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Strategic Deployment of Solar Photovoltaic (PV) Systems

20 – 24 Apr. 2026, Abu Dhabi17 – 21 Aug. 2026, Dubai

COURSE OVERVIEW:

The meaning of strategic deployment of solar photovoltaic systems refers to the comprehensive planning, engineering, and financial structuring required to integrate solar energy into commercial, industrial, or utility-scale portfolios. This course focuses on maximizing the "Yield" and "Bankability" of solar assets by navigating the complexities of technology selection, site resource assessment, and grid interconnection. By adopting a strategic approach, participants can move beyond simple installation to create resilient energy assets that deliver long-term decarbonization and predictable financial returns.

 

The scope of this training encompasses the technicalities of mono-crystalline, bi-facial, and thin-film technologies, alongside the design of mounting structures and tracking systems. It examines the impact of shading, soiling, and temperature on energy harvest, providing a detailed methodology for "Performance Ratio" (PR) optimization. The course provides a deep dive into the financial modeling of solar projects, including Power Purchase Agreements (PPAs), Levelized Cost of Energy (LCOE) calculations, and the utilization of "Green Finance" mechanisms.

 

Coverage includes the analysis of "Battery Energy Storage" (BESS) integration for solar smoothing, the implementation of "Digital Twins" for real-time asset management, and the management of global solar supply chains. The course addresses the critical role of "Net Metering" policies, grid-code compliance, and the environmental sustainability of PV decommissioning. Participants will gain practical expertise in utilizing solar simulation software, conducting site feasibility studies, and formulating strategic roadmaps for national or corporate solar transitions.

 

COURSE OBJECTIVES:

After completion of this course, the participants will be able to:

1.  Analyze the global solar market trends and technology roadmaps.

2.  Evaluate PV Technologies: Mono-PERC, TOPCon, and Bi-facial modules.

3.  Conduct high-fidelity "Solar Resource Assessments" using P50/P90 data.

4.  Design "Utility-Scale" and "C&I" PV systems for maximum specific yield.

5.  Optimize Inverter selection: String vs. Central vs. Micro-inverters.

6.  Evaluate "Tracking Systems" (Single-axis vs. Dual-axis) for ROI.

7.  Manage the impact of "Soiling and Shading" on system performance.

8.  Structure "Power Purchase Agreements" (PPAs) and Solar Leases.

9.  Integrate "Battery Storage" (BESS) for solar firming and peak shifting.

10.  Navigate "Grid Interconnection" and compliance with local grid codes.

11.  Utilize Digital Twins and AI for predictive O&M of solar assets.

12.  Formulate a comprehensive Solar Transition Strategy for an organization.

 

TARGET AUDIENCE:

This course is designed for Renewable Energy Developers, Investment Analysts, Sustainability Directors, Electrical Engineers, and Government Energy Planners.

 

TRAINING COURSE METHODOLOGY:

A highly interactive combination of lectures, discussion sessions, and case studies will be employed to maximize the transfer of information, knowledge, and experience. The course will be intensive, practical, and highly interactive. The sessions will start by raising the most relevant questions and motivating everybody to find the right answers. The attendants will also be encouraged to raise more of their questions and to share in developing the right answers using their analysis and experience. There will also be some indoor experiential activities to enhance the learning experience. Course material will be provided in PowerPoint, with necessary animations, learning videos, and general discussions.

 

The course participants shall be evaluated before, during, and at the end of the course.

 

COURSE CERTIFICATE:

National Consultant Centre for Training LLC (NCC) will issue an Attendance Certificate to all participants completing a minimum of 80% of the total attendance time requirement.

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