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首页> 外文期刊>EPE Journal: European Power Electronics and Drives >Non-Equilibrium State Capacitor-Voltage Stabilization in a Hybrid Asymmetric Nine-Level Inverter: Nonlinear Model-Predictive Control
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Non-Equilibrium State Capacitor-Voltage Stabilization in a Hybrid Asymmetric Nine-Level Inverter: Nonlinear Model-Predictive Control

机译:混合不对称九电平逆变器中的非平衡状态电容器-电压稳定:非线性模型预测控制

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摘要

In symmetric multilevel inverters, there is a tradeoff between the output quality and the reliability and efficiency of the converter. New asymmetric and hybrid solutions, using different voltages and devices in various parts of the inverter, promise significant improvements for medium-voltage applications. This paper investigates such a hybrid asymmetric nine-level inverter. It consists of a three-phase three-level main inverter, with a two-leg two-level sub inverter in series with each phase (Fig. 1). To keep the power part simple and the efficiency high, the sub inverters have no feeding from the net and can only supply reactive power. But the nonsupplied intermediate-circuit capacitors form an unstable system. This paper proposes a control method to stabilize their voltages. Power balancing is guaranteed by varying the common-mode voltage, using an on-line nonlinear model-predictive controller. The controller predicts the system evolution as a function of the control inputs. A cost function of system and control quantities is iteratively minimized in real time, to find the optimal control to apply to the system. Simulations and measurements demonstrate stable behaviour in steady state and during transients. The originality of this paper is the application of nonlinear model-predictive control in power electronics.
机译:在对称多电平逆变器中,输出质量与转换器的可靠性和效率之间需要权衡。新的非对称和混合解决方案在逆变器的各个部分中使用不同的电压和设备,有望为中压应用带来重大改进。本文研究了这种混合型非对称九电平逆变器。它由一个三相三电平主逆变器和一个与每个相串联的两臂两电平子逆变器组成(图1)。为了保持功率部分简单和高效率,子逆变器没有网络馈电,只能提供无功功率。但是未提供的中间电路电容器会形成一个不稳定的系统。本文提出了一种稳定其电压的控制方法。使用在线非线性模型预测控制器,通过改变共模电压来保证功率平衡。控制器根据控制输入预测系统的发展。实时迭代地最小化系统和控制量的成本函数,以找到适用于系统的最佳控制。仿真和测量证明了稳态和瞬态期间的稳定行为。本文的独创性是非线性模型预测控制在电力电子中的应用。

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