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Cognitive Radio Transmission Based on Chip-level Space Time Block Coded MC-DS-CDMA over Fast-Fading Channel

机译:基于芯片级空时分组编码的MC-DS-CDMA的快速衰落信道上的认知无线电传输

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摘要

In this paper, a transmit diversity technique using chip level space time block coding (chip-STBC) is investigated for the downlink transmission of multicarrier direct sequence code division multiple access (MC-DS-CDMA) based cognitive radio base station. Synchronous transmission of multiple users' signals over fast fading frequency selective Rayleigh channel is considered. Conventional symbol level space time block coding techniques cannot be applied in such channel conditions, since the coherence time of the channel will be less than the symbol period. Therefore, chip level STBC with chip level linear minimum mean square error frequency domain equalization (LMMSE-FDE) is utilized to achieve space-time diversity. The proposed cognitive radio system involves three adaptive techniques namely, variable-length-code spreading, adaptive modulation, and adaptive subcarrier deactivation, to achieve flexibility and improved performance in a dynamic wireless environment. Orthogonal Variable Spreading Factor (OVSF) codes are used to support users of different data bit rates. Adaptive modulation technique is used to improve the data throughput of the system. Adaptive subcarrier deactivation method is proposed for deactivating a set of subcarriers to avoid causing interference to the primary user. The simulation results show significant bit error ratio (BER) performance gain over conventional single antenna systems.
机译:本文针对基于多载波直接序列码分多址(MC-DS-CDMA)的认知无线电基站的下行链路传输,研究了使用码片级空时分组编码(chip-STBC)的发射分集技术。考虑了在快速衰落频率选择性瑞利信道上的多个用户信号的同步传输。由于信道的相干时间将小于符号周期,因此常规的符号级空时块编码技术不能应用于这种信道条件。因此,利用具有码片级线性最小均方误差频域均衡(LMMSE-FDE)的码片级STBC来实现时空分集。所提出的认知无线电系统涉及三种自适应技术,即可变长度码扩展,自适应调制和自适应副载波去激活,以在动态无线环境中实现灵活性和改进的性能。正交可变扩频因子(OVSF)代码用于支持不同数据比特率的用户。自适应调制技术用于提高系统的数据吞吐量。提出了一种自适应子载波去激活方法,用于去激活一组子载波,以避免对主要用户造成干扰。仿真结果表明,与传统的单天线系统相比,比特误码率(BER)性能显着提高。

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