BS PD IEC TR 61282-13-2014 Fibre optic communication system design guides Guidance on in-service PMD and CD characterization of fibre optic links《纤维光学通信系统设计指南 纤维光学连接使用PMD和CD特性指南》.pdf
《BS PD IEC TR 61282-13-2014 Fibre optic communication system design guides Guidance on in-service PMD and CD characterization of fibre optic links《纤维光学通信系统设计指南 纤维光学连接使用PMD和CD特性指南》.pdf》由会员分享,可在线阅读,更多相关《BS PD IEC TR 61282-13-2014 Fibre optic communication system design guides Guidance on in-service PMD and CD characterization of fibre optic links《纤维光学通信系统设计指南 纤维光学连接使用PMD和CD特性指南》.pdf(52页珍藏版)》请在麦多课文档分享上搜索。
1、BSI Standards PublicationFibre optic communication system design guidesPart 13: Guidance on in-service PMD and CD characterization of fibre optic linksPD IEC/TR 61282-13:2014National forewordThis Published Document is the UK implementation of IEC/TR 61282-13:2014.The UK participation in its preparat
2、ion was entrusted by TechnicalCommittee GEL/86, Fibre optics, to Subcommittee GEL/86/3, Fibre optic systems and active devices.A list of organizations represented on this committee can be obtained onrequest to its secretary.This publication does not purport to include all the necessary provisions of
3、a contract. Users are responsible for its correct application. The British Standards Institution 2014.Published by BSI Standards Limited 2014ISBN 978 0 580 84230 6ICS 33.180.01Compliance with a British Standard cannot confer immunity fromlegal obligations.This Published Document was published under
4、the authority of theStandards Policy and Strategy Committee on 31 May 2014.Amendments/corrigenda issued since publicationDate Text affectedPUBLISHED DOCUMENTPD IEC/TR 61282-13:2014IEC TR 61282-13 Edition 1.0 2014-05 TECHNICAL REPORT Fibre optic communication system design guides Part 13: Guidance on
5、 in-service PMD and CD characterization of fibre optic links INTERNATIONAL ELECTROTECHNICAL COMMISSION X ICS 33.180.01 PRICE CODE ISBN 978-2-8322-1572-2 Registered trademark of the International Electrotechnical Commission Warning! Make sure that you obtained this publication from an authorized dist
6、ributor. colourinsidePD IEC/TR 61282-13:2014 2 IEC TR 61282-13:2014 IEC 2014 CONTENTS FOREWORD . 4 INTRODUCTION . 6 1 Scope 7 2 Normative references 7 3 Symbols, acronyms and abbreviated terms 7 4 Background . 9 5 Non-intrusive fibre characterization . 12 5.1 PMD measurement via polarization-sensiti
7、ve spectral analysis . 12 Introductory remark . 12 5.1.1Measurement principle. 13 5.1.2Methods for measuring effvia polarization analysis 15 5.1.3Measurement accuracy 19 5.1.4Measurement set-up example 21 5.1.55.2 CD and PMD measurements based on high-speed intensity detection 22 Introductory remark
8、 . 22 5.2.1Asynchronous waveform sampling . 24 5.2.2RF spectral analysis 29 5.2.35.3 CD and PMD measurements based on high-speed coherent detection 32 Introductory remark . 32 5.3.1Heterodyne detection . 33 5.3.2Direct detection with optical CD or PMD compensation 33 5.3.3Electronic CD and PMD compe
9、nsation in intradyne coherent receiver 35 5.3.46 Semi-intrusive fibre characterization with special probe signals . 37 6.1 CD measurement using multi-tone probe signal 37 Introductory remark . 37 6.1.1Differential phase shift method with narrowband probe signals 37 6.1.2Issues of transmitting alien
10、probe signals 41 6.1.3Exemplary procedure for in-service CD measurements 42 6.1.46.2 PMD measurement with special probe signals. 43 Introductory remark . 43 6.2.1Probe signal generator for PMD measurements . 43 6.2.2Bibliography 45 Figure 1 Out-of-service fibre characterization with broadband optica
11、l probe signal . 9 Figure 2 In-service fibre characterization with non-intrusive method . 10 Figure 3 Semi-intrusive in-service fibre characterization using narrowband probe signal 11 Figure 4 Rayleigh PDF for effcompared with Maxwellian PDF for 14 Figure 5 PMD-induced polarization rotation within t
