Collaborative Robots and the Future of Power, Distribution, and Specialty Transformer Manufacturing

Overview

The future of power, distribution, and specialty transformer manufacturing is anticipated to experience a paradigm shift with the introduction of collaborative robots, or cobots. As the manufacturing industry continues to incorporate advanced technologies to boost productivity and safety, cobots are significantly breaking barriers in various operations including power and transformer manufacturing. Key statistics such as the expected growth of the cobot market to reach $11.3 billion by 2027, the prediction that by 2025, the global power transformer market will surpass $37.1 billion, and forecast indicating that about 27.7% of all industrial robots will be cobots in 2025, display the potential of these technologies in transformers and power manufacturing.

Growth of the Cobot Market

According to Research and Markets, the global cobot market is predicted to grow at a whopping CAGR of 32.5% to reach a valuation of $11.3 billion by 2027. Collaborative robots offer various benefits such as flexibility, safety, compactness, affordability, and user-friendliness that can significantly enhance the efficiency of power and transformer manufacturing processes.

Global Power Transformer Market

Emphasizing the potential influence of cobots further, it is critical to consider the size of the market in which they can make an impact. Global Market Insights Inc. predicts that by 2025, the global power transformer market will surpass $37.1 billion. The integration of cobots in this market indicates a crucial shift towards automation, increasing productivity while preserving safety.

Trust and Collaboration between Cobots and Humans

A report from Loup Ventures suggests that by 2025, cobots will account for about 27.7% of all industrial robots, highlighting the growing trust and collaboration between cobots and humans. Safety has always been paramount within power, distribution, and specialty transformer manufacturing, and cobots have emerged as a new method to maintain it while improving operational efficiency.

Key Takeaways


3Laws Robotics and Its Relevance

As the industry's upward trend towards collaborative robotics continues, platforms such as 3Laws Robotics are rising to the forefront with innovative software solutions designed to enhance safety and reliability within robotic systems. A critical focus of their mission is addressing the challenge of certification, a significant obstacle for many robotics companies.

Their software, 3Laws Supervisor, built on Control Barrier Functions (CBFs) developed at Caltech, not only offers robust safety features but also provides evidence of system resilience, potentially simplifying the certification pathway. Its use cases span diverse industries and applications:

3Laws also aims to improve operational efficiency by reducing downtime caused by unnecessary e-stops or collisions. By providing real-time barriers for autonomy stacks, they empower robots to operate closer to their peak capabilities while maintaining safety.

Compatible with popular robotics middleware such as ROS and ROS2 and adaptable to a wide range of platforms including mobile robots, cars, drones, and manipulators, 3Laws' software can be positioned as a next-generation safety solution. Going beyond traditional e-stop methods, it provides a proactive approach to safety that can unlock the latent potential of robotics, with dynamic, predictive safety that can be safety certified for ISO 3691-4 and ISO 26262.






News in Robot Autonomy

News in Robot Autonomy