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EAST WEST ORIENTED
PV SYSTEMS
Model, benefits and technical evaluation
Associate Professor Dr.
Tamer KHATIB
An-Najah National
University
Sate of Palestine
t.khatib@najah.edu
+(970)599 317 172
Benefit of east-west photovoltaic
power system
Associate Professor Dr.
Tamer KHATIB
An-Najah National
University
Sate of Palestine
t.khatib@najah.edu
+(970)599 317 172
A. No self shading concerns and thus, optimal land use.
however, maintenance path should be considered. East-West
oriented PV system saves 10% of the areas
Benefit of east-west photovoltaic
power system
Associate Professor Dr.
Tamer KHATIB
An-Najah National
University
Sate of Palestine
t.khatib@najah.edu
+(970)599 317 172
Benefit of east-west photovoltaic
power system
Associate Professor Dr.
Tamer KHATIB
An-Najah National
University
Sate of Palestine
t.khatib@najah.edu
+(970)599 317 172
Benefit of east-west photovoltaic
power system
Associate Professor Dr.
Tamer KHATIB
An-Najah National
University
Sate of Palestine
t.khatib@najah.edu
+(970)599 317 172
B. East-West oriented photovoltaic system saves 24% of the
costs required for mounting piles and steel structure
Benefit of east-west photovoltaic
power system
Associate Professor Dr.
Tamer KHATIB
An-Najah National
University
Sate of Palestine
t.khatib@najah.edu
+(970)599 317 172
Benefit of east-west photovoltaic
power system
Associate Professor Dr.
Tamer KHATIB
An-Najah National
University
Sate of Palestine
t.khatib@najah.edu
+(970)599 317 172
C. East-West oriented photovoltaic system requires less
capacity of the interfacing power substation
Benefit of east-west photovoltaic
power system
Associate Professor Dr.
Tamer KHATIB
An-Najah National
University
Sate of Palestine
t.khatib@najah.edu
+(970)599 317 172
D. East-West oriented photovoltaic system is better in terms
of co-utlization and agro PV
Benefit of east-west photovoltaic
power system
Associate Professor Dr.
Tamer KHATIB
An-Najah National
University
Sate of Palestine
t.khatib@najah.edu
+(970)599 317 172
E. East-West oriented photovoltaic system produces less
energy by 10-15% as compared to south oriented PV system
Feasibility of East-West PV systems
Associate Professor Dr.
Tamer KHATIB
An-Najah National
University
Sate of Palestine
t.khatib@najah.edu
+(970)599 317 172
South oriented PV
system
East-West oriented
PV system
System capacity (kWp) 834.00 834.00
Total Energy production for 2021 (kWh) 1555095 1525320
AC-DC Inverter capacity (kW) 828.00 828.00
Required land area m2 8,071.00 6,517.00
Annual land rental (USD) 5,650.00 4,578.00
Capital cost (USD) 801,029.00 737,485.00
Life cycle time (years) 20 20
Annual Replacement cost (USD) 1,141.00 1,141.00
Annual Running costs (USD) 13,421.00 17,118.00
Salvage value 20% 20%
Annual Production degradation factor 0.3% 0.3%
Inflation rate 3% 3%
Loans No No
Tax deduction No No
PV energy export price (USD) 0.1112 0.1112
Value added Tax (VAT) 16% 16%
Levelized Cost of Energy (USD/kWh) 0.0403 0.0423
Payback period time (years) 7.19 7.55
System implementation and modeling
Associate Professor Dr.
Tamer KHATIB
An-Najah National
University
Sate of Palestine
t.khatib@najah.edu
+(970)599 317 172
0
10
20
30
40
50
60
70
80
90
100
3 4 5 6 7 8 91011121314151617181920
Power
(kWp)
Hours
Pwest-
Simulation
Pwest-Real
Peast-
Simulation
Peast-Real
Ptotal-
Simulation
Ptotal-Real
Further read…
Associate Professor Dr.
Tamer KHATIB
An-Najah National
University
Sate of Palestine
t.khatib@najah.edu
+(970)599 317 172
Thank you …
Associate Professor Dr.
