市場調查報告書
商品編碼
1603821
到 2030 年機器人控制器、整合商和軟體市場預測:按機器人類型、最終用戶和地區進行的全球分析Robot Controller, Integrator and Software Market Forecasts to 2030 - Global Analysis By Robot Type, End User and By Geography |
根據Stratistics MRC預測,2024年全球機器人控制器、整合商和軟體市場規模將達到74億美元,預計到2030年將達到191億美元,預測期內複合年成長率為17.2%。
機器人控制器是機器人系統的大腦,負責解釋指令、協調機器人的動作和動作。它處理來自感測器的輸入,運行演算法,並向機器人的致動器發送控制訊號,使機器人能夠準確且有效率地執行任務。在機器人技術中,整合商是指結合硬體、軟體和通訊系統以創建無縫操作系統的過程。這涉及連接感測器、致動器和控制器,並確保它們同步工作以實現所需的結果。
根據國際機器人聯合會的數據,近 70% 的工人認為自動化將為更高技能的工作提供機會。
增加機器人介紹
隨著工業擴大採用自動化,對更先進、更有效率的機器人系統的需求不斷增加。管理和指導機器人工作的機器人控制器變得越來越強大,靈活性、精度和即時適應性也不斷提高。這使得機器人能夠處理從製造到醫療保健等各個行業中更複雜的任務。同樣,也鼓勵設計機器人系統並將其部署到現有工作流程中的整合商採用先進的控制系統和人工智慧主導的解決方案,以確保機器人與人類操作員以及其他機器之間的無縫互動。
前期投資
特別是對於中小型企業來說,領先資本投資是部署和擴展機器人控制器、整合商和軟體解決方案的主要障礙。這些技術通常需要在硬體、軟體授權和系統整合方面進行大量初始投資,而且成本可能高得令人望而卻步。實施和維護這些系統所需的專業技術知識也增加了成本負擔。對於資本有限或長期投資收益(ROI) 不確定的公司來說,這些高昂的前期成本可能會延遲或阻礙採用。自動化帶來了切實的業務效率和長期成本節約,但高昂的初始投資會帶來財務風險。
客製化與系統整合
客製化和系統整合在提高機器人控制器、整合商和軟體的能力方面發揮關鍵作用。客製化允許控制系統根據特定的操作要求進行客製化,使機器人能夠準確有效地執行複雜的任務。透過調整速度、運動路徑和感測器靈敏度等參數,可以針對從製造到醫療手術的獨特應用對機器人進行微調。系統整合確保硬體組件和軟體之間的無縫通訊,創造一個有凝聚力的環境,使機器人可以自主操作或與人類工人合作。透過整合人工智慧和機器學習等先進軟體工具,機器人系統可以適應不斷變化的條件並隨著時間的推移而改進。
網路安全問題
由於網路攻擊風險不斷增加,網路安全問題正在成為機器人控制器、整合器和相關軟體開發和部署的障礙。隨著機器人越來越融入製造、醫療保健和物流等關鍵產業,其控制系統和軟體中的漏洞構成了重大威脅。駭客可以利用通訊網路、韌體和軟體中的漏洞,導致未授權存取、操縱機器人操作,甚至竊取敏感資料。機器人系統通常依賴互連設備和雲端基礎的平台,從而擴大了其攻擊面。
COVID-19 大流行對機器人控制器、整合商和軟體產業產生了重大影響。由於封鎖和旅行限制,許多機器人製造商和整合商面臨供應鏈中斷、關鍵零件的運輸延遲以及安裝和維護機器人系統的挑戰。這推遲了機器人系統的開發和引入,特別是在汽車和製造業等嚴重依賴自動化的行業。軟體團隊難以遠端工作,導致更新、故障排除和實施新功能延遲。我強調,疫情加速了向非接觸式和遠端操作的轉變,刺激了對先進自動化的需求,同時也增強了對能夠快速適應不可預見的全球事件的靈活且有彈性的機器人系統的需求。
預計協作機器人領域將在預測期內成為最大的領域
由於自動化、靈活性和成本效益的進步,協作機器人領域預計在預測期內將佔據最大佔有率。先進機器人控制器的發展使協作機器人變得更加直覺,操作員可以用最少的專業知識進行程式設計和控制。這些控制器現在具有方便用戶使用的介面和增強的處理能力,以支援更廣泛的應用。整合商也在不斷發展,公司提供了更多無縫解決方案,將協作機器人整合到現有生產線中。
預計汽車業在預測期內複合年成長率最高。
由於製造效率、精度和適應性的提高,預計汽車產業在預測期內將出現快速成長。現代機器人控制器變得更加智慧,具有更強的處理能力、即時回饋能力和先進的演算法,可以更好地整合機械臂、自動駕駛車輛和生產線。整合商專注於機器人、感測器和工業系統之間的無縫連接,從而在複雜任務中實現更快的資料交換和更好的同步。這對於自主和半自動製造過程的發展至關重要。同時,軟體工具也在不斷發展以支援更直覺的程式設計、模擬和診斷。這些軟體解決方案通常利用人工智慧和機器學習來實現預測性維護、最佳化機器人運動並適應動態生產條件。
預計北美地區將在整個預測期內佔據最大的市場佔有率。隨著各行業擴大採用自動化來減少廢棄物、最佳化資源利用和減少碳排放,機器人對於永續營運變得至關重要。例如,機器人被用於回收、廢棄物管理和精密農業等業務,所有這些都有助於永續業務。對先進機器人控制器、整合商和軟體解決方案來管理此類複雜且環境敏感的任務的需求不斷成長。這些技術可實現機器人之間的無縫通訊,提高效率並實現即時資料分析。
歐洲地區確保安全、道德標準和創新,預計在預測期內複合年成長率最高。例如,歐盟機械指令和一般資料保護規範(GDPR)為產品安全和個人資料保護設定了高標準。歐盟也透過歐洲機器人戰略等框架促進產業合作,該戰略鼓勵機器人系統的標準化、互通性和負責任的整合。這些法規不僅可以降低風險,還有助於培養競爭性和永續的市場。透過強制遵守這些標準,歐洲將自己定位為安全和道德機器人技術的世界領導者,吸引投資並確保自動化的進步造福整個社會。
According to Stratistics MRC, the Global Robot Controller, Integrator and Software Market is accounted for $7.4 billion in 2024 and is expected to reach $19.1 billion by 2030 growing at a CAGR of 17.2% during the forecast period. A robot controller is the brain of a robotic system, responsible for interpreting commands and coordinating the robot's movements and actions. It processes input from sensors, executes algorithms, and sends control signals to the robot's actuators, ensuring that the robot performs tasks accurately and efficiently. An integrator in robotics refers to the process of combining hardware, software, and communication systems to create a seamless operational system. This involves connecting sensors, actuators, and controllers, ensuring they work together in a synchronized manner to achieve desired outcomes.
