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Featured researches published by Yehia Eissa.


Remote Sensing | 2015

Validation of the Surface Downwelling Solar Irradiance Estimates of the HelioClim-3 Database in Egypt

Yehia Eissa; Mohamed Korany; Youva Aoun; Mohamed Boraiy; Magdy Abdel Wahab; Stephane C. Alfaro; Philippe Blanc; Mossad El-Metwally; Hosni Ghedira; Katja Hungershoefer; Lucien Wald

HelioClim-3 (HC3) is a database providing time series of the surface downwelling solar irradiance that are computed from images of the Meteosat satellites. This paper presents the validation results of the hourly global horizontal irradiance (GHI) and direct normal irradiance (DNI), i.e., beam irradiance at normal incidence, of versions four and five of HC3 at seven Egyptian sites. The validation is performed for all-sky conditions, as well as cloud-free conditions. Both versions of HC3 provide similar performances whatever the conditions. Another comparison is made with the estimates provided by the McClear database that is restricted to cloud-free conditions. All databases capture well the temporal variability of the GHI in all conditions, McClear being superior for cloud-free cases. In cloud-free conditions for the GHI, the relative root mean square error (RMSE) are fairly similar, ranging from 6% to 15%; both HC3 databases exhibit a smaller bias than McClear. McClear offers an overall better performance for the cloud-free DNI estimates. For all-sky conditions, the relative RMSE for GHI ranges from 10% to 22%, except one station, while, for the DNI, the results are not so good for the two stations with DNI measurements.


IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing | 2014

Toward a Near Real-Time Product of Air Temperature Maps from Satellite Data and In Situ Measurements in Arid Environments

Michele Lazzarini; Prashanth Reddy Marpu; Yehia Eissa; Hosni Ghedira

Earth observation data and in situ measurements were used to derive a method for the estimation of Air Temperature(AirT) and thereby produce maps. The methodology was developed and validated using data acquired at five stations located in the United Arab Emirates(UAE) during the year 2012. In the first step, the effect of different variables on the estimation of AirT values was investigated and the variables of high importance were used to build the final model. Land surface temperature (LST), relative humidity, global horizontal irradiance, direct normal irradiance, and diffuse horizontal irradiance were identified as the most important inputs for Air Testimation. Models were developed separately for four different cases based on the seasons (Winter/Summer) and the time of the day (Day/Night). The models were evaluated using jackknife validation on the stations resulting in root mean square errors of 2.25°C(Winter/Day), 2.24°C (Winter/Night), 2.56°C (Summer/Day), and 2.69°C (Summer/Night) and an overall average accuracy of 2.44°C. Finally, the model has been applied on a larger scale by assimilating the relevant Earth observation data and in situ measurements for the creation of AirT maps for the entire country. The resulting AirT maps were generated in near real time at a temporal resolution of 15 min from METEOSAT/SEVIRI LST and the above-mentioned in situ measurements. These maps can be considered as important resources for several applications (e.g, climate studies, solar energy applications, thermal comfort studies, etc.).


international geoscience and remote sensing symposium | 2012

Dust detection over bright surfaces using high-resolution visible SEVIRI images

Yehia Eissa; Hosni Ghedira; Taha B. M. J. Ouarda; Matteo Chiesa

Reflectance observations from the high-resolution visible (HRV) channel of the SEVIRI instrument, onboard Meteosat Second Generation, have shown to be sensitive to dust over bright surfaces, i.e. bright desert sand. This was observed when deriving the cloud index from the HRV channel for dusty days over the desert environment of the United Arab Emirates (UAE). Sensitivity of the HRV channel to dust could then be used to derive an index giving an indication of the dust conditions in the atmosphere. Therefore, the purpose of this paper is to propose an index, the interception index, for dust detection over bright desert surfaces in the UAE using the HRV SEVIRI channel. The ability of the interception index to estimate the direct normal irradiance is also investigated.


Meteorologische Zeitschrift | 2017

Improving direct normal irradiance retrieval in cloud-free, but high aerosol load conditions by using aerosol optical depth

Mohamed Boraiy; Mohamed Korany; Youva Aoun; Stephane C. Alfaro; Mossad El-Metwally; M.M. Abdel Wahab; Philippe Blanc; Yehia Eissa; Hosni Ghedira; G. Siour; Katja Hungershoefer; Lucien Wald

Measurements of the global surface solar irradiation and its direct and diffuse components performed at three Egyptian sites (Aswan, Cairo, and Port Said) are used to test the ability of two published decomposition models to estimate the hourly direct normal irradiance from the measured global horizontal one in cloud-free conditions. The tested models failed to reproduce the temporal variability of the measurements, which we show to be partly induced by the large variability of the atmospheric content in aerosols. We propose a revised formulation of the decomposition models that takes into account the aerosol optical depth (AOD) at 1000 nm derived from onsite measurements. It leads to a significant reduction of the bias and root mean square deviation of the original models and this at the three Egyptian sites. However, because the AOD is rarely measured at the meteorological stations, we also quantify the performance of the revised models when the AOD is either derived from the MODIS observations or obtained by the products from Copernicus Atmospheric Monitoring Service (CAMS). Probably because of their finer temporal resolution that makes them more apt to reproduce the rapid variations of the AOD, the best results are obtained with the CAMS products. Therefore, we recommend using a combination of the revised decomposition models and these CAMS products to estimate the hourly direct normal irradiance in areas such as Egypt where aerosols are ubiquitous. Note that the improved decomposition models are generally applicable in all-sky conditions, although their benefit has been demonstrated to be significant, and probably limited to, cloud-free conditions.


Solar Energy | 2013

Artificial neural network based model for retrieval of the direct normal, diffuse horizontal and global horizontal irradiances using SEVIRI images

Yehia Eissa; Prashanth Reddy Marpu; Imen Gherboudj; Hosni Ghedira; Taha B. M. J. Ouarda; Matteo Chiesa


Solar Energy | 2012

Assessment and recalibration of the Heliosat-2 method in global horizontal irradiance modeling over the desert environment of the UAE

Yehia Eissa; Matteo Chiesa; Hosni Ghedira


Solar Energy | 2015

Validating surface downwelling solar irradiances estimated by the McClear model under cloud-free skies in the United Arab Emirates

Yehia Eissa; Saima Munawwar; Armel Oumbe; Philippe Blanc; Hosni Ghedira; Lucien Wald; Hélène Bru; Dominique Goffe


Earth System Science Data | 2016

A database of multi-year (2004–2010) quality-assured surface solar hourly irradiation measurements for the Egyptian territory

Mohamed Korany; Mohamed Boraiy; Yehia Eissa; Youva Aoun; Magdy Abdel Wahab; Stephane C. Alfaro; Philippe Blanc; Mossad El-Metwally; Hosni Ghedira; Katja Hungershoefer; Lucien Wald


Energy Procedia | 2014

Estimation of the Circumsolar Ratio in a Turbid Atmosphere

Yehia Eissa; Philippe Blanc; Armel Oumbe; Hosni Ghedira; Lucien Wald


ISES Solar World Congress 2013 | 2013

On the improvement of MACC aerosol spatial resolution for irradiance estimation in the United Arab Emirates

Armel Oumbe; Hélène Bru; Zhor Hassar; Philippe Blanc; Lucien Wald; Yehia Eissa; Prashanth Reddy Marpu; Imen Gherboudj; Hosni Ghedira; Dominique Goffe

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Hosni Ghedira

Masdar Institute of Science and Technology

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Lucien Wald

PSL Research University

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Youva Aoun

PSL Research University

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Stephane C. Alfaro

Centre national de la recherche scientifique

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