This contribution analyses two different module topologies for shingled solar cells that increase module power at normal operation and under partial shading conditions. A bifacial shingled parallel string layout and a bifacial shingled matrix layout are compared in terms of module output by experiment and cell-to-module (CTM) analysis. After verification of the CTM model for modules samples (0.475 m²), a calculation for full size modules is performed. Both shingled layouts, excel in output power and CTMefficiency in comparison to a conventional module. The shingled modules are also compared regarding partial shading response, with the matrix layout showing superior power output in most investigated cases. Finally, the newly developed concep...
International audienceThe photovoltaic market is currently competing for high efficiency cell techno...
AbstractIn a typical series-connected photovoltaic module with three bypass diodes, not all of the e...
International audienceThe photovoltaic market is currently competing for high efficiency cell techno...
The interconnection of solar cells by shingling increases the active cell area in photovoltaic modul...
The idea to interconnect solar cells in a shingled manner like roof tiles dates back to the 1960’s. ...
Significant progress in the development and commercialization of electrically conductive adhesives h...
Shingled interconnection of solar cells allows increased output power density pout by (i) increasing...
The concepts of bifaciality and shingling interconnection allow for a boost in output power density ...
Integrated applications for solar energy production becomes increasingly important. The electrificat...
ABSTRACT: The Sliver ® solar cell technology has the principal features of reduced silicon consumpti...
In recent years, photovoltaic module design and module efficiency have become an increasing research...
As the market share of bifacial cells and modules grows, solar cells measurements under bifacial ill...
The details of a shingle module design which produces in excess of 97 watts/m/sup 2/ of module area ...
In the last recent years the photovoltaic module design becomes more and more in the research focus ...
The Sliver® solar cell technology has the principal features of reduced silicon consumption (down by...
International audienceThe photovoltaic market is currently competing for high efficiency cell techno...
AbstractIn a typical series-connected photovoltaic module with three bypass diodes, not all of the e...
International audienceThe photovoltaic market is currently competing for high efficiency cell techno...
The interconnection of solar cells by shingling increases the active cell area in photovoltaic modul...
The idea to interconnect solar cells in a shingled manner like roof tiles dates back to the 1960’s. ...
Significant progress in the development and commercialization of electrically conductive adhesives h...
Shingled interconnection of solar cells allows increased output power density pout by (i) increasing...
The concepts of bifaciality and shingling interconnection allow for a boost in output power density ...
Integrated applications for solar energy production becomes increasingly important. The electrificat...
ABSTRACT: The Sliver ® solar cell technology has the principal features of reduced silicon consumpti...
In recent years, photovoltaic module design and module efficiency have become an increasing research...
As the market share of bifacial cells and modules grows, solar cells measurements under bifacial ill...
The details of a shingle module design which produces in excess of 97 watts/m/sup 2/ of module area ...
In the last recent years the photovoltaic module design becomes more and more in the research focus ...
The Sliver® solar cell technology has the principal features of reduced silicon consumption (down by...
International audienceThe photovoltaic market is currently competing for high efficiency cell techno...
AbstractIn a typical series-connected photovoltaic module with three bypass diodes, not all of the e...
International audienceThe photovoltaic market is currently competing for high efficiency cell techno...