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FIR transceiver design for broadband MIMO multicast system

机译:宽带MIMO多播系统的FIR收发器设计

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For broadband wireless systems, the channel between the transmitter and the receiver exhibits frequency selectivity in nature. In this paper, an Finite impulse response (FIR) precoder which supports multiple streams at the transmitter and an FIR minimum mean-squared-error decision feedback equalizer (MMSE-DFE) at the receiver are jointly designed for broadband multi-input multi-output (MIMO) multicast systems. At the base station (transmitter), the FIR precoder design is combined by an FIR matrix multiplied by a unitary one, where the first one is optimized to maximize the system throughput, and the second one is aiming for the signal-to-noise ratio (SNR) fairness among different data streams. Moreover, a Givens-based algorithm is employed to construct the unitary matrix in the multicast system. For each user (receiver), the corresponding FIR MMSE-DFE is derived to eliminate inter-symbol interference (ISI) introduced by both the multicast channel and the FIR filter used at the transmitter. The numerical simulations indicate that the proposed transceiver design with FIR structure has considerable improvement over the existing schemes in terms of BER performance.
机译:对于宽带无线系统,发射器和接收器之间的信道在自然界中表现出频率选择性。在本文中,在发射器处支持多个流的有限脉冲响应(FIR)预编码器和接收器处的FIR最小平均误差判决反馈均衡器(MMSE-DFE)是为宽带多输入多输出的联合设计(MIMO)多播系统。在基站(发射机)中,FIR预编码器设计由FIR矩阵组合,FIR矩阵乘以单一的FIR矩阵,其中第一个优化以最大化系统吞吐量,并且第二个是针对信噪比的目标(SNR)不同数据流之间的公平性。此外,采用基于GIVENS的算法来构建组播系统中的单一矩阵。对于每个用户(接收器),导出相应的FIR MMSE-DFE以消除由多播信道和发送器中使用的冷滤波器引入的符号间干扰(ISI)。数值模拟表明,在BER性能方面,具有FIR结构的提议的收发器设计具有相当大的方案。

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