登录
首页 » Others » 卷积神经网络实现情感分类

卷积神经网络实现情感分类

于 2020-11-30 发布
0 279
下载积分: 1 下载次数: 3

代码说明:

用tensorflow框架,深度学习中卷积神经网络cnn模型,对电影评论进行情感二分类。

下载说明:请别用迅雷下载,失败请重下,重下不扣分!

发表评论

0 个回复

  • matlab代码实现BP网络对函数的拟合
    此代码为matlab代码,实现BP神经网络对函数的拟合,此代码未使用matlab工具箱函数,而是将整个前馈和反向传播过程用代码形式编写出来,因此具有很重要的参考价值
    2020-12-02下载
    积分:1
  • 软著申请模板--申请表--源序-说明书--软件著作权
    计算机软件著作权模板及个人申请全套攻略,软著申请模板--申请表--源程序-说明书--软件著作权。加长加粗版本,不定时更新,详细描述可以查看https://blog.csdn.net/cmqwan/article/details/82856206,之前的资源地址是https://download.csdn.net/download/cmqwan/10699951
    2020-12-06下载
    积分:1
  • Two Dimensional Phase Unwrapping Theory Algorithms and Software
    Two Dimensional Phase Unwrapping Theory Algorithms and Software,扫描文档,清晰度一般。GTWO-DIMENSIONALPHASE UNWRAPPINGTHEORY ALGORITHMSAND SOFTWAREDennis C. ghigliaSandia National LaboratoriesAlbuquerque, New MexMark D. PrittLockheed Martin CorporationGaithersburg, Maryland藏A WILEY-INTERSCIENCE PUBLICATIONJOHN WILEY SONS, INCNew York Chichester Weinheim Brisbane Singapore / Toronto2005060radar interferogram generated byDeathon each pass, The terrain elevations can be computed from thebut the phase differences must fig problem In regions of steeprrupted where there are radar shadow and "layover"effects. Surfaceoccurred between the two passes, which were 24 days apar alsopThis image was acquired as part of a program for the Terrain Modeling Project Officended byEngineering Center. The SAR data was provided by Radarsat Intenational THinterferogram was generated and provided by Vexcel Corporation, Boulder, Coloradop00This text is printed on acid-free paper.Copyright o 1998 by John Wiley Sons, Inc. All rights reservedNo part of this publicationreproduced, stored in a retrievalsystem or transmitted in any form or by any means, elechanical photocopying, recording, scanning or otherwise,xcept as permitted under Sections 107 or 1O% of the 1976of the Publisher or authorization through payment of theontates Copyright Act, without cither theppropriate per-copy fee to the Copyright Clearance Center, 222750-4744. Requests to the Publisher for permission show(978)ood Drive, Danvers, MA 01923, (978)750-8400, faxnc.. 605 Third A venue. New York, NY 10158-0012(212)850-6011fax(212)850-6008,E-Mail:PERMREQ@WILEY.COMTwo-dimensional phase unwrapping: theory, algorithms, andsoftware/Dennis C Ghiglia and Mark D Pritt.SBN0-471-24935-1(cloth: alk. paper)1. Synthetic aperture radar. 2. Signal processing--Mathematics3. Interferometry. I Pritt. Mark D. [L. Title621.367-dc2l97-3803410987654321;4TWO-DIMENSIONALPHASE UNWRAPPINGFOREWORDTwo-dimensional phase unwrapping is the type of problem that is typically thedomain of the mathematician. It is both complex and abstract However, phaseunwrapping is also the core technology that enables radar interferometryOver the past decade interferometry has changed the way that we use radardata. Radar data are now used for precise measurement of surface topography inclouded regions. Additionally, spaceborne radar systems have proved effectivefor measuring surface changes from earthquakes and volcanic eruptions. Theseapplications have created a new class of radar data users primarily involved inmapping and remote sensing applicationIn Two-Dimensional Phase Unwrapping: Theory, Algorithms, and Softwarethe authors unlock the mystery of phase unwrapping in interferometric datarocessing. This text provides a clear, concise treatment of phase unwrappingthat cannot be found in any other source. It presents for the first time therelationship between theory and application. Its uniform treatment of thevarious phase unwrapping techniques makes it a valuable resource for anyengineer or scientist involved in processing or exploitation of interferometricexpect that