IoT in Construction Market Analysis and Global Forecast 2024-2034

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IoT in Construction Market Research Report: Information By Project Type (Commercial, Residential), By Application (Remote Operations, Safety Management, Fleet Management, Others), By Offering (Hardware, Software, Services), and by Region — Forecast till 2034

Page: 141

Report Published on: November 3, 2024
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Description

IoT in Construction Market Overview

The IoT in Construction Market size accounted for USD 12.58 Billion in 2023 and is estimated to account for 13.01 Billion in 2024. The Market is expected to reach USD 20.82 Billion by 2034 growing at a compound annual growth rate (CAGR) of 14.51% from 2024 to 2034. The IoT in Construction Market refers to the use of Internet of Things (IoT) technologies in the construction industry to enhance operational efficiency, safety, and project management. IoT in construction involves integrating sensors, smart devices, and connected systems to monitor various aspects of construction projects in real-time. These technologies help in tracking equipment, monitoring building conditions, managing materials, ensuring worker safety, and optimizing energy usage.

This market is driven by the increasing adoption of smart technologies to streamline construction processes, reduce costs, and improve safety standards. As technology continues to advance, we can expect to see even more innovative applications of IoT in construction.

Global IoT in Construction Market Synopsis

IoT in Construction MarketIoT in Construction Market Dynamics

The major factors that have impacted the growth of IoT in Construction Market are as follows:

Drivers:

Ø  Improved Efficiency and Productivity

IoT solutions enable real-time monitoring of equipment, materials, and workers, leading to optimized workflow, reduced delays, and increased productivity. Automated processes reduce human errors and streamline operations. IoT devices such as wearables and sensors monitor worker safety, detect hazardous conditions, and provide alerts, helping to reduce accidents and improve overall site safety. IoT helps lower construction costs by minimizing equipment downtime through predictive maintenance, improving resource management, and reducing material wastage. Real-time tracking of assets and operations helps avoid costly delays.

Restraint:

  • Perception of Data Security and Privacy Concerns

IoT systems generate vast amounts of data, raising concerns about data breaches, cybersecurity threats, and unauthorized access to sensitive information. These risks can discourage companies from fully embracing IoT solutions. Integrating IoT systems with existing construction management platform and legacy systems can be complex and time-consuming. This lack of interoperability between devices and software systems can slow adoption.

Opportunity:

⮚     Advancement in 5G Technology

The rollout of 5G networks will enhance the capabilities of IoT systems in construction by offering faster, more reliable connectivity, enabling real-time data collection, analytics, and communication, even in remote areas. IoT can play a critical role in promoting sustainable construction practices by monitoring energy use, waste reduction, and resource management. This aligns with the increasing demand for eco-friendly and energy-efficient buildings. The combination of IoT with AI and machine learning can enhance predictive analytics, automated decision-making, and optimization of construction workflows, creating more efficient and intelligent construction sites.

IoT in Construction Market Segment Overview

IoT in Construction Market Project AnalysisBy Project Type

Based on Project Type, the market is segmented based on Commercial and Residential. The Commercial segment dominant the market. The Commercial construction projects are more complex and larger in scale as compared to residential projects. They require more sophisticated management and monitoring solutions, making IoT technologies essential for tracking equipment, managing resources, and maintaining timelines. Safety is a major concern in non-residential construction due to the scale and complexity of the projects, which involve heavy machinery, high-rise work, and hazardous materials.

By Application

Based on Application, the market segment has been divided into Remote Operations, Safety Management, Fleet Management and Others. The fleet management segment dominant the market. Telematics, also referred to as fleet management, provides a range of solutions, such as driver behavior, vehicle tracking, fleet safety, fleet management, and economical driving. In addition, fleet management provides daily information about fleet operations, weak points, equipment downtimes, and upcoming tasks to minimize fuel consumption and maximize vehicle productivity.

By Offering

Based on Offering, the market segment has been divided into Hardware, Software and Services. The Software segment dominant the market. They are essential for combining information from different IoT devices like wearables, cameras, and sensors into a single and centralized Offering. They support better decision-making, resource efficiency, and site safety for construction management. Furthermore, project management capabilities are included in IoT software, which helps to optimize workflows by offering data on worker productivity, equipment usage, and material management. As a result, this aid in enhancing operational efficiency and keeping projects on schedule and within budget.

Global IoT in Construction Market Regional Analysis

Based on region, the global IoT in Construction Market has been divided into North America, Europe, Asia-Pacific, the Middle East & Africa, and Latin America. North America is projected to dominate the use of the IoT in Construction Market followed by the Asia-Pacific and Europe regions.

