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Techno-economic analysis of the impact of dynamic electricity prices on solar penetration in a smart grid environment with distributed energy storage

机译:技术经济分析动态电价对智能电网环境中太阳能渗透的影响,分布式储能

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This study investigates the technical and economic feasibility of using high levels of solar energy penetration up to 400 MW into a smart grid system of 60,000 smart houses. A novel non-cooperative Stackelberg game is introduced that incorporates the profitability of the supply-side and helps in solving problems related to over generation and photovoltaic curtailment. The non-cooperative game is intended to find the optimal dynamic prices that would leverage distributed storage through the demand-side to stabilize the power grid operation. Ten cases are studied with five photovoltaic plant sizes and two battery designs. A novel quantitative analysis of high levels of solar penetration as a percentage of the total electricity demand is introduced to evaluate the technical feasibility of the studied cases. To evaluate the economic viability of the proposed smart grid system, four metrics were used: the levelized cost of energy, the levelized cost of storage, the payback period, and the net present value. Two out of ten studied cases were concluded to be the most promising cases, one with a solar photovoltaic plant size of 200 MW and the other with 300 MW. The case with 300 MW solar plant is preferred as it paves the way for more solar energy deployment with a solar penetration percentage up to 67.78%. This case had a payback period of 10.72 years and a net present value of $51.44 M for the solar plant and a payback period of 12.06 years and a net present value of $40.75 M for the demand-side.
机译:本研究调查了使用高水平的太阳能渗透到400 MW的技术和经济可行性,进入60,000件智能房屋的智能电网系统。引入了一种新颖的非合作堆栈游戏,其中包括供应方的盈利能力,并有助于解决与发电和光伏缩减相关的问题。非合作游戏旨在找到最佳的动态价格,可以通过需求方利用分布式存储来稳定电网运行。使用五种光伏厂尺寸和两种电池设计进行了十种情况。引入了对高水平太阳能渗透的新量化分析,作为总电力需求的百分比,以评估所研究病例的技术可行性。为了评估所提出的智能电网系统的经济可行性,使用了四项指标:能源的稳定性成本,存储的稳定性成本,投资回收期和净现值。第十个学习案例中的两个是最有前景的案例,一个带有太阳能光伏植物尺寸为200兆瓦的案例,另外为200兆瓦,另外300兆瓦。具有300兆瓦太阳能厂的案例是优选的,因为它铺平了更多太阳能展开的方式,太阳能渗透率高达67.78%。本案的投资回收期为10.72岁,太阳能厂的净目前价值51.44米,回收期为12.06岁,需求方的净值为40.75米。

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