Chapter 1. Global Short-term Alert System for Power System Operations Market – Scope & Methodology
1.1 Market Segmentation
1.2 Scope, Assumptions & Limitations
1.3 Research Methodology
1.4 Primary Sources
1.5 Secondary Sources
Chapter 2. Global Short-term Alert System for Power System Operations Market– Executive Summary
2.1 Market Size & Forecast – (2022 – 2030) ($M/$Bn)
2.2 Key Trends & Insights
2.2.1 Demand Side
2.2.2 Supply Side
2.3 Attractive Investment Propositions
2.4 COVID-19 Impact Analysis
Chapter 3. Global Short-term Alert System for Power System Operations Market– Competition Scenario
3.1 Market Share Analysis & Company Benchmarking
3.2 Competitive Strategy & Development Scenario
3.3 Competitive Pricing Analysis
3.4 Supplier-Distributor Analysis
Chapter 4. Global Short-term Alert System for Power System Operations MarketEntry Scenario
4.1 Regulatory Scenario
4.2 Case Studies – Key Start-ups
4.3 Customer Analysis
4.4 PESTLE Analysis
4.5 Porters Five Force Model
4.5.1 Bargaining Power of Suppliers
4.5.2 Bargaining Powers of Customers
4.5.3 Threat of New Entrants
4.5.4 Rivalry among Existing Players
4.5.5 Threat of Substitutes
Chapter 5. Global Short-term Alert System for Power System Operations Market– Landscape
5.1 Value Chain Analysis – Key Stakeholders Impact Analysis
5.2 Market Drivers
5.3 Market Restraints/Challenges
5.4 Market Opportunities
Chapter 6. Global Short-term Alert System for Power System Operations Market– By Technology Integration
6.1 Introduction/Key Findings
6.2 SCADA (Supervisory Control And Data Acquisition)
6.3 EMS (Energy Management Systems)
6.4 DMS (Distribution Management Systems)
6.5 ADMS (Advanced Distribution Management Systems)
6.6 DERMS (Distributed Energy Resource Management Systems)
6.7 Others
6.8 Y-O-Y Growth trend Analysis By Technology Integration
6.9 Absolute $ Opportunity Analysis By Technology Integration, 2023-2030
Chapter 7. Global Short-term Alert System for Power System Operations Market– By Alert Type
7.1 Introduction/Key Findings
7.2 Voltage or Current Exceeding Thresholds
7.3 Power Demand Exceeding Supply
7.4 Grid Instabilities
7.5 Equipment Failures
7.6 Cybersecurity Threats
7.7 Extreme Weather Conditions
7.8 Others
7.9 Y-O-Y Growth trend Analysis By Alert Type
7.10 Absolute $ Opportunity Analysis By Alert Type, 2023-2030
Chapter 8. Global Short-term Alert System for Power System Operations Market– By Extreme Weather Adaptability
8.1 Introduction/Key Findings
8.2 Heatwaves
8.3 Cold Snaps
8.4 Hurricanes
8.5 Floods
8.6 Droughts
8.7 Lightning storms
8.8 Others
8.9 Y-O-Y Growth trend Analysis By Extreme Weather Adaptability
8.10 Absolute $ Opportunity Analysis By Extreme Weather Adaptability, 2023-2030
Chapter 9. Global Short-term Alert System for Power System Operations Market– By Component
9.1 Introduction/Key Findings
9.2 Hardware
9.3 Sensors
9.4 Intelligent Electronic Services
9.5 Others
9.6 Software
9.7 Services
9.8 Intelligent Electronic Services
9.9 Others
9.10 Y-O-Y Growth trend Analysis By Component
9.11 Absolute $ Opportunity Analysis By Component, 2023-2030
Chapter 10. Global Short-term Alert System for Power System Operations Market– By End-User
10.1 Introduction/Key Findings
10.2 Independent Power Producers
10.3 Grid Operators
10.4 Energy Companies
10.5 Commercial Entities
10.6 Residential Users
10.7 Y-O-Y Growth trend Analysis By End-User
10.8 Absolute $ Opportunity Analysis By End-User, 2023-2030
Chapter 11. Global Short-term Alert System for Power System Operations Market– By Deployment Model
11.1 Introduction/Key Findings
11.2 On-Premise
11.3 Cloud-Based
11.4 Y-O-Y Growth trend Analysis By Deployment Model
11.5 Absolute $ Opportunity Analysis By Deployment Model, 2023-2030
Chapter 12. Global Short-term Alert System for Power System Operations Market, By Geography – Market Size, Forecast, Trends & Insights
12.1 North America
12.1.1 By Country
12.1.1.1 U.S.A.
12.1.1.2 Canada
12.1.1.3 Mexico
12.1.2 By Technology Integration
12.1.2.1 By Alert Type
12.1.3 By Extreme Weather Adaptability
12.1.4 By End-User
12.1.5 By Clinical Trial Phase
12.1.6 Countries & Segments - Market Attractiveness Analysis
12.2 Europe
12.2.1 By Country
12.2.1.1 U.K
12.2.1.2 Germany
12.2.1.3 France
12.2.1.4 Italy
12.2.1.5 Spain
12.2.1.6 Rest of Europe
12.2.2 By Technology Integration
12.2.3 By Alert Type
12.2.4 By Extreme Weather Adaptability
12.2.5 By Component
12.2.6 By End-User
12.2.7 By Clinical Trial Phase
12.2.8 Countries & Segments - Market Attractiveness Analysis
12.3 Asia Pacific
12.3.1 By Country
12.3.1.1 China
12.3.1.2 Japan
12.3.1.3 South Korea
12.3.1.4 India
12.3.1.5 Australia & New Zealand
12.3.1.6 Rest of Asia-Pacific
12.3.2 By Technology Integration
12.3.3 By Alert Type
12.3.4 By Extreme Weather Adaptability
12.3.5 By Component
12.3.6 By End-User
12.3.7 By Clinical Trial Phase
12.3.8 Countries & Segments - Market Attractiveness Analysis
12.4 South America
12.4.1 By Country
12.4.1.1 Brazil
12.4.1.2 Argentina
12.4.1.3 Colombia
12.4.1.4 Chile
12.4.1.5 Rest of South America
12.4.2 By Technology Integration
12.4.3 By Alert Type
12.4.4 By Extreme Weather Adaptability
12.4.5 By Component
12.4.6 By End-User
12.4.7 By Clinical Trial Phase
12.4.8 Countries & Segments - Market Attractiveness Analysis
12.5 Middle East & Africa
12.5.1 By Country
12.5.1.1 United Arab Emirates (UAE)
12.5.1.2 Saudi Arabia
12.5.1.3 Qatar
12.5.1.4 Israel
12.5.1.5 South Africa
12.5.1.6 Nigeria
12.5.1.7 Kenya
12.5.1.8 Egypt
12.5.1.9 Rest of MEA
12.5.2 By Technology Integration
12.5.3 By Alert Type
12.5.4 By Extreme Weather Adaptability
12.5.5 By Component
12.5.6 By End-User
12.5.7 By Clinical Trial Phase
12.5.8 Countries & Segments - Market Attractiveness Analysis
Chapter 13. Global Short-term Alert System for Power System Operations Market– Company Profiles – (Overview, Product Portfolio, Financials, Strategies & Developments)
13.1 Schneider Electric SE
13.2 Siemens AG
13.3 Rockwell Automation
13.4 Evergen
13.5 AutoGrid
13.6 Company 6
13.7 Company 7
13.8 Company 8
13.9 Company 9
13.10 Company 10
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