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Optimization of E-DCH Channel Power Ratios to Maximize Link Level Efficiency

机译:E-DCH信道功率比优化以最大限度地提高链路电平效率

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For the WCDMA/HSUPA concept, a key to ensuring high spectral efficiency is to correctly adjust the transmission power ratios among the data and control channels. This paper provides optimal values for the power ratio between the Enhanced-Dedicated Physical Data Channel (E-DPDCH) and the Dedicated Physical Control Channel (DPCCH) from a Link Efficiency (LE) point of view. LE has been defined as the ratio between the average number of correctly received bits per second and the average total transmitted power. The optimization was carried out by testing different E-DPDCH to DPCCH power ratios in an HSUPA link level simulator for different bit rates. This simulator includes Hybrid ARQ (HARQ) and optimal power ratios are extracted for different Retransmission Sequence Number (RSN) targets. For Vehicular-A 30 km/h conditions, the optimal power ratios per code show only minor dependency on the bit rate (typical values ranging from 8.1 to 9.9 dB) and the RSN target (maintaining or decreasing their value as the target increases). These results show that it is more link efficient to increase the DPCCH transmission power with the bit rate (and the E-DPDCH''s by applying the power ratio) than to maintain a constant DPCCH transmission power and just increase the E-DPDCH to DPCCH power ratio.
机译:对于WCDMA / HSUPA概念,确保高光谱效率的关键是在数据和控制信道之间正确调整传输功率比。本文为来自链路效率(LE)的观点来看,为增强专用物理数据通道(E-DPDCH)和专用物理控制信道(DPCCH)之间的功率比提供了最佳值。 LE已被定义为每秒正确接收位数的平均数量和平均传输功率之间的比率。通过在HSUPA链路电平模拟器中测试不同的E-DPDCH以不同的比特率来测试优化来执行优化。该模拟器包括混合ARQ(HARQ)和最佳功率比,以针对不同的重传序列号(RSN)目标提取。对于车辆 - 一个30 k​​m / h条件,每个代码的最佳功率比仅显示对比特率的轻微依赖性(从8.1到9.9dB的典型值)和RSN目标(随着目标增加而减小它们的值)。这些结果表明,通过施加功率比来提高DPCCH传输功率,通过施加功率比来增加DPCCH传输功率,比保持恒定的DPCCH传输功率并仅增加E-DPDCH到DPCCH功率比。

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