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SOLAR POWER GENERATING SYSTEM |
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Typical Site Conditions : |
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a. No Availability or Low Availability of EB Power
b. Heavy Dependence on DG
c. Ground Based Towers with ample Shadow Free Area.
d. Higher operational expenditures.
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Our Solution: SPGS |
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1. For Outdoor sites, Solar Solution coupled with DCPH will still reduce the operational expenditure.
2. For Indoor sites, Solar solution coupled with Inverter will further reduce the ACDG running hours or may possibly avoid usage of DG.
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SPGS is the technology based solution developed to achieve the maximum system performance by maximizing the solar power utilization through innovative logic economically. SPGS priority is to maximizes the utilization of solar energy from solar photovoltaic cells and reduce the DG running and dependency on Grid Power. It increases the energy output from each solar module in the string. This System utilizes proprietary algorithms to track the best combination of power sources at all conditions in solar power generation. |
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A typical Solution Configuration: |
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DC POWER HUB |
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Typical Site Scenario:
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a. Due to No/Low availability of EB Power, ACDG runs for more hours per day
b. ACDG for all Load conditions (low or high) runs at a constant Speed
c. Since BTS & Battery takes DC load, power conversion loss exists due to 220 V to 48 V AC to DC conversion.
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Our Optimized Solution: DC POWER HUB
With a DCPH and a Healthy Battery Bank the following Capex and Operational Expenditure advantage can be arrived. |
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1. DCPH generates DC current. Due to this, SMPS can be removed and AC to DC power conversion loss is avoided
2. DCPH senses the Load and Battery Charging Current and automatically optimizes it’s speed according to the Load conditions.
3. Due to this, the average Fuel consumption per hour will be reduced by 30 %.
4. Close to Typical Conditions, the Return on Investment may vary from 12 to 18 months
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A typical Solution Configuration: |
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