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Best Solar Solution Provider Solar Power Plants www.solarleading.com

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Best Solar SolutionProviderSolar Power Plants

www.solarleading.com

Contents

05 Project List

06 The Solar Investment Model

07 Case Study08 Single Line Diagram (1MW)

09 Simulated 1MW Output Report

11 Project Feasibility Consultation

12 Financial Consultation

13 Project Design

14 Project Installation

15 Project Commissioning

16 Operation and Maintenance Training

17 Successful Projects

19 Global Network

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10 Building A Solar Power Plant

03 Welcome to Solar Leading Group

04 A Trusted Solar Solutions Provider

WELCOME TO SOLAR LEADING GROUP

3

Solar Leading was founded in China in 2008. After many years of hard work, we have become a leading producer of solar PV cells, solar PV modules and solar power systems.

Today, we have an annual production capacity of 600MW and are listed as one of the top 50 solar manufacturers in China.

We are proud to produce cutting-edge photovoltaic power conversion electronics and provide complete solar power solutions.

We specialize in supplying all the components necessary for solar systems under one roof. We also offer full project implementation services including Design, Engineering, Procurement and Construction (EPC).

Our mission statement is: "We catch every sunbeam and make it shine."

We build photovoltaic power plants all over Europe, Africa and the Middle East

We offer a complete solar power plant solutions including project design, construction, optimization and maintenance

We install first class photovoltaic panels with above standard efficiency and life expectancy guarantees

We offer many years of experience, a quality centered approach and a team of trained experts

A TRUSTED SOLARSOLUTIONS PROVIDER

Quality FirstQuality is ingrained in all of our services. We choose the highest quality components and demand the highest construction standards. This quality centered approach enables us to provide long term guarantees on all of our installations.

Qualified and Experienced ExpertsOur technical team is made up of fully qualified electrical power engineers who are fully experienced in photovoltaic power conversion systems. They work hard to create custom tailored solar solutions with superior efficiency and long lasting reliability.

7 Years of Success Around the WorldWe have more than 7 years of experience in building reliable and profitable solar plants on five continents. We have partnered with international corporations such as JA Solar, SMA, ABB and CHINT, to deliver plants in the Czech Republic, Slovakia, Romania, Turkey, Morocco, Italy, USA, China, Mozambique and South Africa.

4

IEC61215 IEC61370

ISO9001

ISO14001

OHSAS18001VDE0126-1-1

G83

G59

PROJECT LISTCham, Germany

Ning Xia, China

Florence, Italy

Bavaria, Germany

Hannover, Germany

Frosinone, Italy

Rozna, Czech Republic --3

Jieyang, China

Uffenheim, Germany --1MW

Rozna, Czech Republic

Hannover, Germany --500KW

Marktleugast, Germany --314KW

West-vlaanderen, Belgium --227KW

Copenhagen, Denmark --180KW

2009 2010 2011 2012 2013

280MW

180MW

140MW106MW

94MW

Projects We Have Installed

-- 10.41MW

-- 3.00MW

-- 10.14MW

-- 10.00MW

-- 6.20MW

-- 4.77MW

-- 4.00MW

-- 2.20MW

-- 1.00MW

-- 533.00KW

-- 500.00KW

-- 314.00KW

-- 227.00KW

-- 180.00KW

5

Total Investment Cost Gain From Investment

Rapid advances in photovoltaic technology mean that as the price of oil continues to rise, the price of solar is plummeting year on year. This provides an unprecedented opportunity to produce power at low solar costs and receive payment at high fossil prices.

THE SOLAR INVESTMENT MODEL

Minimal operation and maintenance cost due to lack of moving parts

Our 10-year warranty leaves you worry-free

Many businesses achieve 15-25% in after-tax returns, generating thousands of dollars in savings

Qualify for Carbon Trading Certificates

Great Return on Investment

Stable Cash Flow

Return on Investment (ROI)

Year 10Payback Period 3.3 years0

1,121,976.20

$30.72% Project ROI

1MW Plant Medan, Indonesia

Owner: Mr Sutjipto H. Muljadi P.T. SOLAR ABADI

ROI=Gain from investment / Total investment cost × 100%=30.72%/yearPayback Period = 3.3 years

