...
首页> 外文期刊>Military operations research >A unique mathematical optimization approach for examination of failure effects on electric power transmission grids by combined environmental and economic indicators
【24h】

A unique mathematical optimization approach for examination of failure effects on electric power transmission grids by combined environmental and economic indicators

机译:结合环境和经济指标检查电力输电网故障影响的独特数学优化方法

获取原文
获取原文并翻译 | 示例
           

摘要

Purpose - To achieve the optimum performance of electric transmission power system performance, the possibility of generators' failure and the consequences are amongst the most important and real assumptions which should be taken into consideration. This paper aims to recognize the most influential factors on generators' failures that can have a deep effect on the total cost and environmental issues. The integrated proposed approach is useful for investigating the generators' failure effects on the performance of electric power transmission grids from the economic and environmental perspectives. In other words, the cost and pollution minimization policies are considered to decrease the unfavorable generators' failure effects on electric power flow. Design/methodology/approach - The data used in this study are gathered from a real case in USA in first step, the influential generator points that their failure has a significant effect on the objective function, have been recognized. Then, different failure scenarios are defined, and the optimum values in each of these scenarios through the GAMS modeling software are found. Consequently, by using a two-level factorial design approach, the critical generators across the power grid are determined. Findings - The results show that by using such information, it is possible to detect the significant nodes in the power system grid and have a better maintenance plan. In addition, by means of this analysis and changing the capacity of main generators, it is possible to significantly reduce the operation costs. By comparing the indexes in case of the generator's location, it seems that some of them are critical because of their capacity and position in the network (as their failure causes infeasibility in the model). Also, some of these deficiencies caused considerable index changes and critical consequences. Practical implications - The integrated proposed approach is useful for investigating the generators' failure effects on the performance of electric power transmission grids from the economic and environmental perspectives. In other words, the cost and pollution minimization policies are considered to decrease the unfavorable generators' failure effects on electric power flow. Social implications - This paper endeavors to recognize the most influential factors on generators' failures that can have a deep effect on the total cost and environmental issues. Originality/value - The integrated proposed approach is useful for investigating the generators' failure effects on the performance of electric power transmission grids from the economic and environmental perspectives. In other words, the cost and pollution minimization policies are considered to decrease the unfavorable generators' failure effects on electric power flow.
机译:目的-为了实现电力传输电力系统性能的最佳性能,应考虑发电机故障和后果的可能性,这是最重要和最真实的假设之一。本文旨在识别对发电机故障最有影响的因素,这些因素可能对总成本和环境问题产生深远影响。提出的综合方法可用于从经济和环境角度研究发电机故障对输电电网性能的影响。换句话说,考虑成本和污染最小化策略以减少不利的发电机对电力流的故障影响。设计/方法/方法-这项研究中使用的数据首先是从美国的一个实际案例中收​​集的,已经认识到有影响力的生成器指出它们的失败对目标函数有重大影响。然后,定义不同的故障情况,并通过GAMS建模软件找到每种情况下的最佳值。因此,通过使用两级因子设计方法,可以确定跨电网的关键发电机。结果-结果表明,通过使用此类信息,可以检测电力系统网格中的重要节点并制定更好的维护计划。另外,通过该分析和改变主发电机的容量,可以显着降低运行成本。通过比较生成器位置情况下的索引,似乎其中一些至关重要,因为它们在网络中的容量和位置(因为它们的失败会导致模型不可行)。同样,其中一些缺陷导致了索引的显着变化和严重后果。实际意义-提出的综合方法可用于从经济和环境角度研究发电机故障对输电电网性能的影响。换句话说,考虑成本和污染最小化策略以减少不利的发电机对电力流的故障影响。社会影响-本文力求认识到对发电机故障最有影响力的因素,这些因素可能对总成本和环境问题产生深远影响。原创性/价值-提出的综合方法可用于从经济和环境角度研究发电机故障对输电电网性能的影响。换句话说,考虑成本和污染最小化策略以减少不利的发电机对电力流的故障影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号