ȸ¿ø°¡ÀÔ | ¿¬¶ôó | »çÀÌÆ®¸Ê | English

      È¸»ç¼Ò°³ | ¸®Æ÷Æ® | Ä¿½ºÅÒ ¸®¼­Ä¡ | °í°´Áö¿ø


·Î±×ÀÎ

Ä«Å×°í¸®

À¯/¹«¼±Åë½Å

Àü±â/ÀüÀÚ

µðÁöÅбâ±â/¹Ìµð¾î/¹æ¼Û

Information Technology

¿¡³ÊÁö

»ý¸í°øÇÐ

È­ÇÐ/½Å¼ÒÀç

ÀÚµ¿Â÷

ȯ°æ

ÀϹݼҺñÀç

¸¶ÄÉÆÃ/±¤°í

±ÝÀ¶

°Ç¼³

±³Åë/¿î¼Û

¼ÒºñÀÚÁ¶»ç

¹æÀ§/Ç×°ø/¿ìÁÖ

½ÄÀ½·á

Áß°ø¾÷

±³À°

±â°è

¹«¿ª

½ºÆ÷Ã÷/·¹Àú

ÇØ¿î/Á¶¼±

ÆмÇ

Á¤ºÎ/Á¤Ã¥

°ø¿¹/±Í±Ý¼Ó

ÄÄÆÛ´Ï ÇÁ·ÎÆÄÀÏ

±âŸ»ê¾÷

 
ÇöÀçÀ§Ä¡ : HOME > ¸®Æ÷Æ® > À¯/¹«¼±Åë½Å
High-speed Indoor Communications
¹ßÇà»ç PracTel

¹ßÇàÀÏ 2016-07-15
ºÐ·® 160 pages
¼­ºñ½ºÇüÅ Report
ÆǸŰ¡°Ý

ÀμâÇϱâ

Table of Contents

1.0 Introduction

  • 1.1 General
  • 1.2 Importance
  • 1.3 Scope
  • 1.4 Structure
  • 1.5 Research Methodology
  • 1.6 Target Audience

2.0 Wireline ICT

  • 2.1 PLC - HomePlug
    • 2.1.1 PowerPlug Alliance
      • 2.1.1.1 Goal
      • 2.1.1.2 Timetable
    • 2.1.2 HomePlug AV2
      • 2.1.2.1 Advances
      • 2.1.2.2 HomePlug AV2-mimo
        • 2.1.2.2.1 General
        • 2.1.2.2.2 Certification
        • 2.1.2.2.3 Major Improvements
        • 2.1.2.2.4 Specification Details
        • 2.1.2.2.5 MIMO Role
        • 2.1.2.2.6 Industry
          • Aztech
          • Broadcom
          • D-Link
          • Extollo
          • Gigafast Ethernet
          • Lea Networks
          • Netgear
          • Sineoji
          • Trendnet
          • TP-Link
          • Qualcomm Atheros
          • Zyxel
  • 2.2 HomePNA and ITU G.hn MIMO-based Technologies
    • 2.2.1 HomePNA Alliance (HomeGrid Forum)
    • 2.2.2. Specifications
      • 2.2.2.1 General
      • 2.2.2.2 HomePNA Specification 3.1: Major Features
      • 2.2.2.3 Fast EoC HomePNA
      • 2.2.2.4 Major Benefits
      • 2.2.2.5 ITU G.hn
        • 2.2.2.5.1 General
        • 2.2.2.5.2 G.hn Details
          • 2.2.2.5.2.1 Differences
          • 2.2.2.5.2.2 Common Features
          • 2.2.2.5.2.3 Acceptance
        • 2.2.2.5.3 HomePNA and G.hn Documents
        • 2.2.2.5.4 G.hn-mimo - G.9963
          • 2.2.2.5.4.1 Drivers
          • 2.2.2.5.4.2 G.9963 Details
          • 2.2.2.5.4.3 General
          • 2.2.2.5.4.4 Wireline Specifics - G.hn-mimo
          • 2.2.2.5.4.5 Scope
          • 2.2.2.5.4.6 Performance
          • 2.2.2.5.4.7 Industry
            • Comtrend
            • Metanoia
            • Marvell
            • Sigma Designs
            • ST&T
            • TangoTec
            • Tecom
            • Xingtera
  • 2.3 MoCA (Multimedia over Coax Alliance)
    • 2.3.1 General
    • 2.3.2 Partnerships
    • 2.3.3 Details
      • 2.3.3.1 MoCA 2.0
        • 2.3.3.1.1 MoCA 2.0 Technical Highlights
        • 2.3.3.1.2 MoCA 2.5
    • 2.3.4 Samples of Vendors
      • Arris
      • Broadcom
      • Cisco
      • Netgear
      • Pace (now part of Arris)
      • STMicroelectronics

