مدیریت هوشمند انرژی در ساختمانهای هوشمند
ترجمه نشده

مدیریت هوشمند انرژی در ساختمانهای هوشمند

عنوان فارسی مقاله: مدیریت هوشمند انرژی در ساختمانهای هوشمند خارج از شبکه با تعامل انرژی
عنوان انگلیسی مقاله: Intelligent Energy Management in Off-grid Smart Buildings with Energy Interaction
مجله/کنفرانس: مجله تولید پاک – Journal of Cleaner Production
رشته های تحصیلی مرتبط: مهندسی برق، مهندسی انرژی، مهندسی کامپیوتر
گرایش های تحصیلی مرتبط: هوش ماشین، انرژی های تجدیدپذیر، هوش مصنوعی
کلمات کلیدی فارسی: مدیریت انرژی، خانه های هوشمند، ریزشبکه های هوشمند، سیستم ذخیره انرژی، توربین بادی
کلمات کلیدی انگلیسی: Energy management‚ Smart homes‚ smart microgrid‚ Energy storage system‚ Wind turbine
نوع نگارش مقاله: مقاله پژوهشی (Research Article)
شناسه دیجیتال (DOI): https://doi.org/10.1016/j.jclepro.2019.118906
دانشگاه: Department of Electrical Engineering, Damavand Branch, Islamic Azad University, Damavand, Iran
صفحات مقاله انگلیسی: 31
ناشر: الزویر - Elsevier
نوع ارائه مقاله: ژورنال
نوع مقاله: ISI
سال انتشار مقاله: 2020
ایمپکت فاکتور: 7.096 در سال 2019
شاخص H_index: 150 در سال 2020
شاخص SJR: 1.620 در سال 2019
شناسه ISSN: 0959-6526
شاخص Quartile (چارک): Q1 در سال 2019
فرمت مقاله انگلیسی: PDF
وضعیت ترجمه: ترجمه نشده است
قیمت مقاله انگلیسی: رایگان
آیا این مقاله بیس است: خیر
آیا این مقاله مدل مفهومی دارد: ندارد
آیا این مقاله پرسشنامه دارد: ندارد
آیا این مقاله متغیر دارد: ندارد
کد محصول: E14490
رفرنس: دارای رفرنس در داخل متن و انتهای مقاله
فهرست مطالب (انگلیسی)

Abstract

Graphical abstract

Nomenclature

۱٫ Introduction

۲٫ Methodology

۳٫ Case study

۴٫ Numerical simulation and results

۵٫ Conclusion

Declaration of competing interest

References

بخشی از مقاله (انگلیسی)

Abstract

The energy interaction between smart homes can be a solution for developing renewable energy systems in residential sections and optimal energy consumption in homes. The main objectives of such energy interactions are to increase consumer participation in energy management‚ boost economic efficiency‚ increase the user’s satisfaction by choosing between electricity sellers and buyers‚ and reduce the electricity purchased from the grid especially at peak hours. Thus, the innovations of this study includes defining an energy exchange method between smart buildings in an off-grid mode considering renewable energy systems, considering both thermal and electrical equilibrium and studying the lightning loads. it is assumed, here, that smart homes are off-grid‚ and the critical loads are supplied by the energy transfer between the homes using mixed integer linear programming. A compromise between the cost and time interval for using home appliances is considered to provide consumer’s comfort. An objective function is introduced considering programmable and non-programmable loads‚ thermal and electrical storages and lighting loads aiming to optimize the cost of energy between different smart buildings. Based on the method, which is tested in two different cases not only does the total cost of the smart buildings decrease but also the cost is reduced significantly when lightning loads are managed.

Introduction

The applications of hybrid energy systems have been studied with the focus on smart homes (SHs) and their optimal management in various studies. In (Yin, et al., 2017)‚ a hybrid DC Microgrid (MG) (based on power supply from photovoltaic (PV) cells) was investigated. This research shows that if the smart grid (SG) is in the off-grid state‚ the diesel generator with the electrochemical storage can be a better choice as a backup source. On the other hand‚ diesel generator cannot supply a stable power at the start-up. In (Arabul, et al., 2017)‚ the smart home loads are supplied by fuel cells (FCs), wind and solar energy resources. The method used in this research which is balancing and optimization of energy production and consumption using the Energy Management Algorithm (EMA), has been investigated. This method enhances the efficiency of the whole system improves the penetration of renewable energy sources‚ and increases the reliability of the system compared to conventional load shifting methods. In (Pilloni, et al., 2018)‚ the energy management method based on renewable energies in MG is presented., The energy sharing between SHs considering renewable energy participation is analysed in (Celik, et al., 2018). (Wu, et al., 2018)‚ adopt a method for energy management in SHs which is discussed considering renewable energy systems.