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Enhancement of low voltage ride-through ability of the photovoltaic array aided by the MPPT algorithm connected with wind turbine

机译:低电压穿越能力的增强光伏阵列的翻译,由于MPPT算法与风力涡轮机

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Purpose By means of the massive environmental and financial reimbursements, wind turbine (WT) has turned out to be a satisfactory substitute for the production of electricity by nuclear or fossil power plants. Numerous research studies are nowadays concerning the scheme to develop the performance of the WT into a doubly fed induction generator-low voltage ride-through (DFIG-LVRT) system, with utmost gain and flexibility. To overcome the nonlinear characteristics of WT, a photovoltaic (PV) array is included along with the WT to enhance the system's performance. Design/methodology/approach This paper intends to simulate the control system (CS) for the DFIG-LVRT system with PV array operated by the MPPT algorithm and the WT that plays a major role in the simulation of controllers to rectify the error signals. This paper implements a novel method called self-adaptive whale with fuzzified error (SWFE) design to simulate the optimized CS. In addition, it distinguishes the SWFE-based LVRT system with standard LVRT system and the system with minimum and maximum constant gain. Findings Through the performance analysis, the value of gain with respect to the number of iterations, it was noted that at 20th iteration, the implemented method was 45.23% better than genetic algorithm (GA), 50% better than particle swarm optimization (PSO), 2.3% better than ant bee colony (ABC) and 28.5% better than gray wolf optimization (GWO) techniques. The investigational analysis has authenticated that the implemented SWFE-dependent CS was effectual for DFIG-LVRT, when distinguished with the aforementioned techniques. Originality/value This paper presents a technique for simulating the CS for DFIG-LVRT system using the SWFE algorithm. This is the first work that utilizes SWFE-based optimization for simulating the CS for the DFIG-LVRT system with PV array and WT.
机译:通过大规模的环境和目的财政补偿,风力涡轮机(WT)原来是一个令人满意的替代品由核或生产的电力化石发电厂。现在关于计划开发吗WT为双馈式感应的性能generator-low电压度过(DFIG-LVRT)系统,以极大的增益和灵活性。克服WT的非线性特征,包括光伏阵列WT来提高系统的性能。设计/方法/方法本文打算模拟控制系统(CS)DFIG-LVRT系统与光伏阵列的操作MPPT算法和WT中起着重要作用在模拟控制器来纠正错误的信号。方法称为自适应与fuzzified鲸鱼错误(SWFE)设计模拟优化的CS。此外,它区分SWFE-based LVRT系统与标准LVRT系统和系统最小和最大恒定增益。通过性能分析的价值获得关于迭代的数量,它指出,在20迭代,实现吗方法比遗传算法的45.23%(GA), 50%比粒子群优化(PSO), 2.3%(美国广播公司)和比蚂蚁蜜蜂殖民地28.5%比灰狼优化(拥有)技术。SWFE-dependent实现身份验证CS是DFIG-LVRT有效,当杰出的与上述技术。创意/值提出了一种技术为模拟CS DFIG-LVRT系统使用SWFE算法。利用SWFE-based优化模拟的CS DFIG-LVRT系统和光伏阵列WT。

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