Fuzzy logic control of OWC wave energy plant for preventing wells turbine stalling

S. Mishra, S. Purwar, N. Kishor
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引用次数: 1

Abstract

This paper proposes a fuzzy logic controller (FLC) for oscillating water column (OWC) wave energy plant in order to prevent the Wells turbine stalling. The stalling phenomenon decreases turbine efficiency when subjected to high airflow rate inside the OWC. Thus, the turbine needs to be operated within the permissible flow coefficient range so as to obtain maximum energy from the plant. The turbine is coupled to a wound rotor induction generator (WRIG) in series with externally connected rotor resistances. An adequate control scheme is required for choosing rotor resistance values which in turn will change the rotor slip. The FLC scheme with mean airflow velocity as input and resistance values as output has been designed. The fuzzy rules have been defined based on input-output data. The input-output data of the controller is obtained by numerical analysis of the plant for a predefined range of turbine flow coefficient and regular waves. The performance of proposed controller is demonstrated under regular and irregular sea wave conditions.
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OWC波浪能电站防止井轮机失速的模糊逻辑控制
本文提出了一种用于振动水柱波浪能电站的模糊控制器,以防止井式水轮机失速。机壳内气流过大时,失速现象会降低涡轮效率。因此,涡轮需要在允许的流量系数范围内运行,以便从电厂获得最大的能量。涡轮与缠绕转子感应发电机(WRIG)串联,外部连接转子电阻。转子电阻值的选择需要适当的控制方案,而电阻值的选择又会改变转子的转差。设计了以平均气流速度为输入,阻力值为输出的FLC方案。基于输入输出数据定义了模糊规则。控制器的输入输出数据是通过对电厂在给定水轮机流量系数和规则波范围内的数值分析得到的。在规则和不规则海浪条件下验证了该控制器的性能。
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