PV*SOL premium 2020 R10 full license

Valentin PV*SOL premium

PV*SOL premium is a dynamic simulation program with 3D visualization and detailed shading analysis for the calculation of photovoltaic systems in combination with appliances, battery systems and electric vehicles.

With PV*SOL premium, the industry standard for photovoltaic design programs, you can design and simulate all types of modern PV systems. From the small rooftop system with a few modules to medium-sized systems on commercial roofs to large solar parks – PV*SOL premium supports you with numerous tools for design and simulation.

The unique 3D visualization is the highlight of PV*SOL premium. You can visualize all common types of systems in 3D, whether roof-integrated or roof-mounted, whether on small angled roofs, large industrial halls or open spaces – with up to 7,500 mounted modules or up to 10,000 roof-parallel modules, and calculate the shading based on 3D objects. This enables you to achieve the highest reliability for your earnings forecast – because for an accurate income calculation, a realistic representation of the shading from surrounding objects is essential.

All other design types from PV*SOL are of course also available to you in PV*SOL premium. Choose the type of design that best suits you and your PV project! The detailed results provide information about the performance of your system at all times.

Whether calculating self-consumption, designing battery storage or integrating electric vehicles – with PV*SOL you can implement and present all customer wishes in no time at all.

You can use our extensive product database at any time. It currently includes over 20,000 PV modules, 4,700 inverters, 1,400 battery systems and many other products such as electric vehicles and performance optimizers.

Release NOTE

PVSOL premium 2020 r10

The following bugs have been fixed:

  • 3D: Crash when saving the new string plan for larger elevated PV systems
  • 3D: Crash when taking over certain inverter configurations from the 3D visualization
  • When reloading projects, sometimes the wrong climate data location was displayed
  • Simulation was less accurate for certain batteries
  • Crash in DC-coupled battery systems when the efficiency was zero at 0 % utilization
  • Sometimes the results per module area were not displayed for large systems
  • When converting a project from off-grid to on-grid, sometimes an incorrect total consumption was displayed
  • The charging power of the electric vehicle was displayed in the circuit diagram with an incorrect unit
  • Consideration of DC/AC conversion efficiency at 0 % utilization of inverters corrected

PVSOL premium 2020 r9

The following new features and changes are included:

  • 3D: String plan also for mounted systems
  • Parallel operation of MPP trackers can now also be set when several module areas are configured together
  • The automatic calculation of the size of protective devices is now only carried out for circuit symbols before the consumer
  • Revised sample projects (now with new consumption profiles and individual consumers)

The following bugs have been fixed:

  • 3D: Fixed memory problem when generating 3D previews of module surfaces
  • 3D: Names of cables and wiring elements in the tree view were not updated correctly
  • 3D: String plans were partially cut off at the top
  • Different size of the preview images on the 3D design window in the main program
  • Summarize the energy balances depending on the number of MPP trackers (fixes memory problems and crashes after simulation, when using inverters with six or more MPP trackers)
  • Crash when selecting inverters if the number of inverters was edited immediately afterwards
  • Detailed losses per cable section were partly not displayed
  • Presentation contents were selectable, although they were not available at all
  • Partial crash after opening the presentation
  • Degradation was calculated in the diagram “PV energy during observation period” on an annual instead of monthly basis
  • Manufacturers with exclusively no longer available products could no longer be displayed
  • Performance ratio calculation of individual inverters was not correct for polystring configurations over several module areas
  • Selection or deselection of the first or last favorite in the database was sometimes very slow
  • In some cases, no results were found for automatic interconnection for inverters with more than six MPP trackers
  • Missing translations

System requirements

  • Currently PVSOL requires Microsoft Windows as the operating system with the latest service packs. At least Windows 7 is required.
  • A DirectX compatible graphics card is required.
  • PV*SOL requires resources such as processor time, RAM and hard disk space to store temporary files. Depending on the size of the project, these requirements vary and are difficult to quantify.
  • An internet connection is required.

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