which is a hotspot for the deadliest coronavirus and results in a slight decline of global sales by 5-10%. In addition, the ongoing trade war between the US and China is expected to limit the development of IoT in logistics market in particular regions.
Logistics 4.0
Logistics 4.0 is the term used for the application of Industry 4.0 in logistics and supply chains. It is optimizing both outbound and inbound logistics using intelligent software through the Internet of Things (IoT). Logistics 4.0 uses bar codes, RFID technology, sensors, GPS systems, and other advanced networking technologies through network communication technology and information processing platforms creating Cyber-physical systems (CPS). These factors are expected to drive the supply chains that will be more customer-oriented, individualized, collaborative, efficient, and responsive for the global IoT in logistics market.
Key Challenges To The Internet Of Things (Iot) In Logistics Market
IoT is one of the revolutionizing technologies; hence, its applications are not determined precisely to date, and the consequences are unpredictable. Moreover, several companies have not defined their market strategies regarding the Internet of Things development and usage for their product and services. Additionally, the large amount of data generated needs to be stored securely without any data security breaches. These factors are creating significant challenges for the IoT in logistics market.
However, the significant logistics market players plan to collaborate with IoT leading companies to provide feasible solutions to the end customers.
Regional Analysis
North America Is Expected To Have A Significant Market Share, Among Other Regions
The Internet of Things (IoT) market in logistics in the US is likely to expand at under 15% CAGR until 2031 as the US is expected to witness maximum digital transformation in recent years, which has heavily contributed to the growth of the market. Moreover, many IoT-based start-ups are investing in logistics solutions due to growing internet penetration, including the 5G network and the rising scope for e-commerce.
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Competitive Landscape
The Internet of Things (IoT) in logistics market landscape appears highly consolidated, with a significant chunk of it being dominated by the US players.
- Cisco Systems Inc.
- Robert Bosch GmbH
- International Business Machines (IBM) Corp.
- Honeywell International Inc.
- AT&T Inc.
- Qualcomm Inc.
- Intel Corp.
- Microsoft Corp.
- SAP SE
- Oracle Corp.
- Other Players
Some Notable Developments In The Market Include:
- In May 2019, FedEx Corp. and United Parcel Service Inc. partnered to develop an automated loading and unloading system for trucks. The partnership is intended to keep up with the demands of the growing e-commerce industry.
Report Scope
- Forecast Period: 2022-2031
- Actual Year: 2021
- Historical Data Available for: 2015-2020
Key Regions Covered
- North America
- Europe
- Asia Pacific
- Latin America
- Middle East & Africa
Key Segments Covered
Internet of Things (IoT) in Logistics Market, By Technology
- Cellular network
- Local Area Network (LAN)
Internet of Things (IoT) in Logistics Market, By Mode of Transport
- Roadway
- Railway
- Airway
- Waterway
Internet of Things (IoT) in Logistics Market, By Application
- Location Management
- Inventory Tracking and Warehousing
- Fleet Management
- Predictive Analytics
- Blockchain for Supply Chain Management
- Self-Driving Vehicles
Attribute Report Details Market Size Ask For Market Size Growth Rate Ask For Growth Rate Key Companies Ask For Companies Report Coverage Revenue analysis, Competitive landscape, Key company analysis, Market Trends, Key segments, Distribution Channel, Market Dynamics, COVID-19 Impact Analysis and more… Historical Data Period 2015-2020 Base Year 2022 Forecast Period 2022-2031 Region Scope North America, Europe, Asia-Pacific, South America, Middle East & Africa Country Scope United States, Canada and Mexico, Germany, France, UK, Russia and Italy, China, Japan, Korea, India and Southeast Asia, Brazil, Argentina, Colombia etc.Saudi Arabia, UAE, Egypt, Nigeria and South Africa Revenue in US$ Mn To learn more about this report, request for sample report
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- IBM Corporation
- PTC Inc
- Kaa IoT Technologies LLC
- Novire Technologies
- NEC Corporation
- Intel Corporation
- SAP SE
- Oracle Corporation
- Rockwell Automation Inc.
