【レポートの概要(一部)】
TABLE OF CONTENTS
1 INTRODUCTION 19
1.1 STUDY OBJECTIVES 19
1.2 MARKET DEFINITION 19
1.3 STUDY SCOPE 20
1.3.1 MARKETS COVERED 20
1.3.2 GEOGRAPHIC SCOPE 21
1.3.3 YEARS CONSIDERED 21
1.4 CURRENCY 22
1.5 STAKEHOLDERS 22
2 RESEARCH METHODOLOGY 23
2.1 RESEARCH DATA 23
2.1.1 SECONDARY DATA 25
2.1.1.1 Secondary sources 25
2.1.2 PRIMARY DATA 26
2.1.2.1 Primary sources 26
2.1.2.2 Key industry insights 27
2.1.2.3 Breakdown of primaries 27
2.2 MARKET SIZE ESTIMATION 27
2.2.1 BOTTOM-UP APPROACH 28
2.2.2 TOP-DOWN APPROACH 28
2.3 MARKET BREAKDOWN AND DATA TRIANGULATION 29
2.4 RESEARCH ASSUMPTIONS 30
2.5 LIMITATIONS 30
3 EXECUTIVE SUMMARY 31
4 PREMIUM INSIGHTS 35
4.1 ATTRACTIVE OPPORTUNITY IN INDUSTRIAL COMMUNICATION MARKET 35
4.2 INDUSTRIAL COMMUNICATION MARKET, BY OFFERING 36
4.3 INDUSTRIAL COMMUNICATION MARKET SHARE, BY REGION (2018 VS. 2023) 36
4.4 ELECTRICAL AND ELECTRONICS TO HOLD LARGEST SHARE OF INDUSTRIAL COMMUNICATION MARKET IN APAC BY 2018 37
4.5 INDUSTRIAL COMMUNICATION MARKET, BY GEOGRAPHY 38
5 MARKET OVERVIEW 39
5.1 INTRODUCTION 39
5.2 MARKET DYNAMICS 39
5.2.1 DRIVERS 40
5.2.1.1 Growing need for scalable, faster, reliable, and interoperable communication protocols 40
5.2.1.2 Rise of Industrial Revolution 4.0 40
5.2.1.3 Increasing machine-to-machine communication 41
5.2.1.4 Government initiatives to support industrial automation 42
5.2.2 RESTRAINTS 42
5.2.2.1 Lack of standardization among equipment manufacturers 42
5.2.3 OPPORTUNITIES 43
5.2.3.1 Growing adoption of Industrial Internet of Things (IIoT) 43
5.2.3.2 Rising demand for wireless networks 43
5.2.4 CHALLENGES 44
5.2.4.1 Threats related to cybersecurity 44
5.2.4.2 Harsh field site conditions such as high-voltage transients, severe shocks and vibrations, and extremely high temperatures 44
6 INDUSTRIAL COMMUNICATION MARKET, BY OFFERING 45
6.1 INTRODUCTION 46
6.2 COMPONENTS 47
6.2.1 MARKET FOR INDUSTRIAL CONTROLLERS AND PROCESSORS TO WITNESS SIGNIFICANT GROWTH DURING FORECAST PERIOD 47
6.2.2 SWITCHES 48
6.2.2.1 Rising adoption of Ethernet protocol to propel the growth of market for industrial communication switches during forecast period 48
6.2.3 HUBS, ROUTERS, AND GATEWAYS 49
6.2.3.1 Increasing use of more than one communication protocol in industrial communication to drive growth of market for gateways and routers during forecast period 49
6.2.4 CONNECTORS 49
6.2.4.1 Square Subscriber Connectors (SCs), also standard connectors,
are more popular in North America while round Straight Tip (ST) connectors are more popular in Europe 49
6.2.5 COMMUNICATION INTERFACES 50
6.2.5.1 Growing market for industrial PCs to drive growth of communication interfaces 50
6.2.6 POWER SUPPLY DEVICES 50
6.2.6.1 Growing need for efficient battery charging, power-source selection, and voltage scaling in field devices to propel growth of market for power supply devices. 50
6.2.7 CONTROLLERS AND PROCESSORS 51
6.2.7.1 Growing need to control, monitor, and record field-level data automatically within industrial communication network driving market for controllers and processors 51
6.2.8 MEMORY 51
6.2.8.1 Migration toward Solid-State Drive (SSD) from Hard Disk Drive (HDD) to drive industrial communication market for memory 51
6.2.9 ISOLATORS AND CONVERTORS 52