According to the international federation of robotics, nearly 70% of workers believe automation will bring opportunities to qualify for higher-skilled work.
Increase in robotics deployment
As industries increasingly adopt automation, there is a growing demand for more sophisticated and efficient robotic systems. Robot controllers, which manage and direct robotic operations, are becoming more powerful, offering enhanced flexibility, precision, and real-time adaptability. This enables robots to handle more complex tasks across various industries, from manufacturing to healthcare. Similarly, integrators, who design and implement robotic systems into existing workflows, are incorporating advanced control systems and AI-driven solutions to ensure seamless interaction between robots and human operators or other machinery.
Upfront capital investment
Upfront capital investment is a significant barrier in the adoption and scaling of robot controllers, integrators, and software solutions, particularly for small and medium-sized enterprises. These technologies often require substantial initial expenditures for hardware, software licenses, and system integration, which can be prohibitively expensive. The need for specialized technical expertise to implement and maintain these systems adds to the cost burden. For businesses with limited capital or those uncertain about the long-term return on investment (ROI), such high upfront costs can delay or discourage adoption. While automation offers clear operational efficiencies and long-term cost savings, the high initial investment creates a financial risk.
Customization and system integration
Customization and system integration play a crucial role in enhancing the capabilities of robot controllers, integrators, and software. Customization allows for tailoring the control systems to meet specific operational requirements, ensuring that robots can perform complex tasks with precision and efficiency. By adjusting parameters such as speed, motion paths, or sensor sensitivity, robots can be fine-tuned for unique applications, from manufacturing to medical surgery. System integration ensures seamless communication between hardware components and software, enabling a cohesive environment where robots can operate autonomously or in collaboration with human workers. By integrating advanced software tools like AI and machine learning, robotic systems can adapt to changing conditions and improve over time.
Cybersecurity concerns
Cybersecurity concerns are increasingly hampering the development and deployment of robot controllers, integrators, and associated software due to the growing risk of cyberattacks. As robots become more integrated into critical industries such as manufacturing, healthcare, and logistics, the vulnerabilities within their control systems and software pose significant threats. Hackers can exploit weaknesses in communication networks, firmware, or software, leading to unauthorized access, manipulation of robot behavior, or even the theft of sensitive data. Robotic systems often rely on interconnected devices and cloud-based platforms, which amplify the attack surface.