- Bosch Software Innovations GmbH
- BICS SA/NV
- Honeywell International
- Amazon Web Services
- Octonion SA
- Cisco Systems Inc. among others
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- Chapter 1 Global Internet of Things (IoT) in Logistics Market Outlook
- 1.1 Introduction
- 1.2 Segmentation of Internet of Things (IoT) in Logistics Market Based On Technology, Mode of Transport, Application and Region
- 1.3 Market Drivers
- 1.4 Market Restraints
- 1.5 Market Opportunities
- 1.6 Market Trends
- 1.7 Macro-economic Factors
- 1.8 Regulatory Framework
- 1.9 Global Internet of Things (IoT) in Logistics Market Pricing Analysis by Region, 2021
- 1.10 Opportunity Map Analysis
- 1.10.1 Optimistic Scenario
- 1.10.2 Likely Scenario
- 1.10.3 Conservative Scenario
- 1.11 Opportunity Orbits
- 1.12 Market Investment Feasibility Index
- 1.13 PEST Analysis
- 1.14 PORTER’S Five Force Analysis
- 1.15 Drivers & Restraints Impact Analysis
- 1.16 Marketing Strategy
- 1.17 Product Life Cycle Analysis
- 1.18 Value Chain Analysis
- 1.19 Cost Structure Analysis
- 1.20 Regional Market Share and BPS Analysis in Internet of Things (IoT) in Logistics Market
- 1.21 COVID-19 Impact Analysis
- Chapter 2 Global Internet of Things (IoT) in Logistics Market Overview
- 2.1 Global Market Value Comparison by Technology (2015-2031)
- 2.1.1 Global Market Value Market Share by Technology in 2021
- 2.1.2 Global Market Attractiveness Analysis by Technology, 2015–2022
- 2.2 Global Market Value Comparison by Mode of Transport (2015-2031)
- 2.2.1 Global Market Value Market Share by Mode of Transport in 2021
- 2.2.2 Global Market Attractiveness Analysis by Mode of Transport, 2015–2022
- 2.3 Global Market by Application
- 2.3.1 Global Market Value Comparison by Application (2015-2031)
- 2.3.2 Global Market Value Market Share by Application in 2021
- 2.3.3 Global Market Attractiveness Analysis by Application, 2015–2022
- 2.4 Global Market Outlook by Region
- 2.4.1 Global Market Value Comparison by Region (2015-2031)
- 2.4.2 Global Market Value Market Share by Region in 2021
- 2.4.3 Global Market Attractiveness Analysis by Region, 2015–2022
- 2.5 Global Market Outlook (2015-2031)
- 2.5.1 Global Market Value (2015–2022)
- 2.5.2 Global Market Value (2023-2031)
- 2.6 Global Market Value by Regions
- 2.6.1 Global Market Value Comparison by Region (2015–2022)
- 2.6.2 Global Market Value Comparison by Region (2023-2031)
- 2.7 Global Market Value by Technology
- 2.7.1 Global Market Value Comparison by Technology (2015–2022)
- 2.7.2 Global Market Value Comparison by Technology (2023-2031)
- 2.8 Global Market Value by Mode of Transport
- 2.8.1 Global Market Value Comparison by Mode of Transport (2015–2022)
- 2.8.2 Global Market Value Comparison by Mode of Transport (2023-2031)
- 2.9 Global Market Value by Application
- 2.9.1 Global Market Value Comparison by Application (2015–2022)
- 2.9.2 Global Market Value Comparison by Application (2023-2031)
- 2.10 Global Market Y-o-Y Growth Rate Comparison 2016–2031
- 2.10.1 Global Market Y-o-Y Growth Rate by Region
- 2.10.2 Global Market Y-o-Y Growth Rate by Technology
- 2.10.3 Global Market Y-o-Y Growth Rate by Mode of Transport
- 2.10.4 Global Market Y-o-Y Growth Rate by Application
- 2.11 Global Market Share Comparison 2015–2030
- 2.11.1 Global Market Share by Region
- 2.11.2 Global Market Share by Technology
- 2.11.3 Global Market Share by Mode of Transport
- 2.11.4 Global Market Share by Application
- 2.1 Global Market Value Comparison by Technology (2015-2031)
- Chapter 3 North America Internet of Things (IoT) in Logistics Market Overview
- 3.1 North America Market by Technology
- 3.1.1 North America Market Value Comparison by Technology (2015-2031)
- 3.1.2 North America Market Value Market Share by Technology in 2021
- 3.2 North America Market Value Comparison by Mode of Transport (2015-2031)
- 3.2.1 North America Market Value Market Share by Mode of Transport in 2021
