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New Diversity Combining Receivers for Cooperative Multiplexing in Wireless Multiuser Relay Networks

机译:无线多用户中继网络中用于协作复用的新型分集组合接收器

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We propose two new diversity combining receivers that support cooperative multiplexing in two-hop wireless multiuser relay networks. Cooperative multiplexing has the potential to double the achievable throughput by allowing the base station (BS) and the relay station (RS) to transmit to different users at the same time in the second time slot of the half time division duplexed (TDD) relay transmission. This throughput improvement comes at a cost of performance degradation due to inter-user interference between the BS and the RS. To overcome this degradation, we propose two new receivers for the relay-link users: (1) cooperative multiplexing optimum combining (CMOC) and (2) cooperative multiplexing selection combining (CMSC). The proposed CMOC receiver combines the signals in the first and second time slot of the half TDD transmission such that the output signal-to-interference-plus-noise ratio (SINR) is maximized. The proposed CMSC receiver allows the relay-link user terminal to be active in only one of the two half TDD time slots. As such, CMSC offers power savings relative to CMOC. New insights are drawn from our exact closed-form expressions that we derive for the moment generation function, probability density function, and the cumulative distribution function of the output SINR. Based on these, we present new analytical expressions for the outage probability, symbol error rate, and achievable throughput. Our results show a 3.5 times improvement in the achievable throughput relative to the standard single-channel receiver in the high interference regime.
机译:我们提出了两个新的分集组合接收机,它们支持两跳无线多用户中继网络中的协作复用。通过允许基站(BS)和中继站(RS)在半时分双工(TDD)中继传输的第二个时隙中同时向不同的用户传输,协作多路复用有可能使可实现的吞吐量翻倍。由于BS和RS之间的用户间干扰,这种吞吐量的提高是以性能下降为代价的。为了克服这种降级,我们为中继链路用户提出了两个新的接收器:(1)协作复用最佳组合(CMOC)和(2)协作复用选择组合(CMSC)。所提出的CMOC接收机在半TDD传输的第一和第二时隙中组合信号,从而使输出信号与干扰加噪声之比(SINR)最大化。所提出的CMSC接收器允许中继链路用户终端仅在两个半TDD时隙之一中是活动的。这样,相对于CMOC,CMSC可以节省电能。从我们针对力矩生成函数,概率密度函数和输出SINR的累积分布函数得出的精确封闭式表达式中获得了新的见解。基于这些,我们为中断概率,符号错误率和可达到的吞吐量提供了新的解析表达式。我们的结果表明,在高干扰情况下,相对于标准单通道接收器,可达到的吞吐量提高了3.5倍。

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