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A Fast-Dynamic Unipolar Switching Control Scheme for Single-Phase Inverters in DC Microgrids

机译:直流微电网中单相逆变器的快速动态单极开关控制方案

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This paper presents the digital implementation of a boundary controller with unipolar switching characteristic for single-phase voltage source full-bridge inverters. This paper expands the application of a second-order switching surface-based control method to unipolar switching of single-phase voltage source inverters (VSIs) using a finite-state machine. The finite-state machine has been formulated considering four different states of the inverter; positive,zero1, negative, andzero2. The second-order boundary control governs the current state of the system and provides proper switching action to keep the system within the desired reference. The control law is implemented digitally in F28m35x digital control card. A full-bridge inverter topology is used to achieve the three-level voltage switching. Various simulations and experiments were performed in a 550 VA, 120 V, 60 Hz VSI with a digitally implemented controller to verify the theoretical predictions. A high-quality voltage output was obtained for various loading conditions. The transient performance of the controller was investigated using a reference and load changes. A comparison of the implementation was made with the existing classical controllers to verify the fast-dynamic response of the system.
机译:本文介绍了单相电压源全桥逆变器具有单极性开关特性的边界控制器的数字实现。本文将基于二阶开关表面的控制方法的应用扩展到使用有限状态机的单相电压源逆变器(VSI)的单极开关。有限状态机的制定考虑了逆变器的四种不同状态。 n zero1 n,负数和 n zero2 n。二阶边界控制控制系统的当前状态,并提供适当的切换动作以将系统保持在所需的参考范围内。控制法则在F28m35x数字控制卡中以数字方式实现。全桥逆变器拓扑用于实现三电平电压切换。在550VA,120V,60Hz VSI上使用数字实现的控制器进行各种模拟和实验,以验证理论预测。在各种负载条件下均获得了高质量的电压输出。使用参考电压和负载变化研究了控制器的瞬态性能。将实现与现有经典控制器进行了比较,以验证系统的快速动态响应。

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