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Performance of STBC PPM-TH UWB Systems with Double Binary Turbo Code in Multi-user Environments

机译:具有双二进制Turbo码的STBC PPM-TH UWB系统在多用户环境中的性能

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The performance of space time block code (STBC) pulse position modulation-time hopping (PPM-TH) ultra-wide band (UWB) systems with double binary turbo coding is analyzed and simulated in multi-user environments. The channel model is considered as a modified Saleh and Valenzuela (SV) model which was suggested as a UWB indoor channel model by the IEEE 802.15.SG3a in July 2003. In order to apply the STBC scheme to the UWB system considered in this paper, the Alamouti algorithm for real-valued signals is employed because UWB signals with the pulse modulation have the type of real signal constellation. The system performance is evaluated in terms of bit error probability. From the simulation results, it is demonstrated that the double binary turbo coding technique offers considerable coding gain with reasonable encoding and decoding complexity. Also, it is demonstrated that the performance of the STBC-UWB system can be substantially improved by increasing the number of iterations in the decoding process for a fixed code rate. Also, it is confirmed that the double binary turbo coding and STBC schemes are very effective in increasing the number of simultaneous users for a given bit error probability requirement. The results of this paper can be applied to implement the down-link of the PPM-TH UWB system.
机译:在多用户环境中分析和模拟了具有双二进制Turbo编码的空时分组码(STBC)脉冲位置调制时跳(PPM-TH)超宽带(UWB)系统的性能。信道模型被认为是经过修改的Saleh and Valenzuela(SV)模型,该模型于2003年7月被IEEE 802.15.SG3a推荐为UWB室内信道模型。为了将STBC方案应用于本文考虑的UWB系统,之所以使用实值信号的Alamouti算法,是因为具有脉冲调制的UWB信号具有实信号星座的类型。根据误码率评估系统性能。从仿真结果证明,双二进制turbo编码技术以合理的编码和解码复杂度提供了可观的编码增益。同样,已经证明,对于固定码率,通过增加解码过程中的迭代次数,可以实质上提高STBC-UWB系统的性能。而且,已经证实,对于给定的误码概率要求,双二进制turbo编码和STBC方案在增加同时用户数量方面非常有效。本文的结果可用于实现PPM-TH UWB系统的下行链路。

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