000 | 07293nam a2200517 i 4500 | ||
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001 | 8039725 | ||
003 | IEEE | ||
005 | 20220712211707.0 | ||
006 | m o d | ||
007 | cr |n||||||||| | ||
008 | 171024s2008 maua ob 001 eng d | ||
010 | _z 2011000933 (print) | ||
020 |
_a9780470910931 _qelectronic |
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020 |
_z9780470182352 _qprint |
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024 | 7 |
_a10.1002/9780470910931 _2doi |
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035 | _a(CaBNVSL)mat08039725 | ||
035 | _a(IDAMS)0b00006485f0d961 | ||
040 |
_aCaBNVSL _beng _erda _cCaBNVSL _dCaBNVSL |
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050 | 4 |
_aTK5103.59 _b.B73 2011eb |
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082 | 0 | 0 |
_a621.382/7 _222 |
245 | 0 | 0 |
_aBroadband optical access networks : _bemerging technologies and optical-wireless convergence / _cL.G. Kazovsky ... [et al.]. |
264 | 1 |
_aHoboken, New Jersey : _bWiley-Interscience, _cc2011. |
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264 | 2 |
_a[Piscataqay, New Jersey] : _bIEEE Xplore, _c[2011] |
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300 |
_a1 PDF (xvi, 283 pages) : _billustrations. |
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336 |
_atext _2rdacontent |
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_aelectronic _2isbdmedia |
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_aonline resource _2rdacarrier |
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504 | _aIncludes bibliographical references. | ||
505 | 0 | _a-- FOREWORD -- PREFACE -- ACKNOWLEDGMENTS -- 1 BROADBAND ACCESS TECHNOLOGIES: AN OVERVIEW -- 1.1 Communication Networks -- 1.2 Access Technologies -- 1.2.1 Last-Mile Bottleneck -- 1.2.2 Access Technologies Compared -- 1.3 Digital Subscriber Line -- 1.3.1 DSL Standards -- 1.3.2 Modulation Methods -- 1.3.3 Voice over DSL -- 1.4 Hybrid Fiber Coax -- 1.4.1 Cable Modem -- 1.4.2 DOCSIS -- 1.5 Optical Access Networks -- 1.5.1 Passive Optical Networks -- 1.5.2 PON Standard Development -- 1.5.3 WDM PONs -- 1.5.4 Other Types of Optical Access Networks -- 1.6 Broadband over Power Lines -- 1.6.1 Power-Line Communications -- 1.6.2 BPL Modem -- 1.6.3 Challenges in BPL -- 1.7 Wireless Access Technologies -- 1.7.1 Wi-Fi Mesh Networks -- 1.7.2 WiMAX Access Networks -- 1.7.3 Cellular Networks -- 1.7.4 Satellite Systems -- 1.7.5 LMDS and MMDS Systems -- 1.8 Broadband Services and Emerging Technologies -- 1.8.1 Broadband Access Services -- 1.8.2 Emerging Technologies -- 1.9 Summary -- References -- 2 OPTICAL COMMUNICATIONS: COMPONENTS AND SYSTEMS -- 2.1 Optical Fibers -- 2.1.1 Fiber Structure -- 2.1.2 Fiber Mode -- 2.1.3 Fiber Loss -- 2.1.4 Fiber Dispersion -- 2.1.5 Nonlinear Effects -- 2.1.6 Light-Wave Propagation in Optical Fibers -- 2.2 Optical Transmitters -- 2.2.1 Semiconductor Lasers -- 2.2.2 Optical Modulators -- 2.2.3 Transmitter Design -- 2.3 Optical Receivers -- 2.3.1 Photodetectors -- 2.3.2 Optical Receiver Design -- 2.4 Optical Amplifiers -- 2.4.1 Rare-Earth-Doped Fiber Amplifiers -- 2.4.2 Semiconductor Optical Amplifiers -- 2.4.3 Raman Amplifiers -- 2.5 Passive Optical Components -- 2.5.1 Directional Couplers -- 2.5.2 Optical Filters -- 2.6 System Design and Analysis -- 2.6.1 Receiver Sensitivity -- 2.6.2 Power Budget -- 2.6.3 Dispersion Limit -- 2.7 Optical Transceiver Design for TDM PONs -- 2.7.1 Burst-Mode Optical Transmission -- 2.7.2 Colorless ONUs -- 2.8 Summary -- References -- 3 PASSIVE OPTICAL NETWORKS: ARCHITECTURES AND PROTOCOLS -- 3.1 PON Architectures -- 3.1.1 Network Dimensioning and Bandwidth. | |
