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Self-healing model for gas-electricity distribution network with consideration of various types of generation units and demand response capability

机译:考虑各种类型机组和需求响应能力的燃气配电网自愈模型

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摘要

In this study, a model has been proposed to carry out Self-Healing (SH) in distribution level with consideration of combined gas and electrical network and with consideration of various generation types include Micro-Turbines (MTs), Energy Storages (ESs) and Combined Heat and Power (CHP) units. The model also determines the optimum generation amounts of all generation units with target of minimizing of total cost. It is to be noted that the supplying source of gas demands through CHP or directly from natural gas network are important in defining of the optimum amount of the generation units. In case of fault occurrence in the grid and outage of line/lines or zone/zones as a result, the model determines the new grid topology so that it will not violate the constraints of the gas and electric networks and the minimum amount of loads will be isolated from the grid. Hence, the new generation amounts of generation units will be determined based on the new topology of the grid. If the generation amount or ramp rate limit of generation units are not enough or the transfer capacity of lines reach to their limitation the model will take action for Demand Response (DR) for controllable loads and in critical cases zone/zones-shedding to reduce total demand of the grid. The proposed model, after linearization, would be as Mixed Integer Linear Programming (MILP) problem that is solved by commercial solver. It is implemented on a grid with six Microgrids (MGs) and also 44-node system for testing and verifying.
机译:在这项研究中,已经提出了一种模型,该模型考虑了燃气和电网的组合,并考虑了包括微型涡轮机(MTs),储能装置(ESs)和燃气轮机在内的各种发电类型,在配电级进行了自愈(SH)。热电联产(CHP)单元。该模型还以最小化总成本为目标,确定所有发电单元的最佳发电量。要注意的是,通过热电联产或直接从天然气网络供应天然气的需求来源对于确定最佳的发电量至关重要。如果发生电网故障并导致线路/线路或区域/区域中断,该模型将确定新的电网拓扑,以使其不会违反天然气和电网的约束,并且最小负荷与网格隔离。因此,将基于网格的新拓扑来确定发电单元的新发电量。如果发电量或发电单元的上升速率极限不足或线路的传输容量达到其极限,则模型将采取“需求响应”(DR)措施以控制负载,并在关键情况下采取区域/区域削减措施以减少总量电网需求。线性化后,提出的模型将作为由商业求解器解决的混合整数线性规划(MILP)问题。它在具有六个微网(MG)以及用于测试和验证的44节点系统的网格上实现。

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