Global IoT in Construction Market Regional AnalysisIoT in Construction North America Market

North America holds a dominant position in the IoT in Construction Market. The high adoption of advanced technologies, significant investment in smart cities, and robust infrastructure projects. The presence of major IoT technology providers and a focus on improving construction safety and efficiency are key drivers and Integration with 5G networks, growth in smart building projects, and government initiatives supporting smart infrastructure.

IoT in Construction Asia-Pacific Market

The Asia-Pacific region has indeed emerged as the fastest-growing market for the IoT in Construction Market industry. Rapid urbanization, large-scale infrastructure projects, and increasing government investments in smart cities and green buildings. Countries like China and India are key markets with substantial growth potential and expansion of infrastructure, adoption of smart construction technologies, and development of smart cities offer significant growth prospects.

Competitive Landscape

The global IoT in Construction Market is highly competitive, with numerous players offering a wide range of software solutions. The competitive landscape is characterized by the presence of established companies, as well as emerging startups and niche players. To increase their market position and attract a wide consumer base, the businesses are employing various strategies, such as product launches, and strategic alliances.

Prominent Players:

  • Caterpillar
  • Sigfox
  • Oracle
  • CalAmp
  • Losant IoT
  • Giatec Scientific
  • WorldSensing
  • Kore Wireless
  • Trimble
  • Autodesk

Key Development

In October 2023, Microsoft Corporation opened a smart building complex that showcases the company’s new Azure Digital Twins service. It will allow building managers to model their physical space digitally and enable real time location of where people are in that physical space and what devices they are using. Azure Digital Twins brings spatial intelligence to the Microsoft Azure IoT platform.

Scope of the Report

Global IoT in Construction Market, by Project type
  • Commercial
  • Residential
Global IoT in Construction Market, by Application
  • Remote Operations
  • Safety Management
  • Fleet Management
  • Others
Global IoT in Construction Market, by Offering
  • Hardware
  • Software
  • Services
Global IoT in Construction Market, by Region
  • North America
    • US
    • Canada
    • Mexico
  • Europe
    • UK
    • Germany
    • France
    • Italy
    • Spain
    • Benelux
    • Nordic
    • Rest of Europe
  • Asia Pacific
    • China
    • Japan
    • South Korea
    • Indonesia
    • Austalia
    • Malaysia
    • India
    • Rest of Asia Pacific
  • South America
    • Brazil
    • Argentina
    • Rest of South America
  • Middle East & Africa
    • Saudi Arabia
    • UAE
    • Egypt
    • South Africa
    • Rest of Middle East & Africa

 

Parameters Indicators
Market Size 2034: USD 20.82 Billion
CAGR (2024-2034) 14.51%
Base year 2022
Forecast Period 2024-2034
Historical Data 2021 (2017 to 2020 On Demand)
Report Coverage Revenue Forecast, Competitive Landscape, Growth Factors, and Trends
Key Segmentations Project Type, Application, Offering
Geographies Covered North America, Europe, Asia-Pacific, South America, Middle East, Africa
Key Vendors Caterpillar, Sigfox, Oracle, CalAmp, Losant IoT, Giatec Scientific, WorldSensing, Kore Wireless, Trimble and Autodesk
Key Market Opportunities ·       Advancement in 5G Technology

·       Integration of AI and Machine Learning

Key Market Drivers ·       Improved Efficiency and Productivity

·       Cost Reduction

 

REPORT CONTENT BRIEF:

  • High-level analysis of the current and future IoT in Construction Market trends and opportunities
  • Detailed analysis of current market drivers, restraining factors, and opportunities in the future
  • IoT in Construction Market historical market size for the year 2021, and forecast from 2023 to 2033
  • IoT in Construction Market share analysis at each product level
  • Competitor analysis with detailed insight into its product segment, Government & Defense strength, and strategies adopted.
  • Identifies key strategies adopted including product launches and developments, mergers and acquisitions, joint ventures, collaborations, and partnerships as well as funding taken and investment done, among others.
  • To identify and understand the various factors involved in the global IoT in Construction Market affected by the pandemic
  • To provide a detailed insight into the major companies operating in the market. The profiling will include the Government & Defense health of the company’s past 2-3 years with segmental and regional revenue breakup, product offering, recent developments, SWOT analysis, and key strategies.

