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A novel FPGA-based system for real-time calculation of the Spectral Kurtosis: A prospective application to harmonic detection

机译:一种新颖的基于FPGA的光谱峰度实时计算系统:在谐波检测中的潜在应用

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Autonomous measurement units are indispensable for the development of the smart grid in order to get faster processing responses, stability, and to provide the user with information regarding power quality (losses, harmonics, outages, steady-state and transient events). In this paper, the development of a novel FPGA-based real-time analyzer is presented. The signal processing nucleus is based on higher-order statistics, introducing the Spectral Kurtosis as an online assessment. Indeed, this fourth-order spectrum enhances non-Gaussian behavior in very unfavorable noise conditions. In the Power Quality assessment frame, the outline of this spectrum can be used to reveal the presence of underlying electrical perturbations. In this paper it is presented an autonomous analyzer that uses the Spectral Kurtosis to detect the presence of low level harmonics. These harmonics are difficult to detect using conventional techniques and can generate problems in power distribution when they are associated to a resonant response in the powered load. The proposed system has been described in synthesizable VHDL and performs an indirect estimator of a poly-spectrum slide, based on the FFT. This synthesizable description has been implemented using a low cost FPGA, enabling a continuous monitoring of the power signal (without dead times) with a high oversampling rate. The proposed solution has been conceived to be introduced in smart grids with high penetration of Distributed Energy Resources (DER). (C) 2016 Elsevier Ltd. All rights reserved.
机译:自主测量单元对于智能电网的开发是必不可少的,以便获得更快的处理响应,稳定性,并为用户提供有关电能质量的信息(损耗,谐波,停电,稳态和瞬态事件)。在本文中,提出了一种新型的基于FPGA的实时分析仪的开发。信号处理核是基于高阶统计量的,并将“光谱峰度”引入在线评估中。实际上,在非常不利的噪声条件下,该四阶频谱增强了非高斯行为。在电能质量评估框架中,该频谱的轮廓可用于揭示潜在的电气扰动的存在。在本文中,提出了一种自动分析仪,该分析仪使用频谱峰度来检测低电平谐波的存在。这些谐波难以使用常规技术检测,并且当它们与受电负载中的谐振响应相关时,会在功率分配中产生问题。所提出的系统已经在可合成的VHDL中进行了描述,并基于FFT执行多谱载玻片的间接估计。这种可综合的描述已使用低成本FPGA实现,从而能够以高过采样率连续监视功率信号(无死区时间)。提议的解决方案已被设想引入具有高分布式能源(DER)渗透率的智能电网中。 (C)2016 Elsevier Ltd.保留所有权利。

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