세계의 사이버 물리 시스템 시장 규모, 점유율, 업계 분석 보고서 : 유형별, 보안별, 컴포넌트별, 최종 용도별, 지역별, 전망과 예측(2025-2032년)
Global Cyber-physical Systems Market Size, Share & Industry Analysis Report By Type (Closed-Loop and Open-Loop), By Security, By Component (Hardware, Software, and Services), By End Use, By Regional Outlook and Forecast, 2025 - 2032
상품코드:1768268
리서치사:KBV Research
발행일:2025년 06월
페이지 정보:영문 456 Pages
라이선스 & 가격 (부가세 별도)
한글목차
세계의 사이버 물리 시스템 시장 규모는 예측 기간 중에 14.7%의 연평균 복합 성장률(CAGR)로 성장하여 2032년까지 3,678억 4,000만 달러에 이를 것으로 예상되고 있습니다.
KBV Cardinal matrix의 분석에 따르면, Siemens AG는 사이버 물리 시스템 시장의 선구자이며, General Electric Company, Honeywell International Inc. 2023년 10월, 지멘스 AG는 Tenable과의 파트너십을 확장하여 Tenable OT Security를 Omnivise OT Security 서비스에 통합하여 Tenable OT Security를 통합했습니다. 이를 통해 자산 감지, 침입 감지, 이상 징후 감지, 취약점 관리를 통해 에너지 분야 사이버 물리 시스템의 사이버 보안을 강화했습니다.
코로나19의 영향 분석
코로나19 팬데믹은 사이버물리시스템(CPS) 시장에 큰 악영향을 끼쳤으며, 특히 세계 봉쇄와 경제 혼란의 초기 단계에서 CPS를 적극적으로 도입한 제조 공장, 물류 시설, 건설 현장은 장기적인 가동 중단과 가동률 감소에 직면했습니다. 직면했습니다. 그 결과 새로운 CPS 인프라의 도입 및 운영이 지연되거나 전면 중단되어 시장 모멘텀에 심각한 영향을 미쳤습니다. 그 결과 많은 CPS 프로젝트가 예정된 기한을 맞추지 못하거나 사업 계획을 재검토해야 했습니다. 이처럼 코로나19 사태는 시장에 부정적인 영향을 미쳤습니다.
시장 성장 요인
인더스트리 4.0의 진화는 사이버 물리 시스템의 성장을 크게 촉진해 왔습니다. 4차 산업혁명이라고도 불리는 인더스트리 4.0은 IoT, AI, 로봇공학, 데이터 분석과 같은 첨단 디지털 기술을 기존 제조 공정에 통합하여 스마트하고 상호 연결된 공장을 구현하는 것을 목표로 하고 있습니다. 사이버 물리 시스템은 이러한 변화의 토대이며, 물리적 기계, 센서, 장치를 디지털 제어 시스템 및 소프트웨어에 연결하는 가교 역할을 합니다. 전반적으로, 인더스트리 4.0 프레임워크에 사이버 물리 시스템을 통합하면 생산성 향상, 품질 향상, 제조 민첩성 및 지속가능성 등 강력한 가치 제안을 제공합니다.
또한, 전 세계적으로 인프라 시스템의 복잡성과 중요성이 증가함에 따라 자동화, 모니터링 및 제어를 강화하는 사이버 물리 시스템(CPS)에 대한 수요가 증가하고 있습니다. 에너지 그리드, 교통망, 상수도, 의료 시스템과 같은 중요한 인프라 부문은 안전, 신뢰성 및 복원력을 보장하기 위해 강력한 실시간 관리가 필요하며, CPS는 물리적 구성 요소와 컴퓨팅 인텔리전스를 통합하여 자동화된 의사결정 및 동적 상황 판단을 위한 고유한 기능을 제공합니다. 자동화 된 의사결정과 역동적인 상황에 대한 신속한 대응을 가능하게 합니다. 기술의 발전과 인프라 현대화 프로젝트 증가로 CPS는 복잡하고 상호 의존적인 물리적 시스템 관리에 필수적인 요소로 자리 잡고 있습니다.
시장 성장 억제요인
그러나 사이버 물리 시스템 시장의 성장을 가장 저해하는 요인 중 하나는 물리적 시스템과 디지털 시스템의 통합에 따른 보안 및 프라이버시 위험 증가입니다. 사이버 물리 시스템은 설계상 중요 인프라, 산업 장비, 교통망, 의료 장비, 기타 민감한 시스템을 디지털 제어 장치 및 통신 네트워크에 연결합니다. 따라서 업계가 사이버 물리 환경의 고유한 요구 사항을 충족하는 성숙하고 확장 가능한 보안 솔루션을 개발하기 전까지는 이러한 우려는 시장 성장을 계속 억제할 것으로 보입니다.
컴포넌트 전망
사이버 물리 시스템 시장은 구성 요소에 따라 하드웨어, 소프트웨어 및 서비스로 분류됩니다. 서비스 부문은 2024년 사이버 물리 시스템 시장에서 매출 점유율의 25%를 차지할 것으로 예측됩니다. 다양한 산업 분야의 조직이 CPS를 업무에 통합함에 따라 컨설팅, 시스템 통합, 커스터마이징, 교육, 기술 지원, 유지보수 등의 서비스에 대한 수요가 증가하고 있습니다. 이러한 서비스는 하드웨어와 소프트웨어 구성 요소의 원활한 작동을 보장하고 CPS 도입으로 기대되는 성과를 달성하기 위해 필수적입니다.
