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Fraunhofer ISE opens new outdoor solar technology test field in Germany – pv magazine International

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The brand new take a look at discipline contains laboratory and discipline measurements, which permits PV modules to be evaluated sooner and extra precisely by combining and evaluating the outcomes of laboratory measurements with these from the sector. to check. The brand new location enhances the prevailing Fraunhofer ISE testing websites in Gran Canaria and the Negev desert in Israel.

In a newly constructed, three-hectare take a look at discipline close to Freiburg, Germany, researchers on the Fraunhofer Institute for Photo voltaic Vitality Methods plan to carry out sooner and extra correct testing of PV modules, programs and different photo voltaic expertise.

Rigorous assessments of PV programs, photo voltaic thermal collectors and different photo voltaic applied sciences are often carried out in indoor laboratory environments, with extra long-term testing beneath actual climate situations. final for a few years. The analysis website, which Fraunhofer ISE formally opened on Friday within the Baden-Württemberg municipality of Merdingen, will mix the outcomes from each take a look at strategies.

Fraunhofer ISE says that PV modules particularly will be evaluated sooner and extra precisely by combining and evaluating the outcomes of measurements contained in the laboratory with these from the take a look at discipline.

“The brand new Out of doors Efficiency Take a look at Area in Merdingen offers us the required house to hold out out of doors assessments of assorted photo voltaic applied sciences with state-of-the-art measurement expertise,” says Andreas Bett, director of the Fraunhofer ISE institute. “The take a look at outcomes allow us to realize helpful data that can be utilized to additional enhance the module’s efficiency and reliability.”

The brand new location enhances Fraunhofer ISE’s take a look at fields in Gran Canaria and the Negev desert in Israel, the place researchers take a look at prototypes and new merchandise in numerous climates beneath excessive change. or to temperature or publicity to salt air.

Predicting the reliability and degradation of PV modules

“We are able to now evaluate the outcomes from PV modules uncovered to maritime, arid and our temperate Central European local weather with measurements from our accredited indoor PV Module and Photo voltaic Thermal TestLabs,” mentioned Christian Reise, mission supervisor on the Merdingen take a look at discipline.

By combining simulations primarily based on photo voltaic irradiance knowledge, PV modules will be evaluated sooner than earlier than when utilizing a 12 months’s value of outside measurements, Fraunhofer ISE mentioned.

Within the joint analysis mission MiMoRisk, funded by the economic system and the ministry of local weather safety, Fraunhofer ISE is creating strategies to cut back module-related yield dangers in future PV energy crops and to determine -early the dangers of technological deterioration and design specs.

Analyzes from the analysis mission assist the PV trade, particularly module producers and mission planners of enormous ground-mounted programs, and likewise present necessary insights for insurers to evaluate the danger, says Simone Steinbach, a member of the insurance coverage group of Munich RE’s Inexperienced Tech Options staff.

Investigation of PV noise barrier and agrivoltaic system

Different tasks happening within the take a look at discipline embody the PVwins mission, which measures the ability yield and noise safety efficiency of several types of PV noise limitations erected on website. This permits deliberate tasks to be examined on a small scale earlier than precise building begins.

As well as, the development of assorted height-adjustable agrivoltaic programs will quickly be carried out for the VAckerPower mission, which is able to enable researchers to research the suitability of elevated agrivoltaic programs and non-elevated, vertical agrivoltaic programs. in addition to the suitability of various PV. modules for arable farming.

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