Company Filing History:
Years Active: 2014
Title: Siddhartha Mukhopadhyay: Innovator in State Estimation and Control
Introduction
Siddhartha Mukhopadhyay is a notable inventor based in Kolkata, India. He has made significant contributions to the field of sensor data processing and control systems. His innovative approach focuses on improving the effective sampling rate of sensor data, which is crucial for accurate system performance.
Latest Patents
Siddhartha holds a patent titled "State estimation, diagnosis and control using equivalent time sampling." This patent describes a method and system that utilizes Equivalent Time Sampling to enhance the effective sampling rate of sensor data. The invention addresses the limitations of existing sensors, which often do not provide sufficient sampling rates to accurately characterize the parameters being measured. By reconstructing high-resolution data sets using Equivalent Time Sampling, Siddhartha's system model simulates the performance of the measured system. The results from this model, along with high-resolution output data, are used for accurate estimation and fault diagnosis, ultimately improving control of the system.
Career Highlights
Throughout his career, Siddhartha has worked with prominent organizations such as Gm Global Technology Operations, Inc. and the Indian Institute of Technology Kharagpur. His experience in these institutions has allowed him to develop and refine his innovative ideas in sensor technology and control systems.
Collaborations
Siddhartha has collaborated with notable professionals in his field, including Soumen De and Pattada A Kallappa. These collaborations have contributed to the advancement of his research and the successful implementation of his inventions.
Conclusion
Siddhartha Mukhopadhyay is a distinguished inventor whose work in state estimation and control systems has the potential to significantly impact various industries. His innovative patent demonstrates a commitment to enhancing sensor data processing, which is essential for accurate system performance.