505 | 8 | _a3.1.2 Power Budget -- 3.1.3 Burst-Mode Operation -- 3.1.4 PON Packet Format and Encapsulation -- 3.1.5 Dynamic Bandwidth Allocation, Ranging, and Discovery -- 3.1.6 Reliability and Security Concerns -- 3.2 PON Standards History and Deployment -- 3.2.1 Brief Developmental History -- 3.2.2 FTTx Deployments -- 3.3 Broadband PON -- 3.3.1 BPON Architecture -- 3.3.2 BPON Protocol and Service -- 3.3.3 BPON Transmission Convergence Layer -- 3.3.4 BPON Dynamic Bandwidth Allocation -- 3.3.5 Other ITU-T G.983.x Recommendations -- 3.4 Gigabit-Capable PON -- 3.4.1 GPON Physical Medium / Dependent Layer -- 3.4.2 GPON Transmission Convergence Layer -- 3.4.3 Recent G.984 Series Standards, Revisions, and Amendments -- 3.5 Ethernet PON -- 3.5.1 EPON Architecture -- 3.5.2 EPON Point-to-Multipoint MAC Control -- 3.5.3 Open Implementations in EPON -- 3.5.4 Unresolved Security Weaknesses -- 3.6 IEEE 802.av-2009 10GEPON Standard -- 3.6.1 10GEPON PMD Architecture -- 3.6.2 10GEPON MAC Modifications -- 3.6.3 10GEPON Coexistence Options -- 3.7 Next-Generation Optical Access System Development in the Standards -- 3.7.1 FSAN NGA Road Map -- 3.7.2 Energy Efficiency -- 3.7.3 Other Worldwide Development -- 3.8 Summary -- References -- 4 NEXT-GENERATION BROADBAND OPTICAL ACCESS NETWORKS -- 4.1 TDM-PON Evolution -- 4.1.1 EPON Bandwidth Enhancements -- 4.1.2 GPON Bandwidth Enhancements -- 4.1.3 Line Rate Enhancements Research -- 4.2 WDM-PON Components and Network Architectures -- 4.2.1 Colorless ONUs -- 4.2.2 Tunable Lasers and Receivers -- 4.2.3 Spectrum-Sliced Broadband Light Sources -- 4.2.4 Injection-Locked FP Lasers -- 4.2.5 Centralized Light Sources with RSOAs -- 4.2.6 Multimode Fiber -- 4.3 Hybrid TDM/WDM-PON -- 4.3.1 TDM-PON to WDM-PON Evolution -- 4.3.2 Hybrid Tree Topology Evolution -- 4.3.3 Tree to Ring Topology Evolution -- 4.4 WDM-PON Protocols and Scheduling Algorithms -- 4.4.1 MAC Protocols -- 4.4.2 Scheduling Algorithms -- 4.5 Summary -- References -- 5 HYBRID OPTICAL WIRELESS ACCESS NETWORKS. | |
505 | 8 | _a5.1 Wireless Access Technologies -- 5.1.1 IEEE 802.16 WiMAX -- 5.1.2 Wireless Mesh Networks -- 5.2 Hybrid Optical / Wireless Access Network Architecture -- 5.2.1 Leveraging TDM-PON for Smooth Upgrade of Hierarchical Wireless Access Networks -- 5.2.2 Upgrading Path -- 5.2.3 Reconfigurable Optical Backhaul Architecture -- 5.3 Integrated Routing Algorithm for Hybrid Access Networks -- 5.3.1 Simulation Results and Performance Analysis -- 5.4 Summary -- References -- INDEX. | |
506 | _aRestricted to subscribers or individual electronic text purchasers. | ||
520 |
_a"Broadband optical access network is an ideal solution to alleviate the first/last mile bottleneck of current Internet infrastructures. Richly illustrated throughout to help clarify important topics, Broadband Optical Access Networks covers the architectures, protocols enabling technologies of broadband optical access networks, and all current and future competing technologies for access networks. This comprehensive work presents the evolution of optical access networks, including reach extension, bandwidth enhancement, and discusses the convergence of optical and wireless technologies for broadband access, making it an invaluable reference for researchers, electrical engineers, and graduate students"-- _cProvided by publisher. |
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520 |
_a"This comprehensive reference covers the architectures, protocols enabling technologies of broadband optical access networks and all current and future competing technologies for access networks"-- _cProvided by publisher. |
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530 | _aAlso available in print. | ||
538 | _aMode of access: World Wide Web | ||
588 | _aDescription based on PDF viewed 10/24/2017. | ||
650 | 0 |
_aOptical communications. _97560 |
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655 | 0 |
_aElectronic books. _93294 |
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700 | 1 |
_aKazovsky, Leonid G. _930154 |
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710 | 2 |
_aIEEE Xplore (Online Service), _edistributor. _930155 |
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710 | 2 |
_aWiley, _epublisher. _930156 |
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776 | 0 | 8 |
_iPrint version: _z9780470182352 |
856 | 4 | 2 |
_3Abstract with links to resource _uhttps://ieeexplore.ieee.org/xpl/bkabstractplus.jsp?bkn=8039725 |
942 | _cEBK | ||
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_c74760 _d74760 |