Imax Power Charging Station Capacity Expansion Solution

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Imax Power — Delivering Energy Solutions for a Better Tomorrow

Module Products

Imax Power energy storage converters (PCS/Bidirectional DCDC/MPPT/STS/BMS/EMS).

System Products

Imax Power integrated energy storage systems.

Solution Value

  • Rapid Deployment for Capacity Expansion: Utilize energy storage for power – assistance, eliminating the need for large – scale grid expansion.
  • Cost Reduction in Connection: Minimize investments in transformers and power distribution facilities.
  • Enhanced Charging Efficiency: High – power output meets the fast – charging requirements of multiple vehicles simultaneously.
  • Intelligent Energy Management: Achieve dynamic management of peak – valley electricity price differences and loads.
  • Grid Pressure Relief: Perform peak shaving and valley filling to stabilize the operation of regional power distribution systems.
  • Support for Photovoltaic – Storage Integration: Combine with photovoltaic systems to establish green and low – carbon charging stations.
  • Improved Operational Profitability: Optimize the energy utilization structure to enhance overall economic performance.

Technical Dimensions

Intelligent Scheduling and Optimization Layer (Energy Management and Scheduling)

  • Intelligent Scheduling System: Intelligently dispatch charging piles based on real – time data and load forecasts to optimize the allocation of power loads and charging resources.
  • Load Management and Demand Response: Accurately predict charging demands, dynamically adjust the usage strategies of charging piles, prevent excessive grid loads, and improve overall operational efficiency.
  • Cloud – based Management and Remote Monitoring: Realize remote monitoring of charging stations, fault detection, and operational data analysis through cloud platforms to ensure efficient operation of charging stations.

Power System and Grid – connection Control Layer (Charging Station Power Scheduling and Safety)

  • High – efficiency Power Conversion Technology: Adopt advanced power conversion technologies to improve the energy transmission efficiency of charging stations and reduce energy losses during charging.
  • Bidirectional Charging Technology: Support bidirectional energy flow between electric vehicles and the grid, enabling both charging and discharging functions. This provides auxiliary services to the grid and enhances the flexibility and stability of charging stations.
  • Power Factor and Voltage Regulation: Precisely adjust the power factor and voltage of charging piles to ensure electrical quality and grid safety during the charging process.
  • Grid – connection and Off – grid Switching Technology: Support the switching of charging stations between grid – connected and off – grid states to ensure emergency response capabilities during grid fluctuations or outages.

Safety and Protection Layer (System Protection and Risk Management)

  • Battery Overcharge and Over – discharge Protection: Monitor battery status in real – time to prevent overcharging and over – discharging, ensuring the safe operation of charging station systems and extending battery service life.
  • Short – circuit and Overload Protection: Quickly respond to abnormal conditions such as short – circuits and overloads at charging stations, automatically cut off the power supply, and avoid electrical accidents.
  • Over – temperature Protection and Heat Dissipation Technology: Monitor charging equipment for over – temperature conditions and use efficient heat dissipation designs to prevent overheating and improve system reliability and safety.

Basic Design and Architecture Layer (Charging Station Layout and Equipment Integration)

  • Modular Charging Pile Design: Use modular designs to enable flexible expansion of charging stations according to demand, simplifying maintenance and upgrade processes.
  • High – efficiency Power Distribution System: Optimize the power distribution system design of charging stations to improve energy distribution efficiency and reduce energy consumption.
  • Standardized Interfaces and Compatibility: Adopt international standard interfaces and communication protocols to ensure compatibility of charging piles with different vehicle models, enhancing system interoperability and usability.

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