유형 전망
사이버 물리 시스템 시장은 유형에 따라 개방형 루프형과 폐쇄형 루프형으로 분류됩니다. 개방형 루프형 부문은 2024년 사이버 물리 시스템 시장에서 32%의 매출 점유율을 차지할 것으로 예측됩니다. 이러한 성장은 오픈 루프 시스템의 단순성, 비용 효율성, 그리고 시스템 성능에 대한 피드백이 필수적이지 않은 다양한 산업 및 상업용 용도에서 폭넓게 사용되고 있기 때문으로 분석됩니다. 오픈 루프 CPS는 실시간 데이터 피드백 없이 사전 정의된 지침에 따라 작동하기 때문에 일관된 입력이 예측 가능한 결과로 이어지는 프로세스에 적합합니다.
보안 전망
보안 측면에서 사이버 물리 시스템 시장은 임베디드 보안, 산업 제어 시스템(ICS) 보안, 로봇 보안, 사물인터넷(IoT) 보안, 기타로 분류됩니다. 사물인터넷(IoT) 보안 부문은 2024년 사이버 물리 시스템 시장에서 32%의 매출 점유율을 차지할 것으로 예상되며, CPS 생태계의 근간을 이루는 커넥티드 디바이스가 폭발적으로 증가함에 따라 IoT 노드의 보안이 중요한 관심사로 떠오르고 있습니다. IoT 보안은 취약한 인증, 안전하지 않은 통신, 기기 스푸핑과 같은 취약점을 해결합니다.
최종 용도 전망
최종 용도에 따라 시장은 항공우주 및 방위, 자동차, 에너지 및 유틸리티, 헬스케어, 제조, 소비자 가전, 기타로 분류됩니다. 자동차 분야는 2024년 사이버 물리 시스템(CPS) 시장에서 17%의 매출 점유율을 차지할 것으로 예측됩니다. 이는 CPS가 현대 차량 플랫폼에 빠르게 통합되고 있기 때문입니다. CPS는 첨단운전자보조시스템(ADAS), 자율주행, 인포테인먼트, 실시간 진단과 같은 핵심 자동차 기술의 기반이 되고 있으며, CPS를 통해 차량이 주변 상황을 인식하고, 데이터를 처리하며, 인간의 개입을 최소화하면서 역동적인 주행 상황에 대응할 수 있게 해줍니다. 대응할 수 있게 됩니다.
지역 전망
지역별로 사이버 물리 시스템 시장은 북미, 유럽, 아시아태평양, 라틴아메리카, 중동 및 아프리카로 분석됩니다. 북미는 2024년 사이버 물리 시스템 시장에서 34%의 매출 점유율을 차지할 것으로 예측됩니다. 이러한 우위는 첨단 기술 인프라의 강력한 존재, 자동화에 대한 막대한 투자, 항공우주, 방위, 의료, 제조 등의 산업에서 CPS를 광범위하게 도입하고 있기 때문입니다. 특히 미국은 스마트 팩토리, 자율주행차, 디지털 헬스케어 시스템에 CPS를 도입하는 데 앞장서고 있습니다. 또한, 정부의 지원과 연구 자금 지원으로 인해 지역 전체에서 CPS 기술의 혁신과 도입이 더욱 가속화되고 있습니다.
목차
제1장 시장 범위와 조사 방법
시장의 정의
목적
시장 범위
세분화
조사 방법
제2장 시장 개관
주요 하이라이트
제3장 시장 개요
서론
개요
시장 구성과 시나리오
시장에 영향을 미치는 주요 요인
시장 성장 촉진요인
시장 성장 억제요인
시장 기회
시장이 해결해야 할 과제
제4장 경쟁 분석 - 세계
KBV Cardinal Matrix
최근 업계 전체의 전략적 전개
파트너십/협업/계약
제품 발매와 제품 확대
인수와 합병
시장 점유율 분석, 2024년
주요 성공 전략
주요 전략
주요 전략적 움직임
Porter's Five Forces-사이버 물리 시스템 시장
제5장 사이버 물리 시스템 시장 밸류체인 분석
연구개발(R&D)
부품 제조
시스템 통합
접속성 및 네트워크
데이터 분석 및 제어 시스템
사이버 보안 및 컴플라이언스
도입, 유지보수 및 지원
피드백 및 지속적 개선
제6장 주요 고객 기준 - 사이버 물리 시스템 시장
보안 및 프라이버시
실시간 반응형
상호운용성과 확장성
신뢰성과 가동 시간
통합과 도입 용이함
비용 효율과 ROI
커스터마이즈성과 유연성
컴플라이언스와 인증
벤더 지원과 에코시스템
사용자 인터페이스와 경험
제7장 세계의 사이버 물리 시스템 시장 : 유형별
세계의 클로즈드 루프 시장 : 지역별
세계의 오픈 루프 시장 : 지역별
제8장 세계의 사이버 물리 시스템 시장 : 보안별
세계의 사물인터넷(IoT) 보안 시장 : 지역별
세계의 임베디드 보안 시장 : 지역별
세계의 산업 제어 시스템(ICS) 보안 시장 : 지역별
세계의 로봇 보안 시장 : 지역별
세계의 기타 증권 시장 : 지역별
제9장 세계의 사이버 물리 시스템 시장 : 컴포넌트별
세계의 하드웨어 시장 : 지역별
세계의 소프트웨어 시장 : 지역별
세계의 서비스 시장 : 지역별
제10장 세계의 사이버 물리 시스템 시장 : 최종 용도별
세계의 에너지 및 유틸리티 시장 : 지역별
세계의 항공우주 및 방위 시장 : 지역별
세계의 자동차 시장 : 지역별
세계의 제조 시장 : 지역별
세계의 소비자 일렉트로닉스 시장 : 지역별
세계의 헬스케어 시장 : 지역별
세계의 기타 최종 용도 시장 : 지역별
제11장 세계의 사이버 물리 시스템 시장 : 지역별
북미
북미의 사이버 물리 시스템 시장 : 국가별
미국
캐나다
멕시코
기타 북미
유럽
유럽의 사이버 물리 시스템 시장 : 국가별
독일
영국
프랑스
러시아
스페인
이탈리아
기타 유럽
아시아태평양
아시아태평양의 사이버 물리 시스템 시장 : 국가별
중국
일본
인도
한국
호주
말레이시아
기타 아시아태평양
라틴아메리카, 중동 및 아프리카
라틴아메리카, 중동 및 아프리카의 사이버 물리 시스템 시장 : 국가별
브라질
아르헨티나
아랍에미리트(UAE)
사우디아라비아
남아프리카공화국
나이지리아
기타 라틴아메리카, 중동 및 아프리카
제12장 기업 개요
Siemens AG
Honeywell International, Inc
Rockwell Automation, Inc
ABB Ltd
Schneider Electric SE
Continental AG
General Electric Company
Hitachi Ltd
Robert Bosch GmbH
Emerson Electric Co
제13장 사이버 물리 시스템 시장을 위한 성공 필수 조건
LSH
영문 목차
영문목차
The Global Cyber-physical Systems Market size is expected to reach $367.84 billion by 2032, rising at a market growth of 14.7% CAGR during the forecast period.
These systems enable real-time data analysis, predictive maintenance, and load balancing, which are essential for improving energy efficiency and operational reliability. As utilities increasingly transition to renewable energy sources and decentralized power generation, the need for CPS to manage and optimize complex infrastructure has grown substantially. Additionally, rising concerns over cybersecurity and grid stability have further driven investments in advanced cyber-physical solutions in this sector. Thus, the energy & utility segment procured 21% revenue share in the cyber-physical systems market in 2024. This dominance is largely attributed to the widespread adoption of smart grids, automated energy distribution networks, and intelligent monitoring systems that rely heavily on CPS technologies.
