登录
首页 » Others » 基于MATLAB实现DTW算法

基于MATLAB实现DTW算法

于 2020-12-05 发布
0 816
下载积分: 1 下载次数: 1

代码说明:

基于Matlab软件,实现了语音识别中的DTW算法,DTW算法使用了时间伸缩技术,解决了以前语音识别中,训练模板和参考模板帧长不一样的问题

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

  • 松下PLC控制伺服电机实例
    现有的松下PLCC程序,注释,伺服驱动器参数设置及参数计算方法,以及伺服电机和步进电机的基本知识,希望能帮到你⑩F右移R11左移528工控网w.gk528.com+[F1wH10113DT D[F1 DMVE.10IT 2[F1 DMVDT 20输出频率LF1 DMYK100IT 6[F1 DMVT40t 8输出脉[F1 DMVR O[F171 SPDHUTKOEU松下伺服常见问题基本接线主电源输入采用~220V,从L1、L3接入(实际使用应参照操作手册);控制电源输入r、t也可直接接~220V电机接线见操作手册第22、23页,编码器接线见操作手册第24~26页,切勿接错。试机步骤1.J0OG试机功能仅按基本接线就可试机;在数码昰示为初始状态‘r0’下,按‘SET’键,然后迕续按‘MODE’键直至数码显示为‘AF-AcL’,然后按上、下键至AF-JoG按‘SET’键,显示‘JG-’:按住‘’键直全显示‘EAdy按住“
    2020-12-06下载
    积分:1
  • OFDMA System Analysis and Design
    OFDMA系统分析与设计的国外经典教材Chapter 1 Introduction to OFDM and OFDMAChapter 2 Characterization of the Mobile Wireless ChannelChapter 3 Fundamentals of Digital Communications and NetworkingChapter 4 Fundamentals of OFDM and OFDMA: Transceiver StructureChapter 5 Physical Layer: Time and FrequencyChapter For a listing of recent titles in theArtech House Mobile Communications Library,turn to the back of this bookOFDMA System Analysis and DesignSamuel C. YangARTECHHOUSEBOSTON LONDONartechhouse. comLibrary of Congress Cataloging-in-Publication DataA catalog record for this book is available from the U.S. Library of CongressBritish Library cataloguing in Publication DataA catalogue record for this book is available from the british libraryISBN-13:978-1-60807-076-3Cover design by vicki KaneC 2010 Artech House685 Canton streetNorwood. MA 02062All rights reserved. Printed and bound in the United States of America. No partof this book may be reproduced or utilized in any form or by any means, elec-tronic or mechanical, including photocopying, recording, or by any informationstorage and retrieval system, without permission in writing from the publisherAll terms mentioned in this book that are known to be trademarks or servicemarks have been appropriately capitalized artech House cannot attest to theaccuracy of this information. Use of a term in this book should not be regardedas affecting the validity of any trademark or service mark10987654321To my beautiful wife JennyContentsPrefaceAcknowledgmentsXVCHAPTER TIntroduction to ofdm and ofdma1.1 Motivation1.2 Conventional FDm1.3 Advantages of FDm1.3.1 Intersymbol Interference(ISI)and Multipath Fading1.3.2 Modulation and Coding per Subcarrier1.3.3 Simple equalization1.4 Disadvantages of FDM1.5 Basics of ofdm1.6 Advantages of OFDM1.6.1 Low-Complexity modulation1.6.2 Spectral Efficiency1.7 Basics of ofdma1.8 Advantages of OFDMA121.9 Some Practical issues of ofdm and ofdma1.9.1 Time Domain: Interblock Interference131.9.2 Frequency Domain: Intercarrier Interference131.10 OFDM and Dsss141.11 Overview of the book14References15Selected BibliographyCHAPTER 2Characterization of the mobile wireless channel2.1 Introduction2.2 Link analysis2.3 Distance Dimension: Propagation Loss2.3.1 Path Loss2.3.2 Shadowing Loss24Contents2.3.3 Multipath Fading26Example 2.1282.3.4 Concluding Remarks292.4 Time Dimension: Multipath Delay Spread302.4.1 Delay Spread30Example 2.231Example 2.3312. 