Frequently Asked Questions (FAQ)

The global IoT in Construction Market is growing at a CAGR of 14.51% over the next 10 years

Asia Pacific is expected to register the highest CAGR during 2024-2034

Caterpillar, Sigfox, Oracle, CalAmp, Losant IoT, Giatec Scientific, WorldSensing, Kore Wireless, Trimble and Autodesk are the major companies operating in the market.

Yes, we offer 16 hours of analyst support to solve the queries

Yes, we provide regional as well as country-level reports. Other than this we also provide a sectional report. Please get in contact with our sales representatives.

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Table of Content

Table of Content

CHAPTER 1.      Executive Summary

CHAPTER 2.      Scope of the Study

2.1.       Market Definition

2.2.       Market Scope & Segmentation

2.2.1.    Objective of Report

CHAPTER 3.         Evolve BI Methodology

3.1.       Data Collection & Validation Approach

3.2.       Market Size Estimation and Forecast

CHAPTER 4.         Exclusive Analysis

4.1.       Market Opportunity Score

4.1.1.    Offering Segement – Market Opportunity Score

4.1.2.    Project Type Segment – Market Opportunity Score

4.1.3.    Application Segment – Market Opportunity Score

4.2.       Key Market Influencing Indicators

CHAPTER 5.         Market Insights and Trends

5.1.       Value Chain Analysis

5.1.1.    Raw Material

5.1.2.    Manufacturing Process

5.1.3.    Distribution Channel

5.1.4.    End User

5.2.       Porter’s Five Forces Analysis

5.2.1.    Bargaining Power of Buyers

5.2.2.    Bargaining Power of Suppliers

5.2.3.    Threat of New Entrant

5.2.4.    Threat of Substitute

5.2.5.    Industry Rivalry

5.3.       COVID-19 Impact and Post COVID Scenario on IoT in Construction Market

5.3.1.    Impact of COVID-19

5.3.2.    Government Support and Industry Revival Policies

5.3.3.    Measures Taken by Companies to Mitigate Negative Impact

5.3.4.    Post COVID Trend

CHAPTER 6.             Market Dynamics

6.1.       Introduction

6.2.       Drivers

6.2.1.    Driver 1

6.2.2.    Driver 2

6.2.3.    Driver 3

6.3.       Restraints

6.3.1.    Restraint 1

6.3.2.    Restraint 2

6.4.       Opportunity

6.4.1.    Opportunity 1

CHAPTER 7.         IoT in Construction Market, By Project Type

7.1.       Introduction

7.1.1.    Commercial

7.1.2.    Residential

CHAPTER 8             IoT in Construction Market, By Application

8.1.       Introduction

8.1.1.    Remote Operations

8.1.2.    Safety Management

8.1.3.   Fleet Management

8.1.4.  Others

CHAPTER 9.     IoT in Construction Market, By Offering

9.1.       Introduction

9.1.1.    Hardware

9.1.2      Software

9.1.3     Service

CHAPTER 10.     IoT in Construction Market, By Region

10.1.     Introduction

10.2.     NORTH AMERICA

10.2.1. North America: Market Size and Forecast, By Country, 2024 – 2034($ Million)

10.2.2. North America: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.2.3. North America: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.2.4. North America: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.2.5. US

10.2.5.1. US: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.2.5.2. US: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.2.5.3. US: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.2.6. CANADA

10.2.6.1. Canada: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.2.6.2. Canada: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.2.6.3. Canada: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.2.7. MEXICO

10.2.7.1. Mexico: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.2.7.2. Mexico: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.2.7.3. Mexico: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.3.     Europe

10.3.1. Europe: Market Size and Forecast, By Country, 2024 – 2034($ Million)

10.3.2. Europe: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.3.3. Europe: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.3.4. Europe: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.3.5. U.K.

10.3.5.1. U.K.: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.3.5.2. U.K.: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.3.5.3. U.K.: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.3.6. GERMANY

10.3.6.1. Germany: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.3.6.2. Germany: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.3.6.3. Germany: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.3.7. FRANCE

10.3.7.1. France: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.3.7.2. France: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.3.7.3. France: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.3.8. ITALY

10.3.8.1. Italy: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.3.8.2. Italy: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.3.8.3. Italy: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.3.9. SPAIN

10.3.9.1. Spain: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.3.9.2. Spain: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.3.9.3. Spain: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.3.10. BENELUX

10.3.10.1. BeNeLux: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.3.10.2. BeNeLux: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.3.10.3. BeNeLux: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.3.11. RUSSIA

10.3.11.1. Russia: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.3.11.2. Russia: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.3.11.3. Russia: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.3.12. REST OF EUROPE

