An analysis of the power characteristics of the DSSC was performedabout irradiation and cloud cover, sky condition. The power generationcharacteristics of the module are mainly the analysis of the relationshipbetween the surface temperature of the module and the power generation efficiency. However, the DSSC BIPV double-glazing utilized inthis study was also investigated for thermal performance in addition topower generation performance and characteristics. Therefore, therewas a limit in inserting the temperature sensor into the cavity layer. Theindoor surface temperature of DSSC BIPV glazing was measured but itwas not used for analysis about power generation characteristics because it is different from the temperature of the back of actual module.To analysis of DSSC power characteristics, monitoring data of mc-SiPV system located in the same area was used. The mc-Si PV system usedfor comparative analysis was the system applied to a residentialbuilding. The monitoring data over 1 year (2015) were used for theanalysis, and the modules installed on the slope were used for comparative analysis. The amount of solar radiation and cloud cover, whichare variables of the ambient conditions, and the daily averaged powerefficiency, as an indicator of the power performance, were used toanalyze power characteristics of the DSSCs. To analyze the amount ofsolar radiation, the actual measured solar radiation of each system wasused. For cloud cover, the values of the daily averaged cloud coverprovided by the regional office of the Korea MeteorologicalAdministration in Daejeon were used.
An analysis of the power characteristics of the DSSC was performed<br>about irradiation and cloud cover, sky condition. The power generation<br>characteristics of the module are mainly the analysis of the relationship<br>between the surface temperature of the module and the power generation efficiency. However, the DSSC BIPV double-glazing utilized in<br>this study was also investigated for thermal performance in addition to<br>power generation performance and characteristics. Therefore, there<br>was a limit in inserting the temperature sensor into the cavity layer. The<br>indoor surface temperature of DSSC BIPV glazing was measured but it<br>was not used for analysis about power generation characteristics because it is different from the temperature of the back of actual module.<br>To analysis of DSSC power characteristics, monitoring data of mc-Si<br>PV system located in the same area was used. The mc-Si PV system used<br>for comparative analysis was the system applied to a residential<br>building. The monitoring data over 1 year (2015) were used for the<br>analysis, and the modules installed on the slope were used for comparative analysis. The amount of solar radiation and cloud cover, which<br>are variables of the ambient conditions, and the daily averaged power<br>efficiency, as an indicator of the power performance, were used to<br>วิเคราะห์ลักษณะอำนาจของ DSSCs การวิเคราะห์ปริมาณของ<br>รังสีดวงอาทิตย์ที่เกิดขึ้นจริงวัดรังสีดวงอาทิตย์ของแต่ละระบบที่ถูก<br>นำมาใช้ สำหรับเมฆปกคลุมค่าของเมฆปกคลุมเฉลี่ยรายวัน<br>ให้โดยสำนักงานภูมิภาคของเกาหลีอุตุนิยมวิทยา<br>บริหารเจินถูกนำมาใช้
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