Incoherent optical code division multiple access systems

被引:0
作者
Andonovic, I
Tancevski, L
机构
来源
IEEE ISSSTA '96 - IEEE FOURTH INTERNATIONAL SYMPOSIUM ON SPREAD SPECTRUM TECHNIQUES & APPLICATIONS, PROCEEDINGS, VOLS 1-3 | 1996年
关键词
D O I
暂无
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Classical code division multiple access (CDMA) principles can be translated to the optical domain, resulting in all-optical derivatives of electronic systems. There are a number of ways of realising an all-optical CDMA system, classified as incoherent, coherent and approaches based on encoding in the frequency spectrum. This paper will review the progress made to date in the incoherent regime, the most straightforward implementation based on the power summation of optical pulses. The review will cover the basic principles of incoherent CDMA, the nature of the codes used in this approach and the resultant limitations on system performance with respect to the number of stations (code cardinality), the number of simultaneous users (correlation characteristics of the families of codes) and hardware requirements. The paper will present the latest developments with respect to the integration of conventional time spread codes, used in the realisation of these networks to date, with wavelength division concepts, commonplace in optical networking. These new families of codes exhibit an unprecedented set of characteristics when compared to existing unipolar codes in terms of their efficiency and correlation properties, allowing the goal of a large, asynchronous high speed network to become more feasible.
引用
收藏
页码:424 / 430
页数:7
相关论文
共 50 条
[31]   Proposal of successive interference cancellation scheme in optical code-division multiple access systems [J].
Eltaif, Tawfig ;
Shalaby, Hossam M. H. ;
Shaari, Sahbudin ;
Hamarsheh, Mohammad M. N. .
OPTICAL ENGINEERING, 2008, 47 (03)
[32]   PERFORMANCE CONSIDERATIONS OF CODE DIVISION MULTIPLE-ACCESS SYSTEMS [J].
WEBER, CL ;
HUTH, GK ;
BATSON, BH .
IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, 1981, 30 (01) :3-9
[33]   Molecular Code Division Multiple Access in Nano Communication Systems [J].
Zamiri-Jafarian, Yeganeh ;
Gazor, Saeed ;
Zamiri-Jafarian, Hossein .
2016 IEEE WIRELESS COMMUNICATIONS AND NETWORKING CONFERENCE, 2016,
[34]   Dispersion in multiwavelength optical code-division multiple-access systems: Impact and remedies [J].
Ng, EKH ;
Weichenberg, GE ;
Sargent, EH .
IEEE TRANSACTIONS ON COMMUNICATIONS, 2002, 50 (11) :1811-1816
[35]   Techno-economic analysis of two dimensional optical code division multiple access systems [J].
Imtiaz, Waqas A. ;
Yousef, Hassan ;
Zeghid, Median ;
Sharma, Teena ;
Mirza, Jawad .
OPTICAL AND QUANTUM ELECTRONICS, 2021, 53 (01)
[36]   Techno-economic analysis of two dimensional optical code division multiple access systems [J].
Waqas A. Imtiaz ;
Hassan Yousef ;
Median Zeghid ;
Teena Sharma ;
Jawad Mirza .
Optical and Quantum Electronics, 2021, 53
[37]   A NEW DECODER OF SYNCHRONOUS OPTICAL CODE DIVISION MULTIPLE ACCESS SYSTEMS USING SEGMENTED CORRELATION [J].
Li Ou Wu Jiangxing Lan Julong(National Digital Switching System Engineering & Technology Research Center .
Journal of Electronics(China), 2001, (02) :135-139
[38]   Optimization of code division multiple access geo satellite systems [J].
Angeletti, P. ;
D'Ignazio, T. ;
La Manna, R. ;
Lisi, M. .
Space Technology, 2002, 22 (1-2) :9-15
[39]   Multiple-access technology based on optical code-division multiple access for passive optical networks [J].
Zhang, Chongfu ;
Qiu, Kun ;
Xu, Bo .
OPTICAL ENGINEERING, 2006, 45 (10)
[40]   Multiple Access Techniques for Bipolar Optical Code Division in Wireless Optical Communications [J].
Cheng, Hsu-Chih ;
Wijanto, Eddy ;
Lien, Tzu-Chieh ;
Lai, Po-Han ;
Tseng, Shin-Pin .
IEEE ACCESS, 2020, 8 :83511-83523