An intelligent energy management system for ship hybrid power system based on renewable energy resources

Other Title(s)

نظام ذكي لإدارة نظام طاقة كهربية هجين لسفينة اعتمادا على مصادر طاقه متجددة

Joint Authors

Jabir, Muhab
al-Banna, S. H.
al-Dabah, Mahmud
Hammad, M. S.

Source

Journal of al Azhar University : Engineering Sector

Issue

Vol. 16, Issue 60 (31 Jul. 2021), pp.712-723, 12 p.

Publisher

al-Azhar University Faculty of Engineering

Publication Date

2021-07-31

Country of Publication

Egypt

No. of Pages

12

Main Subjects

Civil Engineering

Topics

Abstract AR

يعتبر نظام القدره الكهربيه المكون من خلايا هيدروجينيه و نظام تخزين للطاقه مناكثر الانظمه استخداما في جميع المجالات.

يهدفهذا البحث الى تحسين أداء هذا النظام عن طريقه إضافه مجموعه خلايا شمسيه لزيادة اعتماديه النظام وتوفير الوقودالمستخدم و ايضا الى تقليل التلوث البيئى.

وجود اكثر من مصدر للطاقه الغير متجانس يتطلب وجود نظام اداره قوى لتحديد المصدر المناسب لتغذيه الاحمال و افضل الاوقات لشحن او تفريغ البطاريات.


يقدم البحث نظام اداره الطاقه الذكى باستخدام تقنيه الشبكات العصبونيه و الذى يتميز بالمرونه و القدره على التكيف اعتمادا على الخبرات السابقه للمستخدم و امكانيه اضافه او حذف اى مصدر او تعديل المدخلات.

تم استخدام المخاكاة باستخدام الماتلاب لضمان و اختبار النظام تبعا للخبرات السابقه.

Abstract EN

A hybrid ship power system with fuel cell and storage system batteries/supercapacitors can be developed by adding renewable energy sources.

Adding PV to the hybrid system enhances the system's reliability and dependability.

However, a high-level control strategy is needed to manage the generated power between the fuel cell and the photovoltaic array and determine the suitable time to charge or discharge the stored energy according to the load demand.

The perfect solution is using an intelligent neural network technique to control the ship's hybrid power system because of the system's nonlinearity and the existence of pulsing and high-density load demand.

This paper introduces an intelligent artificial neural network (ANN) technique that depends on previous experience.

ANN is flexible and easy to modify, adding/removing power system components, and be scaled to any ship power system rating.

Simulation results using MATLAB software prove that the robust, intelligent power management system can control and identify which energy source will be exploited according to the daylight.


Moreover, calculate the amount of generating power depending on the shipload demand.

In addition to that, it ensures the system dependability considering the other source as standby while the storage system is the power source in the transient period in case of switching between the two systems and maintaining the storage system in the high state of charge possible.

Furthermore, this will reduce fuel consumption during the ship's cursing mission.



American Psychological Association (APA)

al-Banna, S. H.& Hammad, M. S.& al-Dabah, Mahmud& Jabir, Muhab. 2021. An intelligent energy management system for ship hybrid power system based on renewable energy resources. Journal of al Azhar University : Engineering Sector،Vol. 16, no. 60, pp.712-723.
https://search.emarefa.net/detail/BIM-1254660

Modern Language Association (MLA)

Jabir, Muhab…[et al.]. An intelligent energy management system for ship hybrid power system based on renewable energy resources. Journal of al Azhar University : Engineering Sector Vol. 16, no. 60 (Jul. 2021), pp.712-723.
https://search.emarefa.net/detail/BIM-1254660

American Medical Association (AMA)

al-Banna, S. H.& Hammad, M. S.& al-Dabah, Mahmud& Jabir, Muhab. An intelligent energy management system for ship hybrid power system based on renewable energy resources. Journal of al Azhar University : Engineering Sector. 2021. Vol. 16, no. 60, pp.712-723.
https://search.emarefa.net/detail/BIM-1254660

Data Type

Journal Articles

Language

English

Notes

-

Record ID

BIM-1254660