radar interferometry will increase in importance over the comingdecade with the development of airborne and spaceborne sensor systemsdesigned to optimally exploit this tcchnology. Two- Dimensionsping: Theory, Algorithms, and Software is an important contribution to ourinderstanding of radar interferometry that will bencfit both research intoadvanced techniques and the design of these future sensor systemsJOHN C. CURLANDEPresident and CEOVexcel CorporationPREFACETwo-dimensional phase unwrapping arises most naturally in, but is notrestricted to, interferometric applications. Measured or calculated phasevalues from two or more mutually coherent multidimensional signals are relatedn a nonlinear manner to a desired physical quantity of interest. The nonlinearityis in the form of"wraps"or cycle discontinuities where an underlying two-dimensional phase is wrapped into the interval (T, r. The wrapped phasemust somehow be unwrapped in order to provide an estimate of the underlyingphysical quantity. Estimation of surface topography from interferometricsynthetic aperture radar(SAR)or extremely accurate profiling of mechanicaparts by optical interferometers are two such examplesOriginally developed for military reconnaissance, SAR is now experiencingnew life in civil applications. In fact civilian and commercial interests are rapidlbecoming the drivers of technology. Clever utilization of the coherent SArimagery in interferometric configurations makes possible the measurement ofsurface topography to accuracies much better than the spatial resolution( 0.3meters to several meters)of the SaR images themselves. Indeed, as is commonplace with interferometers, measurement sensitivities are on the order of theoperating wavelength, which is typically a few centimeters for SAR. Imaginggeometries, noise, and other operational factors degrade performance some-what from centimeter-scale accuracies, but nevertheless SAR interferometrymakes possible global topographic mapping in a timely fashion, in daylight or atnight, in all weather conditions, and with unprecedented accuracyinterferometry also can detect deformations of the earths crust on the orderof millimeters, a capability that shows promise for the timely detection ofearthquakes or volcanic eruptionsThese exciting possibilities have led to an explosive growth in the field of phaseunwrapping as indicated by the increasing number of journal publicationsNewcomers to SAR interferometry and related disciplines will eventuallyonfront the phase unwrapping problem and, undoubtedly, will encounter arather bewildering variety of ideas and algorithms, including those based onneural networks, simulated annealing, cellular automata, genetic algorithms,and other unusual constructs. Which of these are good? Which are not? We doThroughout this book we use the notation(-丌,丌 to represent the interval-丌
    2020-12-12下载
    积分:1
  • 压缩感知之TVAL3算法
    压缩感知,TVAL3的算法,用于单像素相机的图像重构,国外某位大牛写的
    2020-12-02下载
    积分:1
  • 《MATLAB在语音信号分析和合成中的应用》MATLAB
    《MATLAB在语音信号分析和合成中的应用》MATLAB程序
    2021-05-06下载
    积分:1
  • 图像畸变校正
    图像畸变校正 关于MATLAB处理图像畸变与模糊
    2020-12-01下载
    积分:1
  • 模糊C均值聚类图像分割算法的matlab实现
    模糊C均值聚类图像分割算法的matlab实现,,模糊C均值聚 算法 matlab实现 。图像研究的
    2021-05-06下载
    积分:1
  • STM32侧脉冲实时显示波形
    实现脉冲实时显示,像心电图一样。代码完全颠覆一般开发者的写法,简单易懂。
    2020-12-01下载
    积分:1
  • SIM800A(STM32F103C8T6)
    【实例简介】采用SIM800A和STM32单片机,通过单片机读取DHT11的监测的室内温湿度,通过AT指令使SIM800A连接到云平台服务器,并将温湿度数据上转至云平台。
    2021-11-03 00:31:18下载
    积分:1
  • 计算方法 方求根 二分法、牛顿法、弦截法
    通过本次实验,熟练的掌握方程求根的最基本、常用的运算方法和理论。主要有二分法、牛顿法、弦截法,并体会它们各自不同的特点及收敛速率。求方程 f(x)=x-2sin(x)=0 的非零根。按适当的比例在屏幕上画出f(x)的函数曲线以及根在x轴上的逼近过程。 matlab7.0及以上版本 图像界面 实验报告
    2020-12-01下载
    积分:1
  • 696518资源总数
  • 106215会员总数
  • 5今日下载