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Pre-filtered Phase-Locking Scheme for Multi-component AM-FM Signal Decomposition

机译:多分量AM-FM信号分解的预滤波锁相方案

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An online multi-component AM-FM signal decomposition method is proposed based on pre-filtered phase-locking scheme. A second-order generalized integrator (SOGI) and cascaded delayed signal cancelation technique (CDSC) are employed as pre-filters for the phase-locking scheme (PLL). The CDSC technique separates the AM-FM signals from the multi-component signal as a mono-component AM-FM, and a PLL structure demodulates the instantaneous amplitude (IA) and instantaneous frequency (IF) from the individual AM-FM signals. The IF estimated from PLL is fed back to SOGI and CDSC blocks in order to adaptively adjust the number of samples. PLL structures are augmented in parallel to extract IA and IF of multi-component AM-FM signals. The proposed scheme is implemented in field programmable gate array and tested for sinusoidal multi-component AM-FM model. It is evident from the simulation and experimental investigation that the algorithm could efficiently track IF and IA and offers good dynamic response and operating range.
机译:提出了一种基于预滤波锁相方案的在线多分量AM-FM信号分解方法。二阶广义积分器(SOGI)和级联延迟信号消除技术(CDSC)被用作锁相方案(PLL)的前置滤波器。 CDSC技术将AM-FM信号与多分量信号分离为单分量AM-FM,而PLL结构则从单个AM-FM信号中解调瞬时幅度(IA)和瞬时频率(IF)。从PLL估计的IF被反馈到SOGI和CDSC块,以自适应地调整采样数。并行增强PLL结构,以提取多分量AM-FM信号的IA和IF。该方案在现场可编程门阵列中实现,并针对正弦多分量AM-FM模型进行了测试。从仿真和实验研究可以明显看出,该算法可以有效地跟踪中频和IA,并提供良好的动态响应和工作范围。

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