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Smart Grid reliability assessment utilizing Boolean Driven Markov Process and variable weather conditions

机译:利用布尔驱动马尔可夫过程和可变天气条件进行智能电网可靠性评估

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The transition from conventional electric grid to a more environmentally-friendly, reliable and efficient grid necessitates the reliability improvement. This will play an indispensable role in the future power system called Smart Grid (SG) due to the digital power supply requirements. This distinctive study demonstrates a combined effect of weather conditions and distributed generations (DGs) on the availability of the power system in a region. The ability to model the dynamics of the SG including the variation of weather conditions at different locations for the large-scale system is formulated. In this effort a novel approach is proposed based on the Variable Weather Boolean Logic Driven Markov Process (VW-BDMP), which is utilized along with statistical data. The major contribution of this paper is to introduce a method for the SG reliability assessment (SGRA) considering variable weather conditions, which provides an advantageous tool for the future power system reliability studies.
机译:从传统电网到更环保,可靠和有效的网格的转变需要改进可靠性。由于数字电源要求,这将在未来的电网(SG)中发挥不可或缺的作用。这种独特的研究表明了天气条件和分布代(DGS)对一个地区电力系统的可用性的综合影响。制定了模拟SG动态的能力,包括在大规模系统的不同位置处的天气状况变化。在这项工作中,基于可变天气布尔逻辑驱动的马尔可夫进程(VW-BDMP)提出了一种新的方法,其与统计数据一起使用。本文的主要贡献是介绍考虑可变天气条件的SG可靠性评估(SGRA)的方法,这为未来的电力系统可靠性研究提供了一种有利的工具。

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