摘要:
A thermoplastic composition is provided comprising a thermoplastic polymer, a fluorescent dye or quantum dot, and a diffuser. When molded into an article, the composition has a haze level less than 55 at an article thickness, according to ASTM D1003-00. The composition has increased energy efficiency and enhances the emission of light at the edges of the article. The composition is particularly suited for use as a component of a luminescent solar collector.
摘要:
A luminescent solar collector is provided comprising a sheet and a light energy converter, such as a photocell. The sheet comprises two polymer layers. One polymer layer comprises a polymer and a fluorescent dye or quantum dot. The other polymer layer comprises a polymer and a non-fluorescent dye, and may further comprise an organic diffuser. The luminescent solar collector can be customized to any desired viewing color and provides a high level of edge emission.
摘要:
A tamper and/or intrusion detection system is provided for making a structure tamperproof. The tamper and/or intrusion detection system includes an energy source for transmitting energy through an energy-transmitting layer, and a detector for detecting a change in energy distribution within the energy-transmitting layer.
摘要:
A prediction system for predicting solar irradiance based on cloud characteristics is presented. The system includes a sky imager that includes a customized lens configured to capture one or more substantially planar images of the sky. The prediction system further includes an image processor coupled to the sky imager and configured to process the one or more substantially planar images. Moreover, the prediction system includes a computing system coupled to the image processor and configured to detect cloud characteristics based on the one or more substantially planar images, and predict the solar irradiance based on the cloud characteristics. Methods and non-transitory computer readable medium configured to perform the method for predicting power output of one or more solar panels in a solar plant based on cloud characteristics are also presented.
摘要:
A prediction system for predicting solar irradiance based on cloud characteristics includes a sky imager that includes a customized lens configured to capture one or more substantially planar images of the sky. The prediction system further includes an image processor coupled to the sky imager and configured to process the one or more substantially planar images. Moreover, the prediction system includes a computing system coupled to the image processor and configured to detect cloud characteristics based on the one or more substantially planar images, and predict the solar irradiance based on the cloud characteristics.
摘要:
A solar-based power generation system may include an array of components responsive to solar radiance. The components may be disposed over respective locations on a field. The system may further include a plurality of optical fibers having respective first ends coupled to the array of components and arranged to receive solar radiance. The plurality of optical fibers may have respective second ends arranged to output respective optical signals indicative of respective levels of solar radiance over the respective locations of the field. Opto-electrical circuitry may be coupled to receive the respective optical signals from the plurality of optical fibers and generate a respective signal indicative of a shadow condition present over at least one or more of the respective locations of the field.
摘要:
A solar-based power generation system may include an array of components responsive to solar radiance. The components may be disposed over respective locations on a field. The system may further include a plurality of optical fibers having respective first ends coupled to the array of components and arranged to receive solar radiance. The plurality of optical fibers may have respective second ends arranged to output respective optical signals indicative of respective levels of solar radiance over the respective locations of the field. Opto-electrical circuitry may be coupled to receive the respective optical signals from the plurality of optical fibers and generate a respective signal indicative of a shadow condition present over at least one or more of the respective locations of the field.