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Auteurs principaux: Nie, Yonghui, Li, Zhi, Zhang, Jie, Gao, Lei, Li, Yang, Zhou, Hengyu
Format: Preprint
Publié: 2024
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Accès en ligne:https://arxiv.org/abs/2408.13289
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author Nie, Yonghui
Li, Zhi
Zhang, Jie
Gao, Lei
Li, Yang
Zhou, Hengyu
author_facet Nie, Yonghui
Li, Zhi
Zhang, Jie
Gao, Lei
Li, Yang
Zhou, Hengyu
contents To coordinate resources among multi-level stakeholders and enhance the integration of electric vehicles (EVs) into multi-microgrids, this study proposes an optimal dispatch strategy within a multi-microgrid cooperative alliance using a nuanced two-stage pricing mechanism. Initially, the strategy assesses electric energy interactions between microgrids and distribution networks to establish a foundation for collaborative scheduling. The two-stage pricing mechanism initiates with a leader-follower game, wherein the microgrid operator acts as the leader and users as followers. Subsequently, it adjusts EV tariffs based on the game's equilibrium, taking into account factors such as battery degradation and travel needs to optimize EVs' electricity consumption. Furthermore, a bi-level optimization model refines power interactions and pricing strategies across the network, significantly enhancing demand response capabilities and economic outcomes. Simulation results demonstrate that this strategy not only increases renewable energy consumption but also reduces energy costs, thereby improving the overall efficiency and sustainability of the system.
format Preprint
id arxiv_https___arxiv_org_abs_2408_13289
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Optimal Dispatch Strategy for a Multi-microgrid Cooperative Alliance Using a Two-Stage Pricing Mechanism
Nie, Yonghui
Li, Zhi
Zhang, Jie
Gao, Lei
Li, Yang
Zhou, Hengyu
Systems and Control
To coordinate resources among multi-level stakeholders and enhance the integration of electric vehicles (EVs) into multi-microgrids, this study proposes an optimal dispatch strategy within a multi-microgrid cooperative alliance using a nuanced two-stage pricing mechanism. Initially, the strategy assesses electric energy interactions between microgrids and distribution networks to establish a foundation for collaborative scheduling. The two-stage pricing mechanism initiates with a leader-follower game, wherein the microgrid operator acts as the leader and users as followers. Subsequently, it adjusts EV tariffs based on the game's equilibrium, taking into account factors such as battery degradation and travel needs to optimize EVs' electricity consumption. Furthermore, a bi-level optimization model refines power interactions and pricing strategies across the network, significantly enhancing demand response capabilities and economic outcomes. Simulation results demonstrate that this strategy not only increases renewable energy consumption but also reduces energy costs, thereby improving the overall efficiency and sustainability of the system.
title Optimal Dispatch Strategy for a Multi-microgrid Cooperative Alliance Using a Two-Stage Pricing Mechanism
topic Systems and Control
url https://arxiv.org/abs/2408.13289