6.2.9.1 Increase in use of optical isolators in Ethernet industrial communication protocol to drive market for isolators and convertors 52
6.2.10 OTHERS 52
6.3 SOFTWARE 52
6.3.1 INCREASING IMPORTANCE OF NETWORK-MANAGEMENT SOFTWARE WITH THE GROWING NETWORK COMPLEXITY, TO ENSURE THE SMOOTH FUNCTIONING OF THE INDUSTRIAL COMMUNICATION NETWORK, DRIVING INDUSTRIAL COMMUNICATION SOFTWARE MARKET 52
6.4 SERVICES 53
6.4.1 GROWING FOCUS TOWARD COMPREHENSIVE INDUSTRIAL COMMUNICATION SOLUTION FROM TIER 1 PLAYERS TO DRIVE INDUSTRIAL COMMUNICATION SERVICES MARKET 53
7 INDUSTRIAL COMMUNICATION MARKET, BY COMMUNICATION PROTOCOL 54
7.1 INTRODUCTION 55
7.2 FIELDBUS 56
7.2.1 FOUNDATION FIELDBUS AND HART 61
7.2.1.1 Growing adoption in iron and steel, oil and gas, and chemicals industries to drive growth of market for foundation fieldbus during forecast period 61
7.2.2 PROFIBUS 61
7.2.2.1 PROFIBUS is one of the most widely recognized fieldbus standards worldwide 61
7.2.3 MODBUS 61
7.2.3.1 Ease of use and superior reliability to drive industrial communication market for Modbus protocol 61
7.2.4 CC- LINK 62
7.2.4.1 Rising adoption of CC-Link in process industries to boost market for CC-Link communication protocol during forecast period 62
7.2.5 DEVICENET 62
7.2.5.1 DeviceNet is low-cost and robust industrial communication protocol compared to other traditional communication protocols 62
7.2.6 CANOPEN 62
7.2.6.1 Growing use in motion control application to fuel growth of market for CANopen during forecast period 62
7.2.7 INTERBUS 63
7.2.7.1 Significant penetration INTERBUS is attributed to availability of INTERBUS capable hardware offered by tier 1 and tier 2 industrial communication equipment vendors 63
7.2.8 OTHERS 63
7.3 INDUSTRIAL ETHERNET 63
7.3.1 PROFINET 67
7.3.1.1 PROFINET emerged as promising alternative to Ethernet/IP communication protocol 67
7.3.2 ETHERNET/IP 67
7.3.2.1 Wide use of Ethernet/IP in range of industries, including hybrid and process industries, makes it one of the prominent industrial protocols 67
7.3.3 ETHERCAT 67
7.3.3.1 Ability to connect entire automation systems in real time expected to drive market for EtherCAT during the forecast period 67
7.3.4 MODBUS – TCP 68
7.3.4.1 APAC to lead modbus – TCP market by 2023 68
7.3.5 POWERLINK 68
7.3.5.1 Automotive, chemicals, and mining industries to be leading contributors to market for Powerlink industrial communication protocol by 2023 68
7.3.6 SERCOS III 68
7.3.6.1 Higher transfer and operation speed of SERCOS III compared to many other Ethernet communication protocols is expected to drive the growth during forecast period. 68
7.3.7 CC–LINK IE 69
7.3.7.1 Growing demand in process automation applications to boost market for CC-Link IE during forecast period 69
7.4 WIRELESS 69
7.4.1 WLAN 73
7.4.1.1 Ease of installation and use, and improved reliability of WLAN systems in industrial application likely to drive WLAN industrial communication market during forecast period 73
7.4.2 ISA100.11A 73
7.4.2.1 Superior multicasting and efficient routing due to reduced routing table size contribute to growth of market for ISA100.11A communication protocol 73
7.4.3 CELLULAR 73
7.4.3.1 Rising demand for extended network coverage and capacity to accommodate large number of connected devices in industries to boost cellular industrial communication market during forecast period 73
