首页> 外文会议>Heterogeneous Processing, 1993. WHP 93. >PN code tracking for STBC transmit diversity RAKE receivers in closely spaced multipath environments
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PN code tracking for STBC transmit diversity RAKE receivers in closely spaced multipath environments

机译:紧密间隔多径环境中STBC发射分集RAKE接收机的PN码跟踪

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Conventional early-late-gate (ELG) pseudo-noise (PN) code tracking shows poor performance in closely spaced multi-path environments where multiple path separation is less than 1.5 times PN chip interval for example. Fock et al. (Dec. 2001) proposed an efficient PN code tracking scheme for a RAKE receiver with a single transmit antenna and a single receive antenna by canceling the self-interference coming from the closely spaced adjacent multipaths. However, a general trend for 3G or future wireless communication system development is to employ multiple transmit and multiple receive antennas instead of a single transmit antenna. The space time block code (STBC) in S. Alamouti (Oct. 1998) is one of popular transmit antenna diversity schemes. In this paper we propose a PN code tracking algorithm for the STBC transmit diversity system under 3GPP specifications, extending the work by Fock et al. (Dec. 2001). Channel estimation for the transmit diversity system is provided with the aid of primary common pilot channel (P-CPICH) pattern. Simulations show that the proposed algorithm can eliminate the effects of the adjacent paths and can make an improvement in the root mean square (RMS) of the timing error compared to system without transmit diversity, e.g., 2 dB in chip-energy-to-noise-density ratio Ec/N0 at RMS = 0.1.
机译:常规的早期后门(ELG)伪噪声(PN)代码跟踪在紧密间隔的多路径环境中显示出较差的性能,例如,多路径间隔小于PN码片间隔的1.5倍。 Fock等。 (2001年12月)提出了一种用于RAKE接收机的有效PN码跟踪方案,该方案通过消除来自紧密间隔的相邻多径的自干扰来实现具有单个发射天线和单个接收天线的RAKE接收机。然而,3G或未来无线通信系统发展的总体趋势是采用多个发射和多个接收天线而不是单个发射天线。 S.Alamouti(1998年10月)中的空时分组码(STBC)是流行的发射天线分集方案之一。在本文中,我们提出了一种在3GPP规范下用于STBC发射分集系统的PN码跟踪算法,扩展了Fock等人的工作。 (2001年12月)。借助主要公共导频信道(P-CPICH)模式,为发射分集系统提供了信道估计。仿真表明,与没有发射分集的系统(例如,芯片能量噪声中为2 dB)相比,该算法可以消除相邻路径的影响,并且可以改善时序误差的均方根(RMS)。 RMS = 0.1时的密度比E c / N 0

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