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AI Industrial Robotics - Japan

Japan
  • The market size in the AI Industrial Robotics market is projected to reach US$455.40m in 2024.
  • The market size is expected to show an annual growth rate (CAGR 2024-2030) of 24.58%, resulting in a market volume of US$1.70bn by 2030.
  • In global comparison, the largest market size will be United States (US$2.94bn in 2024).

Definition:
Artificial intelligence (AI) industrial robotics refers to the integration of artificial intelligence technologies and capabilities into industrial robots for enhanced automation and intelligent decision-making in manufacturing and industrial processes. These robots are equipped with AI algorithms, machine learning, computer vision, and other AI techniques to perform tasks such as assembly, material handling, quality control, and predictive maintenance with higher precision, efficiency, and adaptability. By leveraging AI, industrial robots can analyze data, learn from experience, and optimize their operations in terms of increased productivity, reduced costs, improved safety, and streamlined manufacturing workflows in various industries.

The market comprises two key performance indicators: market sizes and market sizes by industry. Market sizes are generated by the funding amount of Artificial Intelligence Industrial Robotics companies and market revenue data from the Statista robotics market. Key players of the market include companies such as Universal Robots, ABB, and Fanuc.

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In-Scope

  • Collaborative robots (cobots) that collaborate with human workers, such as Universal Robots' UR5 and UR10
  • Automated guided vehicles (AGVs) that move materials and products through a manufacturing plant, such as KION Group's Linde Robotics
  • Robot arms that perform repetitive tasks on an assembly line, such as ABB's YuMi and Fanuc's LR Mate.

Out-Of-Scope

  • Drones used for surveying or inspecting industrial sites, such as DJI's Matrice series and Parrot's ANAFI USA
  • Self-driving cars or trucks used for transportation of goods or people, such as Tesla's Semi and Waymo's autonomous vans
  • Virtual assistants or chatbots used for customer service and/or sales support, such as IBM Watson Assistant and Google Dialogflow.
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Study Details

    Value

    Notes: The chart “Comparable Estimates” shows the forecasted development of the selected market from different sources. Please see the additional information for methodology and publication date.

    Most recent update: Mar 2024

    Market Size

    Notes: Data was converted from local currencies using average exchange rates of the respective year.

    Most recent update: Mar 2024

    Source: Statista Market Insights

    Notes: Data was converted from local currencies using average exchange rates of the respective year.

    Most recent update: Mar 2024

    Source: Statista Market Insights

    Analyst Opinion

    The AI Industrial Robotics market in Japan has been experiencing substantial growth, driven by factors such as increasing adoption of AI technologies, rising demand for automation in industries, and the efficiency and precision offered by AI robots. This growth rate is expected to continue as the market becomes more mature and advanced.

    Customer preferences:
    With the rapid advancement of AI technology, the AI Industrial Robotics Market within the Artificial Intelligence Market in Japan has seen a significant increase in demand. Japanese consumers are showing a preference for robots that can perform a wide range of tasks, from manufacturing to healthcare. This is driven by the country's aging population and the need for automation to fill labor shortages. As a result, there has been a shift towards developing more sophisticated and versatile robots that can adapt to different industries and tasks. Additionally, there is a growing trend towards human-robot collaboration, where robots work alongside humans, rather than replacing them entirely. This reflects the cultural value of cooperation and harmony in Japanese society.

    Trends in the market:
    In Japan, there is a growing trend of implementing AI industrial robotics in manufacturing processes, with the aim of increasing efficiency, reducing costs, and improving product quality. This trend is driven by the country's aging population and shortage of skilled labor. Additionally, there is a focus on developing AI-powered robots that can perform more complex tasks and work alongside humans. These advancements have significant implications for industry stakeholders, as they can lead to increased productivity, reduced labor costs, and improved competitiveness in the global market. Furthermore, the integration of AI in industrial robotics has the potential to revolutionize traditional manufacturing processes and pave the way for smart factories of the future.

    Local special circumstances:
    In Japan, the AI Industrial Robotics Market is heavily influenced by the country's advanced technology sector and its strong focus on automation. Japan's aging population also plays a significant role, driving the demand for AI-powered robotics in healthcare and elderly care. Additionally, the country's strict regulatory environment and cultural emphasis on precision and efficiency shape the development and adoption of AI robotics in industries such as manufacturing and logistics.

    Underlying macroeconomic factors:
    The AI Industrial Robotics Market within the Artificial Intelligence Market is greatly influenced by macroeconomic factors in Japan. The country's strong economy, favorable regulatory environment, and significant investment in advanced technologies have propelled the growth of the market. Additionally, Japan's aging population and high demand for automation in various industries have also contributed to the rapid adoption of AI industrial robotics. Furthermore, the government's focus on promoting advanced manufacturing and increasing labor productivity has further boosted the demand for AI industrial robotics in the country.

    Global Comparison

    Notes: Data was converted from local currencies using average exchange rates of the respective year.

    Most recent update: Mar 2024

    Source: Statista Market Insights

    Methodology

    Data coverage: The data encompasses B2B, B2G, and B2C enterprises. Figures are based on the funding values from different industries for the market.

    Modeling approach / Market size:Market sizes are determined through a top-down approach with a bottom-up validation, building on a specific rationale for each market. As a basis for evaluating markets, we use annual financial reports, funding data, and third-party data. In addition, we use relevant key market indicators and data from country-specific associations such as GDP, number of internet users, number of secure internet servers, and internet penetration. This data helps us estimate the market size for each country individually.

    Forecasts:In our forecasts, we apply diverse forecasting techniques. The selection of forecasting techniques is based on the behavior of the relevant market. For example, the S-curve function and exponential trend smoothing are well suited to forecast digital products and services due to the non-linear growth of technology adoption. The main drivers are the level of digitalization, the number of secure internet servers, and the revenue of the Public Cloud market.

    Additional Notes: The data is modeled using current exchange rates. The impact of the COVID-19 pandemic and the Russian-Ukraine war are considered at a country-specific level. The market is updated twice a year. In some cases, the market is updated on an ad-hoc basis (e.g., when new, relevant data has been released or significant changes within the market have an impact on the projected development). Data from the Statista Consumer Insights Global survey is weighted for representativeness.

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    Key Market Indicators

    Notes: Based on data from IMF, World Bank, UN and Eurostat

    Most recent update: Sep 2024

    Source: Statista Market Insights

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