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Design of controller for power quality management in presence of unbalanced load integrated with solar PV

机译:太阳能光伏不平衡负载下电能质量管理控制器的设计

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摘要

Distributed generation units with small energy sources, such as fuel cells, micro-turbines, and photovoltaic devices, are generally connecting to micro grid and distribution grid for improvement of power quality. In distributed system, generation units are connected with micro grid/distribution grid using three phase inverters. The presence of unbalanced load structure in micro-grid directly affects the supply voltage and current. In this paper, a grid connected inverter with unique control is proposed to solve this problem. It can maintain a stable voltage and current in presence of an unbalanced load. The scheme employs instantaneous active and reactive power theory for unbalanced load compensation. At the point of common coupling current is decoupled into active and reactive component by abc/dq0 transformation and also active and reactive component of load current is derived from active and reactive power of load for achieving of active and reactive power control independently. On the one hand, the active component of the point of common coupling current is adjusted to the reference value given by the active component of load current in order to meet the active power demand of unbalanced load and the reactive component of the point of common coupling current is adjusted to the reference value given by the reactive component of load current in order to meet the reactive power demand of unbalanced load. Thus a stable supply voltage and current can be maintained with an unbalanced load. The operational principle and the controller strategy have been presented and simulated results were shown for performance demonstrations.
机译:具有小型能源的分布式发电装置,例如燃料电池,微型涡轮机和光伏设备,通常连接到微型电网和配电电网,以提高电能质量。在分布式系统中,发电单元使用三相逆变器与微电网/配电网连接。微电网中不平衡负载结构的存在直接影响电源电压和电流。为了解决这个问题,本文提出了一种具有独特控制的并网逆变器。在负载不平衡的情况下,它可以保持稳定的电压和电流。该方案采用瞬时有功和无功功率理论进行不平衡负载补偿。在公共耦合点上,电流通过abc / dq0变换解耦为有功和无功分量,并且负载电流的有功和无功分量也从负载的有功和无功功率中导出,以实现对有功和无功功率的独立控制。一方面,将公共耦合电流点的有功分量调整为负载电流有功分量给定的参考值,以满足不平衡负载的有功功率需求和公共耦合点的无功分量将电流调整到由负载电流的无功分量给定的参考值,以满足不平衡负载的无功功率需求。因此,可以在负载不平衡的情况下保持稳定的电源电压和电流。提出了工作原理和控制器策略,并给出了仿真结果以进行性能演示。

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