4.2 Coherence bandwidth322.4.3 Implications for OFDM352.5 Frequency Dimension: Doppler Spread362.5.1 Doppler Spread36Example 2. 4372.5.2 Coherence time2.5.3 Implications for OFDM402. 6 Conclusions41References43Selected Bibliography44ChAPTER 3Fundamentals of Digital Communications and Networking453.1 Introduction453.2 Basic Functions of a Transceiver453.3 Channel Coding473.3.1 Linear block codes473.3.2 Convolutional codes493.4 Symbol mapping and modulation3.5 Demodulation563. 5. 1 Matched Filter563.5.2 Symbol Error3.6 Adaptive Modulation and Coding603.7 Cyclic Redundancy Check(CRC)623.8 Automatic Repeat Request(arQ)643.8.1 Stop-and-Wait ARQ643.8.2 Sliding Window arQ653.9 Hybrid ARQ67References69Selected bibliographyCHAPTER 4Fundamentals of ofdm and ofdma: transceiver structure4.1 Basic Transmitter functions714.2 Time domain: guard time4.3 Frequency Domain: Synchronization744.4 Basic receiver functions754.5 Equalization764.6 OFDM Symbol79Contents4.7 OFDMA Transmitter844. 8 OFDMA Receiver4.9 OFDMA4.9.1 Frequency diversity4.9.2 Multiuser diversity914.9.3 Concluding Remarks4.10 Peak-to-Average Power ratio924.11 Conclusions93References94Selected Bibliography95CHAPTER 5Physical Layer: Time and Frequency975.1 Introduction5.2 Distributed Subcarrier Permutation: Forming Subchannels onDownlink5.2.1 Full Usage of Subchannels(FUSC1005.2.2 Partial Usage of Subchannels(PUSC)1015.2.3 Tile Usage of Subchannels 1(TUSC1)1025.2.4 Tile Usage of Subchannels 2(TUSC2)1025.3 Distributed Subcarrier Permutation: Forming Subchannels on Uplink 1025.3.1 Partial Usage of Subchannels(PUSC)1035.3.2 Optional Partial Usage of Subchannels(Optional PUSC)1035.4 Adjacent Subcarrier Permutation: Downlink and Uplink1045.5 Summary of Subcarrier Permutation Modes1045.6 Bursts and Permutation Zones1055.7 Subframes and frames1075.7.1 Preamble1105.7.2 Frame Control Header(FCH)1105.7.3 Downlink MAP (DL-MAP)and Uplink MAP(UL-MAP1115. 8 TDD and FDD5. 9 System Design Issues1125.9.1 Frequency Diversity and multiuser diversity1125.9.2 Segmentation1125. 10 Adaptive burst profiles1155.10.1 Burst Profiles1155.10.2 Channel Quality Feedback116References117ChAPTER 6Physical Layer: Spatial Techniques1196.1 Introduction6.2 Spatial Diversity: Receive Diversity1206.2.1 Receive Diversity: Antenna Selection1226.2.2 Receive Diversity: Maximal Ratio Combining6.3 Spatial Diversity: Transmit Diversity123Contents6.3. 1 Transmit Diversity: Open-Loop 2 X 11246.3.2 Transmit Diversity: Open-Loop 2X 21266.3.3 Transmit Diversity: Closed-Loop Antenna Selection128Example 6.11296.3.4 Transmit Diversity: Closed-Loop precoding1306.3.5 Remarks1326.4 Spatial Multiplexing1336.5 MIMO-OFDM1366.6 Beamforming1366.7 System Design Issues139References140Selected Bibliography141CHAPTER 7Medium Access control: architecture and data plane1437.1 MAC Architecture1437.2 Convergence Sublayer1457. 2.1 Address Mapping( Classification1467. 2.2 Header Suppression1467. 3 Common Part Sublayer1477.3.1ARQ1477. 