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    					| Harmonic Analysis based on Five-Term Rife-Vincent Windows and Triple-Spectral-Line Interpolation FFT |  
						| Zhu Junwei1,2  Li Tianyou 3  Cai Jinding 1  Lin yan 4 |  
						| 1. College of Electrical Engineering and Automation, Fuzhou University, Fuzhou  350002; 2. Technology Center of Grid State Fujian Electric Power Co., Ltd, Fuzhou  350007;
 3. Grid State Fujian Electric Power Co., Ltd, Fuzhou  350001;
 4. Electric Power Research institute of Grid State Fujian Electric Co., Ltd, Fuzhou  350007
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													    | Abstract  Fast Fourier transform (FFT) is the most widely used power harmonic analysis algorithm. However FFT could not get accurate results in the case of non-synchronous sampling and non-integer period truncation. In order to reduce the impact of non-synchronous to FFT, choose the five-term Rife-Vincent (I) windows, which has the great side lobe performance, and interpolation FFT to detect power harmonic signals. Derive a simple and practical correction formula of triple-spectral-line interpolation by using the polynomial fitting algorithm. The simulation results have verified that the algorithm has a better precision and practical value than other common windows and interpolated FFT algorithm in non-synchronous sampling. |  
															| Received: 20 April 2015
																	    
															    															    															    																	Published: 23 March 2015 |  |  |  |  
														
															| Cite this article: |  
															| Zhu Junwei  Li Tianyou  Cai Jinding1  Lin yan. Harmonic Analysis based on Five-Term Rife-Vincent Windows and Triple-Spectral-Line Interpolation FFT[J]. Electrical Engineering, 2015, 16(03): 34-39. |  |  |  
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															| URL: |  
															| https://dqjs.cesmedia.cn/EN/Y2015/V16/I03/34 |  
													
																												  
															| [1] 牛胜锁, 梁志瑞, 张建华, 等. 基于三谱线插值FFT的电力谐波分析算法[J]. 中国电机工程学报, 2012, 32(16): 130-136. [2] 曾博, 腾召胜, 温和, 等. 莱夫-文森特窗插值FFT谐波分析方法[J]. 中国电机工程学报, 2009, 29(10): 115-120.
 [3] 刘亚梅, 惠锦, 杨洪耕. 电力系统谐波分析的多层DFT插值校正法[J]. 中国电机工程学报, 2012, 32(25): 182-188.
 [4] 牛胜锁, 梁志瑞, 张建华, 等. 基于四项余弦窗三谱线插值FFT的谐波检测方法[J]. 仪器仪表学报, 2012, 33(9): 2002-2008.
 [5] 庞浩, 李东霞, 俎云霄, 等. 应用FFT进行电力系统谐波分析的改进算法[J]. 中国电机工程学报, 2003, 23(6): 50-54.
 [6] 周西峰, 赵蓉, 郭前岗, 等. Blackman-Harris窗的插值FFT谐波分析与应用[J]. 电测与仪表, 2014(11): 81-85.
 [7] 卿柏元, 滕召胜, 高云鹏, 等. 基于Nuttall窗双谱线插值FFT的电力谐波分析方法[J]. 中国电机工程学报, 2008, 28(25): 153-158.
 [8] 陈立伟, 刘欢, 冯驰, 等. Kaiser窗三谱线插值电力谐波分析[J]. 应用科技, 2014(2): 5-11.
 [9] 肖先勇, 王楠, 刘亚梅, 等. 基于多项式逼近的单峰谱线插值算法在间谐波分析中的应用[J]. 电网技术,
 2008, 32(18): 57-61.
 [10] 许珉, 杨阳, 章梦哲, 等. 一种加三项余弦窗的加窗插值FFT算法[J]. 电力系统保护与控制, 2010, 38(17): 11-15.
 [11] 吴静, 赵伟. 一种用于分析电网谐波的多谱线插值算法[J]. 中国电机工程学报, 2006, 26(8): 55-59.
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