- 3.2.2 North America Market Attractiveness Analysis by Mode of Transport, 2015–2022
- 3.3 North America Market by Application
- 3.3.1 North America Market Value Comparison by Application (2015-2031)
- 3.3.2 North America Market Value Market Share by Application in 2021
- 3.3.3 North America Market Attractiveness Analysis by Application, 2015–2022
- 3.4 North America Market Outlook by Region
- 3.4.1 North America Market Value Comparison by Region (2015-2031)
- 3.4.2 North America Market Value Market Share by Region in 2021
- 3.4.3 North America Market Attractiveness Analysis by Region, 2015–2022
- 3.5 North America Market Outlook (2015-2031)
- 3.5.1 North America Market Value (2015–2022)
- 3.5.2 North America Market Value (2023-2031)
- 3.6 North America Market Value by Regions
- 3.6.1 North America Market Value Comparison by Region (2015–2022)
- 3.6.2 North America Market Value Comparison by Region (2023-2031)
- 3.7 North America Market Value by Technology
- 3.7.1 North America Market Value Comparison by Technology (2015–2022)
- 3.7.2 North America Market Value Comparison by Technology (2023-2031)
- 3.8 North America Market Value by Mode of Transport
- 3.8.1 North America Market Value Comparison by Mode of Transport (2015–2022)
- 3.8.2 North America Market Value Comparison by Mode of Transport (2023-2031)
- 3.9 North America Market Value by Application
- 3.9.1 North America Market Value Comparison by Application (2015–2022)
- 3.9.2 North America Market Value Comparison by Application (2023-2031)
- 3.10 North America Market Y-o-Y Growth Rate Comparison 2016–2031
- 3.10.1 North America Market Y-o-Y Growth Rate by Region
- 3.10.2 North America Market Y-o-Y Growth Rate by Technology
- 3.10.3 North America Market Y-o-Y Growth Rate by Mode of Transport
- 3.10.4 North America Market Y-o-Y Growth Rate by Application
- 3.11 North America Market Share Comparison 2015–2030
- 2.11.1 North America Market Share by Region
- 3.11.2 North America Market Share by Technology
- 3.11.3 North America Market Share by Mode of Transport
- 3.11.4 North America Market Share by Application
- 3.1 North America Market by Technology
- Chapter 4 Europe Internet of Things (IoT) in Logistics Market Overview
- 4.1 Europe Market by Technology
- 4.1.1 Europe Market Value Comparison by Technology (2015-2031)
- 4.1.2 Europe Market Value Market Share by Technology in 2021
- 4.2 Europe Market Value Comparison by Mode of Transport (2015-2031)
- 4.2.1 Europe Market Value Market Share by Mode of Transport in 2021
- 4.2.2 Europe Market Attractiveness Analysis by Mode of Transport, 2015–2022
- 4.3 Europe Market by Application
- 4.3.1 Europe Market Value Comparison by Application (2015-2031)
- 4.3.2 Europe Market Value Market Share by Application in 2021
- 4.3.3 Europe Market Attractiveness Analysis by Application, 2015–2022
- 4.4 Europe Market Outlook by Region
- 4.4.1 Europe Market Value Comparison by Region (2015-2031)
- 4.4.2 Europe Market Value Market Share by Region in 2021
- 4.4.3 Europe Market Attractiveness Analysis by Region, 2015–2022
- 4.5 Europe Market Outlook (2015-2031)
- 4.5.1 Europe Market Value (2015–2022)
- 4.5.2 Europe Market Value (2023-2031)
- 4.6 Europe Market Value by Regions
- 4.6.1 Europe Market Value Comparison by Region (2015–2022)
- 4.6.2 Europe Market Value Comparison by Region (2023-2031)
- 4.7 Europe Market Value by Technology
- 4.7.1 Europe Market Value Comparison by Technology (2015–2022)
- 4.7.2 Europe Market Value Comparison by Technology (2023-2031)
- 4.8 Europe Market Value by Mode of Transport
- 4.8.1 Europe Market Value Comparison by Mode of Transport (2015–2022)
- 4.8.2 Europe Market Value Comparison by Mode of Transport (2023-2031)
- 4.9 Europe Market Value by Application
- 4.9.1 Europe Market Value Comparison by Application (2015–2022)
- 4.9.2 Europe Market Value Comparison by Application (2023-2031)
- 4.9 Europe Market Y-o-Y Growth Rate Comparison 2016–2031
- 4.10.1 Europe Market Y-o-Y Growth Rate by Region
