上海交通大学学报 ›› 2019, Vol. 53 ›› Issue (5): 575-583.doi: 10.16183/j.cnki.jsjtu.2019.05.010
张刚,徐联冰,张天骐
出版日期:2019-05-28
发布日期:2019-05-28
作者简介:张刚(1976-),男,四川省巴中市人,副教授,主要从事混沌同步和混沌保密通信的研究.
电话(Tel.):13527360166;E-mail:zhanggang_cqupt@163.com.
基金资助:ZHANG Gang,XU Lianbing,ZHANG Tianqi
Online:2019-05-28
Published:2019-05-28
摘要: 针对传统延迟键控系统误码性能差的缺点,在频分复用的基础上,提出了一种新型的无信号内干扰多用户相关延迟键控通信系统.在所提出的系统中,发送端产生两路正交的混沌信号,并使用串并转换器在一个比特周期内发送多比特信息信号,再将两路正交混沌信号简单加、减法的线性组合以及调制的信息信号通过频分复用的方式实现传输.接收端将接收到的信号分别与对应混沌信号的组合进行相关解调,恢复出发送的多比特信息信号.推导了在Rayleigh衰落信道中系统的比特误码率公式并进行Monte Carlo仿真实验.理论分析及仿真结果均表明:随着用户数增加,系统的误码性能和传输速率得到提升,因此具有较好的实际应用价值.
中图分类号:
张刚,徐联冰,张天骐. 基于频分复用的无信号内干扰多用户相关延迟键控通信系统[J]. 上海交通大学学报, 2019, 53(5): 575-583.
ZHANG Gang,XU Lianbing,ZHANG Tianqi. NISI-MU-CDSK Communication System Based on Frequency Division Multiplexing[J]. Journal of Shanghai Jiaotong University, 2019, 53(5): 575-583.
| [1]HASAN A M N, AMEER L F A. Implementation of digital chaotic signal generator with an efficient cross-correlation in wireless communications [J]. International Journal of Advancements in Computing Techno-logy, 2009, 1(1): 18-23. [2]KADDOUM G, TRAN H V, KONG L, et al. Design of simultaneous wireless information and power transfer scheme for short reference DCSK communication systems [J]. IEEE Transactions on Communications, 2017, 65(1): 431-433. [3]HERCEG M, KADDOUM G, VRANJES D, et al. Permutation index DCSK modulation technique for secure multi-user high-data-rate communication systems [J]. IEEE Transactions on Vehicular Technology, 2017, 67(4): 2997-3001. [4]DUAN J Y, JIANG G P, YANG H. Reference-adaptive CDSK: An enhanced version of correlation delay shift keying [J]. IEEE Transactions on Circuits and System II: Express Briefs, 2015, 62(1): 90-94. [5]CAI G, WANG L, CHEN G Y. Capacity of the non-coherent DCSK system over rayleigh fading channel [J]. IET Communications, 2016, 10(18): 2663-2669. [6]马骏, 蒋铃鸽, 何晨. 一种改进的混合差分混沌键控及性能分析[J]. 上海交通大学学报, 2004, 38(11): 1814-1817. MA Jun, JIANG Lingge, HE Chen. An improved approach of hybrid differential chaos shift keying with BER performance analysis [J]. Journal of Shanghai Jiao Tong University, 2004, 38(11): 1814-1817. [7]KADDOUM G, SOUJERI E, NIJSURE Y. Design of a short reference noncoherent chaos-based communication systems [J]. IEEE Transactions on Communications, 2016, 64(2): 680-689. [8]XIA Y, TSE C K, LAU F C M. Performance of differential chaos-shift-keying digital communication systems over a multipath fading channel with delay spread [J]. IEEE Transactions on Circuits and Systems II: Analog and Digital, Signal Processing, 2004, 51(12): 680-684. [9]LEE J H, AN C Y, KIM B J, et al. Analysis of boss map according to delay time in CDSK system and proposed chaos system[C]//IEEE International Conference on Consumer Electronics, USA: IEEE, 2015: 521-524. [10]YANG H, TANG W K S, CHEN G R, et al. System design and performance analysis of orthogonal multi-level differential chaos shift keying modulation scheme [J]. IEEE Transactions on Circuits and Systems I: Regular Papers, 2016, 63(1): 146-156. [11]KADDOUM G. Design and performance analysis of a multiuser OFDM based differential chaos shift keying communication system [J]. IEEE Transactions on Communications, 2016, 64(1): 249-260. [12]KADDOUM G, GAGNON F. Performance analysis of STBC-CSK communication system over slow fading channel [J]. Signal Processing, 2013, 93(7): 2055-2060. [13]QUYEN N X, DUONG T Q, NALLANATHAN A. Modelling, analysis and performance comparison of two direct sampling DCSK receivers under frequency non-selective fading channels [J]. IET Communications, 2016, 10(11): 1263-1272. [14]WANG S Y, LIU Y J, MA W J. Design of a novel frequency division scheme for DCSK chaos communication system [C]//International Conference on Information Management, Chengdu, China: IEEE, 2017: 317-321. [15]张刚, 王传刚, 张天骐. 基于正交混沌载波的多用户DCSK系统性能分析[J]. 系统工程与电子技术, 2017, 39(2): 431-436. ZHANG Gang, WANG Chuangang, ZHANG Tianqi. Performance analyze for MU-DCSK system based on orthogonal chaotic carrier [J]. Journal of Systems Engineering and Electronics, 2017, 39(2): 431-436. [16]杨华, 蒋国平, 段俊毅. 无信号内干扰的高效差分混沌键控通信方案[J]. 通信学报, 2015, 36(6): 2015150-1-6. YANG Hua, JIANG Guoping, DUAN Junyi. High efficiency differential chaos shift keying modulation scheme without intra-signal interference [J]. Journal on Communications, 2015, 36(6): 2015150-1-6. [17]MANDAL S, BANERJEE S. Analysis and CMOS implementation of a chaos-based communication system [J]. IEEE Transactions on Circuits and Systems I: Regular Papers, 2004, 51(9): 1708-1722. [18]DUAN J Y, JIANG G P, YANG H. Multiple input multiple output CDSK chaotic communication system and its performance analysis [J]. Wuhan University Journal of Natural Science, 2016, 21(3): 221-228. |
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