登录
首页 » Others » MatGpr2.0数据处理软件

MatGpr2.0数据处理软件

于 2020-12-10 发布
0 198
下载积分: 1 下载次数: 1

代码说明:

MATGPR_R2.0探地雷达数据分析,数据处理。基于Matlab的简单易懂

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

  • uCOS-III 应用开发指南—基于 STM32F103系列
    火哥的uCOS-III嵌入式实时操作系统教程,STM32F103
    2020-12-11下载
    积分:1
  • 平面变压器3D仿真资料
    采用COMSOL软件,对平面变压器的仿真过程进行叙述,让大家了解平面变压器的仿真流程,是个很好的指导教材Solved with COMSOL Multiphysics 5.0Results and discussionThe magnetostatic analysis yields an inductance of 0. 1l mH and a dc resistance of0. 29 mQ2. Figure 2 shows the magnetic flux density norm and the electric potentialdistributionvolume: Coil potentiaL()Volume: Magnetic flux density norm (t▲0.07▲2.88×10-42.51.50.03050.01V656×107v0igure 2: Magnetic flux density norm and electric potential distribution for themagnetostatic analysisIn the static (DC) limit, the potential drop along the winding is purely resistive andcould in principle be computed separately and before the magnetic flux density iscomputed. When increasing the frequency, inductive effects start to limit the currentand skin effect makes it increasingly difficult to resolve the current distribution in thewinding. At sufficiently high frequency, the current is mainly flowing in a thin layernear the conductor surface. When increasing the frequency further. capacitive effectscome into play and current is flowing across the winding as displacement currentdensity. When going through the resonance frequency, the device goes from behavingas an inductor to become predominantly capacitive. At the self resonance, the resistivelosses peak due to the large internal currents Figure 4 shows the surface current3 MODELING OF A 3D INDUCTORSolved with COMSOL Multiphysics 5.0distribution atl MHz. Typical for high frequency the currents are displaced towardsthe edges of the conductor.freq(1)=1.0000E6_Surfaee: Surface-current density norm (A/)▲18618Q16010¥1.02Figure 3: Surface current density at I MHz (below the resonance frequency)Figure 4 shows how the resistive part of the coil impedance peaks at the resonancefrequency near 6MHz whereas Figure 5 shows how the reactive part of the coiimpedance changes sign and goes from inductive to capacitive when passing throughthe resonance4 MODELING OFA3DINDUCTORSolved with COMSOL Multiphysics 5.0Global: Lumped port impedance(Q2)d port impedance7.5G6.583275655545352510.10.20.30.40.509igure 4: Real part of the electric potential distribution5 MODELING OF A INDUCTORSolved with COMSOL Multiphysics 5.0Global: Lumped port impedance(Q2)35000Lumped port impedance200001000050000500010000-1500020000250000.10.20.30.40.50.60.70.809Figure 5: The reactive part of the coil impedance changes sign hen passing through theresonance frequency, going from inductive to capacitiveModel library path: ACDC_Module/Inductive_ Devices_and_coils/inductor 3dFrom the file menu. choose newNEWI In the new window click model wizardMODEL WIZARDI In the model wizard window click 3D2 In the Select physics tree, select AC/DC> Magnetic Fields(mf)3 Click Add4 Click StudyMODELING OF A3D NDUCTORSolved with COMSOL Multiphysics 5.05 In the Select study tree, select Preset Studies>StationaryGEOMETRYThe main geometry is imported from file. Air domains are typically not part of a CaDgeometry so they usually have to be added later. For convenience three additionaldomains have been defined in the CAd file. These are used to define a narrow feed gapwhere an excitation can be appliedport l(impl)I On the model toolbar, click Import2 In the Settings window for Import, locate the Import section3 Click Browse4 Browse to the models model library folder and double-click the filenductor 3d. mphbinSphere /(sphl)I On the Geometry toolbar, click Sphere2 In the Settings window for Sphere, locate the Size section3 In the Radius text field, type 0.2ick to expand the Layers section. In the table, enter the following settingsLayer nameThickness(m)ayer0.055 Click the Build All Objects buttonForm Union(fin)i On the Geometry toolbar, click Build AllClick the Zoom Extents button on the Graphics toolbar7 MODELING OF A 3D INDUCTORSolved with COMSOL Multiphysics 5.03 Click the Wireframe Rendering button on the Graphics toolbarThe geometry should now look as in the figure below0.1-0.10.20.0.0.1y0.0.2Next, define selections to be used when setting up materials and physics Start bdefining the domain group for