| 1. | EXECUTIVE SUMMARY | 
| 1.1. | Executive Summary (1) | 
| 1.2. | Executive Summary (2) | 
| 1.3. | Overview of Charging Levels | 
| 1.4. | BEV Charging and the Grid | 
| 1.5. | Off-Grid EV Charging - Multiple Motivations | 
| 1.6. | Off-Grid Charging - Key Components | 
| 1.7. | Off-Grid vs Grid-Tied Charging | 
| 1.8. | Categorization of Off-Grid Solutions | 
| 1.9. | Generation Landscape - Off-grid Operation | 
| 1.10. | Definitions - Off-grid vs Mobile | 
| 1.11. | Generation Landscape - Power Production | 
| 1.12. | Comparison of Off-Grid Charging Technologies | 
| 1.13. | Off-Grid Charging Market Landscape - Technological Overview | 
| 1.14. | Hydrogen EV Generator - Has a Range of Power Outputs | 
| 1.15. | Long Term Outlook - Grid Improvement & Smart Charging | 
| 1.16. | Electric Mobility Sectors - Medium & Long Term Outlook | 
| 1.17. | Comparison Benchmarking - Installation Area vs Peak Power Output | 
| 1.18. | AWE, Solar, Hydrogen EV Charging Key Metrics | 
| 1.19. | Key EV Charging Segments | 
| 1.20. | Solar Canopy Uptake is Quickest, but Growth Set to Plateau | 
| 1.21. | Off-Grid Charging Market Dominated by Hydrogen in 2034 | 
| 1.22. | AWE Outlook Remains Niche and Small | 
| 2. | UTILITY GRIDS OVERVIEW | 
| 2.1. | Introduction | 
| 2.1.1. | Electrical Grid - Summary | 
| 2.1.2. | The Electrical Grid - Generation, Transmission & Distribution | 
| 2.1.3. | The Electrical Grid | 
| 2.1.4. | Aging Grid | 
| 2.1.5. | Electrification of Vehicles Presents a Challenge | 
| 2.1.6. | Grid Fragility Under MW Loads | 
| 2.1.7. | Investment in Grids Across US, China, Europe & OECD | 
| 2.1.8. | Lengthy Grid Construction Lead Times | 
| 2.1.9. | Grid Supply Chain | 
| 2.1.10. | High Voltage Transmission - AC or DC | 
| 2.1.11. | Utility Grid Transmission and Distribution Market Landscape | 
| 2.1.12. | Utility Grid Transformers Market Landscape | 
| 2.2. | Grid Regional Breakdown | 
| 2.2.1. | Regional Disparity in Utility Grids | 
| 2.2.2. | US Grid | 
| 2.2.3. | US Electricity Demand | 
| 2.2.4. | US Grid - Natural Disasters, Extreme Weather | 
| 2.2.5. | United Kingdom - The National grid | 
| 2.2.6. | South Africa - Insecure Power | 
| 2.2.7. | South Africa - AEVERSA | 
| 2.2.8. | China - Rapid Growth | 
| 2.2.9. | China - Decentralised Power Generation | 
| 2.2.10. | China - EV Electrical Usage | 
| 2.2.11. | China - Grid Outlook | 
| 2.2.12. | 120V vs 230V - An Emerging Issue for DCFC | 
| 2.2.13. | Solutions to Grid Challenges | 
| 2.2.14. | EV Realty - Maximising the Grid | 
| 2.2.15. | EPRI - Predicting Future Grid Requirements from Data | 
| 3. | SOLAR CANOPY CHARGING | 
| 3.1. | Solar Canopy Overview | 
| 3.1.1. | Solar Canopy Charging - Summary | 
| 3.1.2. | Solar Powered EV Charging | 
| 3.1.3. | Solar for Off-Grid Charging | 
| 3.1.4. | Photovoltaics and EV Charging | 
| 3.1.5. | Solar Charging for Different markets | 
