根据费米分布和材料参数计算带间激光二极管的增益。
2021-12-05 11:37:13 421KB matlab
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“生成对抗式插补网络(GAIN)”的代码库 作者:尹振成,詹姆斯·乔登,米哈埃拉·范德沙尔 论文:Jinsung Yoon,James Jordon,Mihaela van der Schaar,“ GAIN:使用生成对抗网络进行数据插补”,国际机器学习会议(ICML),2018年。 论文链接: : 联络人: 该目录包含使用两个UCI数据集进行插补的GAIN框架的实现。 UCI信( ) UCI垃圾邮件( ) 要运行有关GAIN框架的培训和评估管道,只需运行python3 -m main_letter_spam.py。 请注意,任何模型体系结构都可以用作生成器和鉴别器模型,例如多层感知器或CNN。 命令输入: data_name:字母或垃圾邮件 miss_rate:缺少组件的概率 batch_size:批量大小 hint_rate:提示率 alpha:超参数 迭代:
2021-11-16 20:41:08 305KB Python
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元增益 GAIN模型的扩展,用于缺少数据插补。 其中一些代码来自切尔西·芬恩(Chelsea Finn)的MAML实现( ),她的CS330斯坦福课程( )和Jinsung Yoon的GAIN实现( )。
2021-08-18 22:33:39 9KB JupyterNotebook
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USB 3.2 ENGINEERING CHANGE NOTICE Bit-level re-timers which use the recovered clock from the input data stream as the input clock for the transmitter can pass on low frequency jitter, which can in turn result in accumulation of excessive low frequency jitter in systems with cascaded bit -level Retimers. Current JTF Jitter Gain limit was chosen analytically, empirical results of early Retimers implementations show a higher realistic jitter gain below 500kHz with no impact on Jitter tolerance requirements contained in Section 6.8.5. This ECN changes the Max. Limit of JTF Jitter Gain parameter.
2021-08-15 13:12:23 215KB usb 资源达人分享计划
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Gain 采用asyncio, uvloop和aiohttp编写的Web爬虫框架
2021-08-04 12:00:26 178KB Python开发-Web爬虫
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GAIN Missing Data Imputation using Generative Adversarial Nets 解析PPT
2021-05-19 14:32:09 1.53MB NLP 深度学习 GAN
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61种不同频率和增益的标准音频文件,用于测试
2021-04-07 19:12:29 14.73MB 标准音频 正弦波 标准5v gain可变
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很实用的射频连级仿真软件,能仿真Gain,IIP3,Noise Figure.但不能保存。 很实用的射频连级仿真软件,能仿真Gain,IIP3,Noise Figure.但不能保存。
2021-04-04 19:04:37 21.71MB Gain IIP3 NF
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从理论上研究了增益辅助二维金属纳米粒子(NP)阵列中平面晶格等离激元(OLP)的共振放大。 由于角度相关的近场光学特性,可以通过调整入射光的角度来控制基于OLP的spaser的增益阈值。 事实证明,与活性等离子NP阵列相比,OLP的表面等离激元(SP)扩增阈值更低。 进行并排比较以不同入射角激发的ILP和OLP的电场定位和增强,以了解它们的不同打散性能。 结果还表明,NP阵列中晶格等离激元的增益阈值远低于单个NP中局部SP的增益阈值。
2021-03-04 19:06:07 1.75MB spaser; gain threshold; lattice
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A novel antipodal Vivaldi antenna with tapering serrated structure at the edges is proposed. Compared with traditional Vivaldi antennas without serrated structure, the gain of the designed antenna is significantly improved in the desired frequency band (4.5- 7.5 GHz). In addition, a 2 x 2 Vivaldi antenna array with an orthorhombic structure is designed and fabricated to achieve a circular polarization (CP) characteristic. With this configuration, the 3 dB axial ratio bandwidth of the array reach
2021-03-02 21:06:05 1.87MB 研究论文
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