This inventor holds 1 USPTO granted patent. Top assignee: Beijing Jiaotong University. Active years: 2026.
Company Filing History:
Years Active: 2026
Title: Innovations in Metro Rail Measurement by Xiubo Liu
Introduction
Xiubo Liu is an accomplished inventor based in Beijing, China. He has made significant contributions to the field of metro rail measurement through his innovative patent. His work focuses on enhancing the accuracy and efficiency of measuring rail corrugation, which is crucial for the safety and performance of metro systems.
Latest Patents
Xiubo Liu holds a patent titled "Measurement method of metro rail corrugation based on the SEQ2SEQ model and the fusion data of vibration and noise." This patent outlines a method that involves constructing a time series data set corresponding to floor longitudinal acceleration and train speed based on historical data of metro trains. The method further includes developing a metro train mileage matching prediction model using the Seq2Seq model. By training this model with time series data sets, it allows for the detection of the running speed of the metro train. The vibration and noise data collected from the train are then used to calculate a composite index for rail corrugation, determining the wavelength and amplitude information related to the corrugation.
Career Highlights
Xiubo Liu is affiliated with Beijing Jiaotong University, where he contributes to research and development in transportation engineering. His expertise in data fusion and predictive modeling has positioned him as a key figure in advancing metro rail technology.
Collaborations
Xiubo Liu collaborates with notable colleagues such as Hong Xiao and Yang Wang. Their combined efforts in research have led to innovative solutions in the field of metro rail measurement.
Conclusion
Xiubo Liu's innovative approach to metro rail measurement exemplifies the importance of integrating advanced modeling techniques with practical applications. His contributions are vital for improving the safety and efficiency of metro systems worldwide.