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OptimumPowerAllocationandControlforOFDMinMultipleA
- Power Allocationin a Transmit Diversity System with Mean Channel Gain Information
iweb_mall_ft
- 解决了几个bug iweb Shop 基于iweb SI框架开发,在获得iweb SI技术平台库支持的条件下,iweb Shop 可以轻松满足用户量级百万至千万级的大型电子商务网站的性能要求。站点的集群与分布式技术(分布式计算与存储/高可用性/负载均衡)被屏蔽在SI平台之内,基于iweb Shop 并且按照SI平台库扩展规范开发的新增功能模块,也将同时获得这种超级计算与处理的能力。 iweb Shop 性能卓越,功能与应用丰富多样,优秀的可扩展和伸缩能力使它可方便构建B2B,
An-Opportunistic-Cooperation-Scheme-and-its-BER-A
- The cooperative communication technology proposed in recent years enables network nodes to share their antennas to achieve diversity gain. In this paper, an efficient variation scheme on opportunistic cooperation is proposed by using an outag
AAA
- In this letter, we propose a simple orthogonal frequency-division multiplexing (OFDM) scheme for an asynchronous cooperative system, where OFDM is implemented at the source node, and time-reversion and complex conjugation are implemented at the rel
alamouti
- Simulate a Matlab Program for Alamouti Coding. It is a complex space-time diversity technique that can be used in 2x1 MISO mode or in a 2x2 MIMO mode. The Alamouti block code is the only complex block code that has a data rate of 1 while achieving ma
STBC.m
- 最大似然译码算法在Alamouti方案中的应用。理论上推导出发射天线数为2接收天线为的Alamouti方案与发射天线为1接收天线为2的最大比合并(MRC)接收分集的分集增益相同。并通过Matlab对系统进行了仿真,验证了理论分析的正确性。-Maximum likelihood decoding algorithm in Alamouti Scheme. Theoretically antenna number 2 to the receiving antenna and transmitting
frequency-domain-equalization-
- 该文献研究了 IEEE802. 1 6a宽带无线接入系统的单载波频域均衡 ( SC - FD E)方案 ,建立了 完整的802. 1 6a单载波频域均衡系统仿真平台 ,研究了 SC - FD E系统的频域均衡 、编码和分集增益 。希望对大家有所帮助。-It studied IEEE802 1 6a broadband wireless access systems in a single carrier frequency domain equalization (SC- FD E) progr
Fundamentals_Wireless_Communication_chapter7
- Multiple antennas were used to provide diversity gain and increase the reliability of wireless links.
AAA
- In this letter, we propose a simple orthogonal frequency-division multiplexing (OFDM) scheme for an asynchronous cooperative system, where OFDM is implemented at the source node, and time-reversion and complex conjugation are implemented at the rel