MUMBAI, India, July 24 -- Intellectual Property India has published a patent application (202641086174 A) filed by Mr. S. Rakesh; Dr. G. Yuvaraj; Dr. Felix Sahayaraj Arockiasamy; Abhishek Ramesh Jaware; and Ajit Shivaji Dange on July 14, 2026, for A System And Method For Automated Mechanical Energy Transmission And Dynamic Load Optimization In Industrial Equipment.
Inventors include Mr. S. Rakesh; Dr. G. Yuvaraj; Dr. Felix Sahayaraj Arockiasamy; Abhishek Ramesh Jaware; and Ajit Shivaji Dange.
The application for the patent was published on July 17, 2026, under issue no. 29/2026.
Abstract: ABSTRACT A System and Method for Automated Mechanical Energy Transmission and Dynamic Load Optimization in Industrial Equipment The present invention relates to a system and method of automatic mechanical energy transmission and dynamic load optimization in industrial equipment. The system includes a distributed sensor network, a processor, a memory, a Mechanical Energy Propagation Analysis Module, a Mechanical Energy Stability Factor (MESF) computation module, an Adaptive Torque Path Reconfiguration Module, a Variable Mechanical Compliance Control Module, a Dynamic Load Wave Suppression Module, a Rotational Energy Buffering Module, a Mechanical Stress Redistribution Engine, a Transmission Resonance Avoidance Module, an Adaptive Mechanical Efficiency Mapping Module, an Intelligent Mechanical State Arbitration Module, and an actuator controller configured to operate adaptive transmission elements. The system performs real-time mechanical energy flow analysis, computes the Mechanical Energy Stability Factor, adaptively reconfigures physical torque transmission pathways, manages transmission compliance, suppresses torsional load waves, buffers rotational energy, redistributes mechanical stresses, prevents resonance and enhances drivetrain efficiency under various operating conditions. Thus, the present invention provides for improved transmission efficiency, reduced energy loss, reduced vibration and mechanical wear, improved operational stability, increased equipment service life, and improved reliability of industrial machinery via adaptive electromechanical transmission control.
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