7.4.4 WHART 74
7.4.4.1 WHART protocol is ideal solution for diagnostic information in digital form while retaining compatibility with legacy automation architectures 74
7.4.5 ZIGBEE 74
7.4.5.1 Advantages such as easy network expansion, low power consumption, good coverage area, and reliable network structure encourage use of ZigBee for large networks 74
7.4.6 OTHERS 74
8 INDUSTRIAL COMMUNICATION MARKET, BY END-USE APPLICATION 75
8.1 INTRODUCTION 76
8.2 AUTOMOTIVE AND TRANSPORTATION 78
8.2.1 INTENSE COMPETITION IN AUTOMOTIVE INDUSTRY LEADING TO SURGE IN DEMAND FOR EFFICIENT INDUSTRIAL COMMUNICATION TO STREAMLINE PRODUCTION PROCESSES 78
8.3 ELECTRICAL AND ELECTRONICS 79
8.3.1 SHIFT FROM FIELDBUS TO ETHERNET COMMUNICATION PROTOCOL TO PROPEL GROWTH OF MARKET FOR ELECTRICAL AND ELECTRONICS INDUSTRIES 79
8.4 AEROSPACE & DEFENSE 80
8.4.1 ESSENTIALITY OF COST OPTIMIZATION THROUGH AUTOMATION AND INDUSTRY 4.0 IN AEROSPACE AND DEFENSE INDUSTRY TO RAISE DEMAND FOR INDUSTRIAL COMMUNICATION TECHNOLOGIES 80
8.5 OIL & GAS 81
8.5.1 INCREASING DEMAND FOR AUTOMATION IN OIL & GAS INDUSTRY TO PROPEL ADOPTION OF ADVANCED INDUSTRIAL COMMUNICATION TECHNOLOGIES 81
8.6 CHEMICALS AND FERTILIZERS 83
8.6.1 GROWING NEED FOR REMOTE DIAGNOSTICS OF SENSOR NODES AND ACTUATORS BOOSTS ADOPTION OF ADVANCED INDUSTRIAL COMMUNICATION TECHNOLOGIES IN CHEMICALS INDUSTRY 83
8.7 FOOD & BEVERAGES 84
8.7.1 HIGH DEMAND FOR AUTOMATION TECHNOLOGY DRIVEN BY STRINGENT REGULATIONS RELATED TO FOOD QUALITY AND SAFETY FUELS INDUSTRIAL COMMUNICATION MARKET FOR FOOD AND BEVERAGES INDUSTRY 84
8.8 PHARMACEUTICAL 85
8.8.1 INTENSE COMPETITION, HIGHER PRODUCTION REQUIREMENTS, AND STRICT REGULATORY ENVIRONMENT, ETC., TO PROMOTE ADOPTION OF TECHNOLOGICALLY ADVANCED COMMUNICATION SYSTEMS IN PHARMACEUTICAL INDUSTRY 85
8.9 ENERGY & POWER 87
8.9.1 RISING IMPLEMENTATION OF INDUSTRY 4.0 ACTS AS CATALYST FOR GROWTH OF INDUSTRIAL COMMUNICATION MARKET FOR ENERGY AND POWER INDUSTRY 87
8.10 MINING 88
8.10.1 INDUSTRIAL COMMUNICATION AND AUTOMATION TECHNOLOGIES GAINING TRACTION IN MINING INDUSTRY FOR IMPROVING SAFETY, INCREASING PRODUCTION, AND REDUCING OPERATING COSTS 88
8.11 ENGINEERING/FABRICATION 89
8.11.1 ETHERNET COMMUNICATION PROTOCOL LIKELY TO SURPASS SHARE OF FIELDBUS INDUSTRIAL COMMUNICATION IN MARKET FOR ENGINEERING/FABRICATION APPLICATIONS BY 2023 89
8.12 WATER AND WASTEWATER 90
8.12.1 GROWING ADOPTION OF NEW TECHNOLOGIES, SUCH AS IOT AND INDUSTRY 4.0, IN WATER AND WASTEWATER OPERATIONS DRIVING MORE FOCUS TOWARD USE OF SECURE AND RELIABLE INDUSTRIAL COMMUNICATION TECHNOLOGIES 90
8.13 OTHERS 92
9 GEOGRAPHIC ANALYSIS 93
9.1 INTRODUCTION 94
9.2 NORTH AMERICA 95
9.2.1 US 98
9.2.1.1 Strong government support have contributed to the large-scale adoption of industrial communication solutions in US 98
9.2.2 CANADA 99
9.2.2.1 Discrete industries have been the early adopters of advanced technology-based industrial communication protocols in Canada 99
9.2.3 MEXICO 100
9.2.3.1 Adoption of the automation technology across various industries such as chemicals and mining is driving the industrial communication market in Mexico 100
9.3 EUROPE 101
9.3.1 UK 105
9.3.1.1 Government initiatives towards IoT development in UK likely to drive the industrial communication market 105
9.3.2 GERMANY 106
