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Smart Energy Management Platform for Electric Vehicle Charging Infrastructure
  1. case
  2. Smart Energy Management Platform for Electric Vehicle Charging Infrastructure

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Smart Energy Management Platform for Electric Vehicle Charging Infrastructure

supercharge.io
Energy & natural resources
Environmental Services
Automotive

Challenges in Electrifying Public Transport Infrastructure

Bus operators face significant challenges transitioning to electric fleets due to grid capacity limitations, lack of integrated charging infrastructure, and complex energy management requirements. Existing systems struggle to balance grid constraints with charging demands while maintaining operational efficiency and cost-effectiveness.

About the Client

Leading UK battery storage operator and provider of electric vehicle charging solutions for public transport

Strategic Objectives for Smart Charging Solution

  • Develop intelligent charging orchestration system for EV bus fleets
  • Optimize energy usage through hybrid grid-battery charging strategies
  • Enable seamless integration with multiple charging hardware platforms
  • Provide real-time monitoring and analytics for fleet operations
  • Support scalable deployment across multiple depot locations

Core System Capabilities

  • Dynamic load balancing between grid and stationary battery storage
  • OCPP-compliant charging station integration framework
  • Real-time energy usage monitoring and reporting
  • Predictive charging scheduling based on route data
  • Driver performance analytics and feedback system
  • Centralized depot energy management dashboard

Technology Stack Requirements

AWS cloud infrastructure
Node.js microservices architecture
Custom edge computing hardware
Real-time data processing pipelines
Containerized deployment environment

System Integration Requirements

  • Open Charge Point Protocol (OCPP) 1.6/2.0 implementations
  • Battery management systems (BMS)
  • Grid capacity monitoring APIs
  • Vehicle telematics systems
  • National Grid frequency response systems

Operational Requirements

  • 24/7 high-availability architecture
  • Sub-second response times for critical operations
  • ISO 27001-compliant security framework
  • Auto-scaling capabilities for fleet growth
  • Offline operation with data synchronization

Expected Environmental and Operational Impact

Enable charging of 2000+ electric buses with optimized grid usage, reduce CO2 emissions by 135,000+ tons annually, improve depot energy efficiency by 40%, and support national grid stability through intelligent battery orchestration.

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