论文标题

共享交易能源社区中的移动和固定储能资源

Sharing Mobile and Stationary Energy Storage Resources in Transactive Energy Communities

论文作者

Moura, Pedro, Sriram, Uday, Mohammadi, Javad

论文摘要

大多数电源系统越来越基于分布式能源,从而对电网管理产生强烈影响。就葡萄牙而言,可再生能源对发电产品组合的贡献已经很高,目标是到2050年达到100%。将通过在建筑物中安装的分布式光伏生成来确保大多数新的可再生生成能力,因此,建筑物中安装的光伏生成,因此,与PhotovoltAig Intervience一起构成了与Photovoltaic Intervience一起,与Photovoltaic Exptiration and Complient client client client client client client client clast and clast and Resid and Resist and Resill and Resist and Resill and Resill and Resill and resil and resil and Resill。解决这些问题需要在社区层面进行管理,并利用可控能源(例如储能资源)的时空灵活性。这是葡萄牙的监管机构认可的,最近的可再生一代自我消费立法可以使社区中的一代破坏交易。实施社区内交易并利用可再生生成的潜力需要在交易能源系统的背景下在社区层面进行监督和协调。本文着重于通过固定和移动能源存储作为灵活性资源来通过社区微电网的交易能源市场来解决能源共享。该拟议的框架考虑了带有现场电池的公共和商业建筑,以及众多电动汽车充电站。使用来自葡萄牙大学校园建筑物社区的真实数据评估该公式。结果表明,所提出的方法可以增加建筑和社区水平的可再生自我消费,以及电力成本的降低。

Most power systems are increasingly based on distributed energy resources, leading to a strong impact on the electrical grid management. In the case of Portugal, the contribution of renewable energy sources to the electricity generation portfolio is already high and the objective is to achieve 100% by 2050. Most of the new renewable generation capacity will be ensured by distributed photovoltaic generation installed in buildings and therefore the inherent intermittence of photovoltaic output combined with a mismatch with demand profile will challenge the operation and resiliency of the electrical grid. Addressing these issues requires management at the community level and the leveraging of spatio-temporal flexibility of controllable energy resources, such as energy storage resources. This is recognized by the regulators in Portugal and the recent renewable generation self-consumption legislation enables generation-surplus trading in communities. Implementing intra-community trading and utilizing the potentials of renewable generation requires oversight and coordination at the community level in the context of transactive energy systems. This paper focuses on addressing energy sharing through a transactive energy market in community microgrids, using stationary and mobile energy storage as flexibility resources. The proposed framework considers public and commercial buildings with on-site battery storage and numerous electric vehicle charging stations. The formulation is assessed using real data from a community of buildings on a Portuguese University campus. The results showcase that the proposed method achieves an increase in renewable self-consumption at building and community levels, as well as a reduction in electricity costs.

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