Title :
Design and implementation of a time to digital convertor circuit based on Field-Programmable-Gate-Array in positioning system
Author :
Feng Zhang ; Chun Zhang ; Xupeng Jia ; Yu Zhang
Author_Institution :
IC & Syst. Design Res. Div., Tsinghua Univ., Beijing, China
Abstract :
In this paper, a high accuracy time interval measurement system based on Field-Programmable-Gate-Array (FPGA) is presented. The system proposes delay line with time interpolation method to implement time-to-digital conversion. Coarse-time-measurement combined with fine-time-measurement is the cardinal principle of this design. Gray code counter produces the coarse time part, while the fine time part is measured by the delay line, which is based on the dedicated carry lines in the FPGA. On the one hand, it gives the design of coarse and fine time part module. On the other hand, it proves test results, followed by the analysis. The system operating frequency is 100MHz. Simulations have been done to verify the resolution at a level of ten picoseconds. The actual measurement results show that the time interval measurement deviation is less than 200ps, which meets the demand of positioning.
Keywords :
Gray codes; delay lines; field programmable gate arrays; interpolation; logic design; time measurement; time-digital conversion; FPGA; Gray code counter; coarse-time-measurement; delay line; field-programmable gate-array; fine-time measurement; frequency 100 MHz; high accuracy time interval measurement system; interpolation method; positioning system; time to digital convertor circuit; Clocks; Integrated circuits; Logic gates; Position measurement; Software; Software measurement; Field-Programmable-Gate-Array(FPGA); delay line; time interval measurement; time-to-digital conversion (TDC);
Conference_Titel :
Electron Devices and Solid-State Circuits (EDSSC), 2014 IEEE International Conference on
DOI :
10.1109/EDSSC.2014.7061142