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Antenna Verification Method for Multipath Interference Canceller Based on Replica Generation per Transmit Antenna with Phase Control Transmit Diversity in W-CDMA Forward Link

机译:W-CDMA前向链路中基于相位控制发射分集的每个发射天线副本生成多径干扰消除器的天线验证方法

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This paper presents a multipath interference canceller (MPIC) configuration based on multipath interference (MPI) replica generation per transmit antenna (called PTA-MPIC). This configuration is associated with Space Time Transmit Diversity (STTD) for the common control physical channel (CCPCH), which takes advantage of tentative decision data after STTD decoding, and with closed-loop type phase control (PC) transmit diversity for the dedicated physical channel (DPCH) employing tentative decision data after diversity combining, in the W-CDMA forward link. This paper also proposes transmitter carrier phase verification, i.e., an antenna verification method used in PC transmit diversity, that utilizes the dedicated pilot symbols in a DPCH after the PTA-MPIC removes the MPI components. The one-stage PTA-MPIC removes the MPI from the common pilot channel (CPICH), the CCPCH, and the synchronization channel (SCH). The simulation results show that this canceller reduces the required average transmit E_b/N_0 of the DPCH at the average BER of 10~(-3) by approximately 3.0 dB compared to that using a MF-based Rake receiver (the transmit power ratio of each common channel to DPCH is R_(CPICH/DPCH) = 3 dB, R_(CCPCH/DPCH) = 5 dB, and R_(SCH/DPCH)= 3 dB, with TPC and without antenna diversity reception at the user equipment). Furthermore, it is shown that in the two-stage PTA-MPIC with MPI suppression for all channels associated with PC transmit diversity, the required average transmit E_b/N_0 employing the proposed antenna verification is reduced by approximately 0.3 dB, 0.5 dB, and 1.2 dB compared to that using the conventional antenna verification when the transmission power ratio of the interfering DPCH to the desired DPCH is R_(Int/Des) = OdB, 3 dB, and 6 dB for ten DPCHs. This is because the number of detection errors of the transmitted carrier phase in the second antenna due to feedback information bit decoding error is reduced.
机译:本文提出了一种基于每个发射天线(称为PTA-MPIC)的多径干扰(MPI)复制生成的多径干扰消除器(MPIC)配置。此配置与用于公共控制物理信道(CCPCH)的空时发送分集(STTD)相关联,该空分发送利用了STTD解码后的暂定决策数据,并与专用物理信道的闭环型相位控制(PC)发送分集相关联W-CDMA前向链路中,在分集合并之后采用临时决策数据的无线信道(DPCH)。本文还提出了发射机载波相位验证,即PC发射分集中使用的天线验证方法,该方法在PTA-MPIC删除MPI分量后利用DPCH中的专用导频符号。一级PTA-MPIC从公共导频信道(CPICH),CCPCH和同步信道(SCH)中删除MPI。仿真结果表明,与使用基于MF的Rake接收机相比,该消除器在平均BER为10〜(-3)时将DPCH所需的平均发送E_b / N_0降低了约3.0 dB(每个发送器的发射功率比到TPC的公共信道是R_(CPICH / DPCH)= 3 dB,R_(CCPCH / DPCH)= 5 dB和R_(SCH / DPCH)= 3 dB(在TPC且用户设备未接收天线分集的情况下)。此外,还表明,在对与PC发射分集相关的所有信道进行MPI抑制的两级PTA-MPIC中,采用建议的天线验证所需的平均发射E_b / N_0降低了约0.3 dB,0.5 dB和1.2当干扰DPCH与所需DPCH的发射功率比为10个DPCH的R_(Int / Des)= OdB,3 dB和6 dB时,与使用常规天线验证的dB比较。这是因为减少了由于反馈信息比特解码错误而导致的第二天线中的发送载波相位的检测错误的数量。

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