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Investigation of Home Energy Management with Advanced Direct Load Control and Optimal Scheduling of Controllable Loads
Faculty
Engineering
Year:
2021
Type of Publication:
ZU Hosted
Pages:
Authors:
Mohamed Alsayed Lotfy Elsayed Abozyd
Staff Zu Site
Abstract In Staff Site
Journal:
Energies MDPI
Volume:
Keywords :
Investigation , Home Energy Management with Advanced
Abstract:
Due to the rapid changes in the energy situation on a global scale, the amount of RES installed using clean renewable energy sources such as Photovoltaic (PV) and Wind-power Generators (WGs) is rapidly increasing. As a result, there has been a great deal of research aimed at promoting the adoption of renewable energy. Research on Demand-side Management (DSM) has also been important in promoting the adoption of RES. However, the massive introduction of PV has changed the shape of the demand curve for electricity, which significantly impacts the operational planning of thermal generators. Therefore, this paper proposes an Advanced Direct Load Control (ADLC) model to temporarily shutdown the electric connection between the power grid and Smart Houses (SHs). The most important feature of the proposed model is that it temporarily shuts down the electric connection with the power grid. The shutdown is performed twice to increase the load demand during daytime hours and reduce the peak load during night-time hours. The proposed model also promotes the self-consumption of the generated power during the shutdown period, which is expected to reduce the operating cost. This paper considers six case studies for SH, and the operational costs and carbon dioxide emissions are compared and discussed. The results show that the SH with ADLC successfully reduces the operating costs and carbon dioxide emissions.
Author Related Publications
Mohamed Alsayed Lotfy Elsayed Abozyd, "Techno-economic configuration of a hybrid backup system within a microgrid considering vehicle-to-grid technology: A case study of a remote area", ELSEVIER, 2023
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Mohamed Alsayed Lotfy Elsayed Abozyd, "Hybrid Genetic Algorithm Fuzzy-Based Control Schemes for Small Power System with High-Penetration Wind Farms", MDPI AG ST ALBAN-ANLAGE 66, CH-4052 BASEL, SWITZERLAND, 2018
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Mohamed Alsayed Lotfy Elsayed Abozyd, "Robust Load Frequency Control Schemes in Power System Using Optimized PID and Model Predictive Controllers", MDPI AG ST ALBAN-ANLAGE 66, CH-4052 BASEL, SWITZERLAND, 2018
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Mohamed Alsayed Lotfy Elsayed Abozyd, "Load Frequency Control Using Demand Response and Storage Battery by Considering Renewable Energy Sources", MDPI AG ST ALBAN-ANLAGE 66, CH-4052 BASEL, SWITZERLAND, 2018
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Mohamed Alsayed Lotfy Elsayed Abozyd, "Optimal sizing and placement of rooftop solar photovoltaic at Kabul city real distribution network", .The Institution of Engineering and Technology, England, 2018
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Department Related Publications
Raef Seam Sayed Ahmed, "Model predictive control algorithm for fault ride-through of stand-alone microgrid inverter", Elsevier Ltd., 2021
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Enas Ahmed Mohamed Abdelhay, "Recent Maximum Power Point Tracking Methods for Wind Energy Conversion System", Elsevier, 2024
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Raef Seam Sayed Ahmed, "Optimal design and analysis of DC–DC converter with maximum power controller for stand-alone PV system", Elsevier Ltd., 2021
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Raef Seam Sayed Ahmed, "Parameters identification and optimization of photovoltaic panels under real conditions using Lambert W-function", Elsevier Ltd., 2021
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Mohammed Abdelhamied Abdelnaeem , "Artificial ecosystem-based optimiser to electrically characterise PV generating systems under various operating conditions reinforced by experimental validations", Wiley, 2021
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