-
自适应迭代最小二乘支持向量机回归算法
自适应迭代最小二乘支持向量机回归算法,对写高水平的论文有非常好的帮助
- 2020-11-02下载
- 积分:1
-
粒子群算法、遗传算法以及两者的结合的优化算法
用matlab实现了标准粒子群算法,遗传算法,以及粒子群遗传算法的结合算法。可直接运行
- 2021-05-07下载
- 积分:1
-
GNSS-SDR_manual.pdf (v0.0.9)
GNSS-SDR is an open-source GNSS software receiver freely available to the research community. This project provides a common framework for GNSS signal processing which can operate in a variety of computer platforms. This tool is intended to foster collaboration, increase awareness, and reduce develoContentsMain Page1.1 Contents1.2 Overview1.3 Building GNSS- SDR2351.3.1 Debug and release builds1.3.2 Updating GNSS-SDR1.4 Using GNSS-SDR51.5 Control plane1.5.1 Configuration61.5.2 GNSS block factory1.6 Signal Processing plane1.6.1 Signal Source1.6.2 Signal Conditioner1.6.3 Channel1.6.3.1 Acquisition1.6.3.2 Tracking101.6.3.3 Decoding of the navigation message11.6.4 Observables121.6.5 Computation of Position, velocity and Time121.7 About the software license1.8 Publications and Credits131.9 Ok. now what?14CONTENTS2 Reference Documents152.1 Interface Control Documents152.1.1GPs2.1.2 GLONASS152.1.3Gai152.1.4 beiD2.1.5 Satellite Based Augmentation Systems(SBAS)2.2 Other Standards2.2.1R|NEX172.2.2 NMEA22.3KML.2.2.4 C++ Standards182.2.5 Positioning protocols in wireless communication networks183 Signal model193. 1 GNSS signal model1.1 Global Positioning System(GPS)signal in space3.1.2 GLONASS signal in space3.1.3 Galileo signal in space223.1.4 Reference254 Todo list5 Hierarchical Index5.1 Class Hierarchy6 Class Index336.1 Class list7 File Index7.1 File list43CONTENTS8 Class docu8. 1 AcquisitionInterface Class Reference538.1.1 Detailed Description8.2 ArraySignal Conditioner Class Reference8.2.1 Detailed Dtio558.2.2 Constructor& Destructor Documentation8.2.2. 1 Array SignalConditioner(Configurrface configuration, std: shared_ptr data type_adapt, std: shared_ptr< GNSSBlockInterfaceil, std: shared ptr< GNSSBlockInterface > res, std: string role, std: stringimplementation)558. 2.2.2 Array SignalConditioner(558.2.3 Member Function Documentation8.2.3. 1 implementation(558.3 beamformer Class Reference568.3. 1 Detailed Description8. 4 Beamformer Filter Class Reference568.4.1 Detailed description578.4.2 Member Function Documentation8. 4.2.1 implementation()8.5 byte x2 to complex byte Class Reference8.5.1 Detailed Description588.6 Byte ToShort Class Reference588.6. 1 Detailed description8.6.2 Member Function Documentation8.6.2. 1 implementation(598.7 Channel Class Reference598.7.1 Detailed description608.7.2 Constructor Destructor Documentation8.7. 2.1 Channel(ConfigurationInterface *configuration, unsigned int channel, std+shared_ptr< GNSSBlockInterface> pass through, std: shared_ptr acq, std: shared_ptr nav, std string role, std stringimplementation, boost: shared ptr< gr: msg_queue queuegenerated by DoxygenCONTENTS8.7.2.2 Channelo8.7.3 Member Function Documentation8.7.3. 