Design of Network Service Transmission with LDPC Coding in Space Laser Communication

【Objective】Affected by factors such as atmospheric attenuation and atmospheric turbulence, wireless laser communication will produce a certain degree of bit error, and it is often necessary to add error correction codes to improve the signal transmission quality. Low Density Parity Check codes (LDPC...

Full description

Saved in:
Bibliographic Details
Main Authors: ZHANG Xiaole, TAN Xiaochuan, LI Zhe
Format: Article
Language:zho
Published: 《光通信研究》编辑部 2024-12-01
Series:Guangtongxin yanjiu
Subjects:
Online Access:http://www.gtxyj.com.cn/thesisDetails#10.13756/j.gtxyj.2024.230100
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1841548956696313856
author ZHANG Xiaole
TAN Xiaochuan
LI Zhe
author_facet ZHANG Xiaole
TAN Xiaochuan
LI Zhe
author_sort ZHANG Xiaole
collection DOAJ
description 【Objective】Affected by factors such as atmospheric attenuation and atmospheric turbulence, wireless laser communication will produce a certain degree of bit error, and it is often necessary to add error correction codes to improve the signal transmission quality. Low Density Parity Check codes (LDPC) have performance close to the Shannon's limit, and their error-correcting ability will increase significantly with the increase of codeword length. For codes with a large length of information segment, when each code corresponds to an Ethernet frame, its encoding efficiency will be seriously affected. Designing the transmission method for Ethernet frames in a way that allows both different speeds and lengths of Ethernet frames to fully leverage the encoding and decoding efficiency is crucial for enhancing the transmission rate of Ethernet data sources.【Methods】Based on the LDPC (4 050, 2 700) encoding with a data bit width of 16 bit, this paper designs a gigabit network service transmission method. The functions of each module are clearly divided, and the state machine is used in the design of the module. Therefore, the problems in the design process can be quickly located, and the development efficiency is very high. Setting an appropriate operational cycle at the transmitting end to process Ethernet frames, through operations such as framing, packet assembly, and filling with random sequences, enables Ethernet traffic of different frame lengths and rates to adaptively match the information segment length of the LDPC encoding module, thereby fully utilizing the efficiency of LDPC encoding. Each Ethernet frame can be finally recovered by deframing at the receiving end.【Results】Finally, this article verified the design scheme on the Field Programmable Gate Array (FPGA) board of XILINX, and tested the transmission rate of Ethernet data with different frame lengths by using a gigabit network tester. The results show that the data rate can reach the limit rate of 1 Gbit/s. Afterwards, different services such as video and files are successfully tested.【Conclusion】The article proposes an Ethernet service transmission method specifically designed for scenarios where the information segment length exceeds the Ethernet frame length, enabling it to accommodate Ethernet data transmission with varying lengths, rates, and types of services. The efficiency of the encoding module can be fully utilized to meet the demand for high-speed Gigabit Ethernet service transmission in wireless laser communication.
format Article
id doaj-art-ebd9abd2b0d84a5b8d0618d4e6f0a4df
institution Kabale University
issn 1005-8788
language zho
publishDate 2024-12-01
publisher 《光通信研究》编辑部
record_format Article
series Guangtongxin yanjiu
spelling doaj-art-ebd9abd2b0d84a5b8d0618d4e6f0a4df2025-01-10T13:47:46Zzho《光通信研究》编辑部Guangtongxin yanjiu1005-87882024-12-01230100012301000678025027Design of Network Service Transmission with LDPC Coding in Space Laser CommunicationZHANG XiaoleTAN XiaochuanLI Zhe【Objective】Affected by factors such as atmospheric attenuation and atmospheric turbulence, wireless laser communication will produce a certain degree of bit error, and it is often necessary to add error correction codes to improve the signal transmission quality. Low Density Parity Check codes (LDPC) have performance close to the Shannon's limit, and their error-correcting ability will increase significantly with the increase of codeword length. For codes with a large length of information segment, when each code corresponds to an Ethernet frame, its encoding efficiency will be seriously affected. Designing the transmission method for Ethernet frames in a way that allows both different speeds and lengths of Ethernet frames to fully leverage the encoding and decoding efficiency is crucial for enhancing the transmission rate of Ethernet data sources.【Methods】Based on the LDPC (4 050, 2 700) encoding with a data bit width of 16 bit, this paper designs a gigabit network service transmission method. The functions of each module are clearly divided, and the state machine is used in the design of the module. Therefore, the problems in the design process can be quickly located, and the development efficiency is very high. Setting an appropriate operational cycle at the transmitting end to process Ethernet frames, through operations such as framing, packet assembly, and filling with random sequences, enables Ethernet traffic of different frame lengths and rates to adaptively match the information segment length of the LDPC encoding module, thereby fully utilizing the efficiency of LDPC encoding. Each Ethernet frame can be finally recovered by deframing at the receiving end.【Results】Finally, this article verified the design scheme on the Field Programmable Gate Array (FPGA) board of XILINX, and tested the transmission rate of Ethernet data with different frame lengths by using a gigabit network tester. The results show that the data rate can reach the limit rate of 1 Gbit/s. Afterwards, different services such as video and files are successfully tested.【Conclusion】The article proposes an Ethernet service transmission method specifically designed for scenarios where the information segment length exceeds the Ethernet frame length, enabling it to accommodate Ethernet data transmission with varying lengths, rates, and types of services. The efficiency of the encoding module can be fully utilized to meet the demand for high-speed Gigabit Ethernet service transmission in wireless laser communication.http://www.gtxyj.com.cn/thesisDetails#10.13756/j.gtxyj.2024.230100EthernetLDPCFPGAlaser communicationhigh speed
spellingShingle ZHANG Xiaole
TAN Xiaochuan
LI Zhe
Design of Network Service Transmission with LDPC Coding in Space Laser Communication
Guangtongxin yanjiu
Ethernet
LDPC
FPGA
laser communication
high speed
title Design of Network Service Transmission with LDPC Coding in Space Laser Communication
title_full Design of Network Service Transmission with LDPC Coding in Space Laser Communication
title_fullStr Design of Network Service Transmission with LDPC Coding in Space Laser Communication
title_full_unstemmed Design of Network Service Transmission with LDPC Coding in Space Laser Communication
title_short Design of Network Service Transmission with LDPC Coding in Space Laser Communication
title_sort design of network service transmission with ldpc coding in space laser communication
topic Ethernet
LDPC
FPGA
laser communication
high speed
url http://www.gtxyj.com.cn/thesisDetails#10.13756/j.gtxyj.2024.230100
work_keys_str_mv AT zhangxiaole designofnetworkservicetransmissionwithldpccodinginspacelasercommunication
AT tanxiaochuan designofnetworkservicetransmissionwithldpccodinginspacelasercommunication
AT lizhe designofnetworkservicetransmissionwithldpccodinginspacelasercommunication