| 3.1.6. | Urban Solar Charging | 
| 3.1.7. | Rural Charging Networks | 
| 3.1.8. | Solar Charger - Definitions | 
| 3.1.9. | Key Components and Areas of Differentiation | 
| 3.2. | Photovoltaic Cell | 
| 3.2.1. | Principles of Operation | 
| 3.2.2. | PV technologies | 
| 3.2.3. | 1st Generation Cells dominant | 
| 3.2.4. | Monocrystalline Si | 
| 3.2.5. | Polycrystalline Si | 
| 3.2.6. | Monocrystalline vs Polycrystalline | 
| 3.3. | PV Supply Chain | 
| 3.3.1. | PV Supply Chain | 
| 3.3.2. | Global Market for PV - China Leads | 
| 3.3.3. | Supply Chains | 
| 3.4. | PV Developments - Tracking, Inverters and Bifacials | 
| 3.4.1. | Angle of Misalignment and Power Loss | 
| 3.4.2. | Solar Tracking Methods | 
| 3.4.3. | Single Axis Trackers | 
| 3.4.4. | Dual-Axis Trackers | 
| 3.4.5. | Quantifying the Loss | 
| 3.4.6. | Bifacial Photovoltaics | 
| 3.4.7. | Bifacial Photovoltaics | 
| 3.4.8. | Albedo and Yield | 
| 3.4.9. | Inverters | 
| 3.4.10. | Key Types of Inverter | 
| 3.4.11. | Inverters - a Comparison | 
| 3.4.12. | Inverter Market Share | 
| 3.4.13. | Yotta Microinverter and Leaf | 
| 3.5. | Current Market Landscape | 
| 3.5.1. | Comparison of current solar canopies | 
| 3.5.2. | Beam Global | 
| 3.5.3. | Beam Global - EV ARC | 
| 3.5.4. | Beam Global - DC charging | 
| 3.5.5. | Beam Global - Not Limited to Solar | 
| 3.5.6. | Beam Global - Extensive Sales to US GOVT | 
| 3.5.7. | Beam Global - SWOT Analysis | 
| 3.5.8. | Paired Power - Bifacials & No Solar Tracker | 
| 3.5.9. | Yotta Energy - REV | 
| 3.5.10. | Aterno PowerPark - Non-Battery Solution | 
| 3.5.11. | COSTCO - Case Study | 
| 3.5.12. | NRMA - Solar Diesel Hybrid Solution? | 
| 3.5.13. | Off-Grid Electric Boat Charging | 
| 3.6. | Solar Canopy Analysis | 
| 3.6.1. | Solar Canopy - Cost Breakdown (1) | 
| 3.6.2. | Solar Canopy - Cost Breakdown (2) | 
| 3.6.3. | Solar Canopy - Cost Breakdown (3) | 
| 3.6.4. | Solar - Area Requirements | 
| 3.6.5. | Solar - Output and Area | 
| 3.6.6. | Solar Canopy Economics - Not Cost Competitive | 
| 3.6.7. | Electrify America - A Change in Strategy | 
| 3.6.8. | Tracking vs Bifacial - Efficiency Gains | 
| 3.6.9. | Solar Canopy Charging - Timeline | 
| 3.7. | Solar Beyond Canopies | 
| 3.7.1. | Red Sea Global - Large Scale Off-Grid Charging | 
| 3.8. | Solar Canopy Regional Uptake | 
| 3.8.1. | Global Solar Potential | 
| 3.8.2. | Global Solar Potential vs Uptake | 
| 3.8.3. | Solar Uptake in Europe | 
| 3.8.4. | China - 2023 Surge in Photovoltaics Installations | 
| 3.8.5. | China - Utility Scale vs Distributed Generation | 
| 3.8.6. | USA - Strong Solar Canopy Fleet sales | 
| 3.8.7. | Solar Canopy EV Charger Uptake - Sectors & Regions | 
| 3.8.8. | Uptake by Region - Solar | 
| 3.8.9. | Solar Canopies - Summary | 
| 4. | HYDROGEN FUEL CELL BEV CHARGING | 
| 4.1. | Hydrogen Introduction | 
