1 |
顾晓丹,吴文甲,凌振.用户密集环境下基于边缘智能的直播视频传输优化机制[J].通信学报,2023,44(11):55-66.
|
|
GU X D, WU W J, LING Z. Live video transmission optimization mechanism based on edge intelligence in high client-density environment[J]. Journal on Communications, 2023, 44(11): 55-66.
|
2 |
NGUYEN M T, LE L B. Adjacent channel interference cancellation for robust spectrum sharing in satellite communications systems[C]// Proceedings of the IEEE 28th Annual International Symposium on Personal, Indoor, and Mobile Radio Communications. Piscataway: IEEE, 2017:1-5.
|
3 |
YANG L, DING D, SHEN Z, et al. Parallel combinatory spread spectrum system based on single carrier frequency domain equalization in multipath fading channels[C]// Proceedings of the 8th International Conference on Communication, Image and Signal Processing. Piscataway: IEEE, 2023: 528-533.
|
4 |
SANDHYA S V, JOSHI S M. The performance evaluation and analysis of QoS metrics on routing protocols using multimedia traffic in Mobile Adhoc NETwork[C]// Proceedings of the 2022 International Conference for Advancement in Technology. Piscataway: IEEE, 2022: 1-6.
|
5 |
CHEN S, FANG W, JIA G, et al. Evaluation methods of service transmission path selection in IMT-A complex network environment[C]// Proceedings of the 6th International Conference on Intelligent Human-Machine Systems and Cybernetics. Piscataway: IEEE, 2014:346-348.
|
6 |
QUANG P M, DUY T T, BAO V N Q. Performance evaluation of radio frequency energy harvesting-aided multi-hop cooperative transmission networks[C]// Proceedings of the 25th Asia-Pacific Conference on Communications. Piscataway: IEEE, 2019:521-526.
|
7 |
ZHOU Y, WANG Y, GUI G, et al. Deep learning-based channel quality estimation in adaptive shortwave communication systems[C]// Proceedings of the 2020 International Conference on Wireless Communications and Signal Processing. Piscataway: IEEE, 2020: 363-368.
|
8 |
PANG J, XU X, ZHANG N. Demand quality evaluation of satellite mobile communication system based on cloud model[C]// Proceedings of the IEEE 5th Advanced Information Technology, Electronic and Automation Control Conference. Piscataway: IEEE, 2021: 1814-1820.
|
9 |
郑涛,蒙祖尧,张宏科.基于多信道绑定的应急终端协同方法[J].电子学报,2022,50(11):2645-2652.
|
|
ZHENG T, MENG Z Y, ZHANG H K. Emergency terminals coordination method based on multi-channel bonding[J]. Acta Electronica Sinica, 2022, 50(11): 2645-2652.
|
10 |
李宪鹏,王海斌,汪俊,等.水声多途信道的维纳误差限信道质量量化分析方法[J].声学学报,2023,48(4):843-857.
|
|
LI X P, WANG H B, WANG J, et al. Quality quantitative analysis method for underwater acoustic multipath channel using Wiener error boundary[J]. Acta Acustica, 2023, 48(4): 843-857.
|
11 |
KABAOU M O, ZOGHLAMI N, HAFIDHI I. Performance analysis and capacity evaluation of MIMO propagation channels: application to 5G radio mobile networks[C]// Proceedings of the 2023 IEEE International Conference on Advanced Systems and Emergent Technologies. Piscataway: IEEE, 2023:1-6.
|
12 |
刘煜鑫,何丹萍,单馨漪,等.基于智能射线追踪的信道计算与半实物仿真[J/OL].电波科学学报,2023 [2024-01-10]. .
|
|
LIU Y X, HE D P, SHAN X Y, et al. Intelligent ray-tracing-based simulation and emulation of channels[J/OL]. Chinese Journal of Radio Science, 2023 [2024-01-10] .
|
13 |
姚媛媛,刘忆秋,黄赛,等.无蜂窝大规模MIMO网络下基于联邦学习的用户接入策略及能耗优化[J].通信学报,2023,44(10):112-123.
|
|
YAO Y Y, LIU Y Q, HUANG S, et al. Federated learning-based user access strategy and energy consumption optimization in cell-free massive MIMO network[J]. Journal on Communications, 2023, 44(10): 112-123.
|
14 |
BANDA-SAYCO, LAURA-CHOQUEHUANCA, ZEA-VARGAS, et al. Development of an indoor hybrid PLC/VLC/IR communication system based on TCP/IP model[C]// Proceedings of the 2020 IEEE Congreso Bienal de Argentina. Piscataway: IEEE, 2020: 1-7.
|
15 |
DMELLO A, FOO E, REID J, et al. On the enhancement of TCP/IP protocol for use in high frequency communication systems[C]// Proceedings of the 2020 Military Communications and Information Systems Conference. Piscataway: IEEE, 2020:1-7.
|
16 |
竹下隆史,村山公保,荒井透,等.图解TCP/IP[M].5版.乌尼日其其格,译.北京:人民邮电出版社,2013:51-74.
|
|
TAKESHITA T, MURAYAMA Y, ARAI T, et al. Mastering TCP/IP [M]. UNURJARGAL J, translated. 5th ed. Beijing: Posts and Telecommunications Press, 2013: 51-74
|
17 |
冷峰,张翠玲,陈闻宇,等. 从Snort规则的协议信息分析攻击[J]. 计算机应用, 2022, 42(S1):173-177.
|
|
LENG F, ZHANG C L, CHEN W Y, et al. Attack analysis based on protocol information of Snort rules[J]. Journal of Computer Applications, 2022, 42(S1): 173-177.
|
18 |
祝永晋,尹飞,豆龙龙,等. 基于前向纠错的自适应网络传输机制[J]. 计算机应用, 2021, 41(3):825-832.
|
|
ZHU Y J, YIN F, DOU L L, et al. Adaptive network transmission mechanism based on forward error correction[J]. Journal of Computer Applications, 2021, 41(3): 825-832.
|
19 |
聂熙雅.基于TCP/IP协议的机场跑道监测系统[J].国外电子测量技术,2021,40(2):139-143.
|
|
NIE X Y. Airport runway monitoring system based on TCP/IP protocol[J]. Foreign Electronic Measurement Technology, 2021, 40(2): 139-143.
|
20 |
夏羽,廖苹秀,崔雷.数据中心中TCP连接建立过程的优化方法[J].计算机应用,2017,37(8):2157-2162.
|
|
XIA Y, LIAO P X, CUI L. Optimization of the TCP connection initiating process in data centers[J]. Journal of Computer Applications, 2017, 37(8): 2157-2162.
|
21 |
黄云婷,江南,杜承烈.一种跨平台的实时TCP/IP协议栈设计[J].计算机工程,2014,40(9):134-137.
|
|
HUANG Y T, JIANG N, DU C L. A design of cross-platform real-time TCP/IP protocol stack[J]. Computer Engineering, 2014, 40(9):134-137.
|
22 |
西安邮电大学.通信信道质量测试方法、系统、存储介质、设备及终端:202311195969.4[P].2023-11-24.
|
|
Xi'an University of Posts and Telecommunications. Communication channel quality testing methods, systems, storage media, equipment, and terminals: 202311195969.4[P]. 2023-11-24.
|