Integrated Solar PV System Designer Personnel Certification: The Proof of verified Competence

Five-Day Training


Place : Grand City Convex, Ketabang, Surabaya
Start : 08 July 2019
End : 12 July 2019
Time : 09:00 - 17:00 WIB

Training Provider

TÜV Rheinland

TÜV Rheinland Training and Consulting provides guidance and clear orientation for you to realize modern educational structures. With our learning programs, you are able to improve the employability, performance, productivity, quality and results of your employees and business. We are engaged in know-how transfer. Based on our close industry contacts and with trainers who know the industry from the within, we are teaching executives and managers practical skills for their daily work.

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Participation Investment

Discount 10% for AESI member. Price include VAT

10.000.000 IDR
for EKONID members
10.000.000 IDR
for Non-members

Price include VAT.

Transfer to BRI – Bandung Dago Branch
Account no: 04050 10010 28562
a.n. Asosiasi Energi Surya Indonesia

Nugroho Adi Sasongko
Phone +62 813 1215 8780
M. Roby Ashari
Phone +62 812 8393 7733

About the Training Seminar

Registration & more contact details:
Nugroho Adi Sasongko
Phone +62 813 1215 8780
M. Roby Ashari 
Phone +62 812 8393 7733 

TÜV Rheinland Indonesia in collaboration with the Indonesian Solar Energy Association (AESI) will conduct training and personnel certification of Integrated Solar Photovoltaic (PV) System Designer. AESI has an agenda of routine activities related to the development of solar energy, such focus group discussions, advocacy and training.


Course Objective

  • The Principles of Photovoltaic (PV) System, Standard IEC 60364-7-712 and IEC 62446
  • The principles of PV Plant Design
  • The economic evaluation of PV design
  • The basic ability to design and to configure PV components for Low Voltage on-grid and off-grid system
  • Calculate PV system sizing for on-grid and off-grid


Day 1 – 3

  • Introduction of the basic concept of photovoltaic system
  • Introduction to market situation
  • Introduction to the concept of plants connected to the power grid
  • Development from Solar cell to the module and the PV Plant electrical basics – current, voltage, electric power
  • Module technologies and characteristic values
  • Plant design 1: The roof, system static and building static documentation and strategy module orientation and inclination
  • Plan design 2: Shading analysis, Module selection, investor selection, and design mounting system, processing plant calculation and cost
  • Economic evaluation cost and benefit analysis
  • Issue on remote / off grid plant
  • Battery technology for the Hybrid plant

Day 4 – 5

  • Power plant design: design simulation on using PVSyst
  • Financial analysis: economic feasibility study using PVSyst
  • Microgrid realibility: mivrogrid design simulation
  • Electrical protection: electrical network protection coordination
  • Written test:
    • Power plant design for on-grid
    • Power plant design for off-grid
    • Microgrid
    • Economic feasibility study

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