| 4.1.1. | Hydrogen EV Charging - Summary | 
| 4.1.2. | Hydrogen Charging vs Fuel Cell Electric Vehicles | 
| 4.1.3. | Hydrogen Charging with Integrated Battery | 
| 4.1.4. | Hydrogen EV Charging - Key Qualities | 
| 4.2. | Hydrogen Economy Overview | 
| 4.2.1. | Hydrogen Economy - Production & Transport | 
| 4.2.2. | Hydrogen economy and its key components | 
| 4.2.3. | The Colors of Hydrogen | 
| 4.2.4. | The Colors of Hydrogen (2) | 
| 4.2.5. | State of the hydrogen industry | 
| 4.2.6. | Energy density of hydrogen | 
| 4.2.7. | Transporting Hydrogen | 
| 4.3. | Fuel - Emissions & Costs | 
| 4.3.1. | Hydrogen - Emissions & Costs | 
| 4.3.2. | Inefficiencies of RTE with H2 | 
| 4.3.3. | Fuel Densities | 
| 4.3.4. | Passenger Car CO2 Emissions: Hydrogen Charging, BEV & ICE Europe | 
| 4.3.5. | Passenger Car CO2 Emissions: Hydrogen Charging, BEV & ICE China | 
| 4.3.6. | CO2 Emission from Electricity Generation | 
| 4.3.7. | Cost of hydrogen at the pump (1/2) | 
| 4.3.8. | Cost of hydrogen at the pump (2/2) | 
| 4.3.9. | Hydrogen vs Grid Charging Costs | 
| 4.3.10. | Fuel Cost Comparison per kWh of Propulsion in Norway | 
| 4.3.11. | The Challenge: Green Hydrogen Cost Reduction | 
| 4.3.12. | Ammonia as a Carrier Fuel For H2 | 
| 4.4. | Fuel Cell Technologies Overview | 
| 4.4.1. | Introduction to fuel cells | 
| 4.4.2. | Comparison of fuel cell technologies | 
| 4.4.3. | Overview of fuel cell technologies | 
| 4.4.4. | Fuel Cell Choice - AFC and PEM lead | 
| 4.4.5. | Drivers for H2 use in EV Charging | 
| 4.4.6. | Fuel Cells For EV Charging - Two Implementations | 
| 4.5. | Hydrogen Generator Landscape | 
| 4.5.1. | Hydrogen Generator Market Players | 
| 4.5.2. | Hydrogen Fuel Cell Generators - Choice of Fuel Cell | 
| 4.5.3. | AFC Energy - Fuel Cell Technology for Temporary Power | 
| 4.5.4. | AFC Energy - Ammonia as a carrier fuel | 
| 4.5.5. | AFC Energy - Euston HS2 Site | 
| 4.5.6. | GeoPura - Strong Financial and Technical Backing | 
| 4.5.7. | GeoPura - EaaS | 
| 4.5.8. | GeoPura - The Hydrogen Power Unit | 
| 4.5.9. | GeoPura - Case Studies | 
| 4.5.10. | GenCell - Overview | 
| 4.5.11. | GenCell - Key Markets | 
| 4.5.12. | GenCell - Platinum Free Catalyst | 
| 4.5.13. | GenCell - Ammonia Cracking | 
| 4.5.14. | GenCell - EVOX Targets DC Charging and Energy Security | 
| 4.5.15. | GM Hydrotec PowerCube - Mobile DC Fast Charging | 
| 4.5.16. | Hitachi Energy - HyFlex Hydrogen Generator | 
| 4.6. | Hydrogen Charger Uptake | 
| 4.6.1. | Hydrogen EV Charger Uptake - Sectors & Regions | 
| 4.6.2. | Uptake by Sector - Hydrogen | 
| 4.6.3. | Uptake by Region - Hydrogen | 
| 4.6.4. | Hydrogen EV Chargers - Summary | 
| 5. | WIND POWERED CHARGING | 
| 5.1. | Wind Power Summary | 
| 5.1.1. | Wind Charging - Summary | 
| 5.1.2. | Wind Power - an Overview | 
| 5.2. | Turbines | 
| 5.2.1. | Wind Turbine Average Power Sizes | 
