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PID Control of a Three Phase Photovoltaic Inverter Tied to a Grid Based on a 120-Degree Bus Clamp PWM

机译:基于120度总线钳位PWM的并网三相光伏逆变器的PID控制。

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This paper presents a new operating type of a three phase photovoltaic PID current control system connected to the low voltage distribution grid. This operating type introduces a 120-degree bus clamp PWM control method (120° BC-PWM). A 120° BC-PWM is a special switching sequences technique employing bus clamp sequences that use only one phase under a PWM and PID control state every 60° while the other phases are being clamped. The BC-PWM method was used to generate six PWM signals to control a three phase inverter system every 60° with constant power input and a small dc link film capacitor. The main objective of this paper is to use new PWM techniques with a PID current control method to reduce the switching losses of three phase inverters. The losses were reduced to 1/3thfor each transistor by reducing the time operation for each transistor. The simulation results of the BC-PWM method show an improvement in the performance of the three phase inverter system connected to the grid. Simulation setup of the system obtained is built by using a SiC MOSFET, 5 kVA, 400 V line-line and 25 kHz switching frequency. The PID control is not continuously active for each phase but is operational in 60° and saturated at 120° in a half period. Following a proper tuning of the windup, it recovers very easily.
机译:本文提出了一种与低压配电网相连的三相光伏PID电流控制系统的新运行类型。该操作类型引入了120度总线钳位PWM控制方法(120°BC-PWM)。 120°BC-PWM是一种特殊的开关序列技术,它使用总线钳位序列,该总线钳位序列每60°仅在PWM和PID控制状态下使用一个相,而另一相被钳位。 BC-PWM方法用于生成六个PWM信号,以每60°控制一个具有恒定功率输入和一个小型dc链路薄膜电容器的三相逆变器系统。本文的主要目的是将新的PWM技术与PID电流控制方法结合使用,以减少三相逆变器的开关损耗。通过减少每个晶体管的工作时间,每个晶体管的损耗降低到1/3。 BC-PWM方法的仿真结果表明,连接到电网的三相逆变器系统的性能有所提高。通过使用SiC MOSFET,5 kVA,400 V线路和25 kHz开关频率来构建所获得系统的仿真设置。 PID控制并非在每个阶段都持续激活,而是在60°的状态下运行,并在半周期内在120°的状态下饱和。正确调整缠绕后,它很容易恢复。

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