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Power Control of Grid-Connected Inverters Using One-Cycle Control Method for PV Systems

机译:光伏系统单周期控制方法并网逆变器的功率控制

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In this paper, one-cycle control (OCC) method as an appropriate control scheme is applied and developed to control grid-connected inverters with the LCL filter for VAR compensation and injecting power to the grid. Also, particle swarm optimization (PSO) algorithm is employed to find the optimal LCL filter parameters by minimizing the total harmonic distortion (THD) of AC-side current as a cost function. LCL filters are generally applied in renewable power generation systems to smooth the injected current into the network because of their better attenuation capability and smaller elements than other filters. Although an LCL filter attenuates harmonics created by switches more effectively, due to its inherent resonance, it may cause stability issues. To create stable performance, either an active damping algorithm or a physical damping resistor should be used. However, a physical resistor causes additional power loss and slower dynamic response, while by adding a digital filter as a conventional virtual resistor and modifying the control scheme, the above-mentioned problems could be solved.
机译:在本文中,应用并开发了一种单周期控制(OCC)方法作为一种合适的控制方案,该方法通过LCL滤波器来控制并网逆变器,以进行VAR补偿并向电网注入电能。同样,采用粒子群优化(PSO)算法通过将交流侧电流的总谐波失真(THD)最小化作为成本函数,从而找到最佳的LCL滤波器参数。由于LCL滤波器具有比其他滤波器更好的衰减能力和更小的元件,因此它们通常用于可再生能源发电系统中,以平滑注入网络的电流。尽管LCL滤波器由于其固有的谐振而更有效地衰减了由开关产生的谐波,但它可能会引起稳定性问题。为了产生稳定的性能,应使用有源阻尼算法或物理阻尼电阻。然而,物理电阻器引起额外的功率损耗和较慢的动态响应,而通过添加数字滤波器作为常规虚拟电阻器并修改控制方案,可以解决上述问题。

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