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FPGA Control Implementation of a Grid-Connected Current-Controlled Voltage-Source Inverter

机译:并网电流控制电压源逆变器的FPGA控制实现

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The full control system of a grid-connected current-controlled voltage-source inverter (CC-VSI) has been designed and implemented on a field-programmable gate array (FPGA). Various control functions and implementation methods are described and discussed. The practical viability of the system is evaluated in an experimental setup, where a VSI supplies 30 kW into the local grid at 400 V. A phase-locked loop (PLL) is used for grid phase tracking and evaluated for simulated abnormal grid conditions. Power factor is kept at unity, and the implemented control system is stressed with step responses in the supplied active power. A moving-average filter is implemented to reduce the effects of noise and harmonics on the current control loops. A coupling between active and reactive power flow is observed for the step responses but may be ignored in this context. The proposed system is fully comparable with more conventional microprocessor-based control systems.
机译:已在现场可编程门阵列(FPGA)上设计并实现了并网电流控制电压源逆变器(CC-VSI)的完整控制系统。描述和讨论了各种控制功能和实现方法。该系统的实际可行性是通过实验设置进行评估的,其中VSI在400 V的电压下向本地电网提供30 kW的功率;锁相环(PLL)用于电网相位跟踪,并评估模拟的异常电网状况。功率因数保持统一,并且在所提供的有功功率中,阶跃响应会给已实施的控制系统带来压力。实现了移动平均滤波器,以减少噪声和谐波对电流控制环路的影响。对于阶跃响应,观察到有功和无功潮流之间的耦合,但是在这种情况下可以忽略。所提出的系统与更常规的基于微处理器的控制系统完全可比。

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