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1 Chapter 3Table 3.1 Indoor efficiencies modeled by Bahrami-Yekta and Tiedje for differe...

2 Chapter 4Table 4.1 Deviation of measured illuminance for different radiation sources w...Table 4.2 Notation, orientation, position, and qualitative description of the...Table 4.3 Calculated maximum irradiance per unit area for Freiburg, south-eas...Table 4.4 Calculated maximum irradiance per unit area for Freiburg, s = 0° an...Table 4.5 Reflection coefficient following EN12464.Table 4.6 Recommended albedo factors [22].Table 4.7 Comparison of the applied reflection coefficients to the recommende...Table 4.8 Influence of the complexity of the simulation model on the result f...Table 4.9 Values of the applied simulation parameters.Table 4.10 Mean and maximum values of simulated solar irradiance for Freiburg...Table 4.11 Influence of location and orientation vector on the annual mean so...Table 4.12 Characteristic values of measured indoor radiation in the referenc...Table 4.13 Characteristic values of measured radiation in the reference year.Table 4.14 Measured and simulated in Radiance irradiation on significant days...Table 4.15 Measured and simulated inRadiance irradiation on important dates d...Table 4.16 Influence of user behavior on the example of measured and simulati...Table 4.17 Comparison of measured and simulated irradiance for sensors in two...Table 4.18 Simulated irradiance, artificial light, Radiance model with OSRAM ...Table 4.19 Comparison of the results from measurements and simulation for the...Table 4.20 Measured illuminance for each luxmeter. The first error refers to ...

3 Chapter 6Table 6.1 Contribution to optical efficiency per generation for a Lumogen Ora...Table 6.3 Reported quantum yields and simulation results for 80% visible ligh...Table 6.4 Reported quantum yields and simulation results of 80% transmission ...Table 6.5 Overview of simulation results for core quantum dots as well as rep...Table 6.6 Overview of simulation results for core/shell quantum dots as well ...Table 6.7 Overview of simulation results for doped core and doped core/ shell...Table 6.8 Properties of Tm2+ halide-based LSCs, at 80% transmission of visibl...Table 6.9 Performance of 55 × 55 × 2cm3-doped PMMA slabs of the best performi...

4 Chapter 8Table 8.1 Energy harvesting cell technologies.Table 8.2 Characteristics of commercial energy harvesting devices at 200 lux ...Table 8.3 Research results for state-of-the art indoor PV energy harvesters.Table 8.4 Mechanical specifications.Table 8.5 Comparison of Lightricity’s modules with the primary competing tech...Table 8.6 Summary of the power generated and provided by the IPEHPM for COcon...

5 Chapter 9Table 9.1 Example device structure for an AlGaAs PV cell for indoor energy co...Table 9.2 Energy harvesting sources (adopted from [37]).Table 9.3 Example parameters for power requirements for perpetual operation o...

Indoor Photovoltaics

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