12、he spectrum of a modulated signal 15 Figure 6 Set-up for measuring PMD-induced polarization rotations in optical signals 16 Figure 7 Modified set-up for measuring PMD-induced polarization rotations . 16 Figure 8 Sequence of polarization transformations leading to a scan with Pp Psat =0 (left) and co
13、rresponding power ratios (right) . 17 PD IEC/TR 61282-13:2014IEC TR 61282-13:2014 IEC 2014 3 Figure 9 Sequence of polarization transformations with Pp Psat =0 (left) and corresponding rotation angles (right) . 18 Figure 10 Apparatus using coherent detection to measure eff. 21 Figure 11 Apparatus for
14、 GVD measurements in a transmitted signal using a high-speed receiver with time-domain waveform analysis or, alternatively, RF spectrum analysis 23 Figure 12 Set-up for determining the sign of the GVD in the fibre link with an additional optical CD element of known GVD magnitude and sign . 24 Figure
15、 13 Asynchronous sampling of the waveform of a 10 Gbit/s NRZ-OOK signal . 25 Figure 14 Asynchronously sampled waveform histograms of a 10 Gbit/s NRZ-OOK signal without dispersion, with 1 000 ps/nm GVD, and with 48 ps DGD . 26 Figure 15 Asynchronous waveform analysis with two successive samples per s
16、ymbol period . 26 Figure 16 Apparatus for asynchronous waveform analysis with time-delayed dual sampling . 27 Figure 17 Phase portraits of a 10 Gbit/s NRZ-OOK signal with various amounts of GVD and DGD 28 Figure 18 Phase portraits of a 10 Gbit/s NRZ-OOK signal wherein the time delay between each sam
17、ple pair is set to half the symbol period 29 Figure 19 RF spectra of directly detected 10 Gbit/s NRZ- and RZ-OOK signals distorted by various amounts of GVD 30 Figure 20 Magnitude of the clock frequency component in the RF spectra of 10 Gbit/s NRZ- and RZ-OOK signals as a function of GVD . 30 Figure
18、 21 Impact of PMD on the RF spectra of directly detected 10 Gbit/s NRZ- and RZ-OOK signals 31 Figure 22 Apparatus for simultaneous GVD and DGD measurements on NRZ- or RZ-OOK signals using separate detectors for upper and lower modulation sidebands 31 Figure 23 Optical filtering of a 10 Gbit/s NRZ-OO
19、K signal for separate detection of upper and lower modulation sidebands . 32 Figure 24 RF power spectrum of a 10 Gbit/s NRZ-OOK signal detected with an optical heterodyne receiver . 33 Figure 25 Apparatus for measuring GVD with calibrated optical CD compensator 34 Figure 26 Apparatus for measuring P
20、MD with calibrated optical DGD compensator 35 Figure 27 Coherent optical receiver with high-speed digital signal processing and electronic CD and PMD compensation 36 Figure 28 Spectrum of an amplitude modulated dual-wavelength probe signal . 38 Figure 29 Signal generator and analyser for dual-wavele
21、ngth probe signal 39 Figure 30 Four-wavelength probe signal generator using high-speed modulator . 39 Figure 31 Example of end-to-end CD measurements in 6 unused WDM channels 40 Figure 32 In-service CD measurement with broadband probe signal 41 Figure 33 Modified dual-wavelength probe signal with un
22、-modulated carrier 42 Figure 34 Probe signal generator for PMD measurements . 44 PD IEC/TR 61282-13:2014 4 IEC TR 61282-13:2014 IEC 2014 INTERNATIONAL ELECTROTECHNICAL COMMISSION _ FIBRE OPTIC COMMUNICATION SYSTEM DESIGN GUIDES Part 13: Guidance on in-service PMD and CD characterization of fibre opt
23、ic links FOREWORD 1) The International Electrotechnical Commission (IEC) is a worldwide organization for standardization comprising all national electrotechnical committees (IEC National Committees). The object of IEC is to promote international co-operation on all questions concerning standardizati
24、on in the electrical and electronic fields. To this end and in addition to other activities, IEC publishes International Standards, Technical Specifications, Technical Reports, Publicly Available Specifications (PAS) and Guides (hereafter referred to as “IEC Publication(s)”). Their preparation is en
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