论文标题

缓解分布微电网中可再生产生的不确定性

On Mitigating the Uncertainty in Renewable Generation in Distribution Microgrids

论文作者

Dey, Arnab, Khatana, Vivek, Mani, Ankur, Salapaka, Murti V.

论文摘要

在本文中,由于微电网中可再生能源产生来源的固有不确定性,我们关注减轻无法满足电力需求的风险的问题。我们考虑了三种不同的需求方案,即满足短期的地平线电力需求,持续的能源需求以及在规定的未来时间的电力需求必须得到几乎确定的保证,并且发电是随机的,并且由几何布朗尼运动控制的动态。对于每种情况,我们都提供满足电气需求的解决方案。我们提出了数值实验的结果,以证明我们的方案的适用性。

In this article, we focus on the problem of mitigating the risk of not being able to meet the power demand, due to the inherent uncertainty of renewable energy generation sources in microgrids. We consider three different demand scenarios, namely meeting short-time horizon power demand, a sustained energy demand and a scenario where the power demand at a prescribed future time has to be met with almost sure guarantee with power generation being stochastic and following dynamics governed by geometric Brownian motion. For each of these scenarios we provide solutions to meet the electrical demand. We present results of numerical experiments to demonstrate the applicability of our schemes.

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