cdma2000-UV_Simulator

所属分类:3G/4G/5G开发
开发工具:matlab
文件大小:10205KB
下载次数:74
上传日期:2009-06-28 14:09:47
上 传 者hdcs
说明:  一个cdma2000的系统仿真器,附英文手册
(The cdma2000-UV Simulator estimates the performance of data transmissions at the physical layer of the mobile communications technology cdma2000 1X. These wireless data transmissions enable the communication between mobile stations (e.g., cellular phones, PDAs, laptops) and base stations (i.e., the communication systems that provide network access to the final user). Examples of these transmissions include voice, e-mails, and text messages. The simulation results are calculated according to the simulation parameters set by the user. For example, the user may set a non-moving mobile station in an indoor environment or a moving mobile station in a vehicular environment. With the results obtained with the simulator, the user can perform different analyses such as the degradation in system performance due to an increase of the number of mobile stations or the effects of multipath channels on CDMA transmissions. Also, the cdma2000-UV Simulator assists the user in understanding the)

文件列表:
cdma2000-UV_Simulator\codigo_fuente\canales\awgn_channel.m (313, 2004-12-16)
cdma2000-UV_Simulator\codigo_fuente\canales\indoor_pathloss.m (2681, 2005-05-19)
cdma2000-UV_Simulator\codigo_fuente\canales\multipath_rayleigh_channel.m (6857, 2005-02-23)
cdma2000-UV_Simulator\codigo_fuente\canales\multipath_rayleigh_channel_2.m (4333, 2005-02-28)
cdma2000-UV_Simulator\codigo_fuente\canales\urbanpedestrian_pathloss.m (2733, 2005-05-19)
cdma2000-UV_Simulator\codigo_fuente\canales\urbanvehicular_pathloss.m (3131, 2005-05-19)
cdma2000-UV_Simulator\codigo_fuente\funciones_apoyo\ber_est_2.m (745, 2005-02-15)
cdma2000-UV_Simulator\codigo_fuente\funciones_apoyo\Canal_CDMA_Directo\definir_canales_directos.m (36960, 2005-02-02)
cdma2000-UV_Simulator\codigo_fuente\funciones_apoyo\Canal_CDMA_Directo\direct_othercell_interference.m (3705, 2005-02-02)
cdma2000-UV_Simulator\codigo_fuente\funciones_apoyo\Canal_CDMA_Directo\hallar_BER_canales_directos.asv (72505, 2007-06-24)
cdma2000-UV_Simulator\codigo_fuente\funciones_apoyo\Canal_CDMA_Directo\hallar_BER_canales_directos.m (72532, 2007-06-24)
cdma2000-UV_Simulator\codigo_fuente\funciones_apoyo\Canal_CDMA_Directo\hallar_num_tramas_canales_directos.m (31855, 2005-01-31)
cdma2000-UV_Simulator\codigo_fuente\funciones_apoyo\Canal_CDMA_Directo\hallar_SER_canales_directos.m (77468, 2005-02-02)
cdma2000-UV_Simulator\codigo_fuente\funciones_apoyo\Canal_CDMA_Inverso\definir_canales_inversos.m (39685, 2005-02-02)
cdma2000-UV_Simulator\codigo_fuente\funciones_apoyo\Canal_CDMA_Inverso\hallar_BER_canales_inversos.m (51036, 2005-02-08)
cdma2000-UV_Simulator\codigo_fuente\funciones_apoyo\Canal_CDMA_Inverso\hallar_num_tramas_canales_inversos.m (21934, 2005-02-01)
cdma2000-UV_Simulator\codigo_fuente\funciones_apoyo\Canal_CDMA_Inverso\hallar_SER_canales_inversos.m (54971, 2005-02-02)
cdma2000-UV_Simulator\codigo_fuente\funciones_apoyo\hallar_FER.m (1313, 2005-02-08)
cdma2000-UV_Simulator\codigo_fuente\funciones_apoyo\Q.m (112, 2004-08-23)
cdma2000-UV_Simulator\codigo_fuente\funciones_apoyo\random_binary.m (75, 2004-08-23)
cdma2000-UV_Simulator\codigo_fuente\funciones_apoyo\square_interp.m (568, 2004-12-12)
cdma2000-UV_Simulator\codigo_fuente\generadores_pn\generar_secuencias_pn.m (10068, 2005-01-18)
cdma2000-UV_Simulator\codigo_fuente\generadores_pn\pn_generator.m (2792, 2005-02-02)
cdma2000-UV_Simulator\codigo_fuente\generadores_pn\QOF_generator.m (5754, 2005-01-25)
cdma2000-UV_Simulator\codigo_fuente\generadores_pn\walsh_generator.m (9371, 2005-02-02)
cdma2000-UV_Simulator\codigo_fuente\graficos\acerca_del_simulador_cdma2000_1X.fig (1578, 2007-06-02)
cdma2000-UV_Simulator\codigo_fuente\graficos\ayuda_del_simulador_cdma2000_1X.fig (1377, 2007-06-02)
cdma2000-UV_Simulator\codigo_fuente\graficos\CanalDeAccesoMejorado.png (20137, 2007-06-17)
cdma2000-UV_Simulator\codigo_fuente\graficos\CanalDeAsignacionComun.png (18640, 2007-06-17)
cdma2000-UV_Simulator\codigo_fuente\graficos\CanalDeControlComunDirecto.png (42367, 2007-06-17)
cdma2000-UV_Simulator\codigo_fuente\graficos\CanalDeControlComunInverso.png (30713, 2007-06-17)
cdma2000-UV_Simulator\codigo_fuente\graficos\CanalDeControlDedicadoDirecto.png (19676, 2007-06-17)
cdma2000-UV_Simulator\codigo_fuente\graficos\CanalDeControlDedicadoInverso.png (21729, 2007-06-17)
cdma2000-UV_Simulator\codigo_fuente\graficos\CanalDeControlDeDifusion.png (29484, 2007-06-17)
cdma2000-UV_Simulator\codigo_fuente\graficos\CanalDeControlDePotenciaComun.png (21632, 2007-06-17)
cdma2000-UV_Simulator\codigo_fuente\graficos\CanalDeSincronizacion.png (15913, 2007-06-17)
cdma2000-UV_Simulator\codigo_fuente\graficos\CanalFundamentalDirecto.png (87180, 2007-06-17)
cdma2000-UV_Simulator\codigo_fuente\graficos\CanalFundamentalInverso.png (80504, 2007-06-17)
cdma2000-UV_Simulator\codigo_fuente\graficos\CanalPilotoInverso.png (3879, 2007-06-17)
cdma2000-UV_Simulator\codigo_fuente\graficos\CanalSuplementarioDirecto.png (68620, 2007-06-17)
... ...

