Free Space Optical Communication (FSOC) is an effective alternative technology to meet the Next Generation Network (NGN) demands as well as highly secured (mili- tary) communications. FSOC includes various advantages like last mile access, easy installation, free of Electro Magnetic Interference (EMI)/Electro Magnetic Compatibil- ity (EMC) and license free access etc. In FSOC, the optical beam propagation in the turbulentatmosphereisseverelyaffectedbyvariousfactorssuspendedinthechannel, geographicallocationoftheinstallationsite,terraintypeandmeteorologicalchanges. Therefore a rigorous experimental study over a longer period becomes significant to analyze the quality and reliability of the FSOC channel and the maximum data rate that the system can operate since data transmission is completely season dependent.
标签: Communication Optical System Space Free
上传时间: 2020-05-27
上传用户:shancjb
053-Linux内核源代码(free);053-Linux内核源代码(free)
标签: linux
上传时间: 2021-10-22
上传用户:xsr1983
Chrome-Setup-Lifetime-Free-3.7.0-master.zip
标签: chrome
上传时间: 2022-06-26
上传用户:
由于低场磁共振自由感应(FID-Free Induction Decay)信号十分微弱,信噪比低,所以信号放大电路的设计、调试具有一定的困难.该文首先对低场磁共振电路系统的各个功能模块进行了分析,并估算了低场磁共振的信号幅值,然后重点对天线接口和前置放大两个电路模块进行了分析研究.天线接口电路是射频发射电路、信号接收电路与磁体天线的接口电路.针对接收信号弱、信噪比低的情况,天线接口电路不但要实现天线的三个状态(发射、泄放、接收)间的切换,而且要对信号进行无源放大.该文在完成了天线接口电路功能分析后,建立了简化模型,然后对其参数进行分析计算,得出了满足最大放大倍数和期望带宽时的调试指导参数,还据此设计了校验信号发生电路.前置放大电路主要完成磁共振FID信号的有源放大.该文在进行了方案讨论后,给出了具体的前置放大电路,并对其工作状态进行了静态工作点计算和动态仿真分析,计算了增益系数,分析了带宽,并作了噪声分析.该文还参照高频电路的设计特点,分析了低场磁共振信号放大电路的噪声干扰的来源、种类;讨论了器件选择、电路布板等方面的注意事项;给出了减小噪声干扰的一些具体措施.
上传时间: 2013-06-01
上传用户:hanli8870
The driver of H-JTAG is open and free for ARM debug
上传时间: 2013-05-18
上传用户:ynsnjs
VC与西门子PLC自由口通讯例程源码-VC and Siemens PLC source free port communication routines
标签: SCommtest
上传时间: 2013-06-14
上传用户:youth25
免费开源的远程桌面程序,vnc客户端源代码,windows版本-Free open source remote desktop programs
标签: vncviewer_source 1.0
上传时间: 2013-04-24
上传用户:@小小羊
查看CANDENCE ALLEGRO的GERBER文件
上传时间: 2013-05-26
上传用户:thesk123
FPGA原理设计与应用,请用dgreader free.exe打开
标签: FPGA
上传时间: 2013-09-01
上传用户:gps6888
Abstract: Specifications such as noise, effective number of bits (ENOB), effective resolution, and noise-free resolution inlarge part define how accurate an ADC really is. Consequently, understanding the performance metrics related to noise isone of the most difficult aspects of transitioning from a SAR to a delta-sigma ADC. With the current demand for higherresolution, designers must develop a better understanding of ADC noise, ENOB, effective resolution, and signal-to-noiseratio (SNR). This application note helps that understanding.
上传时间: 2013-10-16
上传用户:x18010875091