Advances in the Design of Renewable Energy Power Supply for Rural Health Clinics, Case Studies, and Future Directions

Author:

Abdulkarim Abubakar12,Faruk Nasir34ORCID,Alozie Emmanuel3ORCID,Olagunju Hawau3,Aliyu Ruqayyah Yusuf5,Imoize Agbotiname Lucky6ORCID,Adewole Kayode S.7ORCID,Imam-Fulani Yusuf Olayinka8ORCID,Garba Salisu9,Baba Bashir Abdullahi10,Hussaini Mustapha11,Oloyede Abdulkarim A.8,Abdullahi Aminu12,Kanya Rislan Abdulazeez13,Usman Dahiru Jafaru14

Affiliation:

1. Department of Electrical Engineering, Ahmadu Bello University, Zaria 810107, Nigeria

2. Department of Electrical and Telecommunications Engineering, Kampala International University, Kansanga, Kampala P.O. Box 20000, Uganda

3. Department of Information Technology, Sule Lamido University, Kafin Hausa PMB 048, Nigeria

4. Directorate of Information and Communication Technology, Sule Lamido University, Kafin Hausa PMB 048, Nigeria

5. Department Information and Media Studies, Faculty of Communication, Bayero University, Kano PMB 3011, Nigeria

6. Department of Electrical and Electronics Engineering, Faculty of Engineering, University of Lagos, Akoka 100213, Nigeria

7. Department of Computer Science, University of Ilorin, Ilorin 240003, Nigeria

8. Department of Telecommunication Science, University of Ilorin, Ilorin 240003, Nigeria

9. Department of Software Engineering, Sule Lamido University, Kafin Hausa PMB 048, Nigeria

10. Department of Cyber Security, Sule Lamido University, Kafin Hausa PMB 048, Nigeria

11. Department of Economics, Faculty of Social and Management Sciences, Kafin Hausa PMB 048, Nigeria

12. University Medical Services, Sule Lamido University, Kafin Hausa PMB 048, Nigeria

13. Department of Computer Science and Information Technology, Baze University, Abuja Plot 686, Nigeria

14. Department of International Law and Jurisprudence, Faculty of Law, Bayero University, Kano PMB 3011, Nigeria

Abstract

Globally, effective and efficient healthcare is critical to the wellbeing and standard of living of any society. Unfortunately, several distant communities far from the national grid do not have access to reliable power supply, owing to economic, environmental, and technical challenges. Furthermore, unreliable, unavailable, and uneconomical power supply to these communities contributes significantly to the delivery of substandard or absence of qualitative healthcare services, resulting in higher mortality rates and associated difficulty in attracting qualified healthcare workers to the affected communities. Given these circumstances, this paper aims to conduct a comprehensive review of the status of renewable energy available to rural healthcare clinics around the globe, emphasizing its potential, analysis, procedures, modeling techniques, and case studies. In this light, several renewable energy modeling techniques were reviewed to examine the optimum power supply to the referenced healthcare centers in remote communities. To this end, analytical techniques and standard indices for reliable power supply to the isolated healthcare centers are suggested. Specifically, different battery storage systems that are suitable for rural healthcare systems are examined, and the most economical and realistic procedure for the maintenance of microgrid power systems for sustainable healthcare delivery is defined. Finally, this paper will serve as a valuable resource for policymakers, researchers, and experts in rural power supply to remote healthcare centers globally.

Publisher

MDPI AG

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