Global Aviation IoT Market 2017-2021

SKU ID :TNV-10359360 | Published Date: 06-Mar-2017 | No. of pages: 70
Table of Contents PART 01: Executive summary PART 02: Scope of the report PART 03: Research Methodology PART 04: Introduction • Key market highlights • Key buying criteria PART 05: Market landscape • Market overview • Market size and forecast • Five forces analysis PART 06: Innovation landscape • Innovation landscape PART 07: Market segmentation by application • Segmentation of global aviation IoT market by applications • Global aviation IoT market for passengers • Global aviation IoT market for aircraft operations PART 08: Geographical segmentation • Geographical segmentation of global aviation IoT market • Aviation IoT market in Americas • Aviation IoT market in EMEA • Aviation IoT market in APAC PART 09: Market drivers • Emphasis on reducing operational expenses • Investment in agile and smart airport concepts • Mandating in-flight tracking PART 10: Impact of drivers PART 11: Market challenges • Complexities with deployment costs and interoperability • Constraints with internal IT security of airports • Lack of standardization PART 12: Impact of drivers and challenges PART 13: Market trends • Growing investments in in-flight connectivity solutions • Investment in development of assistive technologies • Emergence of hyper-personalization of connected devices PART 14: Case studies • Bengaluru International Airport (BIAL), India • Copenhagen Kastrup Airport (CPH), Denmark • Amsterdam Schiphol Airport, the Netherlands PART 15: Stakeholder activities • London (UK), Dec 2016 • Paris (France), Dec 2016 • Munich (Germany), Nov 2016 • Adelaide (Australia), Nov 2016 • Rio de Janeiro (Brazil), Jun 2016 PART 16: Vendor landscape • Competitive scenario • IBM • Cisco Systems • Microsoft • Wind River • Other prominent vendors PART 17: Appendix • List of abbreviations List of Exhibits Exhibit 01: Major components of IoT ecosystem Exhibit 02: Global aviation IoT market: Key buying criteria Exhibit 03: Segmentation of global aviation IoT market 2016-2021 Exhibit 04: Global aviation IoT market 2016-2021 ($ billions) Exhibit 05: Five forces analysis Exhibit 06: Segmentation of global aviation IoT market by applications 2016 and 2021 (% share) Exhibit 07: Segmentation of global aviation IoT market by applications 2016-2021 ($ billions) Exhibit 08: Global aviation IoT market for passengers 2016-2021 ($ billions) Exhibit 09: Global aviation IoT market for aircraft operations 2016-2021 ($ billions) Exhibit 10: Geographical segmentation of global aviation IoT market 2016 and 2021 (% share) Exhibit 11: Geographical segmentation of global aviation IoT market 2016-2021 ($ billions) Exhibit 12: Global aviation IoT market in Americas 2016-2021 ($ billions) Exhibit 13: Aviation IoT market in EMEA 2016-2021 ($ billions) Exhibit 14: Global aviation IoT market in APAC 2016-2021 ($ billions) Exhibit 15: Topology of aircraft IoT Exhibit 16: Key components of agile airport infrastructure Exhibit 17: Impact of drivers Exhibit 18: Impact of drivers and challenges Exhibit 19: Design principle of assistive technology Exhibit 20: Features of Beacon protocol Exhibit 21: Advantages of hyper-personalization of connected devices with baggage handling Exhibit 22: Key vendors of global aviation IoT market 2016 Exhibit 23: Microsoft: Key product and services portfolio
Cisco Systems, IBM, Microsoft, Wind River, Accenture, Apple, Living PlanIT, and SITAONAIR
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