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Optimizing rooftop photovoltaic distributed generation with battery storage for peer-to-peer energy trading

机译:使用电池存储优化屋顶光伏分布式发电,以实现对等能源交易

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摘要

Distributed generation (DG) based on rooftop photovoltaic (PV) systems with battery storages is a promising alternative energy generation technology to reduce global greenhouse gas emissions. As regulatory tariff-based incentives are diminishing, innovative solutions are required to sustain this renewable energy generation. An optimization model is proposed to maximize the economic benefits for rooftop PV-battery DG in a peer-to-peer (P2P) energy trading environment. The goal of the proposed model is to investigate the feasibility of such renewable source participated P2P energy trading by examining the economic benefits. The model is illustrated in a simulation framework for a local community with 500 households under real-world constraints encompassing PV systems, battery storage, customer demand profiles and market signals including the retail price, feed-in tariff and P2P energy trading mechanism. Interactions among peer-to-peer trading stakeholders are examined, quantifying household savings for different scenarios of this P2P-based DG. Household energy savings are identified to be sensitive to many factors including the scale of PV systems, the PV penetration, the P2P trading margins, the presence of battery storage and energy trading time. The model shows that maximal savings up to 28% can be achieved by households equipped with larger PV systems and battery storages during weekdays from an exemplified case. The sensitivity analysis demonstrates that households with PV systems have lower savings when PV penetration is high owing to excessive energy traded on the P2P market, pushing down the clearing price and the savings gain. Households with a battery-only configuration are shown to achieve fewer savings in contrast to households without any renewable resources in a P2P trading community. The model’s energy insights are the beginning of understanding the actual impact of policy, market and technical signals on economic benefits for household distributed renewable generation in a P2P energy trading market.
机译:基于带有电池存储的屋顶光伏(PV)系统的分布式发电(DG)是一种有希望的替代能源发电技术,可以减少全球温室气体排放。随着基于监管关税的激励措施逐渐减少,需要创新的解决方案来维持这种可再生能源的发电。提出了一种优化模型,以在对等(P2P)能源交易环境中最大化屋顶光伏电池DG的经济利益。该模型的目的是通过检查经济效益来研究这种可再生能源参与的P2P能源交易的可行性。该模型在一个具有500个家庭的本地社区的模拟框架中进行了说明,该社区受现实世界的约束,包括光伏系统,电池存储,客户需求概况和市场信号,包括零售价格,上网电价和P2P能源交易机制。检查了点对点贸易利益相关者之间的互动,量化了基于P2P的DG的不同方案的家庭储蓄。已确定家庭节能对许多因素敏感,包括光伏系统的规模,光伏渗透率,P2P交易利润率,电池存储的存在和能源交易时间。该模型显示,在一个典型的案例中,配备大型光伏系统和电池存储的家庭在工作日内最多可节省28%的费用。敏感性分析表明,由于P2P市场上交易过多的能源,使用PV系统的家庭在PV普及率较高时储蓄较低,从而降低了结算价格并节省了收益。与在P2P交易社区中没有任何可再生资源的家庭相比,仅使用电池配置的家庭显示出较少的储蓄。该模型的能源洞察力是了解P2P能源交易市场中政策,市场和技术信号对家庭分布式可再生能源发电的经济效益的实际影响的开始。

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