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Optimal Power Allocation of Relay Sensor Node Capable of Energy Harvesting in Cooperative Cognitive Radio Network

机译:协作认知无线电网络中具有能量收集能力的中继传感器节点的最优功率分配

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摘要

A cooperative cognitive radio scheme exploiting primary signals for energy harvesting is proposed. The relay sensor node denoted as the secondary transmitter (ST) harvests energy from the primary signal transmitted from the primary transmitter, and then uses it to transmit power superposed codes of the secrecy signal of the secondary network (SN) and of the primary signal of the primary network (PN). The harvested energy is split into two parts according to a power splitting ratio, one for decoding the primary signal and the other for charging the battery. In power superposition coding, the amount of fractional power allocated to the primary signal is determined by another power allocation parameter (e.g., the power sharing coefficient). Our main concern is to investigate the impact of the two power parameters on the performances of the PN and the SN. Analytical or mathematical expressions of the outage probabilities of the PN and the SN are derived in terms of the power parameters, location of the ST, channel gain, and other system related parameters. A jointly optimal power splitting ratio and power sharing coefficient for achieving target outage probabilities of the PN and the SN, are found using these expressions and validated by simulations.
机译:提出了一种利用主要信号进行能量收集的合作认知无线电方案。表示为次要发送器(ST)的中继传感器节点从从主要发送器发送的主要信号中收集能量,然后使用它来发送次要网络(SN)的保密信号和SN的主要信号的功率叠加码。主网络(PN)。收集的能量根据功率分配比分为两部分,一个用于解码主信号,另一个用于为电池充电。在功率叠加编码中,由另一功率分配参数(例如,功率分配系数)确定分配给主信号的分数功率的量。我们主要关注的是研究这两个功率参数对PN和SN性能的影响。根据功率参数,ST的位置,信道增益以及其他与系统相关的参数,可以得出PN和SN中断概率的分析或数学表达式。使用这些表达式找到了用于实现PN和SN目标停电概率的联合最优功率分配比和功率分配系数,并通过仿真进行了验证。

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