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LTE performances of uplink PUSCH under AWGN VA30 fading channel

机译:上行链路PUSCH UPREDY AWGN&V30衰落通道的LTE表演

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The UMTS Long Term Evolution (LTE) is an emerging technology in the evolution of 3G networks. LTE runs on an advancement of the obtainable UMTS infrastructure already used by over 80 percent of mobile subscribers worldwide. We have very inadequate resources in cellular technologies and it is important to utilize them with high efficiency. Single Carrier Frequency Division Multiple Access (SC-FDMA) & Orthogonal Division Multiple Access (OFDMA) are most important division of LTE. OFDMA was well utilized for achieving high spectral efficiency in communication method. SC-FDMA is introduced in recent times and it became handy candidate for uplink multiple access scheme in LTE system that is a project of Third Generation Partnership Project (3GPP). The Multiple Access Scheme in Advanced Mobile radio system has to meet the challenging requirements for example high throughput, fine robustness, capable Bit Error Rate (BER), high spectral efficiency, small delays, low computational difficulty, less Peak to Average Power Ratio (PAPR), low error probability etc. In our paper, we investigate the performance of SC-FDMA in LTE physical layer by considering different modulation schemes (QPSK, 16QAM and 64QAM) on the basis of BER vs Eb/No. Additive White Gaussian Noise (AWGN) and fading channel are used to evaluate the performance in presence of noise and fading.
机译:UMTS长期演进(LTE)是一种在3G网络演变中的新兴技术。 LTE对已获得的可获得的UMTS基础设施的进步,已在全球范围内超过80%的移动订阅者使用。我们在蜂窝技术中具有非常不足的资源,并且很重要,以高效率利用它们。单载波频分多址(SC-FDMA)和正交划分多址(OFDMA)是LTE最重要的划分。 OFDMA很好地用于实现通信方法的高光谱效率。近来介绍了SC-FDMA,并且它成为LTE系统中的上行链路多访问方案的便利候选者,这是第三代合作伙伴项目(3GPP)的项目。高级移动无线电系统中的多种接入方案必须满足具有挑战性的要求,例如高吞吐量,精细的鲁棒性,能力的误码率(BER),高频效率,小延迟,低计算难度,达到平均功率比少的峰值(PAPR ),低误差概率等。在我们的论文中,我们通过考虑在BER VS EB / NO的基础上考虑不同的调制方案(QPSK,16QAM和64QAM)来调查SC-FDMA在LTE物理层中的性能。添加性白色高斯噪声(AWGN)和衰落通道用于评估噪音和衰落的情况下的性能。

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