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Employing evolutionary optimization for designing practical beamsteering algorithms for the uplink of UMTS with transmit power control bits as feedback

机译:利用进化优化设计用于以发射功率控制位为反馈的UMTS上行链路的实用波束控制算法

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So called open loop transmit diversity algorithms for the uplink of UMTS/HSPA use the power control commands of the fast power control mechanism as a feedback information to iteratively determine the antenna weights, thus making them compatible with existing networks and procedures. Although these algorithms are a topic of recent studies within the 3rd Generation Partnership Project (3GPP), the design methodology of developing such algorithms has not been covered in literature so far. Such a systematic design method is the topic of this paper. First, a general model is developed where the beamsteering algorithm is represented as a finite-state machine that takes the transmit power control commands as input and delivers the antenna phase as output. Then, multiobjective evolutionary optimization of these state machines is utilized in order to find optimal beamsteering algorithms. The objectives during this optimization comprise not only the reduction of transmit power at the User Equipment but also the minimization of the irritation of the UMTS fast power control loop by the iterative beamsteering algorithm. As the result of the optimization, a beamsteering algorithm is found that reduces the transmit power at the User Equipment by 3.31 dB compared to the baseline case of employing only one transmit antenna. The influence of the number of discrete phase quantization steps on the performance of the algorithm is also studied and it is found that quantizing the relative antenna phase in 22.5 degree steps is sufficient.
机译:所谓的用于UMTS / HSPA上行链路的开环发射分集算法使用快速功率控制机制的功率控制命令作为反馈信息来迭代确定天线权重,从而使其与现有网络和过程兼容。尽管这些算法是第三代合作伙伴计划(3GPP)近期研究的主题,但迄今为止,开发此类算法的设计方法尚未在文献中涵盖。这种系统的设计方法是本文的主题。首先,开发了一个通用模型,其中波束控制算法被表示为一个有限状态机,该有限状态机将发射功率控制命令作为输入,并将天线相位作为输出。然后,利用这些状态机的多目标进化优化来找到最佳的波束控制算法。该优化期间的目标不仅包括减少用户设备处的发射功率,而且还包括通过迭代波束控制算法使UMTS快速功率控制环路的刺激最小化。作为优化的结果,发现了波束控制算法,与仅使用一个发射天线的基准情况相比,该算法可将用户设备处的发射功率降低3.31 dB。还研究了离散相位量化步数对算法性能的影响,发现以22.5度步长量化相对天线相位就足够了。

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