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Jointly Minimum BER Transmitter and Receiver FIR MIMO Filters for Binary Signal Vectors

机译:二进制信号向量的联合最小BER发送器和接收器FIR MIMO滤波器

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摘要

A theory is developed for jointly minimizing the bit error rate (BER) between the desired and decoded signals with respect to the coefficients of transmitter and receiver finite impulse response (FIR) multiple-input multiple-output (MIMO) filters. The original signal is assumed to be a vector time-series with equally likely memoryless Bernoulli vector components. The channel model constitutes of a known FIR MIMO transfer function and Gaussian additive noise independent of the original signal. The channel input signal is assumed to be power constrained. Based on the formulas obtained, an iterative numerical optimization algorithm is proposed. When compared with other design methods available in the literature, the proposed method yields better results due to the generality of the model considered and the joint optimization of the transmitter-receiver pair.
机译:开发了一种理论,用于相对于发射机和接收机有限冲激响应(FIR)多输入多输出(MIMO)滤波器的系数,共同最小化所需信号和解码信号之间的误码率(BER)。假定原始信号是一个矢量时间序列,具有同样无记忆的伯努利矢量分量。信道模型由独立于原始信号的已知FIR MIMO传递函数和高斯加性噪声组成。假定通道输入信号受功率限制。基于得到的公式,提出了一种迭代数值优化算法。当与文献中可用的其他设计方法进行比较时,由于考虑的模型的通用性以及收发器对的联合优化,所提出的方法产生了更好的结果。

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