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Optimal hybrid storage planning under different tariffs in a microgrid

机译:微电网中不同费率下的最优混合存储计划

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High penetration of renewable energy sources (RES) requires flexibility options as storage to keep system stability. The main barrier to implement the storage systems is the high costs combined with short lifetimes. To define a cost-optimal storage solution for a microgrid, an optimal design strategy for a hybrid storage system is proposed that consists of thermal energy storage (TES) and battery energy storage (BES). The hybrid energy storage system is expected to bring the high potential for cost-saving and capacity optimization to guarantee the minimal possible implementation cost. Furthermore, a new flexible tariff system called white tariff has been implemented to assess the potential savings achieved by a different configuration of storage implementation. BES has been compared with TES in a grid-connected settlement area equipped with PV generation and a centralized heat pump (HP). The storage systems have been compared under white and flat tariffs. The results show that the hybrid storage system has more potential in terms of cost-saving when it is used with the white tariff system.
机译:可再生能源(RES)的高渗透率要求灵活的存储方式来保持系统稳定性。实施存储系统的主要障碍是高成本和短寿命。为了定义微电网的成本最优的存储解决方案,提出了一种由热能存储(TES)和电池能量存储(BES)组成的混合存储系统的最佳设计策略。混合动力储能系统有望在节省成本和优化容量方面带来巨大潜力,以确保最低的实施成本。此外,已经实施了一种称为白色关税的新的灵活关税制度,以评估通过不同配置的存储实现方式实现的潜在节省。在配备光伏发电和集中式热泵(HP)的并网沉降区中,将BES与TES进行了比较。在白色和固定关税下对存储系统进行了比较。结果表明,与白色电价系统一起使用时,混合存储系统在节省成本方面具有更大的潜力。

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