Results 31 to 40 of about 734,107 (170)

基于连续小波变换的电力变压器局放信号检测

open access: yesGaoya dianqi, 2001
本文采用了不同小波函数及不同尺度参数对含强载波干扰的局部放电信号进行连续小波变换 ,并对小波变换结果进行了定量对比分析。仿真结果表明 ,在采样频率一定的情况下 ,不同的小波函数只有在各自的最佳尺度参数下对干扰的抑制能力才是最强的 ,因此 ,只有选取合适的小波函数及其最佳尺度参数才能更加有效地抑制周期载波干扰。
李祥飞, 邹莉华, 张泰山
doaj  

The Dependence of Properties on Structural Features in Macro/Micro Levels for PBF‐LB Fabricated Porous NiTi Alloy

open access: yesRare Metals, Volume 45, Issue 2, February 2026.
ABSTRACT Porous NiTi alloys are widely used in biomedical and engineering fields. Using the PBF‐LB technique, the TPMS and Voronoi porous parts with a porosity of ∼67% and a minimum feature size of 0.15 ± 0.02 mm were fabricated. Although the bulk sample fabricated with the same parameters is defect‐free, μ‐CT reconstruction on the porous sample ...
Wen‐Hao Zeng   +7 more
wiley   +1 more source

Coral‐Like Yolk–Shell‐Structured CoNi@Void@C Microspheres for Enhanced Microwave Absorption, Photothermal, Anti‐Corrosion, and Radiation Shielding Properties

open access: yesRare Metals, Volume 45, Issue 2, February 2026.
ABSTRACT Considering the multiple challenges faced by stealth coatings in complex service environments, the development of multifunctional integrated microwave absorbing materials (MAMs) that combine efficient electromagnetic (EM) attenuation with environmental tolerance has become an urgent need. In this work, coral‐like CoNi@Void@C microparticle (MP)
Jiale Wu   +8 more
wiley   +1 more source

日本海洋産業の構造変化に関する研究 [PDF]

open access: yes, 2022
東京海洋大学博士(海洋科学)東京海洋大学博士学位論文 2022年度(2022年9月) 応用環境システム学 課程博士 甲第635号指導教員: 婁小波doctoral ...
姚, 微, ヨウ, ビ, Yao, Wei
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Evolutionary and environmental determinants of heat tolerance and acclimation capacity in herpetofauna

open access: yesConservation Biology, Volume 40, Issue 1, February 2026.
Abstract Exploring heat tolerance and acclimation capacity can provide an effective approach to evaluating species’ sensitivity to extremely high temperatures due to climate warming. Despite some work on amphibian and reptile thermophysiological adaptation, related questions remain. We reviewed the literature to provide a synthesis of worldwide data on
Zijian Sun   +8 more
wiley   +1 more source

激波与小扰动波的相互作用(激波稳定性问题)

open access: yes, 1982
本文讨论朗道和栗弗席兹意义下的激波稳定性问题,也就是求解激波与小扰动波的相互作用问题。在无耗散介质的定常、平面激波两边产生了小扰动。朗道等假定小扰动波传播方向是垂直于激波的,得到的稳定条件是M_>1,M_21 ...
徐复
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Template Engineering of Magnetic Nanoparticles Decorated on Porous Carbon for High‐Performance Multiband Electromagnetic Wave Absorption

open access: yesRare Metals, Volume 45, Issue 1, January 2026.
ABSTRACT Although magnetic carbon materials possess significant potential in the field of electromagnetic wave absorption (EWA) due to the synergistic effect of multiple attenuation mechanisms, the currently reported magnetic carbon EWA materials face some challenges, such as high cost, low yield, and easy agglomeration of the magnetic component ...
Bo Jiang   +9 more
wiley   +1 more source

小波变换去噪在高压冲击波形参数提取中的应用

open access: yesGaoya dianqi, 2000
本文描述了以小波变换为基础的滤波技术在高压冲击波形参数提取中的应用。新的数学工具———小波变换的引入使得波形处理更加简单。为检验其适用性 ,从消除白噪声和提取波形参数两方面进行了试验 ,并与Kalman滤波作了对比。结果表明 ,高压冲击试验中 ,小波变换的滤波效果较好 ,计算的波形参数也更准确。
王国利, 郝艳捧, 何义, 李彦明
doaj  

Optimizing the Electromagnetic Wave Absorption Performance of MXene@Sm(OH)3 Across the Ku Band Based on Asynchronous Permittivity Regulation

open access: yesRare Metals, Volume 45, Issue 1, January 2026.
ABSTRACT The central challenge in the development of high‐performance electromagnetic wave‐absorbing materials lies in achieving an optimal balance between impedance matching and attenuation characteristics. This is particularly critical for purely dielectric absorbers, where precise tailoring of the real (ε′) and imaginary (ε″) parts of the complex ...
Zhixiao Wang   +7 more
wiley   +1 more source

超音波圖在小兒科領域之應用-綜論

open access: yes, 2008
  小兒科病人因為各個器官構造小,許多在大人使用的儀器,小孩不能適用;又因 年紀小不合作,故各種診斷工具都有其特殊困難處。再加上生長中的孩子,特別需要 注意診斷性X光的放射線對其身體的不良影響。故小兒科病人很需要一種無侵犯性, 無放射性又正確的診斷工具。超音波圖正符合了這些優點,故最近十年來漸漸地被小 兒科醫師所喜愛,廣泛地使用於小兒科領域中的各個部分。由於其無侵犯性,無痛苦 ,又快速可行,故小孩子較易接受;又由於其簡單,可反覆操作,故很適合疾病的追 蹤檢查。   在國內 ...
張美惠, CHANG, MEI-HWEI
core  

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