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Optimization of Guide Vane Closing Schemes of Pumped Storage Hydro Unit Using an Enhanced Multi-Objective Gravitational Search Algorithm

机译:改进的多目标引力搜索算法优化抽水蓄能机组导流叶片关闭方案

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The optimization of guide vane closing schemes (OGVCS) of pumped storage hydro units (PSHUs) is a cooperative control and optimal operation research field in renewable energy power generation technology. This paper presents an OGVCS model of PSHUs considering the rise rate of the unit rotational speed, the specific node pressure of each hydraulic unit, as well as various complicated hydraulic and mechanical constraints. The OGVCS model is formulated as a multi-objective optimization problem to optimize conflicting objectives, i.e., unit rotational speed and water hammer pressure criteria. In order to realize an efficient solution of the OGVCS model, an enhanced multi-objective bacterial-foraging chemotaxis gravitational search algorithm (EMOBCGSA) is proposed to solve this problem, which adopts population reconstruction, adaptive selection chemotaxis operator of local searching strategy and elite archive set to efficiently solve the multi-objective problem. In particular a novel constraints-handling strategy with elimination and local search based on violation ranking is used to balance the various hydraulic and mechanical constraints. Finally, simulation cases of complex extreme operating conditions (i.e., load rejection and pump outage) of a ‘single tube-double units’ type PSHU system are conducted to verify the feasibility and effectiveness of the proposed EMOBCGSA in solving OGVCS problems. The simulation results indicate that the proposed EMOBCGSA can provide a lower rise rate of the unit rotational speed and smaller water hammer pressure than other methods established recently while considering various complex constraints in OGVCS problems.
机译:抽水蓄能机组(PSHU)导流叶片关闭方案(OGVCS)的优化是可再生能源发电技术中的一种合作控制和最优运行研究领域。本文提出了一种PSHU的OGVCS模型,其中考虑了单位转速的上升速度,每个液压单元的特定节点压力以及各种复杂的液压和机械约束。 OGVCS模型被公式化为一个多目标优化问题,以优化相冲突的目标,即单位转速和水锤压力标准。为了实现OGVCS模型的有效求解,提出了一种改进的多目标细菌觅食趋化引力搜索算法(EMOBCGSA),该算法采用种群重构,局部搜索策略的自适应选择趋化算子和精英档案库。可以有效解决多目标问题。特别地,一种新颖的具有消除和基于违规等级的局部搜索的约束处理策略被用来平衡各种液压和机械约束。最后,针对“单管双机组”型PSHU系统进行了复杂的极端运行条件(即,甩负荷和泵停机)的模拟案例,以验证所提出的EMOBCGSA解决OGVCS问题的可行性和有效性。仿真结果表明,在考虑到OGVCS问题中的各种复杂约束的同时,提出的EMOBCGSA可以提供比最近建立的其他方法更低的单位转速上升率和更小的水锤压力。

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