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Experimental evaluation of combined effect of coherent RAKE combining and SIR-based fast transmit power control for reverse link of DS-CDMA mobile radio

机译:DS-CDMA移动无线电反向链路相干RAKE组合和基于SIR的快速发射功率控制相结合效果的实验评估

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The combined effect of coherent RAKE combining using the weighted multislot averaging (WMSA) channel estimation filter and closed-loop fast transmit power control (TPC) in the 4.096 Mchip/s direct sequence code division multiple access (DS-CDMA) mobile radio reverse link is experimentally evaluated. The WMSA channel estimation filter utilizes periodically transmitted pilot symbols (four pilot symbols are time-multiplexed in each 40-symbol time slot). Its observation period is extended to 2-K slots in order to improve the accuracy of the channel estimation. The fast TPC is based on the measurement of signal-to-interference plus background noise ratio (SIR) using pilot symbols. Laboratory experiments show that the use of the K=2 WMSA channel estimation filter reduces the required E/sub b//I/sub 0/ at the average BER of 10/sup -3/ by approximately 0.5 dB compared to use of the linear interpolation filter, and that the required E/sub b//I/sub 0/ is minimized when the SIR measurement interval is M=10 symbols (one slot TPC delay). It was also clarified that SIR-based TPC works satisfactorily when two users with different information data rates, i.e., SF, independently employ fast TPC. Field experimental results obtained in an area nearby Tokyo showed that the average BER of 10/sup -3/ is achieved at the target E/sub b//I/sub 0/ per antenna of approximately 2.5 dB by using four-finger branch RAKE and two-branch antenna diversity. Although the target E/sub b//I/sub 0/ to achieve same BER, when there is one interfering user with a fourfold greater transmit power than that of the desired user that independently employs fast TPC, is almost the same as that in the single-user case, the mobile transmit power is increased by 1.0-2.0 dB due to the increased MAI. These results indicate that the combination of coherent RAKE combining and fast TPC works well in practical multipath fading channels.
机译:在4.096 Mchip / s直接序列码分多址(DS-CDMA)移动无线反向链路中使用加权多时隙平均(WMSA)信道估计滤波器和闭环快速发射功率控制(TPC)的相干RAKE组合的组合效果经过实验评估。 WMSA信道估计滤波器利用定期发送的导频符号(四个导频符号在每个40个符号的时隙中进行时分复用)。其观察周期被扩展到2-K时隙,以提高信道估计的准确性。快速TPC基于使用导频符号的信号干扰加背景噪声比(SIR)的测量。实验表明,使用K = 2 WMSA信道估计滤波器与使用线性滤波器相比,在平均BER为10 / sup -3 /时,所需的E / sub b // I / sub 0 /降低了大约0.5 dB。插值滤波器,并且当SIR测量间隔为M = 10个符号(一个时隙TPC延迟)时,所需的E / sub b // I / sub 0 /会最小化。还明确了,当具有不同信息数据速率的两个用户(即SF)独立使用快速TPC时,基于SIR的TPC可以令人满意地工作。在东京附近地区获得的现场实验结果表明,通过使用四指分支RAKE,每个天线的目标E / sub b // I / sub 0 /大约2.5 dB时,平均BER达到10 / sup -3 /和两支天线分集。尽管实现相同BER的目标E / sub b // I / sub 0 /,当一个干扰用户的发射功率比独立采用快速TPC的所需用户的发射功率大四倍时,与在单用户情况下,由于MAI的增加,移动发射功率增加了1.0-2.0 dB。这些结果表明相干RAKE组合和快速TPC的组合在实际的多径衰落信道中工作良好。

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