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Multi-objective economic operation of modern power system considering weather variability using adaptive cuckoo search algorithm

机译:现代电力系统的多目标经济运行考虑自适应杜鹃搜索算法天气变异性

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Currently, most of the power systems are being integrated with flexible AC transmission system devices and renewable energy sources for operating with enhanced security margins and balancing the increasing demand cost-effectively. On the other side, the trend of increasing global warming and extremely changing weather conditions is continuing across the world. Under this scenario, it is essential to realize their effect on various power system components and its economic operation. In this paper, the parameters namely resistance of the transmission line/transformer, load and solar photovoltaic generation are modeled considering ambient temperature effect. Later, economic schedule under changing weather conditions is proposed for attaining multi-objectives simultaneously like total operating cost of conventional energy, real power loss, average voltage collapse point indicator index and average voltage deviation index. Also, the dispatchable problems in the transmission system and various practical operating constraints are handled via optimally setting the parameters of optimal unified power flow controller. The optimization problem is solved using adaptive cuckoo search algorithm (ACSA), in which a dynamically increasing switching parameter in a power of three is adopted for adjusting the random walk between local optima and global optima. The superiority of the proposed ACSA in solving the multiobjective, nonlinear complex optimization problem over basic CSA and particle swarm optimization, chicken swarm optimization and flower pollination algorithm is presented by illustrating various case studies on standard IEEE 14, 30 and 118–bus test systems.
机译:目前,大部分的电力系统被集成与柔性交流输电系统设备和增强安全运营利润率和成本有效地平衡日益增长的需求的可再生能源。在另一边,增加了全球变暖和极端气候条件变化的趋势,在世界各地继续。在这种情况下,有必要实现自己的各种电力系统元件的影响和经济运行。在本文中,所述传输线/变压器,负载和太阳能发电的参数即电阻被建模考虑环境温度的影响。后来,不断变化的天气条件下的经济计划,提出了实现同时多目标像传统的能源,真正的功率损耗,平均电压崩溃点指示器指数和平均电压偏差指数的总运营成本。此外,在传输系统和各种实际操作约束可分派问题通过最佳地设定最佳统一潮流控制器的参数进行处理。优化问题是使用自适应杜鹃搜索算法(ACSA),其中三个的功率动态增加开关参数,采用调整局部最优和全局最优解之间的随机游走解决。所提出的ACSA在解决多目标,非线性复杂的优化过基本CSA和粒子群优化,鸡群优化和花授粉算法问题的优越性是由示出在标准IEEE 14,30和118-总线测试系统的各种案例研究呈现。

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