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Grid Connection Models

Grid-Connected Systems

These are standard systems that work interactively with the electrical grid:

On-grid Architecture: Grid connection equipment, bidirectional meter, protection relays Net Metering: Production-consumption balancing, sale of excess production

Self-Consumption Optimization

Aims to use the maximum level of produced energy within the facility:

Production-Consumption Matching: Shifting consumption to sunny hours, profile matching Load Management: Smart control systems, load prioritization, demand management

Energy Storage Integration

Battery Technologies

Battery technologies are the main component of storage solutions:

Lithium-ion Batteries: High energy density, 5000-10000 cycle life LFP Technology: Longer life, high safety, ideal for industrial applications Flow Batteries: Long life, scalable capacity, suitable for large-scale storage

Battery Energy Storage Systems (BESS)

Industrial-scale storage solutions:

System Components: Battery modules, power converters, battery management system Container Solutions: 100 kWh-2 MWh capacity, integrated cooling, modular design

Storage Advantages

Main benefits provided by energy storage:

Peak Load Management: Demand charge optimization, peak demand flattening Uninterrupted Energy: Protection against grid outages, feeding critical loads Self-Consumption: Night use of energy produced during the day, energy independence

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Frequently Asked Questions

First, the facility’s electricity consumption profile is analyzed. Hourly, daily, and monthly consumption data, peak demand values, and consumption times are examined. In the self-consumption model, the optimal capacity to meet daytime consumption is determined. The final system capacity is determined taking into account roof area constraints, structural bearing capacity, and budget factors.

Energy storage systems provide advantages in the following situations:

  • In facilities with peak energy tariffs and high demand charges
  • In production facilities where grid outages affect critical processes
  • In businesses with shift work schedules and high night consumption
  • In situations where the aim is to increase self-consumption rate and excess production sales are low

The payback period for industrial solar energy systems varies depending on location, system type, electricity tariffs, and financing conditions. In Turkey, self-consumption-focused rooftop SPP systems generally amortize themselves within 4-7 years. The rate of increase in electricity prices and YEKDEM incentives are factors that directly affect the payback period.

Conclusion

Solar energy systems for industrial facilities are an effective way to reduce energy costs and achieve sustainability goals. As Tanış A.Ş., we provide solar energy solutions that are specially designed for your needs, provide optimal performance, and offer maximum economic benefit.

You can benefit from our free site survey service to evaluate your facility’s solar energy potential. Our expert engineers will prepare a feasibility study specific to your business, showing how much you can reduce your energy costs and how you can achieve your sustainability goals.