The COVID-19 pandemic significantly impacted the robot controller, integrator, and software sectors. With lockdowns and travel restrictions, many robot manufacturers and integrators faced supply chain disruptions, delayed shipments of key components, and challenges in the installation and maintenance of robotic systems. This slowed down the development and deployment of robotic systems, particularly in industries like automotive and manufacturing, which are heavy users of automation. Software teams struggled with remote work, leading to delays in updates, troubleshooting, and the implementation of new features. The pandemic accelerated the shift toward contactless and remote operations, spurring demand for advanced automation but also highlighting the need for flexible, resilient robotic systems that can adapt quickly to unforeseen global events.
The collaborative robots segment is expected to be the largest during the forecast period
Collaborative Robots segment is expected to dominate the largest share over the estimated period, due to advancements in automation, flexibility and cost-effectiveness. The development of advanced robot controllers has made cobots more intuitive, enabling operators to program and control them with minimal expertise. These controllers now feature user-friendly interfaces and enhanced processing capabilities, supporting a wider range of applications. Integrators are improving as well, with companies offering more seamless solutions to integrate cobots into existing production lines, ensuring better compatibility with other systems and reducing downtime.
The Automotive segment is expected to have the highest CAGR during the forecast period
Automotive segment is estimated to grow at a rapid pace during the forecast period as it improve manufacturing efficiency, precision and adaptability. Modern robot controllers are becoming more intelligent, with enhanced processing power, real-time feedback capabilities, and advanced algorithms for better coordination with robotic arms, autonomous vehicles, and production lines. Integrators are focusing on seamless connectivity between robots, sensors, and industrial systems, enabling faster data exchange and better synchronization in complex tasks. This is crucial for the development of autonomous and semi-autonomous manufacturing processes. In parallel, software tools are evolving to support more intuitive programming, simulation, and diagnostics. These software solutions often use AI and machine learning to enable predictive maintenance, optimize robot movements, and adjust to dynamic production conditions.
North America region is poised to hold the largest share of the market throughout the extrapolated period. As industries increasingly adopt automation to reduce waste, optimize resource usage, and lower carbon footprints, robots are becoming essential for sustainable operations. For instance, robots are employed in tasks like recycling, waste management, and precision agriculture, all of which contribute to more sustainable practices. The demand for advanced robot controllers, integrators, and software solutions is growing to manage these complex, environmentally focused tasks. These technologies enable seamless communication between robots, enhance efficiency and allow real-time data analysis, optimizing performance and minimizing energy consumption across the region.
Europe region is estimated to witness the highest CAGR during the projected time frame, ensuring safety, ethical standards and innovation. For instance, the European Union's Machinery Directive and the General Data Protection Regulation (GDPR) set high standards for product safety and personal data protection. The EU also promotes industry collaboration through frameworks like the European Robotics Strategy, which encourages standardization, interoperability, and responsible integration of robotic systems. These regulations not only help in mitigating risks but also foster a competitive and sustainable market. By mandating compliance with these standards, Europe is positioning itself as a global leader in safe and ethical robotic technology, attracting investment and ensuring that advancements in automation benefit society as a whole.
Key players in the market
Some of the key players in Robot Controller, Integrator and Software market include ABB Ltd, Aibrain Inc, Amtec Solutions Group, Artiminds Robotics GmbH, Bastian Solutions, LLC, Brain Corporation, Denso Corporation, Fanuc Corporation, Mitsubishi Electric, Siemens AG and Yaskawa Electric Corporation.
In November 2023, Realtime Robotics, the industry leader in collision-free autonomous motion planning for industrial robots, unveiled a new Optimization-as-a-Service solution. This solution increases users' total efficiency by combining specialized robotics and application engineering knowledge with proprietary optimization tools.
In May 2023, Yaskawa Electric Corporation (Japan) has recently announced a capital and business alliance with Oishii Farm Corporation (US). The objective of this collaboration is to establish global leadership in automation within the agricultural and food sectors.
In May 2023, Alphabet's Intrinsic released a new robotic app development platform called Flowstate. Since 2021, a team has been investigating ways to enable industrial robots to perceive, learn, and autonomously adapt while performing tasks, allowing them to operate in a greater variety of environments and applications.
In March 2022, Fanuc Corporation (Japan) has launched DR-3iB/6 designed specifically for rigorous washdown environments, the DR-3iB/6 STAINLESS incorporates a completely sealed stainless steel body that provides excellent resistance to chemicals, high pressures, and elevated temperatures.