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A magnitude-phase detection method for grid-connected PCC of distributed generation systems based on sequence decoupling

机译:基于序列解耦的分布式发电系统并网PCC幅值相位检测方法

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It is a precondition of riding through the grid faults for distributed generation systems that the magnitude/phase information of voltages or currents at the grid-connected point of common coupling (PCC) must be acquired precisely, so that the control subsystem of the distribution systems could tackle the faults. However, the conventional three-phase software phase-locked loop (SPLL), which adopted PI control method and is widely used for the magnitude-phase detection, had a low speed of dynamic response affected by negative-sequence and harmonic components, so that it could not exactly acquire the magnitude/phase information of fundamental positive-sequence component. This paper proposes a novel three-phase magnitude-phase detection method based on double dq synchronous reference frame. The proposed method can decouple the positive dq and negative dq sequences and detect the magnitudes/ phases of fundamental positive-sequence component and negative-sequence component of three-phase voltages or currents. The simulation results verify that the proposed method overcomes the shortcoming of conventional three-phase SPLL and tracks accurately the magnitude/phase of the fundamental positive-sequence voltage under bad harmonic condition. The proposed method can suppress odd harmonic propagation and has a higher detecting precision. Thus, it can be widely used in the three-phase power electronics equipment.
机译:克服分布式发电系统的电网故障的先决条件是必须精确获取公共耦合的并网点(PCC)上的电压或电流的大小/相位信息,以便配电系统的控制子系统可以解决错误。但是,传统的三相软件锁相环(SPLL),采用PI控制方法,被广泛用于幅度相位检测,由于受到负序和谐波分量的影响,其动态响应速度较慢,因此它不能精确地获取基本正序分量的大小/相位信息。提出了一种基于双dq同步参考系的三相幅相检测方法。所提出的方法可以解耦正dq序列和负dq序列,并检测三相电压或电流的基本正序分量和负序分量的大小/相位。仿真结果表明,该方法克服了传统的三相SPLL的缺点,能够在谐波条件较差的情况下,准确跟踪基本正序电压的幅值/相位。所提出的方法可以抑制奇次谐波的传播,并具有较高的检测精度。因此,它可以广泛地用于三相电力电子设备中。

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