PATIENT MONITORING HUMANOID ROBOT FOR PANDEMIC SITUATIONS
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PATIENT MONITORING HUMANOID ROBOT FOR PANDEMIC SITUATIONS
Mr. Pawan P1, Amrutha D2, Ganavi S S3, Shilpa Nayaka4, Shreya B S5
1Assistant Professor, Department of Electrical and Electronics Engineering, PES Institute of Technology, Shivamogga
2345UG students, Department of Electrical and Electronics Engineering, PESITM, Shivamogga
Email: pawanp@pestrust.edu.in, amruthax23@gmail.com , ganavisuresh702@gmail.com
Abstract— Patient monitoring Humanoid Robot for Pandemic Situations.
Abstract: Humanoid robots are a rapidly evolving field of research and development that aims to create robots with human- l ike characteristics and capabilities. These robots possess a wide range of applications, from assisting humans in various tasks to exploring environments that are hazardous or inaccessible to humans. The development of humanoid robot involves the integration of advanced technologies, including robotics, artificial intelligence, computer vision, and natural language processing.
This abstract explores the key aspects of humanoid robots, including their design, locomotion, perception, cognition, and interaction capabilities. It discusses the challenges involved in creating humanoid robots that can navigate complex environments, recognize and manipulate objects, understand and respond to human speech and gestures, and exhibit social behaviours. The abstract also highlights the potential benefits and ethical considerations associated with humanoid robots, such as their role in healthcare, education, e n t e r t a i n m e n t , a n d d i s a s t e r r e s p o n s e .
Furthermore, the abstract addresses ongoing research efforts and technological advancements in the field of humanoid robotics, including the development of more dexterous and agile robot improvements in human- robot interaction, and the integration of machine learning and deep learning techniques. It emphasizes the importance of interdisciplinary collaboration and the need for robust hardware and software solutions to overcome the challenges faced in creating humanoid robots.
Keywords—ATmega8 microcontroller, DHT Sensors, Heart Beat Sensor,LCD.
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