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市場調査レポート
商品コード
1609489
市場シェアと予測:自律移動ロボット、2023~2028年、日本(2つのレポートのバンドル)Market Share and Forecast: Autonomous Mobile Robots, 2023-2028, Japan (Bundle of Two Reports) |
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市場シェアと予測:自律移動ロボット、2023~2028年、日本(2つのレポートのバンドル) |
出版日: 2024年12月01日
発行: QKS Group
ページ情報: 英文 110 Pages
納期: 即日から翌営業日
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Quadrant Knowledge Solutionsの発表によると、日本の自律移動ロボット(AMR)市場は2028年までに平均以上のCAGRを記録すると予測されています。
日本の自律移動ロボット(AMR)市場は平均以上の成長を遂げています。特に製造業とロジスティクスを中心とする高度な産業基盤が、AMRの採用を促進しています。日本は技術革新とテクノロジーに重点を置いており、自動化に重点を置いていることも相まって、AMRの導入に有利な環境を作り出しています。日本の企業はAMRを活用して業務効率を高め、人件費を削減し、サプライチェーンの回復力を高めています。デジタルトランスフォーメーションと自動化への注目の高まりが、日本におけるAMRの成長を促進しています。
Quadrant Knowledge Solutionsの発表によると、日本のAMR市場は2028年までに平均以上のCAGRを記録すると予測されています。
日本の自律移動ロボット市場の将来は有望で、今後数年間は継続的な成長が見込まれます。技術革新と技術の進歩に対する日本の取り組みは、政府の支援政策とともにAMRの採用を促進します。日本の企業は、世界市場で競争力を維持するため、自動化への投資を増やすと思われます。AIやIoTといった先端技術の統合はAMRの能力をさらに高め、製造・物流分野における効率と生産性の向上に不可欠なツールとなると思われます。全体として、日本はAMR市場において安定した成長軌道を維持すると予想されます。
This product includes two reports: Market Share and Market Forecast.
Quadrant Knowledge Solutions Reveals that Autonomous Mobile Robots (AMR) Market is Projected to Register a CAGR of above average by 2028 in Japan.
Japan is experiencing above-average growth in the Autonomous Mobile Robots (AMR) market. The country's advanced industrial base, particularly in manufacturing and logistics, is driving the adoption of AMRs. Japan's focus on innovation and technology, coupled with a strong emphasis on automation, is creating a favorable environment for the deployment of AMRs. Companies in Japan are leveraging AMRs to enhance operational efficiency, reduce labor costs, and improve supply chain resilience. The increasing focus on digital transformation and automation is driving the growth of AMRs in Japan.
Quadrant Knowledge Solutions defines Autonomous Mobile Robots (AMR) as "intelligent robots that are equipped with numerous sensors, actuators, and software applications to help them interpret their environment, make decisions based on that information, and take action accordingly without human interference. AMRs work collaboratively with operators to perform a variety of tasks, such as picking and transporting goods, monitoring and inspecting facilities, and providing assistance, all without human supervision. With technology advancements, AMRs are becoming increasingly sophisticated and can perform more complex tasks and possess decision-making capability". Overall, AMRs rely on a combination of hardware and software technologies to operate autonomously and perform various tasks in different environments.
Quadrant Knowledge Solutions Reveals that Autonomous Mobile Robots (AMR) Market is Projected to Register a CAGR of above average by 2028 in Japan.
The future of the AMR market in Japan looks promising, with continued growth expected in the coming years. The country's commitment to innovation and technological advancements, along with supportive government policies, will drive the adoption of AMRs. Companies in Japan are likely to invest more in automation to stay competitive in the global market. The integration of advanced technologies such as AI and IoT will further enhance the capabilities of AMRs, making them essential tools for improving efficiency and productivity in the manufacturing and logistics sectors. Overall, Japan is expected to maintain a steady growth trajectory in the AMR market.
Quadrant Knowledge Solutions defines Autonomous Mobile Robots (AMR) as "intelligent robots that are equipped with numerous sensors, actuators, and software applications to help them interpret their environment, make decisions based on that information, and take action accordingly without human interference. AMRs work collaboratively with operators to perform a variety of tasks, such as picking and transporting goods, monitoring and inspecting facilities, and providing assistance, all without human supervision. With technology advancements, AMRs are becoming increasingly sophisticated and can perform more complex tasks and possess decision-making capability". Overall, AMRs rely on a combination of hardware and software technologies to operate autonomously and perform various tasks in different environments.