基于SRF-PLL的CORDIC算法的电网同步相位估计

S. R. Panda, B. Babu
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引用次数: 8

摘要

并网逆变器系统的正常运行取决于电网电压的相位、幅值和频率等条件。在这种应用中,准确快速地检测电网电压的相位角、幅度和频率对于基准电流的产生至关重要。相位角在控制中起着重要的作用,用于将反馈变量转换为合适的参考系,在该参考系中实现控制结构。因此,电网同步在并网逆变器系统的控制中具有重要的作用。而在电网畸变条件下,电网电压相角的在线准确跟踪尤为重要;在线陷波,电压不平衡,电压下降,频率变化等。提出了基于同步参考帧锁相环(SRF-PLL)的CORDIC算法在三相电网电压不平衡条件下进行电网同步的相位估计技术。通过提出带SRF锁相环的CORDIC算法,可以大大减少计算时间,并且可以在FPGA或DSP实时平台上实现。利用MATLAB-Simulink软件包进行了计算机仿真,验证了研究的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phase estimation for grid synchronization using CORDIC algorithm with SRF-PLL
The proper operation of grid connected inverter system is determined by grid voltage conditions such as phase, amplitude and frequency. In such applications, an accurate and fast detection of the phase angle, amplitude and frequency of the grid voltage is essential for reference current generation. Phase angle plays an important role in control being used to transform the feedback variables to a suitable reference frame in which the control structure is implemented. Hence grid synchronization has a significant role in the control of grid connected inverter system. However, accurate on-line tracking of phase angle of the grid voltages under distorted grid condition is critical especially; during line notching, voltage unbalance, voltage dips, frequency variations etc. This paper presents phase estimation technique for grid synchronization using CORDIC algorithm with Synchronous Reference Frame-Phase Locked Loop (SRF-PLL) during unbalanced three-phase grid voltage conditions. By proposing CORDIC algorithm with SRF PLL, we can largely reduce the computational time while it will be implemented in real time platform using FPGA or DSP. Computer simulations have been carried out using MATLAB-Simulink package for feasibility of the study.
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