PPA Price US $ 0.30/KWh

Produced energy 1,181,000KWh/year

PPA income US $ 354,300.00/year

Return on investment after 10 years US $ 3,447,000.00

Total investment cost US $ 1,121,976.20

6

Solar PV Modules

Item Model No. Quantity

System Type: SLGT-1MW

SL6P60-250Watt

Grid Tied Solar Inverter 20KW

4000

50

1

50

4

1

10000

8000

10000

600

Mounting Brackets Ground mounted

DC Combiner SPD/DC1000V

AC Combiner Water Proof IP65

SCADA System Wifi Monitor

Ground Earth Cable 6 S.q.mm

Ground Earth Clamp Copper with screws

DC PV Connection Cables 4/6 S.q.mm

MC4 Connectors SLMC4 7

Anti-Degradation Device

Eliminates physical degradation

processes like PID and TCO

corrosion avoiding yield losses.

Solar Leading PV Modules

Ensure stable performance even at low light climate

conditions for an operational lifetime of more than

25 years.

Active Lightning Shield

Also works when plant is not producing

power.

Case Study

SINGLE LINE DIAGRAM (1MW)

www.solarleading.com

PV

Pan

el

20P

cs x

SL6

P60

-250

W

MPPT

Grid Tied Inverter 1#Suntree 20000TL

MPPT

PV

Pan

el

20P

cs x

SL6

P60

-250

W

PV

Pan

el

20P

cs x

SL6

P60

-250

W

PV

Pan

el

20P

cs x

SL6

P60

-250

W

RS

485

Str

ing

1

Str

ing

2

Str

ing

3

Str

ing

4

In-buildDC Isolator

PV

Pan

el

20P

cs x

SL6

P60

-250

W

MPPT

Grid Tied Inverter 16#Suntree 20000TL

MPPT

PV

Pan

el

20P

cs x

SL6

P60

-250

W

PV

Pan

el

20P

cs x

SL6

P60

-250

W

PV

Pan

el

20P

cs x

SL6

P60

-250

W

RS

485

Str

ing

61

Str

ing

62

Str

ing

63

Str

ing

64

In-buildDC Isolator

PV

Pan

el

20P

cs x

SL6

P60

-250

W

MPPT

Grid Tied Inverter 17#Suntree 20000TL

MPPT

PV

Pan

el

20P

cs x

SL6

P60

-250

W

PV

Pan

el

20P

cs x

SL6

P60

-250

W

PV

Pan

el

20P

cs x

SL6

P60

-250

W

RS

485

Str

ing

65

Str

ing

66

Str

ing

67

Str

ing

68

In-buildDC Isolator

PV

Pan

el

20P

cs x

SL6

P60

-250

W

MPPT

Grid Tied Inverter 32#Suntree 20000TL

MPPT

PV

Pan

el

20P

cs x

SL6

P60

-250

W

PV

Pan

el

20P

cs x

SL6

P60

-250

W

PV

Pan

el

20P

cs x

SL6

P60

-250

W

RS

485

Str

ing

125

Str

ing

126

Str

ing

127

Str

ing

128

In-buildDC Isolator

AC400V 29A

PV

Pan

el

20P

cs x

SL6

P60

-250

W

MPPT

Grid Tied Inverter 33#Suntree 20000TL

MPPT

PV

Pan

el

20P

cs x

SL6

P60

-250

W

PV

Pan

el

20P

cs x

SL6

P60

-250

W

PV

Pan

el

20P

cs x

SL6

P60

-250

W

RS

485

Str

ing

129

Str

ing

130

Str

ing

131

Str

ing

132

In-buildDC Isolator

PV

Pan

el

20P

cs x

SL6

P60

-250

W

MPPT

Grid Tied Inverter 50#Suntree 20000TL

MPPT

PV

Pan

el

20P

cs x

SL6

P60

-250

W

PV

Pan

el

20P

cs x

SL6

P60

-250

W

PV

Pan

el

20P

cs x

SL6

P60

-250

W

RS

485

Str

ing

197

Str

ing

198

Str

ing

199

Str

ing

200

In-buildDC Isolator

AC400V 464A

AC400V 29A AC400V 29A AC400V 29A AC400V 29A AC400V 29A

AC400V 464A AC400V 522A

AC Combiner 1#16-1

AC Combiner 2#16-1

AC Combiner 3#18-1

AC Cabinet

AC400V 1450A

To Power Grid / Transformer

8

SSEHomepage Fi nd A Di f f er ent Locat i on Accur acy Met hodol ogy Par amet er s

( Uni t s & Def i ni t i on)

NASA Sur f ace met eor ol ogy and Sol ar Ener gy:RETScr een Dat a

Lat i t ude 3. 58 / Longi t ude 98. 67 was chosen.