1 implementation(618.7.3.2 set signal(const Gnss Signal &gnss signal8.7.3. 3 start_ acquisition(68.8 channel msg receiver cc Class Reference8.8.1 Detailed Description628.8.2 Constructor Destructor Documentation628.8.2. 1 channel_msg_ receiver_ cco8.9 ChannelFsm class Reference8.9.1 Detailed Description638.10 ChannelInterface Class Reference638.10.1 Detailed Description8.11 cl_ fft_ plan Struct Reference648.11.1 Detailed Description648.12 clFFT Complex Struct Reference648. 12. 1 Detailed Description8. 13 ClFFT Dim 3 Struct Reference8. 13.1 Detailed description658.14 ClFFT_ SplitComplex Struct Reference658. 14.1 Detailed Description658. 15 complex byte to float x2 Class Reference8. 15.1 Detailed description8. 16 complex_ float_to _ complex_ byte Class Reference668.16.1 Detailed Description668. 17 concurrent map< Data> Class Template Reference8.17.1 Detailed description8.18 concurrent_ queue< Data > Class Template Reference8.18.1 Detailed description688.19 ConfigurationInterface Class ReferenceCONTENTS8.19. 1 Detailed Description8.20 ControlMessage Class Reterence698. 20. 1 Detailed Description8.21 ControlMessage Struct Reference698.21. 1 Detailed Description8.22 ControlMessageFactory Class Reference708.22. 1 Detailed Description8. 22.2 Constructor Destructor Documentation8. 22.2. 1 ControlMessage Factory8. 22.2.2 ControlMessage(8.23 Control Thread class Reference8. 23. 1 Detailed Description718.23.2 Constructor Destructor Documentation8.23. 2.1 ControlThreado8. 23.2.2 Control Thread(std: shared_ptr< ContigurationIntertace> configuration)8.23. 2.3 Control Thread(728.23. 3 Member Function Documentation8.23.3. 1 flowgraph7282332run()728.23.3.3 set_control_ queue(boost: shared _ptr< gr: msg_queue control queue)8. 24 cpu multicorrelator Class Reference8.24. 1 Detailed Description8.25 cpu multicorrelator 1 6sc Class Reference8.25. 1 Detailed Description748.26 cshort to float x2 Class Reference748. 26. 1 Detailed Description8.27 cuda multicorrelator Class Reference8.27.1 Detailed Description758.28 direct resampler conditioner cb class Reference758.28. 1 Detailed Descriptiongenerated by DoxygenCONTENTS8.29 direct resampler conditioner cc Class Reference8.29. 1 Detailed description768.30 direct resampler conditioner cs Class Reference8.30. 1 Detailed description8.31 DirectResampler Conditioner Class Reference8.31. 1 Detailed Description788.31.2 Member Function Documentation788.31.2.1 implementation788.32 Fast Correction Struct Reference8. 32 1 Detailed Description8.33 File Configuration Class Reference8.33. 1 Detailed Description798.33.2 Constructor destructor documentation8.33.2. 1 File Configuration(8. 34 File SignalSource Class Reference808.34.1 Detailed Description808.34.2 Member Function Documentation8.34.2.1 implementation(8.35 Fir Filter Class Reference8.35. 