9.3.2.1 Germany to account for the largest share of European industrial communication market by 2023 106
9.3.3 FRANCE 107
9.3.3.1 Growing automation in Aerospace & Defense industry to drive the growth of industrial communication market in France 107
9.3.4 SPAIN 108
9.3.4.1 Leading stake of automotive industry in Spain to accelerate the growth of industrial communication market 108
9.3.5 ITALY 109
9.3.5.1 Need of connectivity across industries in Italy to drive the growth for industrial communication market 109
9.3.6 REST OF EUROPE 110
9.4 APAC 110
9.4.1 CHINA 113
9.4.1.1 China to witness the highest growth rate for industrial communication market during the forecast period 113
9.4.2 JAPAN 114
9.4.2.1 Japan to be among the top two countries for industrial communication market in APAC 114
9.4.3 INDIA 115
9.4.3.1 Supportive government plans to drive the demand for industrial communication market in India 115
9.4.4 SOUTH KOREA 116
9.4.4.1 Large install base for automotive and electronics industries in South Korea to drive the growth for industrial communication market 116
9.4.5 REST OF APAC 117
9.5 REST OF THE WORLD 118
9.5.1 MIDDLE EAST 119
9.5.1.1 Growing adoption for automation in Oil & Gas industry to drive the growth for industrial communication market 119
9.5.2 SOUTH AMERICA 120
9.5.2.1 Mining sector is a major growth segment for industrial communication market in South America, with the increased mining investment, exploration, and development 120
9.5.3 AFRICA 121
9.5.3.1 Development of industrial sector is expected to drive the growth of the industrial communication market in Africa 121
10 COMPETITIVE LANDSCAPE 122
10.1 OVERVIEW 122
10.2 MARKET RANKING ANALYSIS 123
10.3 COMPETITIVE SCENARIO 125
10.3.1 PRODUCT LAUNCHES/DEVELOPMENTS 125
10.3.2 PARTNERSHIPS/COLLABORATIONS 126
10.3.3 EXPANSIONS 127
11 COMPANY PROFILES 128
(Business overview, Products offered, Recent developments, SWOT analysis & MnM View)*
11.1 KEY PLAYERS 128
11.1.1 SICK AG 128
11.1.2 OMRON 131
11.1.3 SCHNEIDER ELECTRIC 136
11.1.4 BELDEN INC. 140
11.1.5 MOXA INC. 144
11.1.6 SIEMENS 148
11.1.7 ROCKWELL AUTOMATION 152
11.1.8 ABB 157
11.1.9 GE GRID SOLUTIONS, LLC 160
11.1.10 CISCO SYSTEMS 162
11.1.11 ADVANTECH 165
11.1.12 HMS INDUSTRIAL NETWORKS 168
11.1.13 IFM ELECTRONIC GMBH 171
11.1.14 ERICSSON 173
11.1.15 MITSUBISHI ELECTRIC GROUP 175
11.2 OTHER COMPANIES 178
11.2.1 HONEYWELL 178
11.2.2 B&R AUTOMATION 179
11.2.3 AAEON 179
11.2.4 HANS TURCK GMBH & CO. KG 180
11.2.5 BOSCH REXROTH AG 180
*Details on Business overview, Products offered, Recent developments, SWOT analysis & MnM View might not be captured in case of unlisted companies.
12 APPENDIX 181
12.1 INSIGHTS OF INDUSTRY EXPERTS 181
12.2 DISCUSSION GUIDE 182
12.3 KNOWLEDGE STORE: MARKETSANDMARKETS’ SUBSCRIPTION PORTAL 186
12.4 AVAILABLE CUSTOMIZATIONS 188
12.5 RELATED REPORTS 188
12.6 AUTHOR DETAILS 189
【レポート販売概要】
■ タイトル:産業用通信の世界市場予測(~2023年)■ 英文:Industrial Communication Market by Offering (Components, Software, and Services), Communication Protocol (Fieldbus, Industrial Ethernet, and Wireless), End-Use Application (Automotive, Oil & Gas, Food & Beverages) and Geography - Global Forecast to 2023
■ 発行日:2018年11月27日
■ 調査会社:MarketsandMarkets
■ 商品コード:SE-4645
■ 調査対象地域:グローバル
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