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Enabling Non-Linear Energy Harvesting in Power Domain Based Multiple Access in Relaying Networks: Outage and Ergodic Capacity Performance Analysis

机译:在中继网络中基于电源域中的非线性能量收集:中断和遍历能力性能分析

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摘要

The Power Domain-based Multiple Access (PDMA) scheme is considered as one kind of Non-Orthogonal Multiple Access (NOMA) in green communications and can support energy-limited devices by employing wireless power transfer. Such a technique is known as a lifetime-expanding solution for operations in future access policy, especially in the deployment of power-constrained relays for a three-node dual-hop system. In particular, PDMA and energy harvesting are considered as two communication concepts, which are jointly investigated in this paper. However, the dual-hop relaying network system is a popular model assuming an ideal linear energy harvesting circuit, as in recent works, while the practical system situation motivates us to concentrate on another protocol, namely non-linear energy harvesting. As important results, a closed-form formula of outage probability and ergodic capacity is studied under a practical non-linear energy harvesting model. To explore the optimal system performance in terms of outage probability and ergodic capacity, several main parameters including the energy harvesting coefficients, position allocation of each node, power allocation factors, and transmit signal-to-noise ratio (SNR) are jointly considered. To provide insights into the performance, the approximate expressions for the ergodic capacity are given. By matching analytical and Monte Carlo simulations, the correctness of this framework can be examined. With the observation of the simulation results, the figures also show that the performance of energy harvesting-aware PDMA systems under the proposed model can satisfy the requirements in real PDMA applications.
机译:基于电力域的多址(PDMA)方案被认为是一种绿色通信中的一种非正交多址(NOMA),并且可以通过采用无线电力传输来支持能量限制设备。这种技术被称为用于未来访问策略的操作的寿命扩展解决方案,尤其是在为三节点双跳系统的电力受限继电器部署的部署中。特别地,PDMA和能量收集被认为是两个通信概念,本文共同研究。然而,双跳中继网络系统是假设理想的线性能量收集电路的流行模型,如最近的作品,而实际系统情况激励我们专注于另一种协议,即非线性能量收集。作为重要结果,在实际的非线性能量收集模型下研究了停电概率和遍历能力的闭合式公式。为了在中断概率和ergodic容量方面探讨最佳系统性能,共同考虑包括能量收集系数,每个节点,功率分配因子和发射信噪比(SNR)的能量收集系数的几个主要参数。为了提供对性能的见解,给出了ergodic容量的近似表达。通过匹配分析和蒙特卡罗模拟,可以检查该框架的正确性。随着仿真结果的观察,图还表明,在所提出的模型下的能量收集感知PDMA系统的性能可以满足真实PDMA应用中的要求。

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