TY - GEN
T1 - A real-time communication and processing system for radar testing based on ZYNQ
AU - Zhu, Yidi
AU - Wei, Debao
AU - Xu, Lei
AU - Cao, Jigang
AU - Peng, Xiyuan
N1 - Publisher Copyright:
© 2018 IEEE.
PY - 2018/7
Y1 - 2018/7
N2 - To improve the performance of data processing in radar testing, a new design is proposed to realize the serial real-time communication. This design is based on ZYNQ, a kind of all programmable SoC produced by Xilinx. The ZYNQ SoC resource is composed of two parts: the processing system (PS) and the programmable logic (PL). Compared with the conventional communication and processing systems based on FPGA and PXI bus, this new design has several advantages and compatibility. The hardware of this design consist of core board with ZYNQ, PXI-bus interface, serial communication ports such as RS-485, RS-422, and RS-232, configuration ports such as USB, Ethernet, and UART. Meanwhile, the software of this design is divided into two parts: upper visual software and embedded software in the PS. To realize the key 10ms real-time communication demand, an accurate timing module is designed in the PL. The experimental results show that the new design only cost about 4 ms to operate the whole communication and data calculation. In addition, the complex serial communication protocols and the control commands are configurable with UI.
AB - To improve the performance of data processing in radar testing, a new design is proposed to realize the serial real-time communication. This design is based on ZYNQ, a kind of all programmable SoC produced by Xilinx. The ZYNQ SoC resource is composed of two parts: the processing system (PS) and the programmable logic (PL). Compared with the conventional communication and processing systems based on FPGA and PXI bus, this new design has several advantages and compatibility. The hardware of this design consist of core board with ZYNQ, PXI-bus interface, serial communication ports such as RS-485, RS-422, and RS-232, configuration ports such as USB, Ethernet, and UART. Meanwhile, the software of this design is divided into two parts: upper visual software and embedded software in the PS. To realize the key 10ms real-time communication demand, an accurate timing module is designed in the PL. The experimental results show that the new design only cost about 4 ms to operate the whole communication and data calculation. In addition, the complex serial communication protocols and the control commands are configurable with UI.
KW - AXI
KW - Embedded equipment
KW - PL
KW - PS
KW - PXI
KW - ZYNQ
UR - https://www.scopus.com/pages/publications/85083523701
U2 - 10.1109/IMCCC.2018.00058
DO - 10.1109/IMCCC.2018.00058
M3 - 会议稿件
AN - SCOPUS:85083523701
T3 - Proceedings - 8th International Conference on Instrumentation and Measurement, Computer, Communication and Control, IMCCC 2018
SP - 241
EP - 245
BT - Proceedings - 8th International Conference on Instrumentation and Measurement, Computer, Communication and Control, IMCCC 2018
A2 - Li, Jun-Bao
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 8th International Conference on Instrumentation and Measurement, Computer, Communication and Control, IMCCC 2018
Y2 - 19 July 2018 through 21 July 2018
ER -