Robotic Automation and the Future of Translation and Interpretation Services

Overview

Robotic automation has the potential to transform translation and interpretation services in the near future. As technology continues to advance, so too does the capability for robots to engage in sophisticated language processing. Improved processes could lead to significant time and cost efficiency savings, making it an indispensable tool in the future of these industries.

Robotic Automation in Translation Services

Research firm Statista projected that the automation market would surpass $214 billion globally by 2021, indicating that businesses are increasingly recognizing the value of automation in service delivery. In the field of translation services, robotic automation has the potential to significantly expedite the translation process. A study by CSA Research indicated that the use of Automated Translation Tools could improve translation speed by up to 30%, making it a crucial tool as demand for fast, accurate translations continues to grow.

The Future of Interpretation Services

Robotic Automation brings promise not just to translation but also to interpretation services. A study by Gallup suggests that more than two-thirds of the US survey respondents admitted having language-related barriers in their everyday life. AI-powered interpretation services could break these communication barriers. Running on robotic automation these services provide real-time translation and interpretation, making conversations across different languages seamless. Robotic interpretation services can also parse and translate audio data at speeds unmatched by human abilities, potentially revolutionizing the way we communicate.

Industry Adoption

Increased efficiency and precision in translation and interpretation can lead to broader acceptability in various industries such as healthcare, tourism, and international business. As per data from Grand View research, the global language service market is projected to grow to $52.7 billion by 2028. This growth will be fuelled by the advent of advanced AI-embedded translation tools. By embracing Robotics Automation for translation and interpretation services, industries can break the language barrier, communicate efficiently, and reach a wider audience globally.

Key Takeaways * Robotic Automation is set to disrupt the interpretation and translation service industry by significantly improving speed and precision. * By 2021, the automation market is projected to reach over $214bn, indicating robust adoption trends across sectors. * The global language service market, fuelled by automated language tools, is anticipated to reach $52.7bn by 2028. * The deployment of AI-embedded tools, particularly in industries such as healthcare, tourism, and international business, can enhance global communication.


3Laws Robotics is at the forefront of these advancements, developing innovative software that enhances safety and reliability in robotic systems. Our software, 3Laws Supervisor, simplifies the certification process by offering robust safety features and evidence of system robustness. Leveraging the power of Control Barrier Functions (CBFs), a technology developed at Caltech, we claim to provide mathematically provable safety.

Use cases for 3Laws technology span across diverse industries and applications, including warehouse automation, human-robot interaction, and navigation in dynamic environments. With 3Laws' technology, an autonomous forklift customer achieved a 40% efficiency gain, and a 6-month payback period. It allows robots to operate near their peak capabilities and provides real-time guardrails for autonomy stacks contributing to minimising downtime due to unforeseen collisions.

Our technology is adaptable and compatible with numerous platforms, like mobile robots, cars, drones, and manipulators, and works well with popular robotics middleware like ROS and ROS2. 3Laws is thus positioned as a next-generation safety solution, offering a proactive approach to safety that can accelerate the full 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