cdma2000-UV Simulator Version 1.0 ----------------------- The cdma2000-UV Simulator estimates the performance of data transmissions at the physical layer of the mobile communications technology cdma2000 1X. These wireless data transmissions enable the communication between mobile stations (e.g., cellular phones, PDAs, laptops) and base stations (i.e., the communication systems that provide network access to the final user). Examples of these transmissions include voice, e-mails, and text messages. The simulation results are calculated according to the simulation parameters set by the user. For example, the user may set a non-moving mobile station in an indoor environment or a moving mobile station in a vehicular environment. With the results obtained with the simulator, the user can perform different analyses such as the degradation in system performance due to an increase of the number of mobile stations or the effects of multipath channels on CDMA transmissions. Also, the cdma2000-UV Simulator assists the user in understanding the structure and architecture of the physical layer of the cdma2000 1X technology as well as how all of its components interact to provide communication services to upper layers. System requirements ------------------- For using the simulator, Matlab (version 7.0.4.365 (R14) or higher) is required. The required PC's characteristics are the following: - Processor 2.0 GHz - RAM 512 MB Matlab settings --------------- The simulators Matlab code is in the folder codigo_fuente. For running the simulator do the following: 1. Add the folder codigo_fuente and its subfolders to the Matlab search path: File-> Set Path-> Add with Subfolders -> [open the folder codigo_fuente] 2. Set the Matlab Current Directory to the folder codigo_fuente 3. Run the Matlab script simulador_cdma2000_1X, which is in the folder codigo_fuente %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% Research Group SISTEL-UV Department of Electrical and Electronics Engineering Universidad del Valle Cali ¨C Valle ¨C Colombia Tel.: +57 2 3392140. Ext.: 109, 108 URL: http://sistel-uv.univalle.edu.co/cdma2000-UV.html E-mail: telecomunicaciones@univalle.edu.co %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%

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