- 4.10.2 Europe Market Y-o-Y Growth Rate by Technology
- 4.10.3 Europe Market Y-o-Y Growth Rate by Mode of Transport
- 4.10.4 Europe Market Y-o-Y Growth Rate by Application
- 4.11 Europe Market Share Comparison 2015–2030
- 4.11.1 Europe Market Share by Region
- 4.11.2 Europe Market Share by Technology
- 4.11.3 Europe Market Share by Mode of Transport
- 4.11.4 Europe Market Share by Application
- 4.1 Europe Market by Technology
- Chapter 5 Asia-Pacific Internet of Things (IoT) in Logistics Market Overview
- 5.1 Asia-Pacific Market by Technology
- 5.1.1 Asia-Pacific Market Value Comparison by Technology (2015-2031)
- 5.1.2 Asia-Pacific Market Value Market Share by Technology in 2021
- 5.2 Asia-Pacific Market Value Comparison by Mode of Transport (2015-2031)
- 5.2.1 Asia-Pacific Market Value Market Share by Mode of Transport in 2021
- 5.2.2 Asia-Pacific Market Attractiveness Analysis by Mode of Transport, 2015–2022
- 5.3 Asia-Pacific Market by Application
- 5.3.1 Asia-Pacific Market Value Comparison by Application (2015-2031)
- 5.3.2 Asia-Pacific Market Value Market Share by Application in 2021
- 5.3.3 Asia-Pacific Market Attractiveness Analysis by Application, 2015–2022
- 5.4 Asia-Pacific Market Outlook by Region
- 5.4.1 Asia-Pacific Market Value Comparison by Region (2015-2031)
- 5.4.2 Asia-Pacific Market Value Market Share by Region in 2021
- 5.4.3 Asia-Pacific Market Attractiveness Analysis by Region, 2015–2022
- 5.5 Asia-Pacific Market Outlook (2015-2031)
- 5.5.1 Asia-Pacific Market Value (2015–2022)
- 5.5.2 Asia-Pacific Market Value (2023-2031)
- 5.6 Asia-Pacific Market Value by Regions
- 5.6.1 Asia-Pacific Market Value Comparison by Region (2015–2022)
- 5.6.2 Asia-Pacific Market Value Comparison by Region (2023-2031)
- 5.7 Asia-Pacific Market Value by Technology
- 5.7.1 Asia-Pacific Market Value Comparison by Technology (2015–2022)
- 5.7.2 Asia-Pacific Market Value Comparison by Technology (2023-2031)
- 5.8 Asia-Pacific Market Value by Mode of Transport
- 5.8.1 Asia-Pacific Market Value Comparison by Mode of Transport (2015–2022)
- 5.8.2 Asia-Pacific Market Value Comparison by Mode of Transport (2023-2031)
- 5.9 Asia-Pacific Market Value by Application
- 5.9.1 Asia-Pacific Market Value Comparison by Application (2015–2022)
- 5.9.2 Asia-Pacific Market Value Comparison by Application (2023-2031)
- 5.10 Asia-Pacific Market Y-o-Y Growth Rate Comparison 2016–2031
- 5.10.1 Asia-Pacific Market Y-o-Y Growth Rate by Region
- 5.10.2 Asia-Pacific Market Y-o-Y Growth Rate by Technology
- 5.10.3 Asia-Pacific Market Y-o-Y Growth Rate by Mode of Transport
- 5.10.4 Asia-Pacific Market Y-o-Y Growth Rate by Application
- 5.11 Asia-Pacific Market Share Comparison 2015–2030
- 5.11.1 Asia-Pacific Market Share by Region
- 5.11.2 Asia-Pacific Market Share by Technology
- 5.11.3 Asia-Pacific Market Share by Mode of Transport
- 5.11.4 Asia-Pacific Market Share by Application
- 5.1 Asia-Pacific Market by Technology
- Chapter 6 Latin America Internet of Things (IoT) in Logistics Market Overview
- 6.1 Latin America Market by Technology
- 6.1.1 Latin America Market Value Comparison by Technology (2015-2031)
- 6.1.2 Latin America Market Value Market Share by Technology in 2021
- 6.2 Latin America Market Value Comparison by Mode of Transport (2015-2031)
- 6.2.1 Latin America Market Value Market Share by Mode of Transport in 2021
- 6.2.2 Latin America Market Attractiveness Analysis by Mode of Transport, 2015–2022
- 6.3 Latin America Market by Application
- 6.3.1 Latin America Market Value Comparison by Application (2015-2031)
- 6.3.2 Latin America Market Value Market Share by Application in 2021
- 6.3.3 Latin America Market Attractiveness Analysis by Application, 2015–2022
- 6.4 Latin America Market Outlook by Region
- 6.4.1 Latin America Market Value Comparison by Region (2015-2031)
- 6.4.2 Latin America Market Value Market Share by Region in 2021
- 6.4.3 Latin America Market Attractiveness Analysis by Region, 2015–2022
