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Experimental Investigation to Improve the Energy Efficiency of Solar PV Panels Using Hydrophobic SiO2 Nanomaterial

Research Abstract
This research aims to experimentally improve the overall eciency of solar photovoltaic (PV) panels by coating them with hydrophobic SiO2 nanomaterial. Also, an accurate mathematical model was used to estimate the parameters of the PV panel, which is a non-linear optimization problem. Based on the experimental data and using the particle swarm optimization (PSO) algorithm, the optimal five parameters of a single diode model of a PV panel were determined in this study. This experimental work was conducted and carried out in the Renewable Energy Laboratory of Assiut University, Egypt. A comparative analysis was completed for three identical solar PV panels; the first panel was coated with hydrophobic SiO2 nanomaterial, so it was considered to be a self-cleaning panel; the second panel was uncoated and cleaned manually on a daily basis; and the third panel was kept dusty all the time through the experimental investigation, and was used as a reference. Experimentally, the output power of the PV panels was monitored for each panel in this study. Also, the anti-static and anti-reflection e ects of coating solar PV panels with hydrophobic SiO2 nanomaterial were investigated experimentally. According to the obtained experimental results, it was found that the use of SiO2 coating for PV panels results in the better performance of the PV panels. The overall eciency of the coated panel increased by 15% and 5%, compared to the dusty panel and the uncoated panel which was manually cleaned daily, respectively.
Research Authors
Hatem R. Alamri,
Hegazy Rezk,
Heba Abd-Elbary,
Hamdy A. Ziedan,
Ahmed Elnozahy.
Research Department
Research Journal
Coatings
Research Member
Research Pages
pp. 1-14
Research Publisher
MDPI
Research Rank
1
Research Vol
Vol. 10, Issue 5
Research Website
https://doi.org/10.3390/coatings10050503
Research Year
2020

Scheduling of automated guided vehicles and machines in flexible manufacturing systems: a simulation study

Research Abstract

Flexible manufacturing systems (FMSs) have widely expanded in industry sectors all over the world. Scheduling is one of the problems that face the life cycle of FMSs. This paper introduces the simultaneous scheduling problem of automated guided vehicles (AGVs) and machines in FMSs. The study is based on discrete event simulation (DES) to solve that problem using benchmark data used by previous studies. The objective of this study is to determine the starting and completion times of each job to minimise the makespan. The results validate the robustness of the simulation model, especially for large-scale problems. Furthermore, they are compared against the other approaches and show consistency.

Research Authors
Essam Kaoud , Mahmoud Heshmat, Mahmoud A. El-Sharief and Mohamed G. El-Sebaie
Research Journal
International Journal of Industrial and Systems Engineering
Research Pages
372-387
Research Publisher
Inderscience Publishers (IEL)
Research Rank
1
Research Vol
35-3
Research Website
https://www.inderscienceonline.com/doi/abs/10.1504/IJISE.2020.107775
Research Year
2020

Scheduling of automated guided vehicles and machines in flexible manufacturing systems: a simulation study

Research Abstract
Flexible manufacturing systems (FMSs) have widely expanded in industry sectors all over the world. Scheduling is one of the problems that face the life cycle of FMSs. This paper introduces the simultaneous scheduling problem of automated guided vehicles (AGVs) and machines in FMSs. The study is based on discrete event simulation (DES) to solve that problem using benchmark data used by previous studies. The objective of this study is to determine the starting and completion times of each job to minimise the makespan. The results validate the robustness of the simulation model, especially for large-scale problems. Furthermore, they are compared against the other approaches and show consistency.
Research Authors
Essam Kaoud
, Mahmoud Heshmat
, Mahmoud A. El-Sharief
and Mohamed G. El-Sebaie
Research Journal
International Journal of Industrial and Systems Engineering
Research Pages
372-387
Research Publisher
Inderscience Publishers (IEL)
Research Rank
1
Research Vol
35-3
Research Website
https://www.inderscienceonline.com/doi/abs/10.1504/IJISE.2020.107775
Research Year
2020

Scheduling of automated guided vehicles and machines in flexible manufacturing systems: a simulation study

Research Abstract
Flexible manufacturing systems (FMSs) have widely expanded in industry sectors all over the world. Scheduling is one of the problems that face the life cycle of FMSs. This paper introduces the simultaneous scheduling problem of automated guided vehicles (AGVs) and machines in FMSs. The study is based on discrete event simulation (DES) to solve that problem using benchmark data used by previous studies. The objective of this study is to determine the starting and completion times of each job to minimise the makespan. The results validate the robustness of the simulation model, especially for large-scale problems. Furthermore, they are compared against the other approaches and show consistency.
Research Authors
Essam Kaoud
, Mahmoud Heshmat
, Mahmoud A. El-Sharief
and Mohamed G. El-Sebaie
Research Journal
International Journal of Industrial and Systems Engineering
Research Pages
372-387
Research Publisher
Inderscience Publishers (IEL)
Research Rank
1
Research Vol
35-3
Research Website
https://www.inderscienceonline.com/doi/abs/10.1504/IJISE.2020.107775
Research Year
2020

