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Performance of closed-loop mode transmit diversity with multiple antennas in W-CDMA forward link

机译:闭环模式的性能在W-CDMA前向链路中使用多个天线传输多样性

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This paper optimized the number of transmit antennas N{sub}(TX) and step size of control carrier phase θ{sub}(Step) and evaluated the impact of the number of paths and the fading correlation among antennas of the closed-loop mode multiple antenna transmit diversity (MATD) by computer simulations in transmit power-controlled W-CDMA forward link. Computer simulation results showed that the required transmit E{sub}b/N{sub}0 for average BER =10{sub}b (13) is decreased most for N{sub}(TX)=3(2) without (with) antenna diversity reception and θ{sub}(Step)=π/2. We also proposed the verification algorithm of the transmitted carrier phase in which the error detection probability is adaptively updated based on the measured HER before channel decoding and showed that the MATD with the proposed verification could decrease the required transmit E{sub}b/N{sub}0 by approximately 0.3-0.5 dB compared to the case with conventional verification when the fading maximum Doppler frequency f{sub}D is larger than 80 Hz.
机译:本文优化了控制载波相位θ{sub}(步骤)的发射天线n {sub}(tx)和步长的数量,并评估了闭环模式的天线之间的路径数和衰落相关的影响多天线传输多样性(MATD)通过传输功率控制的W-CDMA前向链路中的计算机模拟。计算机仿真结果表明,对于n {sub}(tx)= 3(2)而言,平均BER = 10 {SUB} B(13)的所需发送E {SUB} B(13)减少了大多数( )天线分集接收和θ{子}(步骤)=π/ 2。我们还提出了所发送的载波阶段的验证算法,其中基于在信道解码之前基于测量的误差检测概率自适应地更新,并且显示具有所提出的验证的MATD可以减少所需的发送E {Sub} B / N {当衰减最大多普勒频率f {sub} d大于80Hz时,与传统验证的情况相比,将大约0.3-0.5 dB相比。

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