登录
首页 » Others » 全国飞机航班数据库

全国飞机航班数据库

于 2020-12-06 发布
0 298
下载积分: 1 下载次数: 1

代码说明:

本站每几天不定期更新全国飞机航班数据库(如有重大变动会立即更新)以确保全国飞机航班数据库始终保持在最新状态,目前全国飞机航班数据库已经是最新时刻表状态。由于全国飞机航班数据库由程序运行得出,可能与实际会存在出入,票价请以当地全国飞机航班数据库公告为准,全国飞机航班数据库数据仅供参考。最新列车时刻表数据测试请访问:http://www.enet521.com/train/index.html

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

  • 步进频信号维像仿真Matlab
    步进频连续波单点目标仿真程序,仿真了双端口矢网由线缆收发直连情况下的一维距离像,注释完整,非常适合学习,不明白的地方欢迎交流!
    2020-12-05下载
    积分:1
  • 51智能小车避障和循迹
    基于51单片机的智能小车程序,可以避障和循迹!
    2020-12-04下载
    积分:1
  • 基于Matlab的多图像超分辨率重建算法
    多图像超分辨率的实现主要就是将具有相似而又不同却又互相补充信息的配准影像融到一起,得到非均匀采样的较高分辨率数据,复原需要亚像素精度的运动矢量场,然而它们之间的运动模型估计精确与否直接影响到重建的效果,因此影像配准和运动模型的估计精度是高分辨率图像重建的关键。由于实际中不同时刻获得的影像数据间存在较大的变形、缩放、旋转和平移,因此必须对其进行配准,在此基础上进行运动模型估计。然后通过频率域或空间域的重建处理,生成均匀采样的超分辨率数据
    2020-12-06下载
    积分:1
  • Qt+百度AI接口人脸识别小示例
    Qt+百度AI接口实现人脸检测的demo,通过打开一张人脸图片识别出性别、年龄、面部表情等信息。
    2021-05-06下载
    积分:1
  • 基于混沌扰动的pso算法的改进源代码
    基于混沌扰动算法来解决pso算法早熟问题,并用二者结合来训练灰色预测模型参数。
    2020-12-02下载
    积分:1
  • Labview宝典及配套700个示例
    【实例简介】资源包括《labview宝典》这本电子书PDF,以及配套的700个示例程序,以供大家学习。
    2021-11-10 00:31:36下载
    积分:1
  • 五子棋matlab源代码
    【实例简介】五子棋人机对战,matlab语言编写的源码
    2021-11-14 00:42:42下载
    积分:1
  • MATLAB写的模板匹配源代码
    MATLAB程序编写的模板匹配源代码,可以作为学习模板匹配的入门资料
    2020-12-02下载
    积分:1
  • Vehicle Dynamics Theory and Application
    不错的汽车动力学教材,是参与汽车底盘电子开发的动力学基础。Reza n. jazarVehicle DynamicsTheory and ApplicationsSpringerReza n. jazarDept of Mechanical EngineeringManhattan collegeRiverdale. NY 10471ISBN:978-0-387-74243-4e-ISBN:978-0-387-74244-1Library of Congress Control Number: 200794219c 2008 Springer Science+ Business Media, LLCAll rights reserved. This work may not be translated or copied in whole or in part without thewritten permission of the publisher(Springer Science+Business Media, LLC, 233 SpringStreet, New York, NY 10013, USA), except for brief excerpts in connection with reviews orscholarly analysis. Use in connection with any form of information storage and retrievalelectronic adaptation, computer software, or by similar or dissimilar methodology now knownor hereafter developed is forbidden. The use in this publication of trade names, trademarksservice marks and similar terms, even if they are not identified as such, is not to be taken as anexpression of opinion as to whether or not they are subject to proprietary rightsPrinted on acid-free paper987654321springer. comKavoshmy daughter, Vazan,and my wife, MojganHappiness is when you win a race against yourselfPrefaceThis text is for engineering students. It introduces the fundamental knowledge used in vehicle dymamics. This knowledge can be utilized to developcomputer programs for analyzing the ride, handling, and optimization ofroad vehiclesVehicle dynamics has been in the engineering curriculum for more thana hundred years. Books on the subject are available, but most of themare written for specialists and are not suitable for a classroom applicationA new student, engineer, or researcher would not know where and howto start learning vehicle dynamics. So, there is a need for a textbook forbeginners. This textbook presents the fundamentals with a perspective onfuture trendsThe study of classical vehicle dynamics has its roots in the work ofgreat scientists of the past four centuries and creative engineers in thepast century who established the methodology of dynamic systems. Thedevelopment of vehicle dynamics has moved toward modeling, analysisand optimization of multi-body dynamics supported by some compliantmembers. Therefore, merging dynamics with optimization theory was anexpected development. The fast-growing capability of accurate positioninsensing, and calculations, along with intelligent computer programming arethe other important developments in vehicle dynamics. So, a textbook helpthe reader to make a computer model of vehicles, which this book doesLevel of the bookThis book has evolved from nearly a decade of research in nonlineardynamic systems and teaching courses in vehicle dynamics. It is addressedprimarily to the last year of undergraduate study and the first year graduatestudent in engineering. Hence, it is an intermediate textbook. It providesboth fundamental and advanced topics. The whole book can be coveredin two successive courses, however, it is possible to jump over some sections and cover the book in one course. Students are required to know thefundamentals of kinematics and dynamics, as well as a basic knowledge ofnumerical methodsThe contents of the book have been kept at a fairly theoretical-practicallevel. Many concepts are deeply explained and their application empha-sized, and most of the related theories and formal proofs have been explained. The book places a strong emphasis on the physical meaning