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Nonlinear control of inverter and a novel islanding detection approach in grid-connected photovoltaic generation systems

机译:光伏并网发电系统中逆变器的非线性控制和孤岛检测新方法

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The protection strategies in distribution systems are normally designed on the premise of unidirectional power flow towards the consumers. While integrating a DG in the main grid, possibility of creation of a power island subsists, thereby posing considerable risk to the safety of the equipment and also the associated personnel. Such a situation, known as islanding of grid, makes the DG as the sole power generation resource, supplying the associated loads, even when it remains disconnected from the main utility grid. Hence, all DGs need to utilize islanding detection techniques, while taking into account the power quality and safety issues. Any islanding detection strategy must respond quickly to an islanding condition; it must quickly revert to the steady-state after an islanding situation. A new Gauss-Newton algorithm is used here, for islanding detection in a photovoltaic system using the passive detection techniques. The proposed approach utilizes harmonic amplification factors and the absolute value of rate-of-change-of-negative sequence voltage for islanding detection, which exhibits meliorated reliability and robustness when compared with some of the existing islanding detection schemes. A novel Fuzzy control scheme is also used in this paper, which is employed for inverter control based on the constant active and reactive power concept. The controller's performance is compared with the more prevalent PI controller.
机译:配电系统中的保护策略通常是在流向用户的单向功率的前提下设计的。在将DG集成到主电网中的同时,仍然存在创建功率岛的可能性,从而对设备以及相关人员的安全构成了相当大的风险。这种被称为电网孤岛的情况使DG成为唯一的发电资源,即使相关联的电力仍然与主公用电网断开连接,它仍可以提供相关的负荷。因此,所有DG都需要利用孤岛检测技术,同时考虑到电能质量和安全问题。任何孤岛检测策略都必须对孤岛状况做出快速响应;在出现孤岛局势后,它必须迅速恢复到稳态。这里使用一种新的高斯-牛顿算法,用于使用无源检测技术的光伏系统中的孤岛检测。所提出的方法利用谐波放大因子和负序列电压变化率的绝对值进行孤岛检测,与某些现有的孤岛检测方案相比,其可靠性和鲁棒性低。本文还采用了一种新颖的模糊控制方案,该方案基于恒定有功和无功功率概念用于逆变器控制。将控制器的性能与更为流行的PI控制器进行比较。

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