1 Detailed Description818.35.2 Constructor Destructor Documentation8.35.2. 1 Fir Filter( ConfigurationInterface *configuration, std: string role, unsigned intreams, unsigned int out_streams)8.35. 2.2 FirFiltero8.35. 3 Member Function Documentation8.35.3. 1 implementation(828.36 FlexibandsignalSource Class Reference828.36. 1 Detailed descripti838.36.2 Member Function Documentatio8.36.2.1 implementation(8. 37 FreqXlating FirFilter Class ReferenceCONTENTSX8.37.1 Detailed Description8.37.2 Member Function Documentation848.37. 2.1 implementation(848.38 FrontEndCal Class Reference848. 38. 1 Detailed description8.38.2 Member function documentation8.38. 2.1 estimate_doppler_ from_ _eph(unsigned int PRN, double toW, double lat, doublelon, double height)8.3822 get ephemeris(),.,.,,.,,,,,,,858.38.2.3 GPS L1 front end model E4000(double f bb true Hz, double f bb_measHz, double fs nominal_ hz, double *estimated_fs_ hz, double *estimated_f if Hz, 85double *tosc_err_ppm)8.38.2.4 set_configuration(std shared_ptr< ConfigurationInterface configuration)858. 39 Galileo Almanac class Reference858.39. 1 Detailed description8. 39.2 Constructor destructor documentation8.39.2.1 Galileo_ Almanac8.40 galileo e1 dl pll veml tracking cc Class Reference8.40. 1 Detailed Descriptio88ember Function Documentation8.40.2.1 general work(int output_ items, gr_ vector_int &ninput_ items. gr vector_constvoid_star &input_items, gr_ vector_ void_ star &output_ _items)8. 41 galileo_e1_ Is_pvt Class Referenc8.41. 1 Detailed Descriptio8. 41.2 Member data documentation8. 41.2.1 d channels898.41. 2.2 galileo_ ephemeris_ map898.42 galileo e1 observables cc Class Reference8.42. 1 Detailed Description8. 43 galileo_e1_pvt_cc Class Reference8.43. 1 Detailed description8. 43.2 Constructor Destructor documentatiCONTENTS8. 43.2.1 galileo_e1_pvt_cc918. 43.3 Member Function documentation8. 3.1 general_work(int output_items, gr vector_int &ninput_items. gr_ vector_constevoid star &input items, gr vector void star &output items)918. 44 Galileo_E1_ Tcp Connector_ Tracking_cc Class Reference8.44.1 Detailed Description8. 45 galileo e1b telemetry decoder cc Class Reference928.45. 1 Detailed description938. 45.2 Member Function Documentation8.45.2. 1 forecast(int noutput_items, gr_ vector_ int &input_items_required8.45. 2.2 general_ work(int output_items, gr- vector_ int &ninput_items. gr_ vector_const+void star &input_items, gr_ vector_ void_ star &output_ items938. 45.2.3 set_channel(int channel8.45.2. 4 set_ decimation(int decimation)8. 45. 2.5 set_ satellite(Gnss_ Satellite satellite)8.46 Galileo E5a Dl Pll Tracking cc Class Reterence8.46. 1 Detailed description48. 47 galileo e5a noncoherentlQ acquisition caf cc class Reference8.47.1 Detailed Description958. 47.2 Constructor Destructor Documentation8.47. 