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Performance Evaluation of Full Diversity QOSTBC MIMO Systems with Multiple Receive Antenna

机译:具有多接收天线的全分集QOSTBC MIMO系统的性能评估

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Multipath fading is inherent in wireless communication systems. Diversity is the technique which takes advantage of multipath to mitigate the effect oj jading and increase signal strength. Space Time Block codes (STBC) are used in MIMO systems to improve the performance by maximizing transmit and/or receive diversity. Among different schemes based on STBC, Quasi Orthogonal Space Time Block Code (QOSTBC) is able to achieve full rate transmission for more than two transmit antennas. Constellation Rotation QOSTBC (CR-QOSTBC) achieves full diversity and improves performance further along with full rate, to overcome the limitation of QOSTBC, which is unable to maintain orthogonality amongst the codes transmitted by different antennas. Higher diversity can be achieved by increasing uncorrelatedpaths between transmitter and receivers using higher number of receive antennas. This paper examines improvement in BER with reference to a number of receive antennas. Simulations were carried out under ideal as well as realistic environments, using least square technique with four antennas at transmitter side and variable receive antennas. Results of simulations presented in this paper indicate performance improvement of CR-QOSTBC over QOSTBC in flat fading channel environment. Simulation results also show performance degradation in BER when channel is estimated at the receiver.
机译:多径衰落在无线通信系统中是固有的。分集是一种利用多径来减轻干扰并增加信号强度的技术。空时分组码(STBC)在MIMO系统中用于通过最大化发送和/或接收分集来提高性能。在基于STBC的不同方案中,准正交空时分组码(QOSTBC)能够为两个以上的发射天线实现全速率传输。星座旋转QOSTBC(CR-QOSTBC)实现了全分集并进一步提高了全速率,从而克服了QOSTBC的局限性,QOSTBC无法在不同天线发送的代码之间保持正交性。通过使用更多数量的接收天线增加发射器和接收器之间的不相关路径,可以实现更高的分集。本文参考许多接收天线来研究BER的改进。仿真是在理想和现实环境下进行的,使用最小二乘技术,发射机侧有四个天线,可变接收天线。仿真结果表明,在平坦衰落信道环境下,CR-QOSTBC的性能优于QOSTBC。仿真结果还表明,当在接收机处估计信道时,BER的性能会下降。

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