登录
首页 » Others » 使用启发式算法实现15数码问题—源码和实验报告

使用启发式算法实现15数码问题—源码和实验报告

于 2021-05-06 发布
0 1278
下载积分: 1 下载次数: 2

代码说明:

用人工智能领域中经典的启发式算法实现了人工智能中的十五数码问题。包括详细的实验报告和源代码,源码由C#可视化编写,debug中有编译好的程序,界面友好。另注:船院6系学生不要下载,避免雷同。

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

  • 翠欧软件开发(ZDevelop手册.pdf)
    翠欧软件开发(ZDevelop手册.pdf)
    2020-12-08下载
    积分:1
  • Doyub Kim Fluid Engine Development.pdf
    ( Doyub Kim Fluid Engine Development.pdf )Doyub Kim Fluid Engine Development.pdfTaylor francisTaylor Francis Grouphttp://taylorandfrancis.comT& F Cat #K25519K25519C000— page l-10/21/2016-17:12LUID ENGINEDEVELOPMENTDOYUB KIM(CRC CRC PressTaylor & fiBoca raton london new yorkCRC Press is an imprint of theTaylor francis Group, an informa businessAN AK PETERS BOOKT& F Cat #K25519—K25519C000- page l-10/21/2016—17:12CRC PressTaylor Francis Group6000 Broken Sound parkway nw, suite 300Boca Raton, FL 33487-274@2017 by Taylor Francis Group, LLCCRC Press is an imprint of Taylor Francis Group, an Informa businessNo clain lo original U.S. Government worksPrinted on acid-free paperVersion date: 20161019International Standard book Number -13: 978-1-4987-1992-6(Pack- Book and ebook)This book contains information obtained from authentic and highly regarded sources. Reasonable effortshave been made to publish reliable data and information, but the author and publisher cannot assumeresponsibility for the validily of all materials or the consequences of their use. The authors and publisherhave attempted to trace the copyright holders of all material reproduced in this publication and apologize toc ht holders if permission to publish in this form has not been obtained If any cocht m aterial hnot been acknowledged please write and let us know so we may rectify in any future reprintExcept as permitted under U.S. Copyright L aw, no part of this book may be reprinted, reproduced, transmitted, or utilized in any form by any electronic, mechanical, or other means, now known or hereafter invented,including photocopying, microfilming, and recording, or in any information storage or retrieval system,without written permission from tblishTorpermissiontophotocopyorusematerialelectronicallyfromthisworkpleaseaccesswww.copyrightcom(http://www.copyright.com/)orcontacttheCopyrightClearanceceNter,inC.(ccc),222RosewoodDrive, Danvers, MA 01923, 978-750-8400. CCC is a not-for-profit organization that provides licenses andregistration for a variety of users. For organizations that have been granted a photocopy license by the CCC,a separate system of payment has been arranged.Trademark Notice: Product or corporate names may be trademarks or registered trademarks, and are usedonly for identification and explanation without intent to infringeLibrary of Congress Cataloging-in-Publication DataNames: Kim, Doyub, author.Title: Fluid