andapplications of the concepts. Topics that have been selected are of highinterest in the field. An attempt has been made to expose students to aPrefacebroad range of topics and approachese There are four special chapters that are indirectly related to vehicle dy-amics: Applied Kinematics, Applied Mechanisms, Applied dynamics, andApplied vibrations. These chapters provide the related background to understand vehicle dynamics and its subsystemsOrganization of the bookThe text is organized so it can be used for teaching or for self-studyChapter 1"Fundamentals, "contains general preliminaries about tire andrim with a brief review of road vehicle classificationsPart I"One Dimensional Vehicle Dynamics, " presents forward vehicledynamics, tire dynamics, and driveline dynamics. Forward dynamics refersto weight transfer, accelerating braking, engine performance, and gear ratiodesignPart II"Vehicle Kinematics, presents a detailed discussion of vehiclemechanical subsystems such as steering and suspensionsPart IIT"Vehicle Dynamics, employs Newton and Lagrange methodsto develop the maneuvering dynamics of vehiclesPart Iv "Vehicle Vibrations, presents a detailed discussion of vehi-cle vibrations. An attempt is made to review the basic approaches anddemonstrate how a vehicle can be modeled as a vibrating multiple degreeof-freedom system. The concepts of the Newton-Euler dynamics and La-grangian method are used equally for derivation of equations of motionThe RMS optimization technique for suspension design of vehicles is intro-duced and applied to vehicle suspensions. The outcome of the optimizationtechnique is the optimal stiffness and damping for a car or suspended equipmentMethod of presentationThis book uses a fact-reason-application"structure. The "fact"is themain subject we introduce in each section. Then the reason is given as a" proof. The application of the fact is examined in some examples. Theexamplesare a very important part of the book because they show howto implement the facts. They also cover some other facts that are neededto expand the subjectPrerequisitesSince the book is written for senior undergraduate and first-year graduatelevel students of engineering, the assumption is that users are familiar withmatrix algebra as well as basic dynamics. Prerequisites are the fundamentals of kinematics, dynamics, vector analysis, and matrix theory. Thesebasics are usually taught in the first three undergraduate yearsPrefaceUnit SystemThe system of units adopted in this book is, unless otherwise stated, theinternational system of units(SI). The units of degree(deg)or radian(rad)are utilized for variables representing angular quantitiesSymbolse Lowercase bold letters indicate a vector. Vectors may be expressed inan n dimensional Euclidian space. ExamplerCUppercase bold letters indicate a dynamic vector or a dynamic matrix, such as force and moment. ExampleFo Lowercase letters with a hat indicate a unit vector. Unit vectors arenot bolded. ExampleLowercase letters with a tilde indicate a 3 x 3 skew symmetric matrixassociated to a vector. Examplea3211An arrow above two uppercase letters indicates the start and endpoints of a position vector. ExampleON = a position vector from point o to point Ne The length of a vector is indicated by a non-bold lowercase letterExampleCapital letter B is utilized to denote a body coordinate frame. ExampleB(ocgB(Oxyz)B1(o1x19121)ⅹ11PrefaceCapital letter G is utilized to denote a global, inertial, or fixed coordinate frame. ExampleG(XYZG(OXYZRight subscript on a transformation matrix indicates the departureframes. ExampleRB= transformation matrix from frame B(oxyz)Left superscript on a transformation matrix indicates the destinationframe. ExampleRBtransformation matrix from frame B(o cgz)to frame G(OxYZ)Capital letter R indicates rotation or a transformation matrix, if itshows the beginning and destination coordinate frames. Example0BSIn a0Whenever there is no sub or superscript, the matrices are shown in abracket. ExampleCOS asin a osIn aCOs O0e Left superscript on a vector denotes the frame in which the vectoris expressed. That superscript indicates the frame that the vectorbelongs to; so the vector is expressed using the unit vectors of thatEr= position vector expressed in frame G(OXYZ)Right subscript on a vector denotes the tip point that the vector isreferred to. ExamplePsition vector ofexpressed in coordinate frame G(OXYZ)Right subscript on an angular velocity vector indicates the frame thatthe angular vector is referred to. ExampleB= angularof the body coordinate frame B(oxyz)
    2020-12-12下载
    积分:1
  • 工作总结PPT模板(压缩包内有5个模板)
    内有5个工作总结ppt模板,本来想免费分享的,但是分享资源分最低也要2分,大家需要的赶紧下哈
    2021-05-06下载
    积分:1
  • 696518资源总数
  • 105873会员总数
  • 12今日下载