Lat itude °N 3. 58Longitude °E 98. 67Elevation m 350Heat i ng desi gn temperature

22. 00Cool i ng desi gn temperature28.26Ear th temperature ampl i tude

°C

°C

°C

3. 74Frost days at si te

day 0

Mont h Ai rtemper at ur e

Rel at i vehumi di t y

Dai l ysol ar

r adi at i on-

hor i zont al

Atmospher i cpr essur e

Wi ndspeed

Ear t ht emper at ur e

Heat i ngdegr ee-days

Cool i n

g

degr ee

-

days

°C % kWh/m2/d kPa m/s °C °C-d °C-d

January 24. 5 81. 5% 4. 49 97. 1 3. 1 26. 1 0 445

February 24. 7 81. 1% 4. 99 97. 1 2. 7 26. 5 0 412

March 25. 0 81. 8% 5. 02 97. 1 2. 3 26. 9 0 462

Apr i l 25. 4 82. 3% 4. 87 97. 0 1. 8 27. 3 0 457

May 25. 7 79. 5% 4. 77 97. 0 2. 0 27. 4 0 482

June 25. 8 75. 5% 4. 71 97. 0 2. 3 27. 4 0 469

Jul y 25. 5 75. 2% 4. 56 97. 0 2. 5 27. 0 0 476

August 25. 7 73. 9% 4. 52 97. 0 2. 7 27. 3 0 485

Septembe 25. 2 78. 4% 4. 27 97. 1 2. 3 27. 1 0 454

October 25. 1 79. 8% 4. 28 97. 1 2. 2 26.9 0 464

November 24. 8 82. 1% 4. 08 97. 1 2. 5 26.7 0 441

ece ber 24. 5 82. 3% 4. 13 97. 1 3. 1 26.2 0 447

Annual 25. 1 79. 4% 4. 56 97. 1 2. 5 26. 9 0 54 49

Measuredat (m) 10. 0 0. 0

Medan, Indonesia Latitude 3.58 / Longitude 98.67 was chosen.

Month AirTemperature

RelativeHumidity

Daily SolarRadiationHorizontal

Atmospheric Pressure

Wind Speed

EarthTemperature

HeatingDegree-days

CoolingDegree-Days

January

February

March

April

May

June

July

August

September

October

November

December

kWh/m²/d kPa

Latitude

Longitude

Elevation

Heating Design Temperature

Cooling Design Temperature

Earth Temperature Amplitude

Frost Days at Site

Main simulation results

System Production

Specific prod. 1181 kWh/kWp/year

Performance Ratio PR 71.0 %

Jan Feb Mar Apr May Jun Jul Aug Sep Oct Nov Dec0

1

2

3

4

5

6

Normalized Energy [kWh/kWp/day]

Normalized productions (per installed kWp): Nominal power 1000 kWp

Yf : Produced useful energy (inverter output) 3.24 kWh/kWp/dayLs : System Loss (inverter, ...) 0.08 kWh/kWp/dayLc : Collection Loss (PV-array losses) 1.24 kWh/kWp/day

Jan Feb Mar Apr May Jun Jul Aug Sep Oct Nov Dec0.0

0.1

0.2

0.3

0.4

0.5

0.6

0.7

0.8

Performance Ratio PR

Performance Ratio PR

PR : Performance Ratio (Yf / Yr) : 0.710

Produced Energy 1181 MWh/year

SIMULATED 1MW OUTPUT REPORT

Loss diagram over the whole year

Horizontal global irradiation1662 kWh/m2+0.0% Global incident in coll. plane

-3.5% IAM factor on global

Effective irradiance on collectors1604 kWh/m2 * 6508 m2 coll.

efficiency at STC = 15.48% PV conversion

Array nominal energy (at STC effic.)1616 MWh

-4.6% PV loss due to irradiance level

-10.7% PV loss due to temperature

-4.9% Array Soiling loss

-4.9% Module quality loss

-2.2% Module array mismatch loss

-0.9% Ohmic wiring lossArray virtual energy at MPP1209 MWh

-2.4% Inverter Loss during operation (efficiency)