| 5.2.2. | Wind Turbines - Size and Capacity Increasing | 
| 5.2.3. | Wind Turbines - Downscaling Issues | 
| 5.2.4. | Electric Ship Wind Turbine Charging - Damen S7017 | 
| 5.2.5. | Wind Turbines for Fleet Charging, TSG Kempower - Case Study | 
| 5.3. | Airborne Wind Energy (AWE) | 
| 5.3.1. | Airborne Wind Energy - Failure of Makani | 
| 5.3.2. | Technological Landscape - Classifications of System | 
| 5.3.3. | Technological Landscape - Examples | 
| 5.3.4. | AWE Value Proposition - Faster & More Consistent Speeds | 
| 5.3.5. | AWE Technology Roadmap to Present Day | 
| 5.3.6. | Airborne Wind Energy - Methods | 
| 5.3.7. | Pumped Figure of 8 | 
| 5.3.8. | Volkswagen Explores AWE | 
| 5.3.9. | KitePower | 
| 5.3.10. | Issues to Address | 
| 5.3.11. | Airspace Concerns | 
| 5.3.12. | AWE - Outlook | 
| 5.3.13. | Outlook for Wind in Off-Grid EV Charging | 
| 6. | ALTERNATIVE ENERGY SOURCES | 
| 6.1.1. | Diesel, RNG, LNG | 
| 6.1.2. | Larson Electronics - Propane Charging | 
| 6.1.3. | L-Charge - Portable LNG Charger | 
| 6.1.4. | Microturbines - an Overview | 
| 6.1.5. | Capstone Engineering - EV Charging | 
| 6.1.6. | BioCharger - Wood Burning EV Charging | 
| 7. | TECHNOLOGY BENCHMARKING | 
| 7.1.1. | Technology Benchmarking Overview | 
| 7.1.2. | Comparison Benchmarking - Installation Area vs Peak Power Output | 
| 7.1.3. | Power Output - Hydrogen Emerges on Top | 
| 7.1.4. | Comparison Benchmarking - Price | 
| 7.1.5. | Price per kW - Hardware Comparison | 
| 7.1.6. | Cost - AWE is the Most Expensive Option Outright and per kW. | 
| 7.1.7. | Green Credentials - Hydrogen Depends on Fuel Source | 
| 7.1.8. | Intermittency - Solar is the Least Stable | 
| 7.1.9. | AWE, Solar, Hydrogen EV Benchmarking Summary | 
| 8. | MARKET FORECASTS | 
| 8.1. | Methodology Overview | 
| 8.1.1. | Forecast Methodology | 
| 8.1.2. | Forecast Assumptions | 
| 8.2. | Solar Canopy Charger Forecast | 
| 8.2.1. | Solar Canopy Chargers - Introduction | 
| 8.2.2. | Solar Canopy Forecasts - Public & Fleet | 
| 8.2.3. | Solar Canopy Forecasts - Public Installations | 
| 8.2.4. | Solar Canopy Forecasts - Fleet Installations | 
| 8.2.5. | Solar Canopy Forecasts - Installation Base | 
| 8.2.6. | Solar Canopy Forecast - Market Value | 
| 8.3. | Hydrogen EV Charger Forecast | 
| 8.3.1. | Hydrogen EV Charger Forecasts - Introduction | 
| 8.3.2. | Hydrogen EV Charger - Power Splits | 
| 8.3.3. | Hydrogen EV Charger - Charging Requirements | 
| 8.3.4. | Hydrogen EV Charger - Unit Deployment Forecasts | 
| 8.3.5. | Hydrogen EV Charger - Market Value Forecasts | 
| 8.3.6. | Hydrogen EV Charger - Sector Forecasts | 
| 8.3.7. | Hydrogen EV Charger - Regional Forecasts | 
| 8.3.8. | Hydrogen Demand - Construction | 
| 8.3.9. | Hydrogen EV Charger Forecast - Summary | 
| 8.4. | Off-Grid Charging Forecast | 
| 8.4.1. | Off-Grid Charging Outlook - $16 Billion Market within 10 years |