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P2P Energy Exchange Architecture for Swarm Electrification-Driven PV Communities
by
Giordani, Michel
, Bradai, Salma
, Taouil, Khaled
, Gassara, Amal
, Aloulou, Rahma
, Kharrat, Mohamed Wajdi
, Louati, Badii
in
Automation
/ Batteries
/ Blockchain
/ community-shared loads
/ Cost reduction
/ DC microgrids
/ Electricity
/ Empowerment
/ Energy consumption
/ Energy industry
/ Energy trading
/ Households
/ Internet access
/ P2P energy exchange
/ Rural areas
/ Rural electrification
/ rural PV communities
/ swarm electrification
/ User behavior
2024
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P2P Energy Exchange Architecture for Swarm Electrification-Driven PV Communities
by
Giordani, Michel
, Bradai, Salma
, Taouil, Khaled
, Gassara, Amal
, Aloulou, Rahma
, Kharrat, Mohamed Wajdi
, Louati, Badii
in
Automation
/ Batteries
/ Blockchain
/ community-shared loads
/ Cost reduction
/ DC microgrids
/ Electricity
/ Empowerment
/ Energy consumption
/ Energy industry
/ Energy trading
/ Households
/ Internet access
/ P2P energy exchange
/ Rural areas
/ Rural electrification
/ rural PV communities
/ swarm electrification
/ User behavior
2024
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Do you wish to request the book?
P2P Energy Exchange Architecture for Swarm Electrification-Driven PV Communities
by
Giordani, Michel
, Bradai, Salma
, Taouil, Khaled
, Gassara, Amal
, Aloulou, Rahma
, Kharrat, Mohamed Wajdi
, Louati, Badii
in
Automation
/ Batteries
/ Blockchain
/ community-shared loads
/ Cost reduction
/ DC microgrids
/ Electricity
/ Empowerment
/ Energy consumption
/ Energy industry
/ Energy trading
/ Households
/ Internet access
/ P2P energy exchange
/ Rural areas
/ Rural electrification
/ rural PV communities
/ swarm electrification
/ User behavior
2024
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P2P Energy Exchange Architecture for Swarm Electrification-Driven PV Communities
Journal Article
P2P Energy Exchange Architecture for Swarm Electrification-Driven PV Communities
2024
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Overview
Swarm electrification-driven communities face significant challenges, including implementing advanced distributed control in areas with limited ICT access and establishing trust among villagers hesitant to grant access to their assets. This paper proposes a distributed DC microgrid architecture for P2P energy exchange in these communities, ensuring stability and an effective exchange operation. By implementing a Blockchain marketplace specifically designed to suit the rural context, the proposed architecture ensures tracing of exchange transactions to fairly settle participants. Validation experiments demonstrate its efficacy in achieving peak shaving. It provides 11% of the requester’s total demand from the community even while maintaining the constraint of reducing discharge–charge cycles to one per day, thereby preserving battery life. Additionally, the solution reduces prosumer production losses by 16% of the total PV production.
Publisher
MDPI AG
Subject
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