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LCL filter design and control for grid-connected PWM converter

机译:LCL连接PWM转换器的LCL滤波器设计和控制

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This paper describes LCL filter design and control for grid-connected PWM converter. To attenuate switching harmonics on grid side with an LCL filter, cost-effectiveness must be considered to select filter parameters. This paper proposes a filter design method based on a computer simulation tool. Depending on user's optimal cost function, filter parameters are chosen without tedious and repetitive mathematical calculations. On the other hand, damping factors must be introduced in control of LCL filter to suppress the inherent resonant characteristics. Since the resonance phenomenon is minimized by increasing the ratio of switching frequency to fundamental grid frequency in most conventional researches, it is difficult to be employed in high power system due to the limited switching frequency of power semiconductors in the converter. In this paper, a novel current controller with generalized gain determination is suggested. Discrete time controller based on only grid voltages and currents information is introduced, which yields desirable dynamic response even in lower switching frequency of PWM converter. Simulations and experimental results are presented to validate the proposed design and control procedures.
机译:本文介绍了LCL连接的PWM转换器的LCL滤波器设计和控制。为了通过LCL滤波器衰减电网侧的开关谐波,必须考虑成本效益选择过滤参数。本文提出了一种基于计算机仿真工具的过滤器设计方法。根据用户的最佳成本函数,选择过滤参数而不进行繁琐和重复的数学计算。另一方面,必须在LCL滤波器控制中引入阻尼因子以抑制固有的谐振特性。由于在大多数传统研究中提高开关频率与基本电网频率的比率来最小化谐振现象,因此由于转换器中功率半导体的有限开关频率,难以在高功率系统中使用。本文提出了一种具有广义增益确定的新型电流控制器。介绍仅基于电流电压和电流信息的离散时间控制器,即使在PWM转换器的较低开关频率下也产生了理想的动态响应。提出了模拟和实验结果,以验证所提出的设计和控制程序。

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