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Distributed Load Sharing Among Converters in an Autonomous Microgrid Including PV and Wind Power Units

机译:包括光伏和风力发电装置在内的自治微电网中变流器之间的分布式负载分担

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摘要

The ability to manage energy within an autonomous microgrid, which enables system optimization, requires coordinated control of the connected power sources. This generally involves coordination of active and reactive power generation. To increase energy management capability, coordination of converter connected power sources can be extended to other tasks such as harmonic compensation and load balancing. However, some units in microgrids, such as wind and photovoltaic (PV) power sources, have local criteria such as maximum power point tracking that determines the reference value for active power generation. In this paper, a distributed control structure for independent sharing of tasks among sources is introduced where units with local active current reference can contribute to generation of only non-active current components in coordination with other units while their active current is generated autonomously. For task-sharing among units, an objective function based on current components is presented. In order to verify the proposed method, optimization of a microgrid with a PV unit is simulated.
机译:在自治的微电网中管理能量的能力(使系统得以优化)要求对连接的电源进行协调控制。这通常涉及有功和无功发电的协调。为了提高能量管理能力,转换器连接的电源的协调可以扩展到其他任务,例如谐波补偿和负载平衡。但是,微电网中的某些单元(例如风能和光伏(PV)电源)具有本地标准,例如最大功率点跟踪,可确定有功功率的参考值。在本文中,介绍了一种分布式控制结构,用于在源之间独立地共享任务,其中具有本地有功电流参​​考的单元可以与其他单元协同地仅生成无功电流分量,而其有功电流是自动生成的。对于单元之间的任务共享,提出了基于当前组件的目标函数。为了验证所提出的方法,模拟了具有光伏单元的微电网的优化。

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