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Distributed power control in CDMA cellular systems

机译:CDMA蜂窝系统中的分布式功率控制

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In wireless cellular communication, it is essential to find effective means for power control of signals received from randomly dispersed users within one cell. Effective power control will heavily impact the system capacity. Distributed power control (DPC) is a natural choice for such purposes, because, unlike centralized power control, DPC does not require extensive computational power. Distributed power control should be able to adjust the power levels of each transmitted signal using only local measurements, so that, in a reasonable time, all users will maintain the desired signal-to-interference ratio. In this paper, we review different approaches for power control, focusing on CDMA systems. We also introduce state-space methods and linear quadratic power control (LQPC) to solve the power-control problem. A simulation environment was developed to compare LQPC with earlier approaches. The results show that LQPC is more effective, and is capable of computing the desired transmission power of each mobile station in fewer iterations, as well as being able to accommodate more users in the system
机译:在无线蜂窝通信中,找到一种有效的方法来控制从一个小区内随机分散的用户接收到的信号的功率至关重要。有效的电源控制将严重影响系统容量。为此,分布式电源控制(DPC)是自然的选择,因为与集中式电源控制不同,DPC不需要大量的计算能力。分布式功率控制应该仅能够使用本地测量来调整每个发射信号的功率电平,以便在合理的时间内,所有用户将保持所需的信噪比。在本文中,我们将重点讨论CDMA系统,以探讨不同的功率控制方法。我们还介绍了状态空间方法和线性二次功率控制(LQPC)以解决功率控制问题。开发了一个仿真环境,以将LQPC与早期方法进行比较。结果表明,LQPC更有效,并且能够以较少的迭代次数计算每个移动台的所需传输功率,并且能够在系统中容纳更多用户

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