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用最优谐波小波包变换抑制局部放电混频随机窄带干扰 被引量:26
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作者 唐炬 樊雷 +2 位作者 卓然 张晓星 王邸博 《中国电机工程学报》 EI CSCD 北大核心 2013年第31期193-201,24,共9页
在进行电气设备局部放电(partial discharge,PD)在线监测中,当多个随机周期性窄带干扰的频率位于传感器监测频段内部时,会严重影响监测的可信性和准确性,然而目前缺乏有效抑制此类干扰的方法。为此,利用谐波小波具有严格盒形频谱特性的... 在进行电气设备局部放电(partial discharge,PD)在线监测中,当多个随机周期性窄带干扰的频率位于传感器监测频段内部时,会严重影响监测的可信性和准确性,然而目前缺乏有效抑制此类干扰的方法。为此,利用谐波小波具有严格盒形频谱特性的优点,提出一种基于最优离散谐波小波包变换的PD去噪新方法,将不同频率窄带干扰的能量分别集中在单一的子带内,用分解后子带香农熵比值的大小来确定包含各窄带干扰的子带,只要将对应的小波系数置零后重构就能得到去除窄带干扰后的PD信号,克服了离散小波包变换子带间存在频谱泄漏的缺点,实现了对PD监测信号的自适应优化分解。通过对仿真和实测PD信号频带范围内含有的混频随机窄带干扰进行去噪处理,并与离散小波包变换去噪结果进行对比分析后表明,最优离散谐波小波包变换对PD信号去噪后的能量损失和波形畸变较小,有利于后续对PD信号的模式识别,可以解决干扰频率位于监测频段内难于抑制的难题。 展开更多
关键词 谐波小波包 子带熵 局部放电 混频窄带干扰 分频能力
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Subcarrier and power allocation in OFDM-based cognitive radio networks
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作者 毛旭 Ji Hong Li Ming Fu Jiadi 《High Technology Letters》 EI CAS 2011年第1期69-74,共6页
We formulate the subcarrier and power allocation problem in cognitive radio networks employing orthogonal frequency division multiplexing (OFDM) as a non-linear optimization problem with the objective of maximizing ... We formulate the subcarrier and power allocation problem in cognitive radio networks employing orthogonal frequency division multiplexing (OFDM) as a non-linear optimization problem with the objective of maximizing sum capacity under constraints of available subcarriers, interference temperature, power budget, etc. A close-to-optimal solution with much reduced complexity is proposed to separate the problem into two steps, which also considers fairness among secondary users. A fair al- gorithm for subcarrier allocation (FA_SA) is firstly presented. Secondly, a fast iterative water-filling algorithm for power allocation (FIWFA_PA) is also proposed to maximize the sum capacity. Exten- sive simulation results show that sum capacity performance of our low-complexity solution is very close to the optimal one, while significantly improving fairness and reducing computation complexity compared with the existing solutions. 展开更多
关键词 cognitive radio (CR) orthogonal frequency division multiplexing (OFDM) iterative water-filling LOW-COMPLEXITY capacity maximization FAIRNESS
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