The major strategies followed by the market participants are Partnership as the key developmental strategy to keep pace with the changing demands of end users. For instance, In May, 2025, ABB and Red Hat expanded their collaboration to develop secure, modular process automation systems using open-source platforms. This integration enhances operational stability, cybersecurity, and incremental innovation, bridging IT and OT environments to support digital transformation and advanced industrial automation in process industries. Additionally, In October, 2024, Honeywell and Google Cloud partner to enhance industrial autonomous operations using AI agents. Integrating Honeywell Forge IoT data with Google's AI, they aim to boost productivity, reduce maintenance costs, and upskill workers, driving smarter, safer cyber-physical system management.
Based on the Analysis presented in the KBV Cardinal matrix; Siemens AG is the forerunners in the Cyber-physical Systems Market. Companies such as General Electric Company, Honeywell International Inc., and Schneider Electric SE are some of the key innovators in Cyber-physical Systems Market. In October, 2023, Siemens AG expanded its partnership with Tenable to integrate Tenable OT Security into its Omnivise OT Security offering, enhancing cybersecurity for energy sector cyber-physical systems through asset discovery, intrusion detection, anomaly detection, and vulnerability management.
COVID 19 Impact Analysis
The COVID-19 pandemic had a notably adverse impact on the cyber-physical systems market, particularly during the initial phases of global lockdowns and economic disruption. Manufacturing plants, logistics facilities, and construction sites-major adopters of CPS-faced prolonged shutdowns or operated at reduced capacities. As a result, the deployment and implementation of new CPS infrastructure were either delayed or canceled altogether, severely affecting market momentum. As a consequence, many CPS initiatives failed to meet their planned deadlines or had to be re-scoped entirely. Thus, the COVID-19 pandemic had a negative impact on the market.
Market Growth Factors
The evolution of Industry 4.0 has been a major catalyst for the growth of cyber-physical systems. Industry 4.0, often termed the fourth industrial revolution, revolves around the integration of advanced digital technologies such as IoT, AI, robotics, and data analytics with traditional manufacturing processes to create smart, interconnected factories. Cyber-physical systems are fundamental to this transformation, serving as the bridge that connects physical machinery, sensors, and devices with digital control systems and software. Overall, the integration of cyber-physical systems within Industry 4.0 frameworks offers a powerful value proposition: enhanced productivity, improved quality, agility in manufacturing, and sustainability.
Additionally, the increasing complexity and criticality of infrastructure systems worldwide are driving the demand for cyber-physical systems to enable greater automation, monitoring, and control. Critical infrastructure sectors - including energy grids, transportation networks, water supply, and healthcare systems - require robust, real-time management to ensure safety, reliability, and resilience. CPS offer a unique ability to integrate physical components with computational intelligence, enabling automated decision-making and immediate responses to dynamic conditions. The combination of technological advances and increasing infrastructure modernization projects ensures that CPS remain indispensable for managing complex, interdependent physical systems.
