无线网络中可靠通信的节能调制设计

Qing Chen, M. C. Gursoy
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引用次数: 37

摘要

在本文中,我们考虑了在平均误码率(BER)约束下,优化M-ary正交调幅(MQAM)星座大小以最小化比特能量消耗。在能量消耗的计算中,考虑了电路能量、传输能量和重传输能量。采用对数正态阴影和瑞利衰落相结合的模型对无线信道进行建模。通过对数正态阴影作用下的中断概率确定链路可靠性和重传概率。单跳和多跳传输都被考虑。通过数值计算,确定了最优星座大小。提出了一些具有实际意义的有趣观察结果。可见,在较小的传输距离下,大星座是首选,而随着距离的增加,星座的大小应该减小。在固定和可变发射功率情况下都观察到类似的趋势。我们注意到可变电力方案可以实现更高的能源效率。对多跳线性网络的节能调制设计进行了分析。在这种情况下,对调制大小和路由路径进行了联合优化,并对线性网络中经历的比特能量和延迟进行了分析。
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Energy-efficient modulation design for reliable communication in wireless networks
1 In this paper, we have considered the optimization of the M-ary quadrature amplitude modulation (MQAM) constellation size to minimize the bit energy consumption under average bit error rate (BER) constraints. In the computation of the energy expenditure, the circuit, transmission, and retransmission energies are taken into account. A combined log-normal shadowing and Rayleigh fading model is employed to model the wireless channel. The link reliabilities and retransmission probabilities are determined through the outage probabilities under log-normal shadowing effects. Both single-hop and multi-hop transmissions are considered. Through numerical results, the optimal constellation sizes are identified. Several interesting observations with practical implications are made. It is seen that while large constellations are preferred at small transmission distances, constellation size should be decreased as the distance increases. Similar trends are observed in both fixed and variable transmit power scenarios. We have noted that variable power schemes can attain higher energy-efficiencies. The analysis of energy-efficient modulation design is also conducted in multi-hop linear networks. In this case, the modulation size and routing paths are jointly optimized, and the analysis of both the bit energy and delay experienced in the linear network is provided.
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