TY - GEN
T1 - An Improved Synchronization Method for FPGA Based Broadband Satellite Receiver
AU - Dong, Xiaohui
AU - Yang, Xinxin
AU - Diao, Weimin
N1 - Publisher Copyright:
© 2024 Copyright held by the owner/author(s).
PY - 2025/5/29
Y1 - 2025/5/29
N2 - This paper presents an improved synchronization method based broadband satellite receiver, focusing on timing synchronization and carrier synchronization, with hardware implementation carried out on an FPGA. The designed receiver system can accept 32 parallel input channels, achieving data input rates up to Gsps levels. For the timing synchronization, an improved structure for the interpolating filter is developed based on the Gardner algorithm, and the timing error estimation formula is refined, ultimately reducing the estimated timing error and enabling the system to achieve timing synchronization more rapidly. For the carrier synchronization, an improved phase detector structure is proposed based on the PFD algorithm, utilizing an Arctan approximation algorithm in place of the Cordic IP core, significantly reducing algorithm delay and hardware resource utilization. Furthermore, the hardware implementation on the FPGA demonstrates the innovation and superiority of the work presented in this paper by comparing the outputs before and after the improvements.
AB - This paper presents an improved synchronization method based broadband satellite receiver, focusing on timing synchronization and carrier synchronization, with hardware implementation carried out on an FPGA. The designed receiver system can accept 32 parallel input channels, achieving data input rates up to Gsps levels. For the timing synchronization, an improved structure for the interpolating filter is developed based on the Gardner algorithm, and the timing error estimation formula is refined, ultimately reducing the estimated timing error and enabling the system to achieve timing synchronization more rapidly. For the carrier synchronization, an improved phase detector structure is proposed based on the PFD algorithm, utilizing an Arctan approximation algorithm in place of the Cordic IP core, significantly reducing algorithm delay and hardware resource utilization. Furthermore, the hardware implementation on the FPGA demonstrates the innovation and superiority of the work presented in this paper by comparing the outputs before and after the improvements.
KW - 16QAM
KW - broadband satellite receiver
KW - carrier synchronization
KW - FPGA
KW - timing synchronization
UR - https://www.scopus.com/pages/publications/105010684337
U2 - 10.1145/3708657.3708698
DO - 10.1145/3708657.3708698
M3 - 会议稿件
AN - SCOPUS:105010684337
T3 - ICCIP 2024 - 2024 the 10th International Conference on Communication and Information Processing
SP - 241
EP - 248
BT - ICCIP 2024 - 2024 the 10th International Conference on Communication and Information Processing
PB - Association for Computing Machinery, Inc
T2 - 10th International Conference on Communication and Information Processing, ICCIP 2024
Y2 - 14 November 2024 through 17 November 2024
ER -