Market Restraining Factors
However, one of the most significant restraints on the growth of the cyber-physical systems market is the mounting challenge of security and privacy risks inherent in the integration of physical and digital systems. Cyber-physical systems by design connect critical infrastructure, industrial equipment, transportation networks, healthcare devices, and other sensitive systems to digital control units and communication networks. Thus, until the industry develops mature, scalable security solutions that address the unique requirements of cyber-physical environments, these concerns will continue to restrain market growth.
Component Outlook
Based on component, the cyber-physical systems market is characterized into hardware, software, and services. The services segment held 25% revenue share in the cyber-physical systems market in 2024. As organizations across various sectors integrate CPS into their operations, there is a growing demand for services such as consulting, system integration, customization, training, technical support, and maintenance. These services are essential for ensuring the seamless functioning of both hardware and software components and for achieving desired outcomes from CPS deployments.
Type Outlook
On the basis of type, the cyber-physical systems market is classified into open-loop and closed-loop. The open-loop segment acquired 32% revenue share in the cyber-physical systems market in 2024. This growth can be attributed to the simplicity, cost-effectiveness, and widespread use of open-loop systems in various industrial and commercial applications where feedback is not essential for system performance. Open-loop CPS operate based on predefined instructions without real-time data feedback, making them ideal for processes where consistent input leads to predictable outcomes.
Security Outlook
By security, the cyber-physical systems market is divided into embedded security, industrial control systems (ICS) security, robotic security, internet of things (IoT) security, and others. The internet of things (IoT) security segment procured 32% revenue share in the cyber-physical systems market in 2024. With the explosion of connected devices forming the backbone of CPS ecosystems, the security of IoT nodes has become a crucial concern. IoT security addresses vulnerabilities such as weak authentication, unsecured communications, and device spoofing.
End Use Outlook
Based on end use, the market is segmented into aerospace & defence, automotive, energy & utility, healthcare, manufacturing, consumer electronics, and others. The automotive segment attained 17% revenue share in the cyber-physical systems market in 2024. This is driven by the rapid integration of CPS into modern vehicle platforms. These systems form the backbone of critical automotive technologies such as advanced driver-assistance systems (ADAS), autonomous driving, infotainment, and real-time diagnostics. CPS allows vehicles to perceive their surroundings, process data, and respond to dynamic driving conditions with minimal human input.
Regional Outlook
Region-wise, the cyber-physical systems market is analyzed across North America, Europe, Asia Pacific, and LAMEA. The North America segment recorded 34% revenue share in the cyber-physical systems market in 2024. This dominance is driven by the strong presence of advanced technology infrastructure, significant investments in automation, and the widespread adoption of CPS in industries such as aerospace, defense, healthcare, and manufacturing. The United States, in particular, has been at the forefront of implementing CPS in smart factories, autonomous vehicles, and digital healthcare systems. Moreover, supportive government initiatives and research funding have further accelerated innovation and deployment of CPS technologies across the region.
Recent Strategies Deployed in the Market
May-2025: ABB launched a Battery Energy Storage Systems-as-a-Service model, offering hardware, software, and lifecycle support with no upfront cost. Partnering with GridBeyond, it uses AI-driven optimization for energy efficiency, shifting costs from capital to operational expenditures, supporting sustainable energy management.
Apr-2025: Schneider Electric launched EcoConsult for Data Centers, offering consulting to optimize infrastructure efficiency, maximize uptime, and extend asset life. Leveraging a global expert network, the service focuses on power and cooling system modernization to boost reliability and reduce operational costs.
Apr-2025: Rockwell Automation launched a 24/7 Security Monitoring and Response service for operational technology, offering real-time thrseat detection, expert incident response, and continuous monitoring to enhance industrial cybersecurity, address talent shortages, and strengthen resilience in cyber-physical system environments.
Jan-2025: General Electric Company and Accenture partner on grid modernization, leveraging the GridOS platform to integrate IT and OT, enabling scalable, flexible digital grid orchestration. This collaboration supports the transition to renewable energy through advanced cyber-physical systems and ecosystem-driven solutions.
Jan-2025: Siemens AG launched the "Siemens for Startups" program to empower engineering and manufacturing startups with access to Siemens Xcelerator tools. In collaboration with AWS, the initiative accelerates innovation and scaling of cyber-physical systems through cloud, AI, and industrial software support.
Oct-2024: Siemens AG acquired Altair Engineering to enhance its industrial software and AI capabilities. This acquisition strengthens Siemens' digital twin and simulation portfolio, accelerating innovation in cyber-physical systems through AI, high-performance computing, and comprehensive design-to-operation integration.
List of Key Companies Profiled
Siemens AG
Honeywell International Inc.
Rockwell Automation, Inc.
ABB Ltd.
Schneider Electric SE
Continental AG
General Electric Company
Hitachi, Ltd.
Robert Bosch GmbH
Emerson Electric Co.
