Resource allocation for distributed beamforming with multiple relays and individual power constraints

S. Schedler, V. Kühn
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引用次数: 5

Abstract

In wireless communications, beamforming can be exploited to reduce the power consumption considerably. If multiple relay terminals are available, distributed beamforming might be an appropriate transmission scheme. However, due to individual power constraints for all of the relays, the classical beamforming solution can no longer be used to allocate transmit power. Within this paper, closed form expressions for the optimal Power Allocation (PA) at source and regenerative relays are provided as well as an iterative algorithm to identify relay nodes that have to transmit at full power. Furthermore, numerical results will be presented for comparison to alternative relaying strategies, such as single Relay Selection (RS) and distributed Space Time Block Code (STBC). The proposed solution outperforms all the alternative approaches in terms of power consumption as well as outage probability.
具有多个中继和单个功率约束的分布式波束形成的资源分配
在无线通信中,可以利用波束成形来大大降低功耗。如果有多个中继终端可用,分布式波束形成可能是一种合适的传输方案。然而,由于所有中继的功率限制,经典的波束形成解决方案不能再用于分配发射功率。本文给出了源中继和再生中继最优功率分配(PA)的封闭表达式,并给出了一种迭代算法来识别必须满负荷传输的中继节点。此外,数值结果将用于比较替代中继策略,如单中继选择(RS)和分布式时空分组码(STBC)。所提出的解决方案在功耗和停电概率方面优于所有替代方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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