Scheduling of automated guided vehicles and machines in flexible manufacturing systems: a simulation study

Research Abstract
Flexible manufacturing systems (FMSs) have widely expanded in industry sectors all over the world. Scheduling is one of the problems that face the life cycle of FMSs. This paper introduces the simultaneous scheduling problem of automated guided vehicles (AGVs) and machines in FMSs. The study is based on discrete event simulation (DES) to solve that problem using benchmark data used by previous studies. The objective of this study is to determine the starting and completion times of each job to minimise the makespan. The results validate the robustness of the simulation model, especially for large-scale problems. Furthermore, they are compared against the other approaches and show consistency.
Research Authors
Essam Kaoud
, Mahmoud Heshmat
, Mahmoud A. El-Sharief
and Mohamed G. El-Sebaie
Research Journal
International Journal of Industrial and Systems Engineering
Research Pages
372-387
Research Publisher
Inderscience Publishers (IEL)
Research Rank
1
Research Vol
35-3
Research Website
https://www.inderscienceonline.com/doi/abs/10.1504/IJISE.2020.107775
Research Year
2020

Optimal Micro-PMU Placement Based On Hybrid Current Channels Selection for Distribution Grids

Research Abstract
NULL
Research Authors
Ahmed Abd Elaziz Elsayed ; Mansour Ahmed Mohamed ; Mohamed Abdelraheem ; Mohamed Abd-Elazeem Nayel
Research Department
Research Journal
IEEE Transactions on Industrial applications
Research Pages
NULL
Research Publisher
IEEE
Research Rank
1
Research Vol
NULL
Research Website
https://ieeexplore.ieee.org/document/9195132/authors#authors
Research Year
2020

Optimal Micro-PMU Placement Based On Hybrid Current Channels Selection for Distribution Grids

Research Abstract
NULL
Research Authors
Ahmed Abd Elaziz Elsayed ; Mansour Ahmed Mohamed ; Mohamed Abdelraheem ; Mohamed Abd-Elazeem Nayel
Research Department
Research Journal
IEEE Transactions on Industrial applications
Research Pages
NULL
Research Publisher
IEEE
Research Rank
1
Research Vol
NULL
Research Website
https://ieeexplore.ieee.org/document/9195132/authors#authors
Research Year
2020

Optimal Micro-PMU Placement Based On Hybrid Current Channels Selection for Distribution Grids

Research Abstract
NULL
Research Authors
Ahmed Abd Elaziz Elsayed ; Mansour Ahmed Mohamed ; Mohamed Abdelraheem ; Mohamed Abd-Elazeem Nayel
Research Department
Research Journal
IEEE Transactions on Industrial applications
Research Pages
NULL
Research Publisher
IEEE
Research Rank
1
Research Vol
NULL
Research Website
https://ieeexplore.ieee.org/document/9195132/authors#authors
Research Year
2020

Optimal Micro-PMU Placement Based On Hybrid Current Channels Selection for Distribution Grids

Research Abstract
NULL
Research Authors
Ahmed Abd Elaziz Elsayed ; Mansour Ahmed Mohamed ; Mohamed Abdelraheem ; Mohamed Abd-Elazeem Nayel
Research Department
Research Journal
IEEE Transactions on Industrial applications
Research Member
Research Pages
NULL
Research Publisher
IEEE
Research Rank
1
Research Vol
NULL
Research Website
https://ieeexplore.ieee.org/document/9195132/authors#authors
Research Year
2020

Cooperative Spectrum Sensing Using Maximum A Posteriori as a Detection Technique for Dynamic Spectrum Access Networks

Research Abstract
Over the past few years, dynamic spectrum access has been gaining an increasing attention as a solution to the spectrum scarcity problem. In this paper, a primary user detection technique based on Maximum A Posteriori estimation is proposed for dynamic spectrum access networks. In the proposed technique, a set of secondary users acting as sensing nodes send their individual decisions about the existence of the primary user to a central fusion center. The fusion center uses the received data to form a codeword then, applies the maximum a posteriori estimation rule to make a final decision regarding the presence of the primary user. The proposed technique takes into consideration the accuracy of the local decisions provided by the secondary users when making a final decision. In this paper, we analyze the performance of the proposed scheme and derive closed-form expressions for the upper bounds of the false alarm and misdetection probabilities. The results show that the proposed technique outperforms other combining techniques in terms of its ability to detect the primary user and, accordingly, minimizes the harmful interference to the licensed network. Moreover, the proposed technique achieves better performance at a lower number of reporting secondary users which compensates for the complexity of the maximum a posteriori estimation.
Research Authors
Ahmed Tohamy
USAMA S. MOHAMMED
MOHAMMAD M. ABDELLATIF
TAHA A. KHALAF
Mohamed Abdelraheem
Research Department
Research Journal
IEEE Access
Research Pages
NULL
Research Publisher
IEEE
Research Rank
1
Research Vol
NULL
Research Website
https://ieeexplore.ieee.org/document/9175027
Research Year
2020
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