Global Cyber-physical Systems Market Report Segmentation
By Type
Closed-Loop
Open-Loop
By Security
Internet of Things (IoT) Security
Embedded Security
Industrial Control Systems (ICS) Security
Robotic Security
Other Security
By Component
Hardware
Software
Services
By End Use
Energy and Utility
Aerospace & Defence
Automotive
Manufacturing
Consumer Electronics
Healthcare
Other End Use
By Geography
North America
US
Canada
Mexico
Rest of North America
Europe
Germany
UK
France
Russia
Spain
Italy
Rest of Europe
Asia Pacific
China
Japan
India
South Korea
Australia
Malaysia
Rest of Asia Pacific
LAMEA
Brazil
Argentina
UAE
Saudi Arabia
South Africa
Nigeria
Rest of LAMEA
Table of Contents
Chapter 1. Market Scope & Methodology
1.1 Market Definition
1.2 Objectives
1.3 Market Scope
1.4 Segmentation
1.4.1 Global Cyber-physical Systems Market, by Type
1.4.2 Global Cyber-physical Systems Market, by Security
1.4.3 Global Cyber-physical Systems Market, by Component
1.4.4 Global Cyber-physical Systems Market, by End Use
1.4.5 Global Cyber-physical Systems Market, by Geography
1.5 Methodology for the research
Chapter 2. Market at a Glance
2.1 Key Highlights
Chapter 3. Market Overview
3.1 Introduction
3.1.1 Overview
3.1.1.1 Market Composition and Scenario
3.2 Key Factors Impacting the Market
3.2.1 Market Drivers
3.2.2 Market Restraints
3.2.3 Market Opportunities
3.2.4 Market Challenges
Chapter 4. Competition Analysis - Global
4.1 KBV Cardinal Matrix
4.2 Recent Industry Wide Strategic Developments
4.2.1 Partnerships, Collaborations and Agreements
4.2.2 Product Launches and Product Expansions
4.2.3 Acquisition and Mergers
4.3 Market Share Analysis, 2024
4.4 Top Winning Strategies
4.4.1 Key Leading Strategies: Percentage Distribution (2021-2025)
4.4.2 Key Strategic Move: (Partnerships, Collaborations & Agreements: 2021, Feb - 2025, May) Leading Players
4.5 Portor's Five Forces - Cyber-physical Systems Market
Chapter 5. Value Chain Analysis of Cyber-physical Systems Market
5.1 Research and Development (R&D)
5.2 Component Manufacturing
5.3 System Integration
5.4 Connectivity and Networking
5.5 Data Analytics and Control Systems
5.6 Cybersecurity and Compliance
5.7 Deployment, Maintenance, and Support
5.8 Feedback and Continuous Improvement
Chapter 6. Key Customer Criteria - Cyber-physical Systems Market
6.1 Security and Privacy
6.2 Real-Time Responsiveness
6.3 Interoperability and Scalability
6.4 Reliability and Uptime
6.5 Ease of Integration and Deployment
6.6 Cost-Effectiveness and ROI
6.7 Customizability and Flexibility
6.8 Compliance and Certification
6.9 Vendor Support and Ecosystem
6.1 User Interface and Experience
Chapter 7. Global Cyber-physical Systems Market by Type
7.1 Global Closed-Loop Market by Region
7.2 Global Open-Loop Market by Region
Chapter 8. Global Cyber-physical Systems Market by Security
8.1 Global Internet of Things (IoT) Security Market by Region
8.2 Global Embedded Security Market by Region
8.3 Global Industrial Control Systems (ICS) Security Market by Region
8.4 Global Robotic Security Market by Region
8.5 Global Other Security Market by Region
Chapter 9. Global Cyber-physical Systems Market by Component
9.1 Global Hardware Market by Region
9.2 Global Software Market by Region
9.3 Global Services Market by Region
Chapter 10. Global Cyber-physical Systems Market by End Use
10.1 Global Energy and Utility Market by Region
10.2 Global Aerospace & Defence Market by Region
10.3 Global Automotive Market by Region
10.4 Global Manufacturing Market by Region
10.5 Global Consumer Electronics Market by Region
10.6 Global Healthcare Market by Region
10.7 Global Other End Use Market by Region
Chapter 11. Global Cyber-physical Systems Market by Region
11.1 North America Cyber-physical Systems Market
11.1.1 North America Cyber-physical Systems Market by Type
11.1.1.1 North America Closed-Loop Market by Region
11.1.1.2 North America Open-Loop Market by Region
11.1.2 North America Cyber-physical Systems Market by Security
11.1.2.1 North America Internet of Things (IoT) Security Market by Country
11.1.2.2 North America Embedded Security Market by Country
11.1.2.3 North America Industrial Control Systems (ICS) Security Market by Country
11.1.2.4 North America Robotic Security Market by Country
11.1.2.5 North America Other Security Market by Country
11.1.3 North America Cyber-physical Systems Market by Component
11.1.3.1 North America Hardware Market by Country
11.1.3.2 North America Software Market by Country
11.1.3.3 North America Services Market by Country
11.1.4 North America Cyber-physical Systems Market by End Use
11.1.4.1 North America Energy and Utility Market by Country
11.1.4.2 North America Aerospace & Defence Market by Country
