搜索资源列表
MIMO
- MIMO系统容量仿真程序分为两个。其中 文件夹1为:发射天线数为4,接收天线数逐渐增大时MIMO系统容量的仿真程序。 文件夹2为:接收天线数为4,发射天线数逐渐增大时MIMO系统容量的仿真程序。-MIMO system capacity simulation program is divided into two. One folder 1 as follows: the number of transmitting antennas is 4, gradually increasing
main-stbc-ofdm-MIMO
- 基于stbc编码的ofdm结合mimo信道传输系统仿真-Combination of coded ofdm based stbc mimo channel Transmission System Simulation
Coop_MIMO_Cellular_HMMD_Ergodic
- MIMO上行链路联合传输积累密度函数曲线仿真-MIMO uplink joint transmission accumulated density function curve simulation
MIMO(4-4)
- MIMO传输是未来极具竞争力的解决方案,发展空间巨大-MIMO transmission solution is very competitive in the future, a huge space for development
4x4mimo
- A 2x2 multiple-input multiple-output (MIMO) architecture using dual-polarized antennas (DPAs) is considered with orthogonal frequency division multiplexing (OFDM). The performance of DPAs is evaluated for adaptive polarization (AP) transmissi
OFDM-MIMO
- 可以实现MIMO—OFDM传输的好代码,里面含有系统喷泉码等概念-a good code of MIMO-OFDM transmission
MRT
- Max Ratio Transmisson,最大比传输,MIMO系统中的一种预编码方式,通常配合接收端的MRC最大比合并进行通信。-Max Ratio Transmisson, maximum ratio transmission, MIMO pre-coding system is one way, usually with the receiving end of the maximum ratio combining MRC communicate.
Out-Probability-BLAST
- Outage probability of DBLAST compared to STBC for a selected rate R=2 bits per transmission and a 4x4 MIMO i.i.d. Rayleigh slow fading channel. Elisabeth de Carvalho, April 2012 -Outage probability of DBLAST compared to STBC for a selected ra
rapport 7
- Theoretical and experimental studies of MIMO-OFDM transmission systems
MIMO-NOMA design
- MIMO-NOMA 设计,附带matlab程序及论文(MIMO-NOMA design for small packet transmission in the Internet of things)
5G通信技术解读|大规模天线阵列技术
- 如何设计5G接入网统一空口(Unified AirInterface)及模块间传输协议来有效 且灵活开放地支持各种不同类型的业务,如何考虑多天线传播兼容问题,是目前当务之急。(How to design the Unified AirInterface and the inter-module transport protocol for 5G access network to support various types of services effectively and flexibly
大规模MIMO无线通信关键技术
- 基于大规模MIMO 基本架构,探讨了信道建模和系统性能分析、信道状态信 息获取技术、多用户上下行无线传输技术等大规模MIMO 传输关键技术;认为利用 大规模阵列天线的多用户多输入多输出(MIMO)传输,将显著提升无线通信系统的 频谱效率及功率效率。(Based on the basic architecture of large-scale MIMO, channel modeling, system performance analysis and channel state infor
大规模MIMO系统研究进展
- 随着无线通信技术的快速发展和智能手机的迅速普及,人们对数据传输速率提出了更高的需 求。为进一步提高数据传输速率,通过增加基站天线数目构建大规模MIMO系统,是一种高效而相对 便捷的方式。大规模MIMO系统能深度发掘空间维的自由度,使得基站能够利用同一时频资源服务于 多个用户。本文探讨了大规模MIMO系统的导频污染问题及解决方案、适用于大规模MIMO系统的 信道模型以及低复杂度的传输技术与实现方法三项关键技术。与现有MIMO系统相比,大规模MIMO 系统能显著提高频谱效率、能量效率和系统