- 6.5 Latin America Market Outlook (2015-2031)
- 6.5.1 Latin America Market Value (2015–2022)
- 6.5.2 Latin America Market Value (2023-2031)
- 6.6 Latin America Market Value by Regions
- 6.6.1 Latin America Market Value Comparison by Region (2015–2022)
- 6.6.2 Latin America Market Value Comparison by Region (2023-2031)
- 6.7 Latin America Market Value by Technology
- 6.7.1 Latin America Market Value Comparison by Technology (2015–2022)
- 6.7.2 Latin America Market Value Comparison by Technology (2023-2031)
- 6.8 Latin America Market Value by Mode of Transport
- 6.8.1 Latin America Market Value Comparison by Mode of Transport (2015–2022)
- 6.8.2 Latin America Market Value Comparison by Mode of Transport (2023-2031)
- 6.9 Latin America Market Value by Application
- 6.9.1 Latin America Market Value Comparison by Application (2015–2022)
- 6.9.2 Latin America Market Value Comparison by Application (2023-2031)
- 6.10 Latin America Market Y-o-Y Growth Rate Comparison 2016–2031
- 6.10.1 Latin America Market Y-o-Y Growth Rate by Region
- 6.10.2 Latin America Market Y-o-Y Growth Rate by Technology
- 6.10.3 Latin America Market Y-o-Y Growth Rate by Mode of Transport
- 6.10.4 Latin America Market Y-o-Y Growth Rate by Application
- 6.11 Latin America Market Share Comparison 2015–2030
- 6.11.1 Latin America Market Share by Region
- 6.11.2 Latin America Market Share by Technology
- 6.11.3 Latin America Market Share by Mode of Transport
- 6.11.4 Latin America Market Share by Application
- 6.1 Latin America Market by Technology
- Chapter 7 MEA Internet of Things (IoT) in Logistics Market Overview
- 7.1 MEA Market by Technology
- 7.1.1 MEA Market Value Comparison by Technology (2015-2031)
- 7.1.2 MEA Market Value Market Share by Technology in 2021
- 7.2 MEA Market Value Comparison by Mode of Transport (2015-2031)
- 7.2.1 MEA Market Value Market Share by Mode of Transport in 2021
- 7.2.2 MEA Market Attractiveness Analysis by Mode of Transport, 2015–2022
- 7.3 MEA Market by Application
- 7.3.1 MEA Market Value Comparison by Application (2015-2031)
- 7.3.2 MEA Market Value Market Share by Application in 2021
- 7.3.3 MEA Market Attractiveness Analysis by Application, 2015–2022
- 7.4 MEA Market Outlook by Region
- 7.4.1 MEA Market Value Comparison by Region (2015-2031)
- 7.4.2 MEA Market Value Market Share by Region in 2021
- 7.4.3 MEA Market Attractiveness Analysis by Region, 2015–2022
- 7.5 MEA Market Outlook (2015-2031)
- 7.5.1 MEA Market Value (2015–2022)
- 7.5.2 MEA Market Value (2023-2031)
- 7.5 MEA Market Value by Regions
- 7.6.1 MEA Market Value Comparison by Region (2015–2022)
- 7.6.2 MEA Market Value Comparison by Region (2023-2031)
- 7.7 MEA Market Value by Technology
- 7.7.1 MEA Market Value Comparison by Technology (2015–2022)
- 7.7.2 MEA Market Value Comparison by Technology (2023-2031)
- 7.8 MEA Market Value by Mode of Transport
- 7.8.1 MEA Market Value Comparison by Mode of Transport (2015–2022)
- 7.8.2 MEA Market Value Comparison by Mode of Transport (2023-2031)
- 7.9 MEA Market Value by Application
- 7.9.1 MEA Market Value Comparison by Application (2015–2022)
- 7.9.2 MEA Market Value Comparison by Application (2023-2031)
- 7.10 MEA Market Y-o-Y Growth Rate Comparison 2016–2031
- 7.10.1 MEA Market Y-o-Y Growth Rate by Region
- 7.10.2 MEA Market Y-o-Y Growth Rate by Technology
- 7.10.3 MEA Market Y-o-Y Growth Rate by Mode of Transport
- 7.10.4 MEA Market Y-o-Y Growth Rate by Application
- 7.11 MEA Market Share Comparison 2015–2030
- 7.11.1 MEA Market Share by Region
- 7.11.2 MEA Market Share by Technology
- 7.11.3 MEA Market Share by Mode of Transport
- 7.11.4 MEA Market Share by Application
- 7.1 MEA Market by Technology
- Chapter 8 Global Internet of Things (IoT) in Logistics Market Company Profiles
- 8.1 Market Competition Scenario Analysis, By Company
- 8.2 Competitor Landscape
- 8.3 Company Share Analysis
- 8.4 Company Profiles
- 8.4.1 Cisco Systems Inc.