the inductor winding and continue by adding otheruseful selectionsDEFINITIONSExplicitI On the Definitions toolbar, click Explicit2 In the Settings window for Explicit, in the Label text field, type Winding3 Select Domains 7,8 and 14 onlyI On the Definitions toolbar, click Explicit2 In the Settings window for Explicit, in the Label text field, type Gap3 Select domain 9 onlI On the Definitions toolbar, click Explicit8 MODELING OF A3DINDUCTORSolved with COMSOL Multiphysics 5.02 In the Settings window for Explicit, in the Label text field, type core3 Select Domain 6 onlyExplicit 4I On the Definitions toolbar, click Explicit2 In the Settings window for Explicit, in the Label text field, type InfiniteElements3 Select Domains 1-4 and 10-13 onlyExplicit 5I On the Definitions toolbar, click Explicit2 In the Settings window for Explicit, in the Label text field, type Non-conducting3 Select Domains 1-6 and 9-13 onlyI On the Definitions toolbar, click Explicit2 In the Settings window for Explicit, in the Label text field, type Non-conductingwithout Ie3 Select Domains 5, 6, and 9 only.Infinite Element Domain /(iel)Use infinite elements to emulate an infinite open space surrounding the inductorI On the definitions toolbar click Infinite element domain2 In the Settings window for Infinite Element Domain, locate the Domain Selectionsection3 From the Selection list. choose Infinite Elements4 Locate the Geometry section From the Type list, choose SphericalNext define the material settingsADD MATERIALI On the Model toolbar, click Add Material to open the add Material window2 Go to the Add material window3 In the tree, select AC/DC>Copper.4 Click Add to Component in the window toolbar9 MODELING OF A 3D INDUCTORSolved with COMSOL Multiphysics 5.0MATERIALSCopper(mat/)I In the Model Builder window, under Component I(comp l)>Materials click Copper(matD)2 In the Settings window for Material, locate the Geometric Entity Selection section3 From the Selection list, choose windingADD MATERIALI Go to the Add Material window2 In the tree. select built-In>Air3 Click Add to Component in the window toolbarMATERIALSAir(mat2I In the Model Builder window, under Component I(comp l)>Materials click Air(mat2)2 In the Settings window for Material, locate the Geometric Entity Selection section3 From the Selection list, choose Non-conductingThe core material is not part of the material library so it is entered as a user-definedmateriaMaterial 3(mat3)I In the Model Builder window, right-click Materials and choose Blank Material2 In the Settings window for Material, in the Label text field, type Core3 Locate the geometric Entity Selection section4 From the selection list choose Core5 Locate the Material Contents section. In the table, enter the following settingsPropertName Value Unit Property groupElectrical conductivity sigma0S/IBasicRelative permittivity epsilonrBasicRelative permeability mur1e3Basic6 On the model toolbar. click Add Material to close the Add Material windowMAGNETIC FIELDS (MF)Select Domains 1-8 and 10-14 only0MODELING OF A 3D INDUCTOR
    2020-12-10下载
    积分:1
  • opengl 读取与显示obj文件
    使用trackball和glm,可以读取和显示obj文件,并进行旋转与缩放。运行环境:vs2010, 运行后用o或者O选择obj文件,+和-进行缩放
    2020-06-28下载
    积分:1
  • 有限元方法的数学基础.pdf
    书名:有限元方法的数学基础 图书编号:1040680 出版社:科学出版社 定价:20.0 ISBN:703013478 作者:王烈衡 出版日期:2005-06-30 版次:1 开本:大32开 简介:本书为《中国科学院研究生教学丛书》之一。 本书是作者最近十多年为中国科学院研究生院、北京大学以及中国科学技术大学(合肥)研究生开设课程的讲稿基础上发展起来的,试图提供有限元方法比较完整的数学基础,主要包括变分原理、Sobolev空间、椭圆边值问题、有限元离散、协调有限元方法的误差分析、数值积分影响、等参数有限元、非协调有限元、混合有限元法、多重网格法、多水平方法、区域分解法等内容
    2020-11-29下载
    积分:1
  • 基于非线性干扰观测器的直升机滑模反演控制
    1、原论文及matlab仿真程序;2、提出一种基于非线性干扰观测器的滑模变结构控制方法。用一种非线性干扰观测器观测系统的不确定性和外界干扰,通过选择设计参数,可以使观测误差指数收敛。对引入非线性干扰观测器后的系统设计滑模变结构控制控制器,控制律的设计能够减小滑模抖震,保证闭环系统的稳定性,从而达到了对俯仰系统跟踪控制的目的。仿真结果表明,该方法能够较理想地观测干扰,减小控制器的输出,改善系统的控制性能。
    2021-05-06下载
    积分:1
  • 遗传算法和粒子群优化算法
    这个算法是遗传算法和粒子群优化算法相互结合的matlab程序,优化效率提高很多,不会陷入局部最优
    2021-05-06下载
    积分:1
  • 最完整的altera实现DDS正弦波、方波、三角波发生器Verilog序用QuartusII工.rar
    最完整的altera实现DDS正弦波、方波、三角波发生器Verilog程序用QuartusII工程,本资源是全网最全面的,分为代码和文本二部分。并在友晶科技板子上验证过。
    2020-06-17下载
    积分:1
  • C#小型超市管理系统+SQL数据库
    自己写的_C#小型超市管理系统+SQL数据库,里面还附送项目文档
    2020-12-04下载
    积分:1
  • ARMA建模资料
    自己收集的几个ARMA资料,感觉比较好,分享出来。
    2020-12-08下载
    积分:1
  • 脉搏波特征提取
    脉搏波的数据以及特征提取,提取到最高点最低点,周期。可以看下。
    2020-11-29下载
    积分:1
  • 696518资源总数
  • 104582会员总数
  • 48今日下载