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Multi-objective totally distributed power and rate control for wireless communications

机译:无线通信的多目标总分布式功率和速率控制

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In this paper, we introduce a new totally distributed algorithm for combining power and rate control in wireless communication systems. The main feature of this algorithm over the multi-objective distributed power and rate control (MODPRC) algorithm presented in M. Elmusrati and H. Koivo (2003), is that the actual CIR is not needed to update the power and the rate. It works with the on-off commands of the power control in existing cellular communication systems. The algorithm is based on minimizing a multi-objective cost function. In this paper we defined three objectives. The objectives are minimizing the transmitted power, achieving at least the minimum carrier to interference ratio (CIR), which is defined at the minimum data rate, and achieving the maximum CIR, which is defined at maximum data rate. An optimized solution can be obtained by using a multi-objective optimization technique. The suggested algorithm is simple to implement and efficient. The simulations carried out on the UMTS specifications indicate that our algorithm gives a very good performance in terms of data rate, outage probability, and transmission power consumption.
机译:在本文中,我们介绍了一种新的完全分布式算法,用于在无线通信系统中组合功率和速率控制。该算法相对于M.El​​musrati和H.Koivo(2003)中提出的多目标分布式功率和速率控制(MODPRC)算法的主要特点是,不需要实际的CIR来更新功率和速率。它与现有蜂窝通信系统中电源控制的开关命令配合使用。该算法基于最小化多目标成本函数。在本文中,我们定义了三个目标。目标是最小化发射功率,至少获得以最小数据速率定义的最小载波干扰比(CIR),并获得以最大数据速率定义的最大CIR。通过使用多目标优化技术可以获得优化的解决方案。所提出的算法易于实现且高效。根据UMTS规范进行的仿真表明,我们的算法在数据速率,中断概率和传输功耗方面都具有非常好的性能。

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