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Power allocation and subchannel pairing for BER minimization in MIMO-OFDM AF relay systems

机译:MIMO-OFDM AF中继系统中BER最小化的功率分配和子信道配对

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The present study investigates the problem of bit error rate minimization in multi-input-multi-output orthogonal frequency-division multiplexing amplify-and-forward relay systems. It is supposed that channels are frequency selective fading and under a total power constraint. In the multi-antenna transmitter, an independent symbol sequence is transmitted from each antenna. Zero forcing beamforming is performed in the reception and transmission of the relay to cancel out the inter-antenna interference. A power allocation and subchannel pairing scheme is considered as the optimization method. The goal of the optimization problem is to achieve the best bit error rate performance by applying a joint power allocation and subchannel pairing approach for all antennas. To deal with subchannel pairing, at first, we formulate it as a linear assignment problem and then Jonker-Volgenant algorithm is used to solve this problem. The joint scheme is compared with separate power allocation and subchannel pairing for each antenna as the main target. It is found that the joint scheme is superior to the separate method. Simulation results show that the proposed inter-antenna power allocation and subchannel pairing scheme can improve bit error rate and mean square error dramatically compared with separate subchannel pairing and power allocation at the cost of a little increase in complexity.
机译:本研究研究了多输入多输出正交频分复用放大和前进中继系统中的误码率最小化的问题。假设信道是频率选择性衰落,并且在总功率约束下。在多天线发射器中,从每个天线发送独立的符号序列。在继电器的接收和传输中执行零强制波束成形以取消天线间干扰。功率分配和子信道配对方案被认为是优化方法。优化问题的目标是通过对所有天线应用联合功率分配和子信道配对方法来实现最佳误码率性能。要处理子信道配对,首先,我们将其制定为线性分配问题,然后使用Jonker-Volgent算法来解决这个问题。将联合方案与每个天线的单独功率分配和子信道配对进行比较,作为主要目标。发现联合方案优于单独的方法。仿真结果表明,所提出的天线电力分配和子信道配对方案可以显着提高误码率和平均误差,其与单独的子信道配对和功率分配以略微增加复杂性。

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