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Space vector modulation for three-level NPC inverter using two-level space vector diagram

机译:使用两级空间矢量图的三级NPC逆变器的空间矢量调制

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A novel concept that uses two-level (2L) space vector diagram (SVD) to achieve three-level (3L) space vector modulation (SVM) is introduced in this paper. Main emphasis is given on neutral-point (NP) clamped (NPC) inverter, though, the idea does not depend on the topology. Two interesting schemes for NPC namely nearest three vector (N3V) modulation and nearest three virtual vector (N3VV) modulation are considered for detailed analysis. The main technical drawback of NP voltage oscillations with N3V is a effectively addressed by N3VV for full modulation and power factor range. However, the extensive calculations involved in the process of obtaining the duty ratios have made this method difficult to implement. In this paper, first, simple mathematical relations are established for N3V and N3VV modulation methods using 2L SVM. Later, appropriate modulation algorithms are developed for implementation. The simplicity of the proposed modulation approach has a significant impact on execution process. No simplifications have made in the Space vector diagram (SVD) unlike some newly proposed simplified schemes. The performance of the proposed modulation algorithm is simulated in MATLAB, Simulink for various operating conditions.
机译:本文介绍了一种使用两级(2L)空间矢量图(SVD)实现三级(3L)空间矢量调制(SVM)的新颖概念。尽管如此,主要重点是上色(NP)钳位(NPC)逆变器给出了这个想法不依赖于拓扑。 NPC的两个有趣方案即最接近的三个向量(N3V)调制和最接近的三个虚拟矢量(N3VV)调制以进行详细分析。 N3V的NP电压振荡的主要技术缺点是N3VV有效寻址,用于全调制和功率因数范围。然而,获得占空比的过程中涉及的广泛计算已经使该方法难以实施。在本文中,首先,使用2L SVM为N3V和N3VV调制方法建立简单的数学关系。后来,开发了适当的调制算法以实现。所提出的调制方法的简单性对执行过程产生了重大影响。与一些新提出的简化方案不同,空间矢量图(SVD)没有简化。在MATLAB中模拟了所提出的调制算法的性能,用于各种操作条件的SIMULINK。

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