engine development/Doyub KimDescription: Boca Raton: Taylor Francis, a CRC title, part of the TaylorFrancis imprint, a member of the taylor Francis group the academicdivision of T&F Informa, plc, [2017] Includes bibliographical referencesnd indIdentifiers: LCCN 2016028981 ISBN 9781498719926(hardback: acid-free paperSubjects: LCSH: Hydrodynamata processing. Fluids--Computer simulaticClassilication: LCC QA911 K485 2017 DDC 532.00285, 66--dc23Lcrecordavailableathttps://icCn.loc.sov/2016028981Visit the Taylor& Francis Webhttp://www.taylorandfrancis.comand the Crc Press Web site athttp!/www.crcpT&FCat#K25519K25519000— page iv-10/21/2016—17:12To my wifeT& F Cat #K25519K25519C000— page v-10/21/2016-1712Taylor francisTaylor Francis Grouphttp://taylorandfrancis.comT& F Cat #K25519K25519C000— page l-10/21/2016-17:12ContentsPresaList of FigureslI1 Basics1.1 Hello. Fluid SinIdulator1.1.1 Defining State1.1.2 Computing Motion1. 1.3 Boundary handling11.4 Visualization11134621.1.5 Final Rcsult1.2 How to read This book121.2.1 Getting the Codes131.2.2 Rcading codcs131. 2.2. 1 Languages131.2.2.2 Source code st131.2.2.3 Naming Conventions141.2.2.4 Constants151.2.2.5 Array151.2.3 Reading math Expressions01.2.3.1 Scalar. Vector and Matrix201.3 Math1.3. 1 Coordinate System211.3.2 Vector211.3.2.1 Basic Operations241.3.2.2 Dot and cross product261.3.2.3 More Operations273.3 Matri1.3.3.1 Basic Matrix Operations1.3.3.2 Sparse Matrix361.3.4 System of Linear Equations371.3.4.1 Direct Methods1.3.4.2 Indirect Methods381. 3.5 Field421.3.5.1 Partial derivative451.3.5.2 GradientT&FCat#K25519—K25519C000— page vll-10/21/2016-17:12Contents1.3.5.3 Divergence481.3.54C511.3.5.5 Laplacian531.3.6 Interpolation561.3.6.1 Nearest point581.3.6.2 Linear Interpolation591.3.6.3 Cat, mull-Rom Spline Interpolation61eometry631. 4.1 Surface671.4.3 Implicit Surface to Explicit Surface1.4.4 Explicit Surface to Implicit Surface1.5 Animation番普721.6 Physics-Based Animation1.6.1 Getting Started771.6. 2 Physics Animation with Example781.6.2. 1 Choosing a Model781. 6. 2.2 Simulation State791.6.2.3 Force and Motion801.6.2. 4 Time Integration871.6. 2.5 Constraints and collisions891.7 Fluid Animation911.7.1 Gravity1.7.2P1.7.3 Viscosity1.7.4 Density Constraint2 Particle-Based Simulation992.1 Seeing the World Like Seurat992 Data Structi2.2.1 Particle System Data1002.2.2 Particle System Example2.2.3 Neighbor1082.2.3.1 Searching Nearby Particlesl092.2.3.2 Caching Neighbors2.3 SOothed Particles116asics2.3.1.1 Kernel1172.3.1.2 Data Model119lerdO1202.3.1.4 Density1212.3.1.5 Differential Operators2.3.2 Dynamics1302.3.2. 