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Filter-and-Forward Distributed Beamforming for Two-Way Relay Networks With Frequency Selective Channels

机译:具有频率选择通道的双向中继网络的滤波前馈分布式波束成形

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In filter-and-forward (FF) based two-way relay networks, each transmission for data exchange between two transceivers consists of only two time slots (or phases). In the first time slot, both transceivers transmit their data simultaneously to the relays. The received signal of each relay is filtered using a finite impulse response (FIR) filter to compensate for the frequency selectivity of the channels, and then, the output of the filter is forwarded to both transceivers in the second time-slot. In this paper, new approaches to distributed cooperative beamforming for such two-way relay networks with frequency selective channels are proposed. The first two distributed beamforming approaches assume that the transmitted powers of the transceivers are given and fixed. The first beamformer is based on minimizing the total transmitted power of the relays subject to two constraints on the signal-to-inter-symbol-interference-plus-noise ratio (SINR) at both transceivers. The second beamformer is designed through maximization of the lowest SINR of the two transceivers while keeping the relay transmitted power under certain levels. We show that these two problems can be cast as second-order convex cone programming problems. The other two distributed beamforming methods aim to calculate the transmitted powers of the transceivers as well as the coefficients of the relay filters using two different beamforming techniques. The first technique is based on the minimization of the total transmitted power of the transceivers and the relays subject to the SINR requirements for both transceivers, and the second method maximizes the lowest SINR of the two transceivers subject to a constraint on the total transmitted power. Simulation results demonstrate that using an FF relaying strategy can significantly improve the underlying performance measure as compared to the traditional amplify-and-forward relaying approach.
机译:在基于滤波器和转发(FF)的双向中继网络中,两个收发器之间用于数据交换的每次传输仅包含两个时隙(或阶段)。在第一个时隙中,两个收发器同时将其数据传输到中继器。使用有限脉冲响应(FIR)滤波器对每个继电器的接收信号进行滤波,以补偿通道的频率选择性,然后,滤波器的输出在第二个时隙中转发到两个收发器。在本文中,提出了一种用于具有频率选择信道的双向中继网络的分布式协作波束成形的新方法。前两种分布式波束成形方法假定收发器的发射功率已给定并固定。第一波束形成器基于最小化中继器的总发射功率,该中继器受到两个收发器上信号对符号间干扰加噪声比(SINR)的两个约束。第二个波束形成器是通过最大化两个收发器的最低SINR来设计的,同时将中继器的发射功率保持在一定水平。我们证明这两个问题可以被转换为二阶凸锥规划问题。另两种分布式波束成形方法旨在使用两种不同的波束成形技术来计算收发器的发射功率以及中继滤波器的系数。第一种技术基于最小化两个收发器的SINR要求的收发器和中继器的总发射功率,第二种方法使两个收发器的最低SINR受到总发射功率的约束。仿真结果表明,与传统的放大转发中继方法相比,使用FF中继策略可以显着改善基础性能指标。

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