Optimal power allocation for non-regenerative multicarrier relay-assisted PLC systems with QoS constraints

Xiaolin Wu, Y. Rong
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引用次数: 3

Abstract

In this paper we present an iterative algorithm to jointly optimize the source and relay power allocations for a general relay transmission system, i.e. the broadcast-and-multiaccess (BMA) multicarrier relay system, where the source transmits in two time-slots. Under the indoor power line communication environment, we examine the issue of minimization of the total network transmission power subjecting to QoS constraints expressed as the capacity lower-bound of the data-link from the source to the destination nodes. In addition to demonstrate the fast convergence of the proposed algorithm, the simulation results also show that with respect to the two-hop relay system and the broadcast-and-forward (BF) relay system, the proposed general relay system can satisfy the same QoS requirement while consume less total transmission power.
具有QoS约束的非再生多载波中继辅助PLC系统的最优功率分配
针对一般中继传输系统,即广播多址(BMA)多载波中继系统,提出了一种联合优化源和中继功率分配的迭代算法,其中源在两个时隙中传输。在室内电力线通信环境下,我们研究了受QoS约束的总网络传输功率最小化问题,QoS约束表示为从源到目标节点的数据链路的容量下界。仿真结果表明,对于两跳中继系统和广播转发(broadcast and forward, BF)中继系统,所提出的通用中继系统在满足相同QoS要求的同时,总传输功率更小。
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