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首页> 外文期刊>Communications, IEEE Transactions on >Energy, Delay, and Outage Analysis of a Buffer-Aided Three-Node Network Relying on Opportunistic Routing
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Energy, Delay, and Outage Analysis of a Buffer-Aided Three-Node Network Relying on Opportunistic Routing

机译:依赖机会路由的缓冲辅助三节点网络的能量,延迟和中断分析

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摘要

In this contribution, we propose and study a bufferaided opportunistic routing (BOR) scheme, which combines the benefits of both opportunistic routing and multihop diversity (MHD) aided transmissions. It was conceived for a buffer-aided three-node network (B3NN) composed of a source node (SN), a buffer-aided relay node (RN) and a destination node (DN). In this network, there are three channels namely the SN-RN, RN-DN and SN-DN channels. The key motivation is that we are aiming for activating the specific channels requiring a recuded energy dissipation. In order to study this problem, a three-dimensional (3D) transmission activation probability space (TAPS) is proposed, which is divided into four regions representing each of the three channels plus an outage region. In a specific time slot (TS), the instantaneous channel fading values may be directly mapped to a specific point in this 3D channel space. The BOR scheme then relies on the position of this point to select the most appropriate channel for its transmission. Both the energy dissipation and the outage probability (OP) are investigated for transmission in this network. The results show that when the system is operated at a normalized throughput of 0.4 packet/TS, the energy dissipation was reduced by 24.8% to 77.6% compared to three different benchmark schemes. Alternatively, our technique is capable of reducing the OP by 89.6% when compared to conventional opportunistic routing. As in all buffer-aided system, the performance improved with the cost of higher packet delay, which is also studied.
机译:在这项贡献中,我们提出并研究了一种缓冲的机会路由(BOR)方案,该方案结合了机会路由和多跳分集(MHD)辅助传输的优点。它被认为是由源节点(SN),缓冲中继节点(RN)和目的节点(DN)组成的缓冲辅助三节点网络(B3NN)。在该网络中,存在三个信道,即SN-RN,RN-DN和SN-DN信道。关键动机是我们旨在激活需要降低能耗的特定通道。为了研究此问题,提出了三维(3D)传输激活概率空间(TAPS),该空间被分成代表三个通道中每个通道的四个区域以及一个中断区域。在特定时隙(TS)中,瞬时信道衰落值可以直接映射到该3D信道空间中的特定点。然后,BOR方案依靠该点的位置来选择最适合其传输的信道。研究了能量消耗和中断概率(OP),以便在该网络中进行传输。结果表明,当系统以0.4包/ TS的标准化吞吐量运行时,与三种不同的基准方案相比,能耗降低了24.8%至77.6%。另外,与传统的机会路由相比,我们的技术能够将OP降低89.6%。与在所有缓冲区辅助系统中一样,性能也随着更高的数据包延迟成本而得到改善,对此也进行了研究。

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