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表纸
年间契约型资讯服务
商品编码
487870

Wi-Fi、Bluetooth、无线连接技术

Wi-Fi, Bluetooth & Wireless Connectivity

出版日期: 年间契约型资讯服务 | 出版商: ABI Research | 英文

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简介目录

ABI Research年度合约型情报服务提供Wi-Fi、Bluetooth、无线连接技术市场相关情报,介绍在提升竞争力前的阶段中,新连接解决方案和标准之间重要的相乘效果。本服务透过各种数据、趋势分析、预测报告广泛网罗各领域,分析各IoT平台及应用层中未来预期的技术创新和突破性进步,介绍可能影响供应链企业的联盟。

本服务目的是针对致力于技术实用化的企业,提供有关商业及工业部门中的应用、智慧城市及环境感测器、初期IoT市场的新商机相关独到见解。

在相关产业进行创新活动企业的主要疑问

  • 随着通信产业的数位转型,为了持续业务应掌握哪些情报?
  • 既有系统整合商为了成为通信业者主要整合商,需采取什么行动?
  • 网路领域未来的技术创新对于通信业者有何影响?
  • 通信业者需要怎样的新创举才能与OTT服务提供商竞争?
  • 网路规模服务提供商是否能成为寻求结果的通信业者的威胁?
  • 通信业者该如何成功转型为数位服务提供商?
  • SDN/NFV如何为中立HOST数据中心提供商带来新商机?
  • 汽车产业成为通信云端服务及5G服务重要市场的可能性?
  • 目前正在建构新网路的Tire 1通信业者在何处?
  • 如何拓展通信设备供应商的SDN/NFV商机?
  • 通信业者如何适用软体的商业模式?

本服务含括领域

  • SDN/NFV
  • 通信云端平台商机及课题
  • 通信云端领域技术创新瞩目企业
  • NFV价值链分析及供应商情报
  • 通信网路的AI
  • Service Enablement平台
  • NFV发展及其影响
  • 通信云端业务展开之各地区趋势
  • 通信云端先进机能:网路切片及服务串接
  • MEC价值链分析
  • 网路切片及5G网路
  • 通信云端领域的开放原始码及生态系统
  • 通信业者导向之分析技术的大数据和机器学习
  • 汽车及AR/VR领域的网路切片技术
  • 通信云端流量管理
  • 通信云端信令:SIP、Diameter、SS7
  • 结合区块链及AI以控制网路
  • 量子网路
  • 服务公开平台
  • 通信业者发展网路事业
  • 通信事业者数位转型
  • 云端计算
  • 网路收益事业化
  • ICT基础建设
  • 通信业者导向分析技术
  • 通信云端流量管理
  • 通信业者网路开放原始码的掌舵
简介目录

ABI Research's Wi-Fi, Bluetooth & Wireless Connectivity market intelligence uncovers and identifies key synergies between new connectivity solutions and standards long before they gain competitive traction. Our coverage, which includes data, trend, and forecast reports, examines major forthcoming innovations and disruptions across various IoT platforms, application layers, and consortiums that have the potential to affect companies across the supply chain. We aim to provide technology implementers with unparalleled insight into commercial and industrial applications, as well as emerging opportunities in the smart city, environmental sensing, and nascent IoT markets.

TOP QUESTIONS WE RECEIVE FROM INDUSTRY INNOVATORS:

  • What challenges will incoming new standards present to my company's current offerings?
  • What are the benefits of wireless connectivity in industrial automation?
  • What market opportunities for connectivity chipsets should my company capitalize on?
  • How will WiGig and new connectivity technologies play a role in the VR space?
  • What opportunities exist for low-power wireless connectivity in smart city applications?
  • What is the future of the wireless connectivity landscape?
  • What role will wireless connectivity play in future commercial and industrial applications?
  • What impact will energy harvesting applications have on the wireless connectivity market?
  • Where are the new opportunities for my company's chipsets?
  • Are my company's devices futureproof in this fragmented market?
  • What are the long-term challenges for semiconductor IP technologies?
  • Is my company investing in the right semiconductor IP technologies?
  • How will new technologies and IC developments impact my company's growth?
  • How will multi-protocol ICs disrupt the connectivity market?

COVERAGE AREAS:

  • Wireless connectivity market forecasts and vendor shares
  • Bluetooth, 802.15.4 (Thread, ZigBee), Wi-Fi, Z-Wave
  • Near field communication opportunities
  • Opportunities for 60GHz Wi-Fi Technologies
  • Wi-Fi HaLow and low-power IoT connectivity technologies
  • Bluetooth 5, Bluetooth Beacons, and Bluetooth Mesh, and beyond
  • Future of wireless connectivity and technical evolution
  • Wireless chipset integration and multi-protocol combinations

Featured Research(SAMPLE)

Connectivity for the Factory Floor: Opportunities and Challenges for Wireless Technologies

Wireless connectivity is a fundamental enabler of the Internet of Things (IoT) and is rapidly enabling new growth opportunities across the smart home, wearable, building automation, automotive, retail, asset tracking, and other emerging IoT markets. For industrial and manufacturing environments, while wireless technologies have made some inroads in recent years, the opportunity for wireless technologies has remained relatively small and continues to face several challenges.

However, it is becoming increasingly clear that wireless connectivity solutions have a critical role to play in enabling the Industrial Internet of Things (IIoT) across a wide range of use cases ranging from Real-Time Location Systems (RTLS) and asset tracking to industrial wearables, condition-based monitoring, Augmented Reality (AR), and robotics applications.