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首页> 外文期刊>Electric Power Components and Systems >Non-linear Control of Parallel AC Voltage Source Converter High-Voltage DC System Using a Hybrid Input-output Linearization Evolutionary Fuzzy Controller
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Non-linear Control of Parallel AC Voltage Source Converter High-Voltage DC System Using a Hybrid Input-output Linearization Evolutionary Fuzzy Controller

机译:混合输入-输出线性化演化模糊控制器的并联交流电压源变换器高压直流系统的非线性控制

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摘要

This article develops a continuous-time state-space model for a parallel AC voltage source converter high-voltage DC system in the d-q reference frame. A non-linear input-output linearization fuzzy proportional-integral type controller has been designed using just two rules with a view to implement in real time for the high-voltage DC light system based on two insulated-gate bipolar transistor based converters and a pulse width modulation firing scheme. The input-output linearization transforms the non-linear voltage source converter high-voltage DC converter system into one that is linear for obtaining the control inputs. However, the uncertainty due to speed and load fluctuations, along with converter parameter variations, limits the efficacy of the input-output linearization controller for enhancing the stability of the parallel AC voltage source converter high-voltage DC system. Thus, an analytical fuzzy controller for the converter-inverter system via feedback linearization with input-output decoupling is proposed for improved damping performance. The analytical fuzzy controller is then optimized using a particle swarm optimization technique to provide superior damping performance over a wide range of operating conditions.
机译:本文为d-q参考系中的并行AC电压源转换器高压DC系统建立了一个连续时间状态空间模型。仅使用两个规则设计了一种非线性输入输出线性化模糊比例积分型控制器,以期实时实现基于两个基于绝缘栅双极晶体管的转换器和一个脉冲的高压DC照明系统宽度调制发射方案。输入输出线性化将非线性电压源转换器高压DC转换器系统转换为线性的,以获得控制输入。但是,由于速度和负载波动以及转换器参数的变化而引起的不确定性限制了输入输出线性化控制器提高并联交流电压源转换器高压直流系统的稳定性的功效。因此,提出了一种通过反馈线性化和输入输出去耦的变流器-逆变器系统分析模糊控制器,以提高阻尼性能。然后,使用粒子群优化技术对解析模糊控制器进行优化,以在广泛的运行条件下提供卓越的阻尼性能。

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