0.0% Inverter Loss over nominal inv. power0.0% Inverter Loss due to power threshold0.0% Inverter Loss over nominal inv. voltage0.0% Inverter Loss due to voltage threshold

Available Energy at Inverter Output1181 MWh

Energy injected into grid1181 MWh

Climate Data LocationUnit

NASA Surface Meteorology and Solar Energy:RETScreen Data

SSEHomepage Find A Different Location Accuracy Methodology

Parameters( Units & Definition )

9

* Project Consultation

- Technical

Consultation

- Legal

Consultation

- Environmental

Assessment

* Feasibility Report

* Financial Planning

* Equity Structuring

* Financial Support

and Credit Approval

(If Required)

* Consultation with Power

Company if Required

* Project Investigation

* Project Design

* Project Proposal

* Project Construction

* Site Preparation

* Component Installation

* Construction of Access

Roads if required

* Connection to the Local

Grid

* Consultation with

Local Grid Operator

Submission of Reports

* Project Owner Inspection

* Grid Operator Inspection

* Operation Training

* Maintenance Training

* Online Technical

Support

BUILDING A SOLAR POWER PLANT

Operation and Maintenance Training

6 ProjectCommissioning

5 ProjectInstallation

4Project Design

3 Financial Consultation

2 Project Feasibility Consultation

1

10

Our tried and tested development and planning process covers every detail of the project to ensure there are no surprises later on. This includes detailed location analysis, acquiring necessary approvals and designing the optimum technical configuration. We do the hard work up-front in order to provide an accurate timeline and budget from the start.

Technical Consultation

Legal Consultation

Environmental Assessment

PROJECT FEASIBILITYCONSULTATION

Accurate and detailed Site Plans

Application for necessary Permits and Permissions

Preparation and submission of Grid Connection Agreement

Shading Analysis

Entire Environmental Impact Assessment

Consultation with Grid Companies

Projected Energy Yield Analysis based on data from NASA

Power Output Analysis

Cost Benefit Analysis of available PV technologies

Detailed System Design

Solar Resource and Climate Analysis

11

Mounting system design

Feasibility study

Shade study

Geological Surveys

FINANCIAL CONSULTATION

Our team of specialist advisers are available to guide you through the process of financing your project. We have developed strong working relationships with a number of financial institutions and are familiar with all of the options currently available. We will help you to choose the most appropriate solution for your investment and take care of all of the necessary paperwork.

Financial Analysis

Credit Application Support

Identifying Investment Partners

Insurance

12

We will build your project based on a bank

promissory note for finance and a 30%

deposit. Payment following completion

helps to minimize risk and makes loan

negotiations significantly easier.

Our engineering team will technically evaluate your project taking into account technological and environmental constraints. We will advise you on the most reliable use of materials and components to ensure a high yield and low maintenance installation for years to come. We work hard to provide accurate plans, costings and timelines.

Project Proposal

Budgets and Timelines

Operational and Maintenance Costing

PROJECT DESIGN

13

Feasibility Study

Geological Surveys

Shade Study

Installation Costing and Timeline

Acceptance and Commissioning Timeline

Consultancy and Training Costing

Projected Return on Investment (ROI) Calculations

Technical Cost Benefit Analysis

Architectural Site Plans

Wiring Diagrams

Projected Output Reports

PROJECT INSTALLATION

Our qualified engineers are accustomed to working on project sites around the world. They work hard to stay on schedule and are available to consult at any stage.

We undertake

Site Inspection and AcceptanceConstruction is not complete until you have personally inspected the site and given your approval.

14

Site preparation including any necessary earthworks and drainage

Frame Assembly

Component Installation and Wiring

Construction of security fencing and access roads

PROJECT COMMISSIONING

Ensuring that the power from your project can be accepted into the local grid means ensuring a secure return on your investment. Our engineers understand this perfectly and work with grid operators to ensure that your output meets their requirements.

Leading a TechnologyRevolution

P PP

PP

P~

Q3~

~

Solar Power Plant

Q P

S

Central computer: Monitoring of grid access points

SS

SSSensor system to measure the electrical grid data

SSS

Q

of energy

P

Small range of cos φ = 0.9 (ind.) to 0.9 (cap.)

