首页> 外文会议>IEEE International Conference on Acoustics, Speech and Signal Processing >OPTIMAL POWER CONTROL LAW FOR EQUAL-RATE DS-CDMA NETWORKS GOVERNED BY A SUCCESSIVE SOFT INTERFERENCE CANCELLATION SCHEME
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OPTIMAL POWER CONTROL LAW FOR EQUAL-RATE DS-CDMA NETWORKS GOVERNED BY A SUCCESSIVE SOFT INTERFERENCE CANCELLATION SCHEME

机译:通过连续的软干扰取消方案管理的等速率DS-CDMA网络的最佳功率控制法

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This paper studies the throughput maximization of a dense multiple access network of low-rate subscribers that share the same practical Forward Error Correction (FEC) code and modulation scheme, and transmit to a central node that implements a Successive Soft Interference Cancellation (soft SIC) strategy in order to mitigate Multiple Access Interference (MAI). In the user-asymptotic case, we make use of Variational Calculus (VC) tools to derive, in terms of the Packet Error Rate (PER) of the shared encoder and the Residual Energy (RE) from imperfect cancellation, the optimum energy profile that maximizes the network spectral efficiency, when a sum power constraint at the SIC input is enforced. Comparative performance analyses using a representative encoder are carried out. Simulation results show the benefit of the adopted soft SIC scheme in front of other SIC strategies, obtaining relevant throughput gains under high traffic loads.
机译:本文研究了与相同的实际前进纠错(FEC)代码和调制方案的低速度用户的吞吐量最大化,并将其传输到实现连续的软干扰消除(软SIC)的中心节点策略为了缓解多次访问干扰(MAI)。在用户 - 渐近案件中,我们利用分数计算(VC)工具来导出共享编码器的分组错误率(PER)和从不完全取消的剩余能量(RE),最佳能量分布当强制执行SIC输入的SUM功率约束时,最大化网络谱效率。使用代表编码器进行比较性能分析。仿真结果表明,采用的软SIC方案在其他SIC策略前面的好处,在高交通负荷下获得了相关的吞吐量。

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