3.0 Wireless ICT

  • 3.1 802.11ac
    • 3.1.1 Approval
    • 3.1.2 Advanced Wi-Fi Standard
    • 3.1.3 Major Features: Summary
    • 3.1.4 Benefits
    • 3.1.5 Usage Models
    • 3.1.6 Waves
    • 3.1.7 Market Projections
    • 3.1.8 Industry
      • Aruba - HP
      • Broadcom
      • Buffalo
      • Cisco
      • D-Link
      • Linksys
      • Marvell
      • Meru (now Fortinet)
      • Netgear
      • Qualcomm
      • Quantenna
      • Redpine Signals
    • 3.1.9 MIMO and 802.11ac Standard
      • 3.1.9.1 Comparison
  • 3.2 60 GHz WLAN
    • 3.2.1 Benefits and Issues
    • 3.2.2 WiGig Alliance
      • 3.2.2.1 Specification: 60 GHz Wi-Fi
      • 3.2.2.2 WiGig Protocol Adaption Layer Specifications
      • 3.2.2.3 The WiGig Bus Extension and WiGig Serial Extension Specification
      • 3.2.2.4 The WiGig Display Extension Specification
      • 3.2.2.5 Union
    • 3.2.3 IEEE 802.11ad - 60 GHz Wi-Fi
      • 3.2.3.1 Status
      • 3.2.3.2 Coexistence
      • 3.2.3.3 Scope
      • 3.2.3.4 Channelization
      • 3.2.3.5 PHY
      • 3.2.3.6 MAC
      • 3.2.3.7 Specifics
      • 3.2.3.8 Use Cases
      • 3.2.3.9 Industry
        • Blu Wireless
        • Intel
        • Lattice
        • Nitero
        • Peraso
        • Qualcomm
        • SiBeam
        • Tensorcom
        • TP-Link
    • 3.2.4 Market
      • 3.2.4.1 Market Drivers
      • 3.2.4.2 Estimate
    • 3.2.5 P802.11ay - Further Developments
  • 3.3 Visible Light Communications (VLC)
    • 3.3.1 VLC - Innovation
    • 3.3.2 LED Specifics
      • 3.3.2.1 Properties
      • 3.3.2.2 Spectrum
    • 3.3.3 Types
    • 3.3.4 LED Modulation
      • 3.3.4.1 Limitations
    • 3.3.5 LED - Dual Functionality
    • 3.3.6 Developments - History
    • 3.3.7 Technical/Economic Characteristics
    • 3.3.8 Communications Aspects: VLC
      • 3.3.8.1 Place
      • 3.3.8.2 Drivers
      • 3.3.8.3 Industry Activity
      • 3.3.8.4 VLC Standards Development
        • 3.3.8.4.1 The IEEE 802.15.7 Standard
          • 3.3.8.4.1.1 Considerations
          • 3.3.8.4.1.2 Project
        • 3.3.8.4.2 JEITA (Japan Electronics and IT Industries Association) Standards
          • 3.3.8.4.2.1 JEITA CP-1221
          • 3.3.8.4.2.2 JEITA CP-1222
          • 3.3.8.4.2.3 JEITA CP-1223 (2013)
        • 3.3.8.4.3 Visible Light Communications Consortium (VLCC)
          • 3.3.8.4.3.1 General
          • 3.3.8.4.3.2 Experimental Systems- VLCC Projects
        • 3.3.8.4.4 ARIB T50
        • 3.2.8.4.5 ECMA 397-2010
        • 3.2.8.4.6 Li-Fi Consortium
    • 3.3.9 VLC Channel-Details
      • 3.3.9.1 General
      • 3.3.9.2 Communications Channel
      • 3.3.9.3 Transmitter
      • 3.3.9.4 Receiver
        • 3.3.9.4.1 Image Sensors
        • 3.3.9.4.2 LED as Receiver
      • 3.3.9.5 Major Characteristics
        • 3.3.9.5.1 General
        • 3.3.9.5.2 Modulation
        • 3.3.9.5.3 VLC Channel: Characteristics Summary
      • 3.3.9.6 Emerging Areas
      • 3.3.9.7 Limitations
    • 3.3.10 Applications: Summary
      • 3.3.10.1 Indoor VLC Channel
    • 3.3.11 Industry
      • Axrtek
      • ByteLight (acquired by Acuity Brands in 2015)
      • Casio
      • Firefly Wireless Networks
      • LVX
      • Luciom
      • Nakagawa Laboratories
      • NEC
      • Oledcomm
      • Outstanding Technology
      • PureLi-Fi
      • Siemens
      • Supreme Architecture
      • Tamura
    • 3.3.12 Market

