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A Multitasking Control Algorithm for Grid-Connected Inverters in Distributed Generation Applications Using Adaptive Noise Cancellation Filters

机译:使用自适应噪声消除滤波器的分布式发电系统中并网逆变器的多任务控制算法

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This paper proposes a multitasking control algorithm for grid-connected inverters (GCIs) in distributed generation (DG) applications. A single-phase H-bridge voltage source inverter is used as a power electronic interface between the DG system and the grid. The proposed control algorithm operates the GCI in current control mode to achieve desired active power injection to the grid. In addition to active power injection, the proposed control algorithm has current harmonics mitigation and reactive power compensation capabilities for power quality enhancement. The control algorithm utilizes only the remaining capacity of the GCI for power quality improvement. The proposed control algorithm employs a current decomposition structure based on multiple adaptive noise cancellation (ANC) filters for extraction of harmonic and reactive currents of the local loads. The extracted harmonics are used in estimating compensating currents to be injected by the GCI. A single-phase phase-locked loop (PLL) using ANC filters has been developed to synchronize the GCI at fundamental frequency, which makes the proposed control algorithm adaptive to grid frequency fluctuations and immune to grid voltage distortions. The effectiveness of the proposed control is illustrated through computer simulation and experimental results. The influence of PLL dynamics on GCI performance has also been studied using results.
机译:本文提出了一种用于分布式发电(DG)应用中的并网逆变器(GCI)的多任务控制算法。单相H桥电压源逆变器用作DG系统和电网之间的电力电子接口。提出的控制算法在电流控制模式下运行GCI,以实现向电网的理想有功功率注入。除了有功功率注入外,所提出的控制算法还具有电流谐波缓解功能和无功功率补偿功能,可提高电能质量。控制算法仅利用GCI的剩余容量来提高电能质量。所提出的控制算法采用基于多个自适应噪声消除(ANC)滤波器的电流分解结构来提取局部负载的谐波和无功电流。提取的谐波用于估算GCI注入的补偿电流。已经开发出使用ANC滤波器的单相锁相环(PLL),以使GCI在基频上同步,这使所提出的控制算法适应电网频率波动并不受电网电压失真的影响。通过计算机仿真和实验结果说明了所提出的控制方法的有效性。使用结果还研究了PLL动态对GCI性能的影响。

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