- 8.4.1.1 Company Overview
- 8.4.1.2 Business Description
- 8.4.1.3 Product Portfolio
- 8.4.1.4 Key Financials
- 8.4.1.5 Key Developments
- 8.4.1.6 SWOT Analysis
- 8.4.2 Robert Bosch GmbH
- 8.4.2.1 Company Overview
- 8.4.2.2 Business Description
- 8.4.2.3 Product Portfolio
- 8.4.2.4 Key Financials
- 8.4.2.5 Key Developments
- 8.4.2.6 SWOT Analysis
- 8.4.3 International Business Machines (IBM) Corp.
- 8.4.3.1 Company Overview
- 8.4.3.2 Business Description
- 8.4.3.3 Product Portfolio
- 8.4.3.4 Key Financials
- 8.4.3.5 Key Developments
- 8.4.3.6 SWOT Analysis
- 8.4.4 Honeywell International Inc.
- 8.4.4.1 Company Overview
- 8.4.4.2 Business Description
- 8.4.4.3 Product Portfolio
- 8.4.4.4 Key Financials
- 8.4.4.5 Key Developments
- 8.4.4.6 SWOT Analysis
- 8.4.5 AT&T Inc.
- 8.4.5.1 Company Overview
- 8.4.5.2 Business Description
- 8.4.5.3 Product Portfolio
- 8.4.5.4 Key Financials
- 8.4.5.5 Key Developments
- 8.4.5.6 SWOT Analysis
- 8.4.6 Qualcomm Inc.
- 8.4.6.1 Company Overview
- 8.4.6.2 Business Description
- 8.4.6.3 Product Portfolio
- 8.4.6.4 Key Financials
- 8.4.6.5 Key Developments
- 8.4.6.6 SWOT Analysis
- 8.4.7 Intel Corp.
- 8.4.7.1 Company Overview
- 8.4.7.2 Business Description
- 8.4.7.3 Product Portfolio
- 8.4.7.4 Key Financials
- 8.4.7.5 Key Developments
- 8.4.7.6 SWOT Analysis
- 8.4.8 Microsoft Corp.
- 8.4.8.1 Company Overview
- 8.4.8.2 Business Description
- 8.4.8.3 Product Portfolio
- 8.4.8.4 Key Financials
- 8.4.8.5 Key Developments
- 8.4.8.6 SWOT Analysis
- 8.4.9 SAP SE
- 8.4.9.1 Company Overview
- 8.4.9.2 Business Description
- 8.4.9.3 Product Portfolio
- 8.4.9.4 Key Financials
- 8.4.9.5 Key Developments
- 8.4.9.6 SWOT Analysis
- 8.4.10 Oracle Corp.
- 8.4.10.1 Company Overview
- 8.4.10.2 Business Description
- 8.4.10.3 Product Portfolio
- 8.4.10.4 Key Financials
- 8.4.10.5 Key Developments
- 8.4.10.6 SWOT Analysis
- 8.4.11 Other Key Players
- 8.4.1 Cisco Systems Inc.
- Chapter 9 Research Methodology
- 9.1 Research Methodology
- 9.2 Primary Research
- 9.3 Secondary Research
- 9.4 Report Scope
- Chapter 10 About Us
- 10.1 Who we are:
- Chapter 11 Disclaimer
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- Chapter 1 Global Internet of Things (IoT) in Logistics Market Outlook
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