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Design and Implementation of Shunt Active PowerudLine Conditioner using Novel Control Strategies

机译:并联有功功率的设计与实现使用新型控制策略的线路调节器

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摘要

Shunt Active Power Filter (APF) or Active Power Line Conditioner (APLC) is designed and implemented for power quality improvements in terms of current harmonics and reactive-power compensation. The widespread use of non-linear loads in industrial, commercial and domestic facilities cause harmonic problems. Harmonics induce malfunctions in sensitive equipment, overvoltage by resonance, increase heat in the conductors, harmonic voltage drop across the network impedance and affects other customer loads connected at the Point of Common Coupling (PCC). Active power line conditioner is implemented for compensating the harmonics and reactive-power imultaneously in the distribution system. The performance of the active power line conditioner depends on the design and characteristics of the controller adopted for APLC. The objective of this research is to find a suitable control strategy for reference current extraction as well as PWM-VSI current controller. PI / PID / FLC / PI-FLC, Fryze power theory, proposed instantaneous realpower theory, proposed sinusoidal extraction controller and modified-synchronous reference frame theory methods are utilized for extracting reference current.Furthermore, indirect PWM-current control (triangular-carrier / triangular-periodical current controller, space vector modulation controller, fixed-Hysteresis Current Controller (HCC), adaptive-HCC and adaptive-fuzzy-HCC) approach is applied to generate switching pulses of the PWM-inverter. Each reference current extraction method in conjunction with various PWM-current control techniques (or vice-versa) are simulated and investigated for the active power line conditioner. For experimental validation, the modified-synchronous reference frame with adaptive-fuzzy-HCC technique is adopted. This control algorithm is demonstrated through the TMS320F240 Digital Signal Processor for shunt APLC system.
机译:并联有源电力滤波器(APF)或有源电力线路调节器(APLC)的设计和实现旨在通过电流谐波和无功补偿来改善电能质量。非线性负载在工业,商业和家庭设施中的广泛使用引起谐波问题。谐波会引起敏感设备的故障,谐振引起的过电压,导体中热量的增加,网络阻抗上的谐波电压降,并影响在公共耦合点(PCC)连接的其他用户负载。实施有功功率线路调节器可同时补偿配电系统中的谐波和无功功率。有功功率线路调节器的性能取决于APLC所采用控制器的设计和特性。这项研究的目的是为参考电流提取以及PWM-VSI电流控制器找到合适的控制策略。 PI / PID / FLC / PI-FLC,Fryze功率理论,瞬时有功理论,正弦波提取控制器和改进的同步参考框架理论方法均用于提取参考电流。此外,间接PWM电流控制(三角载波/三角周期电流控制器,空间矢量调制控制器,固定磁滞电流控制器(HCC),自适应HCC和自适应模糊HCC)方法用于生成PWM逆变器的开关脉冲。针对有源电力线调节器,对每种参考电流提取方法以及各种PWM电流控制技术(反之亦然)进行了仿真和研究。为了进行实验验证,采用了带有自适应模糊HCC技术的改进同步参考帧。此控制算法通过用于并联APLC系统的TMS320F240数字信号处理器进行了演示。

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    Karuppanan P;

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  • 年度 2012
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