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Energy sharing strategy based on call auction trading: Energy bank system

机译:基于呼叫拍卖交易的能源共享战略:能源银行系统

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Under the pressure of climate change, renewable energy development has been assisted by subsidies or preferential policies such as feed-in-tariff. However, renewable energy cannot rely on policies as before. To stimulate the further development of renewable energy, this paper proposed an energy bank system (EBS) using a sharing economy model, i.e. a trading platform for multiple microgrids with renewable distributed generation (RDG) or hybrid energy storage devices. EBS is a similar idea with a virtual bank in the financial sector. Money is electrical energy, whereas storing energy is an analogy to depositing money, RDG becomes a kind of investment. To maximize the utilization efficiency of the RDG, participants of EBS can trade electricity with each other and earn revenues. In this paper, the figure of distributed energy charging (FDEC) is proposed for the energy management and dispatch, the call-auction method with the rule of maximum transaction volume is proposed for the energy trading and calculation. In the case studies, based on the practical data in Australia, the simulation results prove advanced economic advantages and high effectiveness of EBS.
机译:在气候变化的压力下,可再生能源发展得到了补贴或优惠政策,如喂养税款。但是,可再生能源不能像以前一样依赖政策。为了刺激可再生能源的进一步发展,本文提出了一种利用共享经济模型的能源银行系统(EBS),即,具有可再生分布式发电(RDG)或混合能储能设备的多个微电网的交易平台。 EBS是金融部门的虚拟银行类似的想法。金钱是电能,而储存能量是一个类比存钱,RDG成为一种投资。为了最大限度地提高RDG的利用效率,EBS的参与者可以互相贸易电力并获得收入。本文提出了用于能量管理和调度的分布式能量充电(FDEC),提出了具有最大交易量规则的呼叫拍卖方法,用于能量交易和计算。在案例研究中,基于澳大利亚的实际数据,模拟结果证明了EBS的先进经济优势和高效性。

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