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A block MIMO PI-power control algorithm for cellular systems

机译:蜂窝系统块MIMO PI功率控制算法

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In cellular radio systems, the convergence rate of the power control is one of the most important criteria that determines the practical usability of a given algorithm. A good convergence rate guarantees fast reduction of the effects caused by rapidly changing propagation and traffic conditions. A power control algorithm is proposed based on the ideas of the multi-input-multi-output (MIMO) proportional-integral (PI)-controller and block power control (BPC). As in the work of Z. Uykan et al. (see ISSSTA 2000, IEEE, vol.2, p.782-5, 2000), the PI-approach of deriving the power level is taken, however, now in the MIMO form. Here it is formulated with the idea of BPC, which is that there is centralized control within the blocks without any information chance between the blocks. Computational experiments in CDMA system are carried out.
机译:在蜂窝无线电系统中,功率控制的收敛速率是确定给定算法的实际可用性的最重要标准之一。良好的收敛速度保证通过快速改变传播和交通状况引起的效果的快速降低。基于多输入多输出(MIMO)比例积分(PI) - 控制器和块功率控制(BPC)的思想,提出了一种功率控制算法。与Z. Uykan等人的工作一样。 (参见ISSSTA 2000,IEEE,Vol.2,第782-5,2000),拍摄了电力水平的PI-方法,现在是在MIMO形式中。在这里,它与BPC的想法配制,即块内的集中控制而没有块之间的任何信息。执行CDMA系统的计算实验。

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