D型-Σ宽电感变化数字控制三相双向逆变器的电流改进

T. Wu, Y.-Y Chang, C.-H. Chang, T.-C Zou, Y.-R Chang
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引用次数: 0

摘要

提出了一种用于三相逆变器的分求和(D-Σ)数字控制,以实现有功和无功的注入。它克服了abc到dq帧变换的局限性。而D-Σ控制则需要四套控制律来涵盖四个象限操作:并网(PF 1 ~±0.866)、带功率因数校正的整流、PF超前(0 ~ 0.866)、PF滞后(0 ~ -0.866)。此外,四种模式的切换顺序也各不相同,增加了固件编程的复杂性。本文对D-Σ数字控制的控制律推导和区域选择进行了改进。通过选取相电压的过零点作为区域过渡,可以将四种模式的控制规律和相关参数表统一为一般形式。四种模式的切换顺序也统一为并网模式的切换方式。另外,通过识别一个D-Σ变换矩阵,简化了除法(D)和求和(Σ)的推导过程,可以直接得到控制律。给出了10kva 3Φ双向逆变器的测量结果来证实改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Current improvement for D-Σ digital controlled three-phase bi-directional inverter with wide inductance variation
A division-summation (D-Σ) digital control for three-phase inverters to achieve active and reactive power injection has been presented. It can overcome the limitation of abc to dq frame transformation. However, the D-Σ control requires four sets of control laws to cover four quadrant operations: grid connection (PF 1 ~ ±0.866), rectification with power factor correction, PF leading (0 ~ 0.866), and PF lagging (0 ~ -0.866). Moreover, the switching sequences for the four modes are also different from each other, increasing complexity of firmware programming. In this paper, improvement of the control-law derivation and region selection for the D-Σ digital control is presented. By selecting the zero crossing points of phase voltages as region transitions, the control laws and the related parameter tables for the four modes can be unified to a general form. The switching sequences of the four modes are also unified to the switching pattern of the grid-connection mode. Additionally, a D-Σ transformation matrix is identified to simplify the derivation procedure of the division (D) and summation (Σ), which can obtain the control law directly. Measured results from a 10 kVA 3Φ bi-directional inverter have been presented to confirm the improvement.
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