浏览全部资源
扫码关注微信
1. 西安电子科技大学,陕西 西安 710071
2. 中国电子科学研究院,北京 100041
[ "李泽浩(1998-),男,西安电子科技大学硕士生,主要研究方向为物联网地面传输、LoRa无线通信" ]
[ "马建鹏(1990-),男,博士,西安电子科技大学副教授,主要研究方向为毫米波大规模MIMO网络、空间信息网络、 下一代无线局域网、特种通信网络的物理层和链路层理论与工程应用等" ]
[ "张顺(1985-),男,博士,西安电子科技大学教授,博士生导师,主要研究方向为毫米波大规模MIMO智能组网、空间信息网络、新一代短距无线通信、智能超表面辅助组网技术以及无线组网验证平台等" ]
[ "魏肖(1991-),现就职于中国电子科学研究院,主要研究方向为星地融合网络接入技术、卫星物联网传输技术、卫星5G接入技术等" ]
[ "张景(1974-),现就职于中国电子科学研究院,研究员级高级工程师,主要研究方向为基于5G移动通信技术体制的卫星无线接入网技术、基于4G/5G技术体制的时敏专网、移动边缘计算技术在行业中的应用等" ]
网络出版日期:2022-12,
纸质出版日期:2022-12-20
移动端阅览
李泽浩, 马建鹏, 张顺, 等. 基于LoRa的低轨道卫星物联网传输技术[J]. 天地一体化信息网络, 2022,3(4):2-11.
Zehao LI, Jianpeng MA, Shun ZHANG, et al. Low Orbit Satellite Internet of Things Transmission Technology Based on LoRa[J]. Space-integrated-ground information networks, 2022, 3(4): 2-11.
李泽浩, 马建鹏, 张顺, 等. 基于LoRa的低轨道卫星物联网传输技术[J]. 天地一体化信息网络, 2022,3(4):2-11. DOI: 10.11959/j.issn.2096-8930.2022038.
Zehao LI, Jianpeng MA, Shun ZHANG, et al. Low Orbit Satellite Internet of Things Transmission Technology Based on LoRa[J]. Space-integrated-ground information networks, 2022, 3(4): 2-11. DOI: 10.11959/j.issn.2096-8930.2022038.
LoRa作为一种广域网技术,具有低功耗、广覆盖等特点,在物联网应用领域具有十分广阔的前景,近年来,已被部署在全球多个物联网中。低轨卫星网络广覆盖的优势使其成为实现海量物联网全球覆盖的必然技术。首先对LoRa技术的基本原理进行阐述;然后分析LoRa技术直接引入低轨卫星物联网后存在的问题;最后提出一套适合低轨卫星物联网的LoRa传输技术,重点解决低轨远距离低功耗传输条件下的LoRa帧同步问题和卫星高速移动导致的大多普勒频移对LoRa解调的不利影响。仿真结果表明,提出的联合同步及频偏估计算法能明显提高极低信噪比和大多普勒频移条件下LoRa技术的同步概率和传输可靠性。
As an emerging wide area network technology
LoRa has the characteristics of low power consumption and wide coverage.It has very broad prospects in the field of internet of things applications.In recent years
it has been deployed in countless objects around the world.The advantages of wide coverage of low-orbit satellite networks make it an inevitable technology to achieve global coverage of massive internet of things.Firstly
the basic principles of LoRa technology were expounded.Then the problems existed after the LoRa technology was directly introduced into the low-orbit satellite IoT were analyzed.Finally
a set of LoRa transmission technology suitable for low-orbit satellite IoT was proposed
focused on solved the problem of LoRa frame synchronization under the condition of low-orbit long-distance low-power transmission
and the problem of LoRa demodulation caused by the high-speed movement of satellites due to the Doppler frequency off set.The simulation results showed that the proposed joint synchronization and frequency off set estimation algorithm could obviously improved the synchronization probability and transmission reliability of LoRa technology under the conditions of extremely low SNR and large Doppler frequency shift.
PARASHAR R , KHAN A , NEHA A K . A survey:The internet of things [J ] . International Journal of Technical Research and Applications , 2016 , 4 ( 3 ): 251 - 257 .
QU Z C , ZHANG G X , CAO H T , et al . LEO satellite constellation for Internet of Things [J ] . IEEE Access , 2019 ( 5 ): 18391 - 18401 .
沈俊 , 高卫斌 , 张更新 . 低轨卫星物联网的发展背景、业务特点和技术挑战 [J ] . 电信科学 , 2019 , 35 ( 5 ): 113 - 119 .