2.1 galileo e5a noncoherentlQ acquisition caf cco8. 47.3 Member Function Documentation968.47. 3.1 general_ work(int output_items, gr_ vector_int &ninput_ items. gr vector_const+void_star &input_items, gr_vector_ void_star &output_items)8.47.32init()968.47.3.3mag(0..968.47.3.4 set active(bool active968.47.3.5 set channel(unsigned int channel)968.47.3.6 set_ doppler_ max(unsigned int doppler_ max)8.47.3.7 set_ doppler_ step(unsigned int doppler step8.47.3.8 set_gnss synchro(Gnss Synchro *p_gnss_ synchro8.47.3.9 set_local_code(std: complex< float >*code, std: complex< float > *code Q)97
- 2020-12-01下载
- 积分:1
-
粘弹性介质地震波场有限差分数值模拟程序
该程序能够实现地震波在粘弹性介质中的波场数值模拟研究,可用于石油天然气地震勘探领域中地震波场在地下传播的数值模拟,用于对实际地下反射波信号衰减特性的分析
- 2020-12-12下载
- 积分:1
-
WinCC V7.2与S7 1200和1500通讯手册
WinCC V7.2与S7-1200/1500 PLC常规通讯,此文档主要讲述如何使用“SIMATIC S7-1200, S7-1500 Channel”通道,组态与S7-1200/1500的以太网通讯。1概述自 WinccⅥ7.2版本起,软件新増加了“ SIMATIC S7-1200,S7-1500 Channel”通道,用于 Wincc与S7-1200/S7-1500PLC之间的通信。此驱动只支持以太网通讯,使用TCP/IP协议。此文档上要讲述如何使用“ SIMATIC S7-1200,S7-1500 Channel”迸道,组态与S71200/1500的以太网通讯。在win℃C项目中可添加此驱动,如图1-1所示,打开变量管理界面,选择“变量管理”点击鼠标右键,选择“添加新的驱动程序”,在驱动列表中选择“ SIMATIC S7-1200,S7-1500 Channe1”驱动。文件编辑E)视图帮助什变量管理《变量管理数结构变导入Modbus TCPIPOPC5Profibus DP6Profibus FmsSIMATIC 505 TCPIP8SIMATIC S5 Ethernet Layer 410SIMATIC S5 Profibus FDL本本本符本符符符符本本11SIMATIC $5 Progr ammers Port AS51112SIMATIC S5 Serial 3964R1314SIMATIC ST-1200. S7-1500 Channel1516SIMATIC TI Serial点17Simotion18System Info19图1-1添加驱动文档示例的软硬件环境件: Wincc项目运行的电脑自带普通以太內卡、CPU1214C、CPU1511-1PN软件: WinCc7.2Upd6、 Simatic net v8.2SPl、Step7Ⅵ13(用于组态S71500/1200)2 Wincc v7.2与S7-1200PLC常规通讯2.1设置PLC通讯参数在Step?Ⅵ13组态软件中打开S7-1200项目,关丁PLC硬件组态步骤在此不详述。在树形菜单中打开“设备和內络”,打开网终视图点击CPU1214C通讯端口,在“属性”界面中设置通讯参数,在“子网”列表中可把接口连接到某一子网,设置“IP电址”和“子网掩码”参数。简单通讯情况下,可以不用启用IP路由尜,如图2-1所小。□项目157-1200鱼设备和网络PLC 1CPU 12140Pu1511-1PN571500AC/DC/RlyPLC设备组态旦在和诊断程序块「工艺对象细外部原文件PLc变里PLc数据类型圆出控与强制表约程序信息PROFINET接口1[X1:PN(LAN墨设备代理数据属性「信息S诊断文本列表常规0变量系统常数文本□本模块□吒C2[Uu15111刚太网地址以太网地址设备组态高级接口连接到旦在线和诊断时间同步程序块硬件标识符子网:PNE2工艺对象添加新子网外部原文件FLC变里PLc数据类型P协议监控与强制表UTra⊙在项目中设置P地址设备代理据P地址:[19216840120ˇ详细视图子阿镜吗:[255:2552550图2-1S7-1200通讯参数将组态下载到CPU,PLC组态完成2.2 Wincc软件组态步骤2.2.1电脑网卡参数设置在操作系统网络连接中设置此网卡的IP地址以及子网掩码,在此例中,IP地址和PIC的IP地址在同一样网段中,子网掩码一致,如图2-2所示。在PLC和电脑之间接入以太网通讯电缆,测试电脑与PC之间物理连接是否正常。选择操作系统左下角“开始”菜单,在最下一行运行栏中输入“CⅧ”命令,然后敲回车进入DOS命令界面。在界面中输入pins命令,格式:pingping192.168.48,120在Ping192.16841.128具有32字节的数据:自192168,48,128的节=32时间< ms TTL=128自192168.4.128的节=32时间
- 2020-12-11下载
- 积分:1
-
labview 自适应屏幕分辨率程序
屏幕自适应程序,使用时直接调用即可。里面包含测试程序,可执行文件等。
- 2021-05-06下载
- 积分:1
-
雷电感应电压matlab
matlab雷电过电压。该程序是在计算电力系统输电线路上由于雷电冲击在避雷线上而在其他三相上产生的雷电过电压程序
- 2020-12-02下载
- 积分:1
-
点特征提取、相关系数影像匹配程序
数字摄影测量课间实习之——————点特征提取、相关系数影像匹配程序
- 2020-12-03下载
- 积分:1
-
基于MatlabSimulink数字基带传输系统仿真课程设计
基于MatlabSimulink数字基带传输系统仿真课程设计
- 2020-12-06下载
- 积分:1
-
stm32f4xx固件库
这是stm32f4xx的固件库,里面有启动文件和各种库函数的c代码和h代码应有尽有
- 2021-05-07下载
- 积分:1