4.0 Comparison

5.0 Conclusions

Attachment I: 802.11ad - related Patents Survey (2015-2016)

Attachment II: VLC - related Patents Survey (2015-2016)

  • Figure 1: HomePlug AV2 Features
  • Figure 2: MIMO HomePlug AV2 Channels
  • Figure 3: PLC-MIMO (2x2)
  • Figure 4: G.hn- MIMO -Details
  • Figure 5: Maximum Theoretical PHY Rates (home media-wireline communications)
  • Figure 6: MoCA Roadmap
  • Figure 7: Channel Assignment-802.11ac
  • Figure 8: Projections-802.11ac Consumers AP Shipping-Global (Mil. Units)
  • Figure 9: Projections- 802.11ac Consumers AP Shipping-Global ($B)
  • Figure 10: Estimate: Global Shipping - 802.11ac MU-MIMO Consumers AP ($B)
  • Figure 11: 802.11ad MAC Structure
  • Figure 12: TAM: Global Sales of 802.1ad Chipsets (Bil. Units)
  • Figure 13: TAM: Global Sales of 802.11ad Chipsets ($B)
  • Figure 14: Estimate: Tri-band Wi-Fi Chipsets Sales - Global (Bil. Units)
  • Figure 15: Estimate: Wi-Fi Tri-band Chipsets Global Sales ($B)
  • Figure 16: 802.11ay - Proposed Timeline
  • Figure 17: LED Structure
  • Figure 18: Spectrum (450-750 nm - visible)
  • Figure 19: LED Properties Illustration
  • Figure 20: Estimate: U.S. Lighting LED Market ($B)
  • Figure 21: Estimate: U.S. Lighting LED Market (Bil. Units)
  • Figure 22: Estimate: Global Lighting LED Market ($B)
  • Figure 23: Cost and Brightness- Light Sources
  • Figure 24: WPAN/WLAN Family and VLC
  • Figure 25: Illustration-VLC Channel
  • Figure 26: VLC Applications
  • Figure 27: TAM: VLC Technology ($B)
  • Table 1: HomePlug Major Milestones
  • Table 2: ITU G.hn and HomePNA Standards
  • Table 3: G.hn Standards and Technologies
  • Table 4: HomePNA and G.hn Characteristics
  • Table 5: Comparative Characteristics
  • Table 6: G.hn-mimo - Frequency-Rate Characteristics
  • Table 7: Comparative Characteristics: MoCA Technologies
  • Table 8: Properties - 802.11ac
  • Table 9: Specifics-802.11ac
  • Table 10: Rates/Spatial Streams - 802.11ac
  • Table 11: Usage Models - 802.11ac
  • Table 12: 802.11ac WAVEs
  • Table 13: 802.11n vs. 802.11ac
  • Table 14: 802.11ad Major Features
  • Table 15: PHY Characteristics - 802.11ad
  • Table 16: Use Cases - 802.11ad
  • Table 17: Wavelengths (nm)
  • Table 18: Laser vs. LED
  • Table 19: Use Cases - VLC
  • Table 20: Devices and Characteristics - VLC
  • Table 21: Frequency Plan - 802.15.7
  • Table 22: VLC Properties
  • Table 23: VLC, IR and RF Communications ITS Applications Comparison
  • Table 24: Locations Technologies-VLC Place
  • Table 25: Characteristics Comparison

ȸ»ç¼Ò°³ | °³ÀÎÁ¤º¸º¸È£Á¤Ã¥ | ÀÌ¿ë¾à°ü | ¹è¼Û/°áÁ¦¾È³» | ÀÌ¿ë¾È³»

¼­¿ï½Ã °­³²±¸ ³íÇöµ¿ 210-1 »ï¿øºôµù | ȸ»ç¸í : (ÁÖ)¿¤¾Ø¿¡Ä¡
´ëÇ¥ÀüÈ­ : 02-554-0001 / Æѽº : 02-3444-5501 / À̸ÞÀÏ : sales@landh.co.kr
Copyright ¨Ï 2008 LNH, Inc. All rights reserved.