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      • Managed Services
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  • Home
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    • Managed Services
    • Sustainable Energy
    • Fiber Optic Deployment
    • Telecom Infrastructures
    • IT Infrastructures
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Sustainable Energy for Telecom & Commercial Building

Energy Conservation and Renewable Energy Integration (Decarbonization)

Energy Conservation and Renewable Energy Integration (Decarbonization)

Energy Conservation and Renewable Energy Integration (Decarbonization)

 

 Base stations, data centers and Equipment Optimization


        Cooling System Optimization:

  • Free Cooling/Air Economizers: Utilizing outside air to cool facilities when ambient temperatures are low enough, significantly reducing reliance on compressors.
  • Adiabatic Cooling: Using water evaporation to cool the air, which is much more energy-ef

 

 Base stations, data centers and Equipment Optimization


        Cooling System Optimization:

  • Free Cooling/Air Economizers: Utilizing outside air to cool facilities when ambient temperatures are low enough, significantly reducing reliance on compressors.
  • Adiabatic Cooling: Using water evaporation to cool the air, which is much more energy-efficient than traditional refrigeration.3
  • Containment Systems: Implementing hot aisle/cold aisle containment in data centers to prevent the mixing of hot and cold air, increasing the efficiency of cooling units.
  • Raising Temperature Thresholds: Safely increasing the operational temperature set points in data centers and equipment shelters, as modern equipment can reliably operate at higher temperatures (reducing cooling load).


           Optimizing the performance and use of backup power:

  • Intelligent Battery Management: Utilizing advanced Battery Energy Storage Systems (BESS) and management software to optimize charging/discharging cycles, reducing strain on the grid and maximizing battery life.
  • Generator Minimization: Implementing BESS as the primary backup power source, significantly reducing the runtime and reliance on diesel generators, saving fuel and reducing maintenance.
  • Grid Peak Shaving: Using on-site battery storage to draw power from the grid during off-peak, cheaper times, and discharge battery power during high-cost peak times, reducing utility expenses.
  • Energy Financial education: Understanding Energy, Water and Sewer Bills; Quick fix Energy Conservation 100% ROI  


Solar Photovoltaic (PV) Solutions: 


  • Design and installation of rooftop, ground-mounted, or pole-mounted  Solar Photovoltaic arrays for powering remote cell towers and smaller switching centers.
  • Integration of PV systems with existing power infrastructure and battery storage.


Green Energy Procurement: 

  • Advising on power purchase agreements (PPAs) for sourcing certified renewable energy directly from the utility grid or independent power producers.

Energy Storage and Resilience (Uptime)

Energy Conservation and Renewable Energy Integration (Decarbonization)

Energy Conservation and Renewable Energy Integration (Decarbonization)

 

  • Battery Energy Storage Systems (BESS):
  • Designing and sizing advanced lithium-ion, flow, or hydrogen fuel cell storage solutions to manage intermittency of renewables and provide long-duration backup.
  • Implementation of Intelligent Energy Management Systems (IEMS) to manage charging/discharging cycles for optimal longevity and cost.
  • Microgri

 

  • Battery Energy Storage Systems (BESS):
  • Designing and sizing advanced lithium-ion, flow, or hydrogen fuel cell storage solutions to manage intermittency of renewables and provide long-duration backup.
  • Implementation of Intelligent Energy Management Systems (IEMS) to manage charging/discharging cycles for optimal longevity and cost.
  • Microgrid Design: Designing autonomous microgrid solutions for larger regional switching centers or small data centers, enabling the site to disconnect from the main grid during outages and operate independently using renewables and storage.
  • Diesel Generator Reduction/Elimination: Engineering solutions to minimize the reliance on fossil fuel generators, using BESS as the primary backup source, thereby reducing emissions and fuel costs.

Energy Audit for Efficiency & Optimization

Energy Conservation and Renewable Energy Integration (Decarbonization)

Energy Audit for Efficiency & Optimization

 

  • Energy Audits and Benchmarking: Comprehensive analysis of existing site energy consumption (PUE-Power Usage Effectiveness- analysis for data centers, power consumption for remote sites) to identify major inefficiencies.
  • Radio Access Network (RAN) Optimization: Implementing software and hardware solutions (e.g., cell sleeping, adaptive pow

 

  • Energy Audits and Benchmarking: Comprehensive analysis of existing site energy consumption (PUE-Power Usage Effectiveness- analysis for data centers, power consumption for remote sites) to identify major inefficiencies.
  • Radio Access Network (RAN) Optimization: Implementing software and hardware solutions (e.g., cell sleeping, adaptive power control, high-efficiency radio units) to reduce the power draw of the network base stations during low-traffic periods.
  • High-Efficiency Equipment Upgrade: Replacing older rectifiers, batteries, and transmission equipment with high-efficiency, DC-powered alternatives to minimize conversion losses.

Monitoring, Control, and Analytics

Energy Conservation and Renewable Energy Integration (Decarbonization)

Energy Audit for Efficiency & Optimization

 

 

  • Remote Monitoring and Control: Implementing IoT sensors and platforms to gather real-time data on power consumption, renewable output, battery health, and environmental parameters across the entire network footprint.
  • Predictive Maintenance: Using AI and machine learning to analyze energy consumption trends and battery performance data to

 

 

  • Remote Monitoring and Control: Implementing IoT sensors and platforms to gather real-time data on power consumption, renewable output, battery health, and environmental parameters across the entire network footprint.
  • Predictive Maintenance: Using AI and machine learning to analyze energy consumption trends and battery performance data to predict component failures and schedule maintenance proactively, extending asset life and avoiding costly downtime.
  • Compliance Reporting: Generating comprehensive reports on carbon emissions reduction, energy use intensity (EUI), and adherence to sustainable development goals (SDGs) for stakeholders and regulatory bodies.

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