11.1.4.3 North America Automotive Market by Country
11.1.4.4 North America Manufacturing Market by Country
11.1.4.5 North America Consumer Electronics Market by Country
11.1.4.6 North America Healthcare Market by Country
11.1.4.7 North America Other End Use Market by Country
11.1.5 North America Cyber-physical Systems Market by Country
11.1.5.1 US Cyber-physical Systems Market
11.1.5.1.1 US Cyber-physical Systems Market by Type
11.1.5.1.2 US Cyber-physical Systems Market by Security
11.1.5.1.3 US Cyber-physical Systems Market by Component
11.1.5.1.4 US Cyber-physical Systems Market by End Use
11.1.5.2 Canada Cyber-physical Systems Market
11.1.5.2.1 Canada Cyber-physical Systems Market by Type
11.1.5.2.2 Canada Cyber-physical Systems Market by Security
11.1.5.2.3 Canada Cyber-physical Systems Market by Component
11.1.5.2.4 Canada Cyber-physical Systems Market by End Use
11.1.5.3 Mexico Cyber-physical Systems Market
11.1.5.3.1 Mexico Cyber-physical Systems Market by Type
11.1.5.3.2 Mexico Cyber-physical Systems Market by Security
11.1.5.3.3 Mexico Cyber-physical Systems Market by Component
11.1.5.3.4 Mexico Cyber-physical Systems Market by End Use
11.1.5.4 Rest of North America Cyber-physical Systems Market
11.1.5.4.1 Rest of North America Cyber-physical Systems Market by Type
11.1.5.4.2 Rest of North America Cyber-physical Systems Market by Security
11.1.5.4.3 Rest of North America Cyber-physical Systems Market by Component
11.1.5.4.4 Rest of North America Cyber-physical Systems Market by End Use
11.2 Europe Cyber-physical Systems Market
11.2.1 Europe Cyber-physical Systems Market by Type
11.2.1.1 Europe Closed-Loop Market by Country
11.2.1.2 Europe Open-Loop Market by Country
11.2.2 Europe Cyber-physical Systems Market by Security
11.2.2.1 Europe Internet of Things (IoT) Security Market by Country
11.2.2.2 Europe Embedded Security Market by Country
11.2.2.3 Europe Industrial Control Systems (ICS) Security Market by Country
11.2.2.4 Europe Robotic Security Market by Country
11.2.2.5 Europe Other Security Market by Country
11.2.3 Europe Cyber-physical Systems Market by Component
11.2.3.1 Europe Hardware Market by Country
11.2.3.2 Europe Software Market by Country
11.2.3.3 Europe Services Market by Country
11.2.4 Europe Cyber-physical Systems Market by End Use
11.2.4.1 Europe Energy and Utility Market by Country
11.2.4.2 Europe Aerospace & Defence Market by Country
11.2.4.3 Europe Automotive Market by Country
11.2.4.4 Europe Manufacturing Market by Country
11.2.4.5 Europe Consumer Electronics Market by Country
11.2.4.6 Europe Healthcare Market by Country
11.2.4.7 Europe Other End Use Market by Country
11.2.5 Europe Cyber-physical Systems Market by Country
11.2.5.1 Germany Cyber-physical Systems Market
11.2.5.1.1 Germany Cyber-physical Systems Market by Type
11.2.5.1.2 Germany Cyber-physical Systems Market by Security
11.2.5.1.3 Germany Cyber-physical Systems Market by Component
11.2.5.1.4 Germany Cyber-physical Systems Market by End Use
11.2.5.2 UK Cyber-physical Systems Market
11.2.5.2.1 UK Cyber-physical Systems Market by Type
11.2.5.2.2 UK Cyber-physical Systems Market by Security
11.2.5.2.3 UK Cyber-physical Systems Market by Component
11.2.5.2.4 UK Cyber-physical Systems Market by End Use
11.2.5.3 France Cyber-physical Systems Market
11.2.5.3.1 France Cyber-physical Systems Market by Type
11.2.5.3.2 France Cyber-physical Systems Market by Security
11.2.5.3.3 France Cyber-physical Systems Market by Component
11.2.5.3.4 France Cyber-physical Systems Market by End Use
11.2.5.4 Russia Cyber-physical Systems Market
11.2.5.4.1 Russia Cyber-physical Systems Market by Type
11.2.5.4.2 Russia Cyber-physical Systems Market by Security
11.2.5.4.3 Russia Cyber-physical Systems Market by Component
11.2.5.4.4 Russia Cyber-physical Systems Market by End Use
11.2.5.5 Spain Cyber-physical Systems Market
11.2.5.5.1 Spain Cyber-physical Systems Market by Type
11.2.5.5.2 Spain Cyber-physical Systems Market by Security
11.2.5.5.3 Spain Cyber-physical Systems Market by Component
11.2.5.5.4 Spain Cyber-physical Systems Market by End Use
11.2.5.6 Italy Cyber-physical Systems Market
11.2.5.6.1 Italy Cyber-physical Systems Market by Type
11.2.5.6.2 Italy Cyber-physical Systems Market by Security
11.2.5.6.3 Italy Cyber-physical Systems Market by Component
11.2.5.6.4 Italy Cyber-physical Systems Market by End Use
11.2.5.7 Rest of Europe Cyber-physical Systems Market
11.2.5.7.1 Rest of Europe Cyber-physical Systems Market by Type
11.2.5.7.2 Rest of Europe Cyber-physical Systems Market by Security
11.2.5.7.3 Rest of Europe Cyber-physical Systems Market by Component
11.2.5.7.4 Rest of Europe Cyber-physical Systems Market by End Use
