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Performance of Fuzzy Logic Based Controller for UPFC on Power Quality Issues in Transmission Network

机译:基于模糊逻辑的UPFC控制器在输电网络电能质量问题上的性能

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The extension of Transmission network is highly important because of the power transfer capability impingement of transmission lines on power market business but at present moment the new extension of the transmission network is confined because of the substantial contemplation, financial issues and potential health trappings of the electromagnetic field. This consistently growing need for electric power has formed it necessary to employ the accessible transmission network assets. The implementation of flexible AC transmission system (FACTS) might be fruitful choice to enhance power flow capacity (PFC) in existing transmission network. FACTS devices diverse the tracks of exchanged power over transmission lines through changing bus voltage angle, the reactance of transmission lines. In this work, a miniature of Unified Power Flow Controller is modified with Fuzzy Logic (FL) based shunt and serial controllers to increase the power network stability. Fuzzy control is employed in the control scheme of UPFC and Pulse width modulation. A critical case of 3 phase fault occurrence in a power system has been studied. The results are compared with the presence and absence of UPFC. Simulations have been accomplished on MATLAB/Simulink software. To present the effectiveness of purposed controller, the obtained outcomes have been also compared with PID controller. It reveals that the Fuzzy Logic based UPFC has the best performance over PID Controller.
机译:输电网络的扩展非常重要,因为输电能力会影响电力市场业务的输电能力,但是目前,由于电磁技术的实质性考虑,财务问题和潜在的健康陷阱,输电网络的新扩展受到限制领域。对电力的这种持续增长的需求已经形成了使用可访问的传输网络资产的必要性。实施灵活的交流输电系统(FACTS)可能是提高现有输电网络中的潮流能力(PFC)的有效选择。 FACTS设备通过改变总线电压角,传输线的电抗来改变传输线上交换功率的轨迹。在这项工作中,使用基于模糊逻辑(FL)的并联和串行控制器修改了统一潮流控制器的微型模型,以提高电网的稳定性。 UPFC和脉冲宽度调制的控制方案中采用了模糊控制。研究了电力系统中三相故障发生的临界情况。将结果与是否存在UPFC进行比较。仿真已在MATLAB / Simulink软件上完成。为了说明目标控制器的有效性,还将获得的结果与PID控制器进行了比较。结果表明,基于模糊逻辑的UPFC具有优于PID控制器的最佳性能。

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