3.2 MAC SDU and MAc pdu1487.3.3 Fragmentation/Packing1497.4 Security Sublayer152References152chaPTeR 8Medium Access Control Lower Control plane1538. 1 Introduction1538.2 Scheduler1538.3 Bandwidth Request1558.3.1 Request in Existing Uplink Allocation1568.3.2 Unicast Polling1568.3.3 Multicast and Broadcast Polling1578.3.4 Contention-Based Request for OFDMA1578.4 Control Signaling1588.5 Ranging1598.5.1 Initial Ranging1598.5.2 Periodic Ranging1608.5.3 Handover ranging1618.6 Power Control1618.6.1 Uplink Power Control: Closed-Loop1648.6.2 Uplink Power Control: Open-Loop1668.6.3 Assignment of Uplink Modulation and Coding8.6.4 Concluding Remarks168References169ContentsChaPTER 9Medium Access Control: Upper Control plane1719.1 Introduction1719.2 Network Entry1719.2. 1 Synchronization with Downlink of Base Station and acquisitionof parameters1739.2.2 Initial Ranging1739. 2.3 Negotiation of Mobile Capabilities1749.2.4 Security Procedures1749.2.5 Mobile registration1759.2.6 IP Connectivity1759.2.7 Connection Setup1769.3 Mobility Management: Link Handover1769.3.1 Cell Reselection1779.3.2 Hard Handover(HHO1799.3.3 Macro Diversity Handover(MDHO)1849.3.4 Fast Base Station Switching(FBSS1879.3.5 System Design Issue: H Add and h delete1899.3.6 Concluding Remarks1919.4 Mobility management: Network handover192References192CHAPTER 10Quality of Service(Qos)19510.1 Introduction19510.2 Definitions and Fundamental Concepts19510.2.1 Service Flows and Qos Parameters19510.2.2 Connections19610.3 Object Relationship Model19710.4 Service flow transactions19910.4.1 Creating a Service Flow19910.4.2 Changing a Service Flow20010.4.3 Deleting a Service Flow20310.5 QoS Parameters20410.6 Scheduling Services20610.6.1 Unsolicited Grant Service(UGS)20610.6.2 Real-Time Polling Service(rtPS20710.6.3 Extended Real-Time Polling Service(ertPS20710.6.4 Nonreal-Time Polling Service(nrtPS20810.6.5 Best Effort(BE)20810.6.6 Remarks209References210
    2020-11-30下载
    积分:1
  • VC++大型项目源码
    VC++编程技术600个大型项目源码VC++编程技术600个大型项目源码VC++编程技术600个大型项目源码VC++编程技术600个大型项目源码VC++编程技术600个大型项目源码VC++编程技术600个大型项目源码VC++编程技术600个大型项目源码VC++编程技术600个大型项目源码VC++编程技术600个大型项目源码VC++编程技术600个大型项目源码VC++编程技术600个大型项目源码VC++编程技术600个大型
    2020-12-11下载
    积分:1
  • 卫星轨道姿态动力学与控制
    被大家誉为的一本经典的关于卫星轨道姿态动力学与控制的书籍,是卫星研究者的必备参考书。本书以空间动力学与控制相结合的方式和原理与应用相结合的方式,系统地阐述卫星轨道和姿态的理论概念以及控制方案的设计原理和方法。
    2021-05-06下载
    积分:1
  • 倒立摆LQR控制仿真
    倒立摆LQR控制仿真,包含实验报告及程序。
    2020-12-07下载
    积分:1
  • Unity 中VIdeoPlayer的视频外部加载- 源码
    Unity 中VIdeoPlayer的视频播放控制。可加载外部视频资源,控制视频播放(播放、暂停、停止)。可切换本地视频。可获取视频播放进度(进度条)、可控制视频播放音量。
    2020-12-05下载
    积分:1
  • STM32控制的高压无刷直流电机序.zip
    【实例简介】STM32控制的高压无刷直流电机程序,该程序在KEIL环境下,利用前后台程序实现了无刷直流电机的双闭环控制
    2021-11-24 00:50:07下载
    积分:1
  • 基线解算的matlab源码
    对相对定位和基线解算 模糊度固定都有很好的理解。源码可以实现厘米级动态基线解算和毫米级静态基线解算。
    2020-12-03下载
    积分:1
  • 小波变换的去基线
    【实例简介】利用小波变换多分辨率的特性,对EEG信号进行了有效地去基线漂移。
    2021-11-16 00:43:11下载
    积分:1
  • 三相直流无刷电机驱动序.doc
    【实例简介】检测霍尔传感器的值可以判断出转子的位置,再使能相应的上下桥臂,则能驱动电机运动;若要让电机持续转动,则必须再次检测传感器值及使能相应的上下桥臂。这里采用的是将霍尔传感器输出的三根线相边的IO口配置成外部中断,并且为边沿触发,在中断函数中加入传感器检测与上下桥臂切换程序,如此电机就能持续运转
    2021-11-20 00:31:51下载
    积分:1
  • 696518资源总数
  • 105540会员总数
  • 37今日下载