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Published byLily Carroll Modified over 8 years ago
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المــــركــز الوطنــــــي لبحــــــوث الطـــاقــــــة National Energy Research Center PV Systems – Applications and Components Eng. Laith Basha M.Sc Renewable Energy & Energy Efficiency Cairo- Egypt & Kassel- Germany Universities, 2012 B.Sc Electrical Engineering The University of Jordan, 2007 Laith.basha@rss.jo
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Types of PV Systems –Standalone “off-grid” –Grid connected “on-grid” PV Mounting Structures –Tilt angle effect –Azimuth angle effect 2 Outline
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3 Types of PV Systems Standalone “off-grid” Grid-connected “on-grid” Without storage With storage Hybrid Systems directly connected to the public grid connected to public grid via house grid Motors “e.g. pumps” DC Systems AC Systems with wind turbine with diesel generator with public grid backup Type Of PV systems
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4 PV Array DC Load DC/DC Power Conditioning Unit Off-grid / Without battery storage / Power-conditioned DC system Step up or Step down of DC voltage
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5 DC Submersible Water Pumping System PV ArrayDC/DC Pump Controller DC Submersible Pump Variable Voltage (Proportional to Solar Intensity) Off-grid / Without battery storage / Power-conditioned DC system
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6 PV Array AC Load DC/AC Power Conditioning Unit Off-grid / Without battery storage / Power-conditioned AC system
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7 AC Submersible Water Pumping System PV ArrayDC/AC Pump Controller AC Submersible Pump Variable Voltage & Frequency (Proportional to Solar Intensity) Off-grid / Without battery storage / Power-conditioned AC system
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8 PV Array DC Load Charge & Load Controller Battery Off-grid / With battery storage / DC system
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9 Solar Home Systems & DC Industrial Systems PV Array DC Load Battery Bank Charge & Load Controller Off-grid / With battery storage / DC system
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10 PV Array Charge Controller Battery DC/AC Inverter AC Load Off-grid / With battery storage / AC system
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11 Solar Home Systems & AC Industrial Applications PV Array AC Load Battery Bank Charge Controller DC/AC Inverter With fixed voltage & frequency Off-grid / With battery storage / AC system
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12 PV Array Charge Controller Battery DC/AC Inverter AC Load Other Source Power Conditioning Unit DC-Coupled Off-grid / With battery storage / Hybrid System
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13 Hybrid Solar/Wind PV Array AC Load Battery Bank Charge Controller DC/AC Inverter Wind Turbine Wind Controller DC-Coupled Off-grid / With battery storage / Hybrid System
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14 PV Array PV Inverter Battery DC/AC Inverter AC Load Other Source Power Conditioning Unit AC-Coupled Grid Former Off-grid / With battery storage / Hybrid System
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15 Inverters AC Bus (3-phase) Hybrid Solar/Wind/Diesel Off-grid / With battery storage / Hybrid System
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16 The grid is the network of cables by which electricity is transported from power stations to houses, buildings & other places. A grid connected PV system is linked to this grid or electrical network. This means that it can deliver the electricity it produces into the electricity network and therefore no battery or other storage is needed. On-grid PV Systems
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17 On-grid PV Systems
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Net metering The difference between production-consumption is measured Feed-in tariff The total production of energy is measured 18 Block diagram of grid connected PV systems
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19 Large PV power plants PV Power Plant
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20 Large on-grid PV power plants
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21 Large Scale PV Systems
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22 PV Residential On-grid PV System/ Net-metering (Jordan Example) Bi directional
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23 Fixed Adjustable tilt (season by season) Single axis tracking –Horizontal axis –Inclined axis –Vertical axis Two or Dual Axis Tracking PV Mounting Structures
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24 Fixed PV Mounting Structures
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25 Annual Optimum Tilt (Latitude) Summer Tilt Winter Tilt Adjustable Tilt Angle
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26 Reference: PVGIS Effect of Tilt Angle on Monthly Averages of Daily Solar Radiation sums
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27 Horizontal Single Axis Tracking
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28 Vertical Single Axis Tracking
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29 Inclined Single Axis Tracking
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30 Dual Axis Tracking
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31 Reference: PVGIS Yield Comparison Between Fixed and Tracked PV Mounting Structures
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32 Reference: PVGIS Tilt or Inclination Angle Effect
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33 Reference: PVGIS Azimuth or Orientation Angle Effect
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34 Thanks
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