10.3.12.1. Rest of Europe: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.3.12.2. Rest of Europe: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.3.12.3. Rest of Europe: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.4.     Asia Pacific

10.4.1. Asia Pacific: Market Size and Forecast, By Country, 2024 – 2034($ Million)

10.4.2. Asia Pacific: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.4.3. Asia Pacific: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.4.4. Asia Pacific: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.4.5. CHINA

10.4.5.1. China: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.4.5.2. China: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.4.5.3. China: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.4.6. JAPAN

10.4.6.1. Japan: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.4.6.2. Japan: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.4.6.3. Japan: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.4.7. INDIA

10.4.7.1. India: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.4.7.2. India: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.4.7.3. India: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.4.8. SOUTH KOREA

10.4.8.1. South Korea: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.4.8.2. South Korea: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.4.8.3. South Korea: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.4.9. THAILAND

10.4.9.1. Thailand: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.4.9.2. Thailand: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.4.9.3. Thailand: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.4.10. INDONESIA

10.4.10.1. Indonesia: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.4.10.2. Indonesia: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.4.10.3. Indonesia: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.4.11. MALAYSIA

10.4.11.1. Malaysia: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.4.11.2. Malaysia: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.4.11.3. Malaysia: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.4.12. AUSTRALIA

10.4.12.1. Australia: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.4.12.2. Australia: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.4.12.3. Australia: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.4.13. REST FO ASIA PACIFIC

10.4.13.1. Rest fo Asia Pacific: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.4.13.2. Rest fo Asia Pacific: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.4.13.3. Rest fo Asia Pacific: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.5.     South America

10.5.1. South America: Market Size and Forecast, By Country, 2024 – 2034($ Million)

10.5.2. South America: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.5.3. South America: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.5.4. South America: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.5.5. BRAZIL

10.5.5.1. Brazil: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.5.5.2. Brazil: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.5.5.3. Brazil: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.5.6. ARGENTINA

10.5.6.1. Argentina: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.5.6.2. Argentina: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.5.6.3. Argentina: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.5.7. REST OF SOUTH AMERICA

10.5.7.1. Rest of South America: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.5.7.2. Rest of South America: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.5.7.3. Rest of South America: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.6.     Middle East & Africa

10.6.1. Middle East & Africa: Market Size and Forecast, By Country, 2024 – 2034($ Million)

10.6.2. Middle East & Africa: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.6.3. Middle East & Africa: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.6.4. Middle East & Africa: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.6.5. SAUDI ARABIA

10.6.5.1. Saudi Arabia: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.6.5.2. Saudi Arabia: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.6.5.3. Saudi Arabia: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.6.6. UAE

10.6.6.1. UAE: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.6.6.2. UAE: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.6.6.3. UAE: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.6.7. EGYPT

10.6.7.1. Egypt: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.6.7.2. Egypt: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.6.7.3. Egypt: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.6.8. SOUTH AFRICA

10.6.8.1. South Africa: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.6.8.2. South Africa: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.6.8.3. South Africa: Market Size and Forecast, By Application, 2024 – 2034($ Million)

10.6.9. REST OF MIDDLE EAST & AFRICA

10.6.9.1. Rest of Middle East & Africa: Market Size and Forecast, By Offering, 2024 – 2034($ Million)

10.6.9.2. Rest of Middle East & Africa: Market Size and Forecast, By Project Type, 2024 – 2034($ Million)

10.6.9.3. Rest of Middle East & Africa: Market Size and Forecast, By Application, 2024 – 2034($ Million)

CHAPTER 12. Competitive Landscape

12.1.     Competitior Benchmarking 2023

12.2.     Market Share Analysis

12.3.     Key Developments Analysis By Top 5 Companies

12.4.     Market Share Acquisition Strategies: Analysis of Key Approaches Employed by Top Players

CHAPTER 13. Company Profiles

13.1.     Caterpillar

13.1.1. Hanon systems

13.1.2. Financial Analysis

13.1.2.1. Business Segment Revenue, 2020, 2021, 2022, $ Million

13.1.2.2. Geographic Revenue Mix, 2022 (% Share)

13.1.3. Product Portfolio

13.1.4. Recent Development and Strategies Adopted

13.1.5. SWOT Analysis

13.2.       Sigfox

13.3.     Oracle

13.4.     CalAmp

13.5.     Losant IoT

13.6.     Giatec Scientific

13.7.     WorldSensing

13.8.    Kore Wireless

13.9     Trimble

13.10   Autodesk

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Research Methodology

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