Tamer KHATIB
An-Najah National
University
Sate of Palestine
t.khatib@najah.edu
+(970)599 317 172

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East-west oriented photovoltaic power systems: model, benefits and technical evaluation

  • 1. EAST WEST ORIENTED PV SYSTEMS Model, benefits and technical evaluation Associate Professor Dr. Tamer KHATIB An-Najah National University Sate of Palestine t.khatib@najah.edu +(970)599 317 172
  • 2. Benefit of east-west photovoltaic power system Associate Professor Dr. Tamer KHATIB An-Najah National University Sate of Palestine t.khatib@najah.edu +(970)599 317 172 A. No self shading concerns and thus, optimal land use. however, maintenance path should be considered. East-West oriented PV system saves 10% of the areas
  • 3. Benefit of east-west photovoltaic power system Associate Professor Dr. Tamer KHATIB An-Najah National University Sate of Palestine t.khatib@najah.edu +(970)599 317 172
  • 4. Benefit of east-west photovoltaic power system Associate Professor Dr. Tamer KHATIB An-Najah National University Sate of Palestine t.khatib@najah.edu +(970)599 317 172
  • 5. Benefit of east-west photovoltaic power system Associate Professor Dr. Tamer KHATIB An-Najah National University Sate of Palestine t.khatib@najah.edu +(970)599 317 172 B. East-West oriented photovoltaic system saves 24% of the costs required for mounting piles and steel structure
  • 6. Benefit of east-west photovoltaic power system Associate Professor Dr. Tamer KHATIB An-Najah National University Sate of Palestine t.khatib@najah.edu +(970)599 317 172
  • 7. Benefit of east-west photovoltaic power system Associate Professor Dr. Tamer KHATIB An-Najah National University Sate of Palestine t.khatib@najah.edu +(970)599 317 172 C. East-West oriented photovoltaic system requires less capacity of the interfacing power substation
  • 8. Benefit of east-west photovoltaic power system Associate Professor Dr. Tamer KHATIB An-Najah National University Sate of Palestine t.khatib@najah.edu +(970)599 317 172 D. East-West oriented photovoltaic system is better in terms of co-utlization and agro PV
  • 9. Benefit of east-west photovoltaic power system Associate Professor Dr. Tamer KHATIB An-Najah National University Sate of Palestine t.khatib@najah.edu +(970)599 317 172 E. East-West oriented photovoltaic system produces less energy by 10-15% as compared to south oriented PV system
  • 10. Feasibility of East-West PV systems Associate Professor Dr. Tamer KHATIB An-Najah National University Sate of Palestine t.khatib@najah.edu +(970)599 317 172 South oriented PV system East-West oriented PV system System capacity (kWp) 834.00 834.00 Total Energy production for 2021 (kWh) 1555095 1525320 AC-DC Inverter capacity (kW) 828.00 828.00 Required land area m2 8,071.00 6,517.00 Annual land rental (USD) 5,650.00 4,578.00 Capital cost (USD) 801,029.00 737,485.00 Life cycle time (years) 20 20 Annual Replacement cost (USD) 1,141.00 1,141.00 Annual Running costs (USD) 13,421.00 17,118.00 Salvage value 20% 20% Annual Production degradation factor 0.3% 0.3% Inflation rate 3% 3% Loans No No Tax deduction No No PV energy export price (USD) 0.1112 0.1112 Value added Tax (VAT) 16% 16% Levelized Cost of Energy (USD/kWh) 0.0403 0.0423 Payback period time (years) 7.19 7.55
  • 11. System implementation and modeling Associate Professor Dr. Tamer KHATIB An-Najah National University Sate of Palestine t.khatib@najah.edu +(970)599 317 172 0 10 20 30 40 50 60 70 80 90 100 3 4 5 6 7 8 91011121314151617181920 Power (kWp) Hours Pwest- Simulation Pwest-Real Peast- Simulation Peast-Real Ptotal- Simulation Ptotal-Real
  • 12. Further read… Associate Professor Dr. Tamer KHATIB An-Najah National University Sate of Palestine t.khatib@najah.edu +(970)599 317 172
  • 13. Thank you … Associate Professor Dr. Tamer KHATIB An-Najah National University Sate of Palestine t.khatib@najah.edu +(970)599 317 172