Full range of cos φ > 0 (ind.) to cos φ > 0 (cap.)

at day and night 3~

High-voltage grid Medium-voltage grid Low-voltage grid

Consumer load: Industry

system with standard

Consumer load: Towns and communes

Renewable Energies

Relay Relay

New advances in ‘intelligent control units’ mean that there is no longer any difficulty in integrating renewably generated power into grids designed for use with fossil fuels. There is absolutely no reason why solar power cannot provide a significant contribution to the energy mix of every country, providing cheap and abundant power.

15

Inspection from Owner

Inspection from Utility Power Company

OPERATION AND MAINTENANCE TRANING

Now that your plant is up and running, it is important to keep it that way. We train your workers in plant operations and maintenance in order to make sure you get the optimum output well into the future.We cooperate with academics and specialists in the field to design training programs that are comprehensive and up to date.

Training Topics:

Basic photovoltaic principles

Qingdao University of Science & Technology

Sun Yat-Sen University

Types of photovoltaic panel

Performance and main influencing factors

Basic components of a photovoltaic power plant

Photovoltaic system types

PV Inverters (central, decentralized)

Communication and control systems

PV protection (surge, lightning, etc.)

Legislation, legislative processes and approval

16

System Type: SLGT-3MWSystem Size: 3MWLocation: Rozna, Czech RepublicConnected: 2009Number of Modules: 12000pcs*SL6P60-250W

Successful Projects

In 2009, we completed one of the largest solar power plants in the Czech Republic. The project had stalled at the finance stage until we stepped in and called on our partners to secure a bridging loan. We continued with the project delivering a full engineering, procurement and construction (EPC) solution. We are still in contact with the project owners as our local office continues to organize regular operations and maintenance training.

We are very proud to have this flagship project successfully realized with engineering, manufacturing, and supervision support from Solar Leading as our experienced project partner. With their technical support and our local network of companies and institutions having a vast need for energy efficiency and renewable energy production, we are very happy to have an outstanding and grid-connected project. Solar Leading has demonstrated to be a true one-stop solution provider given its strong ability to provide innovative turnkey solutions and tailor-made financing arrangement.

Mr Vaclav Zdrazila --Solar Tech:

17

System Type: SLGT-10MWSystem Size: 10MWLocation: Florence, ItalyConnected: 2010Number of Modules: 40000pcs*SL6P60-250W

Successful Projects

Solar Leading’s 10MW Florence plant is powered by 12000 of our own modules. This plant was completed on schedule with only 5 weeks between construction and grid connection. We were proud to provide a full engineering, procurement and construction (EPC ) service.Our experienced engineers were available throughout the design and installation process to provide technical support.

Our team is very proud to have facilitated a successful collaboration with Solar Leading, a top-tier global renewable energy player. Their success in leading such critical tasks as arranging debt financing, securing permits, providing technical advisory and performing local project management demonstrates the experience and effectiveness of their team. As we continue to expand into new markets, we look forward to further cooperation with Solar Leading.

Mr Jens Ebbe Nielsen ------Solten Energy:

18

We produce......1,200,000 WAFERS

300MW of PV CELLS

300MW of PV MODULES

And have experience installing 800MW in solar projects around the world

Solteknik Aps (Denmark)Add: Villershøjvej 20 4030 Tune Copenhagen DenmarkTel: +45 40 76 73 69

PT. Grand Battery Technologies Indonesia/ Grand SolarAdd: Ruko Wisma Eka Jiwa.JI.Arteri Mangga 2 No.12B Mangga 2 Selatan,Jakarta Pusat 10730Tel: +021 6230 1864

Solen Energia Solar Ltda. (Brazil)Add: 231 – CJ 81 – São Paulo – Brazil Tel: +55 11 2691-5883

Capital Network (Guatemala)Add: 14 avenida 19-50 zona 4 de Mixco, Bodega #34 Guatemala, C. A.Tel: +(502) 5705-0796 / 5704-4068 (502) 5019-4198 / 5018-1289

Solar Leading (Headquarters)

GLOBAL NETWORK

Center Road, Jieyang Economic Development

Experimental Zone, Guangdong, China 522013

Solar Leading Group Limited

P:+ 86 139 6488 0018

F:+ 86 663 8782 299

[email protected]

Find out more Call

+ 86 139 6488 0018

Visit

www.solarleading.com