SHEN J , GAO W B , ZHANG G X . Developing background,service characteristics and challenges of LEO IoT [J ] . Telecommunications Science , 2019 , 35 ( 5 ): 113 - 119 .
DE SANCTIS M , CIANCA E , ARANITI G , et al . Satellite communications supporting Internet of remote things [J ] . IEEE Internet of Things Journal , 2016 , 3 ( 1 ): 113 - 123 .
JANHUNEN J , KETONEN J , HULKKONEN A , et al . Satellite uplink transmission with terrestrial network interference [C ] // Proceedings of 2015 IEEE Global Communications Conference . Piscataway:IEEE Press , 2015 : 1 - 6 .
张景 , 魏肖 , 吴云飞 , 等 . 天基物联网技术研究与发展综述 [J ] . 无线电通信技术 , 2021 , 47 ( 5 ): 543 - 548 .
ZHANG J , WEI X , WU Y F , et al . Research of technology and development in satellite Internet of Things [J ] . Radio Communications Technology , 2021 , 47 ( 5 ): 543 - 548 .
RAZA U , KULKARNI P , SOORIYABANDARA M . Low power wide area networks:an overview [J ] . IEEE Communications Surveys & Tutorials , 2017 , 19 ( 2 ): 855 - 873 .
AYOUB W , SAMHAT A E , NOUVEL F , et al . Internet of mobile things:overview of LoRaWAN,DASH7,and NB-IoT in LPWANs standards and supported mobility [J ] . IEEE Communications Surveys & Tutorials , 2019 , 21 ( 2 ): 1561 - 1581 .
WU T W , QU D X , ZHANG G X . Research on LoRa adaptability in the LEO satellites Internet of Things [C ] // Proceedings of 2019 15th International Wireless Communications & Mobile Computing Conference (IWCMC) . Piscataway:IEEE Press , 2019 : 131 - 135 .
REYNDERS B , POLLIN S . Chirp spread spectrum as a modulation technique for long range communication [C ] // Proceedings of 2016 Symposium on Communications and Vehicular Technologies (SCVT) . Piscataway:IEEE Press , 2016 : 1 - 5 .
BOR M , VIDLER J , ROEDIG U . LoRa for the Internet of Things [J ] . 2016 .
ELSHABRAWY T , ROBERT J . Analysis of BER and coverage performance of LoRa modulation under same spreading factor interference [C ] // Proceedings of 2018 IEEE 29th Annual International Symposium on Personal,Indoor and Mobile Radio Communications . Piscataway:IEEE Press , 2018 : 1 - 6 .
PETAJAJARVI J , MIKHAYLOV K , ROIVAINEN A , et al . On the coverage of LPWANs:range evaluation and channel attenuation model for LoRa technology [C ] // Proceedings of 2015 14th International Conference on ITS Telecommunications (ITST) . Piscataway:IEEE Press , 2015 : 55 - 59 .
AUGUSTIN A , YI J Z , CLAUSEN T , et al . A study of LoRa:long range & low power networks for the Internet of Things [J ] . Sensors (Basel,Switzerland) , 2016 , 16 ( 9 ): 1466 .
AFISIADIS O , BURG A , BALATSOUKAS-STIMMING A , . Coded LoRa frame error rate analysis [C ] // Proceedings of ICC 2020 IEEE International Conference on Communications . Piscataway:IEEE Press , 2020 : 1 - 6 .
KNIGHT M , SEEBER B . Decoding LoRa:Realizing a modern LPWAN with SDR [C ] // Proceedings of the GNU Radio Conference . Piscataway:IEEE Press , 2016 , 1 : 1 .
TAPPAREL J . Complete reverse engineering of LoRa PHY [J ] . Tech.Rep. , 2019 .
EIGNER H . Interference analysis of LoRaWAN systems [Z ] . 2021 .
MROUE H , NASSER A , PARREIN B , et al . Analytical and simulation study for LoRa modulation [C ] // Proceedings of 2018 25th International Conference on Telecommunications (ICT) . Piscataway:IEEE Press , 2018 : 655 - 659 .
NGUYEN T T , NGUYEN H H , BARTON R , et al . Efficient design of Chirp spread spectrum modulation for low-power wide-area networks [J ] . IEEE Internet of Things Journal , 2019 , 6 ( 6 ): 9503 - 9515 .
0
浏览量
622
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构