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Performance Evaluation of MIMO in IEEE802.16e/WiMAX

机译:IEEE802.16e / WiMAX中MIMO的性能评估

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The methodology used to evaluate the performance of the various MIMO schemes in orthogonal frequency division multiplexing (OFDM) WiMAXWiMAX stands for Worldwide Interoperability for Microwave Access. systems is described. The per-tone signal-to-noise plus interference ratio (SINR) of a MIMO OFDM system is derived in a multi user, multicell and multisector communication system. The sector average spectral efficiency for a coded MIMO OFDM system is evaluated under a single frequency reuse deployment scenario. It is shown that the second antenna at the subscriber station receiver provides significant gains over single transmit single receive antenna (SISO) systems. The rate 2 spatial multiplexing MIMO scheme on the downlink improves the sector spectral efficiency by 10% over single transmit and two receive antenna (SIMO) system in a single frequency reuse deployment. It is also shown that in a time-division duplex (TDD) WiMAX system, the gain in downlink spectral efficiency from beamforming can be very large if the delay between the uplink channel estimate and the downlink beamforming is small compared to the coherence time of the channel. On the uplink, it is shown that the collaborative spatial multiplexing increases the spectral efficiency by 9% over a SIMO system with the same number of receive antennas at the base station (BS). Significant gains in uplink spectral efficiency are seen with more antennas at the BS and by using uplink beamforming as compared to SISO.
机译:用于评估正交频分复用(OFDM)中各种MIMO方案性能的方法WiMAXWiMAX代表了微波接入的全球互操作性。系统进行了描述。在多用户,多小区和多扇区通信系统中,得出了MIMO OFDM系统的每音信噪比(SINR)。在单频率复用部署场景下评估了编码MIMO OFDM系统的扇区平均频谱效率。示出了在用户站接收机处的第二天线在单发射单接收天线(SISO)系统上提供了显着的增益。在单频率复用部署中,下行链路上的速率2空间复用MIMO方案在单发射和两个接收天线(SIMO)系统上将扇区频谱效率提高了10%。还显示出,在时分双工(TDD)WiMAX系统中,如果上行链路信道估计和下行链路波束成形之间的延迟比WDM的相干时间小,则波束成形在下行链路频谱效率中的增益可能非常大。渠道。在上行链路上,示出了协作空间多路复用在具有相同数量的基站(BS)接收天线的SIMO系统上将频谱效率提高了9%。与SISO相比,使用更多天线在BS处以及通过使用上行链路波束成形,可以看到上行链路频谱效率的显着提高。

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