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Distributed power control algorithms in the uplink of wireless code-division multiple-access systems

机译:无线码分多址系统上行链路中的分布式功率控制算法

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Power control is an important problem in today¿s wireless systems, which is related to battery utilisation in the mobile units. In the present study, this problem is addressed using a distributed approach. The uplink of a direct-sequence code-division multiple-access communication (DS-CDMA) system is studied, and through a proper selection of the tracking error function, the non-linear coupling among active users is transformed to individual linear loops, where equivalent power references incorporate the information of the remaining active users in the cell. It is concluded that the uplink channel variations do not destroy the stability of these feedback structures. However, the delays in the closed-loop paths can severely affect the stability and performance of the resulting feedback schemes. A linear quadratic (LQ)-optimal power control strategy is derived and compared to a dead-beat approach. In this sense, the dead-beat algorithm shows sensitivity to the roundtrip delays estimation, but the LQ-optimal control can be adjusted to be robust to this estimation error. In fact, there is a severe compromise between robustness and performance. But through an appropriate selection of the LQ parameters, a stable closed-loop system can be always guaranteed independently on the uncertainty in the estimation of the roundtrip delay. Simulation results are presented to compare the proposed control algorithms to a standard single-step power correction approach.
机译:功率控制是当今无线系统中的一个重要问题,它与移动单元的电池利用率有关。在本研究中,使用分布式方法解决了这个问题。研究了直接序列码分多址通信(DS-CDMA)系统的上行链路,并通过适当选择跟踪误差函数,将活动用户之间的非线性耦合转换为各个线性环路,其中等效功率参考包含小区中剩余活动用户的信息。结论是上行链路信道变化不会破坏这些反馈结构的稳定性。但是,闭环路径中的延迟会严重影响所得反馈方案的稳定性和性能。推导了线性二次(LQ)最优功率控制策略,并将其与无差拍方法进行了比较。从这个意义上讲,无差拍算法显示了对往返延迟估计的敏感性,但是可以调整LQ最佳控制以使其对估计误差具有鲁棒性。实际上,在健壮性和性能之间存在严重的折衷。但是通过适当选择LQ参数,可以始终独立于往返延迟估计的不确定性来确保稳定的闭环系统。给出了仿真结果,以将建议的控制算法与标准的单步功率校正方法进行比较。

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