采用空间矢量调制的中压电流源驱动的降低开关频率的有源前端转换器

E. Wiechmann, R. Burgos, J. Rodríguez
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引用次数: 10

摘要

提出了一种用于中压电流源驱动的有源前端(AFE)变换器。该转换器包括一个12脉冲隔离变压器和两个带GTO晶闸管的PWM电流源整流器(CSR)。该转换器工作在100 Hz (2 p.u)的开关频率下,因此与以前的PWM方法相比,其换流损失减少了66%。此外,转换器独立控制其有功和无功功率流,从而能够作为电力系统的无功补偿器运行。在此方案下,通过将无功基准设为零来实现统一的功率因数。变换器的控制系统建立在d-q轴内同步帧电流环和DC链路电流和无功功率外环上,分别控制d轴和q轴。除直流链路外,所有回路都使用线性控制器。采用非线性控制器对该回路进行线性化,从而避免了再生过程中的不稳定性。所有这些特征都是通过交错采样空间矢量调制(SVM)实现的,该方法确保了PWM-CSR通过馈电变压器之间的谐波消除。此外,支持向量机的使用避免了与选择性谐波消除技术(通常用于这些转换器)相关的所有复杂性。具体来说,求解非线性方程和分配短脉冲。在不同工况下的仿真结果验证了所提出的中压电流源驱动AFE变换器的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reduced switching frequency active front end converter for medium voltage current-source drives using space vector modulation
This paper proposes an active front end (AFE) converter for medium voltage current source drives. The converter comprises a 12-pulse isolation transformer and two PWM current source rectifiers (CSR) with GTO thyristors. The converter operates with a switching frequency of 100 Hz (2 p.u.), thus reducing its commutation losses by 66% compared to previous PWM approaches. Also, the converter independently controls its active and reactive power flow, thus being able to operate as a VAr compensator to the power system. Under this scheme, unity power factor is achieved by setting the reactive power reference to zero. The converter's control system is built over an inner d-q axes synchronous frame current loop, and a DC link current and reactive power outer loops to control the d and q axes respectively. Linear controllers are used in all loops except the DC link. A nonlinear controller is employed to linearize this loop, hence avoiding instabilities during regenerative operation. All these features were achieved using staggered sampling space vector modulation (SVM), which assures harmonic cancellation between both PWM-CSR through the feeding transformer. Moreover, the use of SVM avoids all complications associated with selective harmonic elimination techniques (usually employed in these converters). Specifically, solving nonlinear equations and distributing shorting pulses. Simulation results obtained under different operating conditions validate the proposed AFE converter for medium voltage current source drives.
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