11.3 Asia Pacific Cyber-physical Systems Market
11.3.1 Asia Pacific Cyber-physical Systems Market by Type
11.3.1.1 Asia Pacific Closed-Loop Market by Country
11.3.1.2 Asia Pacific Open-Loop Market by Country
11.3.2 Asia Pacific Cyber-physical Systems Market by Security
11.3.2.1 Asia Pacific Internet of Things (IoT) Security Market by Country
11.3.2.2 Asia Pacific Embedded Security Market by Country
11.3.2.3 Asia Pacific Industrial Control Systems (ICS) Security Market by Country
11.3.2.4 Asia Pacific Robotic Security Market by Country
11.3.2.5 Asia Pacific Other Security Market by Country
11.3.3 Asia Pacific Cyber-physical Systems Market by Component
11.3.3.1 Asia Pacific Hardware Market by Country
11.3.3.2 Asia Pacific Software Market by Country
11.3.3.3 Asia Pacific Services Market by Country
11.3.4 Asia Pacific Cyber-physical Systems Market by End Use
11.3.4.1 Asia Pacific Energy and Utility Market by Country
11.3.4.2 Asia Pacific Aerospace & Defence Market by Country
11.3.4.3 Asia Pacific Automotive Market by Country
11.3.4.4 Asia Pacific Manufacturing Market by Country
11.3.4.5 Asia Pacific Consumer Electronics Market by Country
11.3.4.6 Asia Pacific Healthcare Market by Country
11.3.4.7 Asia Pacific Other End Use Market by Country
11.3.5 Asia Pacific Cyber-physical Systems Market by Country
11.3.5.1 China Cyber-physical Systems Market
11.3.5.1.1 China Cyber-physical Systems Market by Type
11.3.5.1.2 China Cyber-physical Systems Market by Security
11.3.5.1.3 China Cyber-physical Systems Market by Component
11.3.5.1.4 China Cyber-physical Systems Market by End Use
11.3.5.2 Japan Cyber-physical Systems Market
11.3.5.2.1 Japan Cyber-physical Systems Market by Type
11.3.5.2.2 Japan Cyber-physical Systems Market by Security
11.3.5.2.3 Japan Cyber-physical Systems Market by Component
11.3.5.2.4 Japan Cyber-physical Systems Market by End Use
11.3.5.3 India Cyber-physical Systems Market
11.3.5.3.1 India Cyber-physical Systems Market by Type
11.3.5.3.2 India Cyber-physical Systems Market by Security
11.3.5.3.3 India Cyber-physical Systems Market by Component
11.3.5.3.4 India Cyber-physical Systems Market by End Use
11.3.5.4 South Korea Cyber-physical Systems Market
11.3.5.4.1 South Korea Cyber-physical Systems Market by Type
11.3.5.4.2 South Korea Cyber-physical Systems Market by Security
11.3.5.4.3 South Korea Cyber-physical Systems Market by Component
11.3.5.4.4 South Korea Cyber-physical Systems Market by End Use
11.3.5.5 Australia Cyber-physical Systems Market
11.3.5.5.1 Australia Cyber-physical Systems Market by Type
11.3.5.5.2 Australia Cyber-physical Systems Market by Security
11.3.5.5.3 Australia Cyber-physical Systems Market by Component
11.3.5.5.4 Australia Cyber-physical Systems Market by End Use
11.3.5.6 Malaysia Cyber-physical Systems Market
11.3.5.6.1 Malaysia Cyber-physical Systems Market by Type
11.3.5.6.2 Malaysia Cyber-physical Systems Market by Security
11.3.5.6.3 Malaysia Cyber-physical Systems Market by Component
11.3.5.6.4 Malaysia Cyber-physical Systems Market by End Use
11.3.5.7 Rest of Asia Pacific Cyber-physical Systems Market
11.3.5.7.1 Rest of Asia Pacific Cyber-physical Systems Market by Type
11.3.5.7.2 Rest of Asia Pacific Cyber-physical Systems Market by Security
11.3.5.7.3 Rest of Asia Pacific Cyber-physical Systems Market by Component
11.3.5.7.4 Rest of Asia Pacific Cyber-physical Systems Market by End Use
11.4 LAMEA Cyber-physical Systems Market
11.4.1 LAMEA Cyber-physical Systems Market by Type
11.4.1.1 LAMEA Closed-Loop Market by Country
11.4.1.2 LAMEA Open-Loop Market by Country
11.4.2 LAMEA Cyber-physical Systems Market by Security
11.4.2.1 LAMEA Internet of Things (IoT) Security Market by Country
11.4.2.2 LAMEA Embedded Security Market by Country
11.4.2.3 LAMEA Industrial Control Systems (ICS) Security Market by Country
11.4.2.4 LAMEA Robotic Security Market by Country
11.4.2.5 LAMEA Other Security Market by Country
11.4.3 LAMEA Cyber-physical Systems Market by Component
11.4.3.1 LAMEA Hardware Market by Country
11.4.3.2 LAMEA Software Market by Country
11.4.3.3 LAMEA Services Market by Country
11.4.4 LAMEA Cyber-physical Systems Market by End Use
11.4.4.1 LAMEA Energy and Utility Market by Country
11.4.4.2 LAMEA Aerospace & Defence Market by Country
11.4.4.3 LAMEA Automotive Market by Country
11.4.4.4 LAMEA Manufacturing Market by Country
11.4.4.5 LAMEA Consumer Electronics Market by Country
11.4.4.6 LAMEA Healthcare Market by Country
11.4.4.7 LAMEA Other End Use Market by Country
11.4.5 LAMEA Cyber-physical Systems Market by Country
11.4.5.1 Brazil Cyber-physical Systems Market
11.4.5.1.1 Brazil Cyber-physical Systems Market by Type
11.4.5.1.2 Brazil Cyber-physical Systems Market by Security