1 Solver Over view1312.3.2.2 Pressure gradient Force133T&FCa#K25519—K25519C000— page vil-10/21/2016—17:12Contents2.3.2.3 Viscosity1372.3.2.4 Gravity and Drag Forces1372.3.3 Results and limitations1382.4 Incompressible SPii with Larger Time-Step12.4Predict and correct2.4.2 Implementation2.4.3 Results1472.5 Collision Handling1492.5.1 Defining colliders1502.6 Discussion and further reading1553 Grid-Based simulation1573.1 Pixelating the World1573. 2 Data Structures1573.2.1 Types of grid1593.2.2 Grid System D1663.3 Differential Operators1693.3.1 Finite difference1703.3.2 Gradient1723.3. 3 Divergence1733.3.4 Curl1763.3.5 Lap1783. 4 Fluid simulation1803.4.1 Collision Handling1823.4.1.1 Collider to Signed-Distance Field1823.4.1.2 Boundary Conditions1833.4.2 Advection1873.4.2.1 Semi-Lagrangian Method1883.4.2.2Ing Backg Accurac1923.4.2.3 Improving Interpolation Accuracy1943.4.2.4 Boundary handlingg1963.43G1983.4.4. 1 Solving Diffusion with Forward Euler1993.4.4.2 Stability of diffuusIonSol2013.4.4.3 Solving DiffusiOn with Backward Euler2033.4.4.4 Boundary Handling2083.4.5 Pressure and Incompressibility2113.4.5. 1 Building matrix2143.5 Smoke simulation2203.5.1 Buoyancy Force2223.5.2 Advection and Diffusioll3.6 Fluid with Surface2233.6.1 Defining surfacc on grids233.6.1.1 Tracking the Surface under the Flow263.6.1.2 Reinitializing Signed-Distance Field226T&FCat#K25519—K25519C000— page ix-10/21/2016—17:12
    2021-05-06下载
    积分:1
  • 基于VHDL的简易CPU设计(详细实验报告)
    基于VHDL的简易CPU设计(内附详细实验报告)
    2020-12-09下载
    积分:1
  • 遗传算法解决多旅行商
    遗传算法解决多旅行商问题的matlab程序分5情况:1.从不同起点出发回到起点(固定旅行商数量)2.从不同起点出发回到起点(旅行商数量根据计算可变)3.从同一起点出发回到起点4.从同一起点出发不回到起点5.从同一起点出发回到同一终点(与起点不同)
    2020-12-12下载
    积分:1
  • SPI接口的verilog实现.gz
    【实例简介】用verilog实现SPI的传输,包括RTL级源码和仿真文件等
    2021-11-20 00:32:06下载
    积分:1
  • 来自HMW8卫星的Random-Forest_Rainfall-Estimation:使用随机森林机器学习方法从himawari...
    【实例简介】HMW8卫星的随机森林降雨估算 使用随机森林,从himawari-8卫星多波段数据估算雨量 模型随机森林机器学习 数据未上传是因为数据过大且保密,因为它具有处理数据的低谷。 如果您有兴趣并想查看数据,可以给我发邮件: 使用的数据IR波段Himawari 8空间分辨率:2kmx2km时间分辨率:所有波段的10分钟组合。 9段+ 36分割窗口。 在一年八月2018-七月2019 在ftp://hmwr829gr.cr.chiba-u.ac.jp/gridded/FD/V20151105/免费下载 GPM DPR KuPR空间分辨率:5.2公里x 5.2公里,可从免费下载 假设在相似的大气条件下克服万隆盆地的数据局限性,通过将数据收集扩展到Java岛的一个岛屿来进行数据采样。 该算法使用具有多个阶段的随机森林模型,即 对降雨区域进行分类对降雨回归的类型进行分类以获得降雨值。 万隆盆地有3个
    2021-11-16 00:32:44下载
    积分:1
  • 边介数源代码(复杂网络或者软件网络中--运行成功)
    边介数源代码(复杂网络或者软件网络中--运行成功)边介数源代码(复杂网络或者软件网络中--运行成功)边介数源代码(复杂网络或者软件网络中--运行成功)
    2020-11-30下载
    积分:1
  • 基于JSP+JavaBean+Servlet的MVC模式的在线网上订餐系统
    Java期末课程设计,利用JSP+Servlet+Javabean实现MVC模式。订餐系统分为客户和商家两种用户,实现了客户的登录、注册、挑选菜品、加入购物车、提交菜品,以及商家的登录注册。当用户结算购物车内菜品时,通过socket通信将信息传给商家,商家能立即收到消息,并选择接受或拒绝订单。
    2020-12-04下载
    积分:1
  • 自适应粒子群算法
    这是自适应粒子群算法的matlab源代码,十分经典好用
    2020-11-30下载
    积分:1
  • 基于VerilogHDL的SPWM全数字算法的FPGA实现
    在详细阐述正弦脉宽调制算法的基础上, 结合DDS 技术, 以Actel FPGA 作为控制核心,通过自然采样法比较1 个三角载波和3 个相位差为1 200 的正弦波, 利用Verilog HDL 语言实现死区时间可调的SPWM 全数字算法,并在Fushion StartKit 开发板上实现SPWM 全数字算法。通过逻辑分析仪和数字存储示波器得到了验证,为该技术进一步应用和推广提供了一个良好的开放平台。
    2020-12-03下载
    积分:1
  • 696516资源总数
  • 106914会员总数
  • 0今日下载