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A Low Voltage Ride Through Scheme for three phase grid connected PV inverter with an adaptive window based MAF-PLL

机译:具有基于自适应窗口的MAF-PLL的三相网格连接的PV逆变器的低电压乘坐方案

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Balancing the rift between demand and production of energy has become one of the major growing concerns globally. This has prompted the technocrats, policy-makers, etc. to contemplate on the potency of renewable energy (RES) sources. The outcome has resulted in the world-wide adoption of RES to meet energy deficits. However various grid codes govern their integration to the grid. These monitor the functioning of the RES power converters and impose active and reactive power injection requirements. This is termed as the low voltage ride-through capability of the power converters in order to ensure unnecessary tripping of the interfacing converter resulting in sudden demand-shift on the conventional sources. Cascaded failures and blackouts could be an immediate result. Furthermore proper, fast and dynamic tracking and synchronization of the grid angle also emerges as a necessity in order to respond to the scenario of sudden grid disconnection. But the vulnerability of the grid-interfacing converters to disconnection due to grid voltage and frequency distortions contributes to the fragile interconnection. Taking into consideration all the discussed issues the need for a control law accounting for synchronization and grid distortions emerges as a foreseeable solution. This paper investigates the functioning of adaptive window-based MAF-PLL and the operation of an LVRT scheme for low voltage interfaced PV inverters. Extensive simulations in MATLAB/Simulink have been investigated under different scenarios to validate the proposed scheme.
机译:平衡需求与生产之间的裂痕,已成为全球范围的主要担忧之一。这促使技术专家,政策制定者等思考可再生能源(RES)来源的效力。结果导致了全世界采用res以满足能源赤字。然而,各种网格代码管理他们对网格的集成。这些监视RES功率转换器的功能,并施加有源和无功的电力注入要求。这被称为功率转换器的低电压乘转能力,以确保接口转换器的不必要的跳闸导致传统源上的突然需求转移。级联故障和停电可能是一个即时结果。此外,电网角的适当,快速和动态的跟踪和同步也是必需品,以便响应突然网格断开的场景。但电网接口转换器因电网电压和频率畸变断开的脆弱性有助于易碎互连。考虑到所有讨论的问题,对控制法核算同步和网格失真的必要性作为可预见的解决方案。本文研究了基于自适应窗口的MAF-PLL的功能以及用于低压接口PV逆变器的LVRT方案的操作。在不同场景下已经在不同场景下进行了广泛的模拟以验证所提出的方案。

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