stand alone pv system design using pvsyst pvsyst at adicet_20181129...stand alone pv system design...

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Stand alone pv system design using Pvsyst

หอ้งปฏบิตักิารวจิยัเทคโนโลยพีลงังานแสงอาทติย,์ Solar Energy Technology Laboratory (STL)

ศนูยเ์ทคโนโลยอีเิลก็ทรอนิกสแ์ละคอมพวิเตอรแ์หง่ชาติ

(National Electronics and Computer Technology Center (NECTEC)1

Pvsyst : Design Steps

PV Stand-alone systems

PV Array Charge Controller Inverter LOAD

Battery

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Pvsyst : Design Steps

Project design

• Define system

Project specification

• Site coordinates

• Meteorological

• Project setting

Parameter

• Load

Simulation

• Simulation

Results

• Report

Project design

• Define system

Project specification

• Site coordinates

• Meteorological

• Project setting

Parameter

• Load

• Battery

• PV Module

• Loss

Simulation

• Simulation setting

Results

• Report

Preliminary design

Project Design

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Pvsyst : Data bases

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2

latitude and longitude

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Pvsyst : Databases

5 6

4

3

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Pvsyst : Preliminary Design

Estimate Loads

Electric equipment Power (W) Number Time (hr) Energy (kWh)

LED 8 6 6 0.288

FAN 55 2 10 1.10

TV 21” 110 1 4 0.44

Computer 100 1 4 0.40

Fridge 70 1 24 1.68

Total Energy 3.908

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Pvsyst : Preliminary Design

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2

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Pvsyst : Preliminary Design

Project name and Site coordinates

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5.1

Same Databases

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Pvsyst : Preliminary designElectric

equipment

Using time

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Pvsyst : Preliminary design

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10.010.1

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Pvsyst : Preliminary design

10.0 Save new consumption 10.1 Load consumption

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Pvsyst : Preliminary design

Setting tilt and azimuth

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Pvsyst : Perliminary design

Day time Night time

Result parameter at site and power output

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Pvsyst : Perliminary design

Result monthly Result economic 14

Pvsyst : Design Steps

Project design

• Define system

Project specification

• Site coordinates

• Meteorological

• Project setting

Parameter

• Load

Simulation

• Simulation

Results

• Report

Project design

• Define system

Project specification

• Site coordinates

• Meteorological

• Project setting

Parameter

• Load

• Battery

• PV Module

• Loss

Simulation

• Simulation setting

Results

• Report

Preliminary design

Project Design

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Pvsyst : Project Design

1 2

3

4

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Pvsyst : Project Design

5 6

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Pvsyst : Project Design

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Pvsyst : Project Design

Setting Load

- Number of devices, their individual power, the duration of their use.

- Operating hours in the day.

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Pvsyst : Project Design

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Pvsyst : Project Design

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Pvsyst : Project Design

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Pvsyst : Project Design

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Pvsyst : Project Design

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Pvsyst : Project Design

Detail System- Location- PV- Battery- Loss factor

Detail Load- Electric equipment- Time use

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Pvsyst : Project Design

Result System- System Production

(Power output PR etc.)- Loss of load- Battery

Result Loss- environment loss- System loss

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Pvsyst

Thank You.

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Pvsyst

Question

Electric equipment Power (W) Number Time (hr) Energy (kWh)

LED 8 6 6 0.288

FAN 55 2 10 1.10

TV 21” 110 1 4 0.44

Computer 100 1 4 0.40

Fridge 70 1 24 1.68

Total Energy 3.908

Load Location

- Tshongdu, Paro, Bhutan- 27.421679, 89.416208

Design stand alone PV system

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Pvsyst

Afternoon Section

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Pvsyst : Project Design

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3D Shading

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Pvsyst : Project Design

4

3

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Pvsyst : Project Design

5

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Pvsyst : Project Design

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Pvsyst : Project Design

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Pvsyst : Project Design

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Pvsyst : Project Design

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Pvsyst : Project Design

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Pvsyst : Project Design

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After setting

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Pvsyst : Project Design

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18Play animation

Save VOD file

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Pvsyst : Project Design

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2021

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Pvsyst : Project Design

2223

24

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Pvsyst : Project Design

Detail System- Location- PV- Battery- Loss factor

Shading

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Pvsyst : Project Design

Detail Load- Electric equipment- Time use

Result System- System Production

(Power output PR etc.)- Loss of load- Battery

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Pvsyst : Project Design

Result Loss- environment loss- System loss

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Pvsyst

Kadrin Chhe.

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