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Resilient operation of multiple energy carrier microgrids

机译:多个能量载体微电网的弹性运行

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This paper proposed a methodology to identify the vulnerable components, and ensure the resilient operation of coordinated electricity and natural gas infrastructures considering multiple disruptions within the microgrid. The microgrid demands, which consist of electricity and heat demands, are served by the interdependent electricity and natural gas supplies. The proposed approach addressed the vulnerability of multiple energy carrier microgrids against various interdictions, which is used to apply preventive reinforcements to increase the resilience of energy supply and decrease the operation cost. The proposed methodology is formulated as a bi-level optimization problem to address the optimal and secure operation of multiple energy carrier microgrids. The interdependence between natural gas and electricity infrastructures is addressed to show the effectiveness of the presented methodology in improving the resilience of generation and demand scheduling against deliberate actions causing disruptions in the interdependent energy infrastructures in multiple energy carrier microgrids.
机译:本文提出了一种方法来识别易受攻击的组件,并考虑到微电网内的多次破坏,确保协调的电力和天然气基础设施的弹性运行。微电网需求包括电力和热量需求,由相互依赖的电力和天然气供应满足。所提出的方法解决了多个能量载体微电网对各种干扰的脆弱性,该方法用于实施预防性加固,以增加能源供应的弹性并降低运营成本。拟议的方法被表述为双层优化问题,以解决多个能量载体微电网的最优和安全运行。解决了天然气和电力基础设施之间的相互依赖性,以显示所提出的方法在提高发电和需求调度的抵御能力方面的有效性,以应对故意行为,这些行为会导致多个能源载体微电网中相互依赖的能源基础设施的中断。

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