11.4.5.1.3 Brazil Cyber-physical Systems Market by Component
11.4.5.1.4 Brazil Cyber-physical Systems Market by End Use
11.4.5.2 Argentina Cyber-physical Systems Market
11.4.5.2.1 Argentina Cyber-physical Systems Market by Type
11.4.5.2.2 Argentina Cyber-physical Systems Market by Security
11.4.5.2.3 Argentina Cyber-physical Systems Market by Component
11.4.5.2.4 Argentina Cyber-physical Systems Market by End Use
11.4.5.3 UAE Cyber-physical Systems Market
11.4.5.3.1 UAE Cyber-physical Systems Market by Type
11.4.5.3.2 UAE Cyber-physical Systems Market by Security
11.4.5.3.3 UAE Cyber-physical Systems Market by Component
11.4.5.3.4 UAE Cyber-physical Systems Market by End Use
11.4.5.4 Saudi Arabia Cyber-physical Systems Market
11.4.5.4.1 Saudi Arabia Cyber-physical Systems Market by Type
11.4.5.4.2 Saudi Arabia Cyber-physical Systems Market by Security
11.4.5.4.3 Saudi Arabia Cyber-physical Systems Market by Component
11.4.5.4.4 Saudi Arabia Cyber-physical Systems Market by End Use
11.4.5.5 South Africa Cyber-physical Systems Market
11.4.5.5.1 South Africa Cyber-physical Systems Market by Type
11.4.5.5.2 South Africa Cyber-physical Systems Market by Security
11.4.5.5.3 South Africa Cyber-physical Systems Market by Component
11.4.5.5.4 South Africa Cyber-physical Systems Market by End Use
11.4.5.6 Nigeria Cyber-physical Systems Market
11.4.5.6.1 Nigeria Cyber-physical Systems Market by Type
11.4.5.6.2 Nigeria Cyber-physical Systems Market by Security
11.4.5.6.3 Nigeria Cyber-physical Systems Market by Component
11.4.5.6.4 Nigeria Cyber-physical Systems Market by End Use
11.4.5.7 Rest of LAMEA Cyber-physical Systems Market
11.4.5.7.1 Rest of LAMEA Cyber-physical Systems Market by Type
11.4.5.7.2 Rest of LAMEA Cyber-physical Systems Market by Security
11.4.5.7.3 Rest of LAMEA Cyber-physical Systems Market by Component
11.4.5.7.4 Rest of LAMEA Cyber-physical Systems Market by End Use
Chapter 12. Company Profiles
12.1 Siemens AG
12.1.1 Company Overview
12.1.2 Financial Analysis
12.1.3 Segmental and Regional Analysis
12.1.4 Research & Development Expense
12.1.5 Recent strategies and developments:
12.1.5.1 Partnerships, Collaborations, and Agreements:
12.1.5.2 Product Launches and Product Expansions:
12.1.5.3 Acquisition and Mergers:
12.1.6 SWOT Analysis
12.2 Honeywell International, Inc.
12.2.1 Company Overview
12.2.2 Financial Analysis
12.2.3 Segmental and Regional Analysis
12.2.4 Research & Development Expenses
12.2.5 Recent strategies and developments:
12.2.5.1 Partnerships, Collaborations, and Agreements:
12.2.6 SWOT Analysis
12.3 Rockwell Automation, Inc.
12.3.1 Company Overview
12.3.2 Financial Analysis
12.3.3 Segmental and Regional Analysis
12.3.4 Research & Development Expenses
12.3.5 Recent strategies and developments:
12.3.5.1 Partnerships, Collaborations, and Agreements:
12.3.5.2 Product Launches and Product Expansions:
12.3.6 SWOT Analysis
12.4 ABB Ltd.
12.4.1 Company Overview
12.4.2 Financial Analysis
12.4.3 Segmental and Regional Analysis
12.4.4 Research & Development Expenses
12.4.5 Recent strategies and developments:
12.4.5.1 Partnerships, Collaborations, and Agreements:
12.4.5.2 Product Launches and Product Expansions:
12.4.6 SWOT Analysis
12.5 Schneider Electric SE
12.5.1 Company Overview
12.5.2 Financial Analysis
12.5.3 Segmental and Regional Analysis
12.5.4 Research & Development Expense
12.5.5 Recent strategies and developments:
12.5.5.1 Partnerships, Collaborations, and Agreements:
12.5.5.2 Product Launches and Product Expansions:
12.5.6 SWOT Analysis
12.6 Continental AG
12.6.1 Company Overview
12.6.2 Financial Analysis
12.6.3 Segmental and Regional Analysis
12.6.4 Research & Development Expense
12.6.5 Recent strategies and developments:
12.6.5.1 Partnerships, Collaborations, and Agreements:
12.6.6 SWOT Analysis
12.7 General Electric Company
12.7.1 Company Overview
12.7.2 Financial Analysis
12.7.3 Segmental and Regional Analysis
12.7.4 Research & Development Expense
12.7.5 Recent strategies and developments:
12.7.5.1 Partnerships, Collaborations, and Agreements:
12.7.5.2 Product Launches and Product Expansions:
12.7.6 SWOT Analysis
12.8 Hitachi Ltd.
12.8.1 Company Overview
12.8.2 Financial Analysis
12.8.3 Segmental and Regional Analysis
12.8.4 Research & Development Expenses
12.8.5 SWOT Analysis
12.9 Robert Bosch GmbH
12.9.1 Company Overview
12.9.2 Financial Analysis
12.9.3 Segmental and Regional Analysis
12.9.4 Research & Development Expenses
12.9.5 SWOT Analysis
12.10. Emerson Electric Co.
12.10.1 Company Overview
12.10.2 Financial Analysis
12.10.3 Segmental and Regional Analysis
12.10.4 Research & Development Expense
12.10.5 SWOT Analysis
Chapter 13. Winning Imperatives of Cyber-physical Systems Market