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MIMO-OFDM in a Cooperative Frequency Selective Fading Channel: An Analysis

机译:合作频率选择性衰落通道中的MIMO-OFDM:分析

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Diversity is an integral technique in the advancement of wireless communications. Multiple-input multiple-output (MIMO) technology continues to occupy a pivotal position in the fourth-generation (4G) standards and beyond. With the advent of full-dimension (FD) MIMO and massive MIMO, new paradigms are being targeted in the disruptive technology. Third-generation partnership project (3GPP) has also emphasized the advanced MIMO technology for achieving its vision of International Mobile Telephony (IMT) 2020. However, implementing multiple antennas can be cumbersome due to limiting factors such as size, cost, and hardware limitations. In such a scenario, where implementing many antennas is not feasible, the benefits of diversity can be reaped by employing cooperative communication. Single antenna mobiles can share their mobile stations giving rise to a virtual MIMO system. In this paper, the authors have analyzed the performance of cooperative mobile stations in a frequency selective channel. Orthogonal frequency division multiplexing (OFDM), known for its robustness against multipath fading, is the modulation technique employed to circumvent the hazardous effects of intersymbol interference (ISI). MIMO is the key technology for achieving capacity advantage and improving link reliability. The blend of these two cutting edge technologies in a cooperative relay system presents encouraging results and inferences. Maximal Ratio Combining (MRC) is employed at the relay and the receiver to maximize the signal-to-noise ratio (SNR). Decode and forward (DF) protocol is used at the relay node owing to its regenerative nature and adaptability. The closed-form expressions for bit error rate (BER) and outage probability (Pout) are derived and compared with the experimental results. The effect of power decay factor is analyzed and simulation is done for 2 × 2, 2 × 3, and 2 × 4 transmit and receive antennas. The number of antennas at the relay is kept as 2. The analytical results agree with the simulation results.
机译:多样性是无线通信推进中的一体化技术。多输入多输出(MIMO)技术继续占据第四代(4G)标准及以后的枢轴位置。随着全维度(FD)MIMO和MASHIVE MIMO的出现,新的范式都是针对破坏性技术的目标。第三代合作伙伴计划(3GPP)还强调了实现国际移动电话(IMT)2020的先进的MIMO技术。然而,由于诸如尺寸,成本和硬件限制等限制因素,实现多个天线可能是麻烦的。在这样的场景中,在实现许多天线不可行的情况下,可以通过采用协作通信来获得多样性的益处。单个天线手机可以共享他们的移动台,从而产生虚拟MIMO系统。在本文中,作者已经分析了频率选择通道中的协同移动台的性能。正交频分复用(OFDM),以其对多径衰落的鲁棒性而已知的,是用于规避Intersymbol干扰(ISI)的危险效果的调制技术。 MIMO是实现能力优势和提高链路可靠性的关键技术。在合作继电器系统中的这两个切削刃技术的混合呈现令人鼓舞的结果和推论。最大比率组合(MRC)在继电器和接收器采用,以最大化信噪比(SNR)。由于其再生性质和适应性,在中继节点上使用解码和转发(DF)协议。终止误差率(BER)和中断概率(POUT)的闭合表达式和与实验结果进行了比较。分析电力衰减因子的效果和模拟2&#x2009完成;   2,2   3和2 ×   4发射和接收天线。继电器处的天线数量保持为2.分析结果同意模拟结果。

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