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Hybrid Modulation Technique for Neutral Point Clamped Inverter to eliminate neutral point shift with minimum switching loss

机译:中性点夹紧逆变器的混合调制技术,消除了最小开关损耗的中性点转移

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In neutral-point-clamped (NPC) multilevel inverter eliminating neutral point shift is a challenging task. The carrier based pulse width modulation (CBPWM) techniques proposed in literature for this works well for certain range of load power factor and modulation index. Though non-nearest vector (NNV) Space vector PWM (SVPWM) technique would solve this problem, it does it at the cost of increased switching loss. This paper proposes a hybrid technique by combining both CBPWM and SVPWM. In this technique CBPWM is used for modulating the output voltage and SVPWM is used to eliminate neutral point shift. SVPWM technique is activated for a small duration of one carrier cycle at every zero crossing of reference. This minimizes the switching transitions and thereby switching loss. The proposed technique is tested in MATLAB-Simulink under varying load power factor (pf), different initial capacitor voltages and for unbalanced loads. Simulation results yield better performance.
机译:在中性点夹紧(NPC)多级逆变器中消除中性点换档是一个具有挑战性的任务。在文献中提出的基于载波的脉冲宽度调制(CBPWM)技术适用于一定范围的负载功率因数和调制指数。虽然非最近的载体(NNV)空间矢量PWM(SVPWM)技术将解决此问题,但它以提高开关损耗为代价。本文通过组合CBPWM和SVPWM来提出混合技术。在该技术中,CBPWM用于调制输出电压,并且SVPWM用于消除中性点移位。在每个零参考的每个过零点时,SVPWM技术被激活,在一个载波循环的少的持续时间内。这最小化了切换转换,从而最大限度地切换损耗。在不同负载功率因数(PF),不同的初始电容电压和不平衡负载下,在Matlab-Simulink中测试了所提出的技术。仿真结果产生更好的性能。

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