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The increasing harmonic effects of SSPWM multilevel inverter controlling load currents investigated on modulation index

机译:研究SSPWM多电平逆变器控制负载电流的谐波增加对调制指数的影响

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Step sinus pulse width modulation (SSPWM) multilevel inverter is designed in order to control loads with reducing nonlinear effects as harmonics. Multilevel inverter has six switches for every phase and the switches are connected to control inputs and outputs of load. This method focuses on the identification of twelve IGBT and six MOSFET switches as nonlinear device, which consists of only the active and passive switches in three phase multi-level inverter. Inverter switches operate with pulse width modulation after signals of six step sinus compare with 2- small triangle signals for every phase. While operating characteristics of the switches are determined, a mathematical model of inverter controlling loads can be formed. After that, two PWM techniques are used to investigate the non-linear effects on this circuit model which contains mixed switches in its structure. So, the inverter load of ohmic (R) and inductive (L) are performed at the simulation so that performance of SSPWM multilevel inverter could be showed on loads. So, SSPWM and SPWM controlling inverter is tested on frequencies and modulation indexes. Then, performances of SPWM inverter and SSPWM multilevel inverter running loads are compared with output results.
机译:设计步进正弦脉冲宽度调制(SSPWM)多电平逆变器是为了控制负载,并减少非线性影响,例如谐波。多电平逆变器每相有六个开关,这些开关连接到负载的控制输入和输出。该方法着重于将十二个IGBT和六个MOSFET开关识别为非线性器件,该器件仅由三相多电平逆变器中的有源和无源开关组成。在将六步正弦信号与每个相位的2个小三角形信号进行比较之后,逆变器开关将使用脉冲宽度调制进行操作。在确定开关的工作特性的同时,可以形成逆变器控制负载的数学模型。之后,使用两种PWM技术研究此电路模型的非线性影响,该电路模型的结构中包含混合开关。因此,在仿真中执行了欧姆(R)和电感(L)的逆变器负载,以便可以在负载上显示SSPWM多电平逆变器的性能。因此,对SSPWM和SPWM控制变频器进行了频率和调制指标测试。然后,将SPWM逆变器和SSPWM多电平逆变器的运行负载性能与输出结果进行比较。

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