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首页> 外文期刊>American Journal of Electrical Power and Energy Systems >Improving Frequency Stability of the Nigerian 330kv Transmission Network Using Fuzzy Controller
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Improving Frequency Stability of the Nigerian 330kv Transmission Network Using Fuzzy Controller

机译:采用模糊控制器提高尼日利亚330kV传输网络的频率稳定性

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The frequency instability observed in the power transmission network was mainly as a result of the per unit volts not falling within 0.95 through 1.05 P.U, volts. This has caused constant power failure in our transmission net work. This sad situation of power failure noticed in the power transmission network is contained by introducing an improvement in frequency stability of the Nigerian 330kV transmission network using fuzzy controller. It was achieved by first characterizing the 330kv transmission network by running load flow on the network, designing conventional SIMULINK model for improving frequency stability of the Nigerian 330kv transmission network, designing a rule base that makes these faulty buses to attain stability, integrating the designed rule to the conventional SIMULINK model for improving frequency stability of the Nigerian 330kv transmission network. The results obtained are conventional bus 1 per unit volts at 4s through 10s is 0.94. On the other hand, when fuzzy controller is incorporated in the system it is 1.043P.U volts. This shows that there is frequency stability when fuzzy controller is incorporated in the system since the per unit volts fall within the range of 0.95 through 1.05 P.U. volt and conventional per unit volts is 0.944 which makes the frequency unstable since the volts does not attain stability. Meanwhile, when fuzzy controller is incorporated in the system the per unit volts is 1.047. With these results, it shows that there is frequency stability when fuzzy controller is imbibed in the system. Since the per unit volt fall within the stability range of 0.95 through 1.05P.U. Volts.
机译:在电力传输网络中观察到的频率不稳定性主要是每单位伏特未落在0.95到1.05 p.u,伏特内。这引起了我们的传输网络工作中的恒定电源故障。通过使用模糊控制器引入尼日利亚330kV传输网络的频率稳定性的提高来遏制电力传输网络中注意到的电力故障的这种悲伤情况。通过首先通过在网络上运行负载流程来实现330kV传输网络来实现的,设计用于提高尼日利亚330kv传输网络的频率稳定性的传统西链接模型,设计了使这些故障总线实现稳定性的规则基础,集成了设计的规则用于提高尼日利亚330KV传输网络频率稳定性的传统模拟模型。所得到的结果是每单位伏特的常规总线1,4S至10S为0.94。另一方面,当在系统中包含模糊控制器时,它是1.043p.u伏特。这表明,由于模糊控制器结合在系统中,由于每单位伏特在0.95至1.05 p.u的范围内,因此存在频率稳定性。每单位伏特和常规伏特为0.944,这使得频率不稳定,因为伏特不稳定。同时,当模糊控制器结合在系统中,每单位伏特是1.047。利用这些结果,它表明,在系统中吸收模糊控制器时存在频率稳定性。由于每单位伏特在0.95至1.05p.u的稳定范围内。伏特。

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