几种波浪变化下的水动力和潮汐发电机稳定性分析

IF 1.4 Q2 MATHEMATICS, APPLIED International Journal of Differential Equations Pub Date : 2021-06-16 DOI:10.1155/2021/6682407
M. Ikhwan, S. Rizal, M. Ramli, Z. Muchlisin, S. Munzir
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引用次数: 1

摘要

许多研究人员继续开发潮汐涡轮机,包括为了优化目的而结合控制系统。本文试图评估潮汐涡轮机中两个机械系统的稳定性:永磁同步发电机(PMSG)上的螺旋桨获取动能系统和d-q图系统。所采用的方法是表示具有稳定特征值的相平面轮廓。涡轮机每分钟转数的临界值提供了一些平衡点。研究了角速度奇异性对修正系统的影响。根据结果,在弱电流的情况下,发电机转速没有切断控制。三个潮汐涡轮机部件的组合导致平衡点的偏移。尽管PMSG沿着Id线有一个无限大的平衡点 = 0时,转子角速度的影响会阻止所有这些点处于平衡状态。最后,在本研究中,洋流的速度和类型引起的转子角速度只是上限和下限。各种波动的稳定性都在这个范围内。
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Hydrodynamics and Tidal Turbine Generator Stability Analysis in Several Wave Variations
The development of tidal turbines continues to be carried out by many researchers, including the incorporation of a control system for optimization purposes. This paper attempts to assess the stability of two mechanical systems in a tidal turbine: a propeller harvesting kinetic energy and a d-q diagram system on a permanent-magnet synchronous generator (PMSG). The method employed is the representation of a phase plane profile with a stable eigenvalue. The critical value of the turbine’s rotations per minute provides some points of equilibrium. The effect of the angular velocity singular on the modified system was also investigated. There is no cutoff control for the generator rotational speed in the case of weak currents, according to the results. The combination of the three tidal turbine components results in a shift in the equilibrium point. Although PMSG has an infinite equilibrium point along the line Id = 0, the effect of the rotor angular velocity prevents all of these points from being in equilibrium. Finally, in this study, the rotor angular velocity caused by the speed and type of ocean currents are only the upper and lower limits. The stability of the various wave variations is within this range.
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CiteScore
3.10
自引率
0.00%
发文量
20
审稿时长
20 weeks
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