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首页> 外文期刊>IEEE communications letters >Energy Efficiency of Fixed-Rate Transmissions with Markov Arrivals under Queueing Constraints
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Energy Efficiency of Fixed-Rate Transmissions with Markov Arrivals under Queueing Constraints

机译:排队约束下带马尔科夫到达率的固定速率变速器的能效

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Energy efficiency of wireless transmissions is analyzed in the presence of Markov sources and queueing constraints. Not knowing the channel conditions, the transmitter is assumed to send the data at a fixed rate over a Rayleigh fading channel. This fixed-rate transmission is modeled as a two-state (ON/OFF) continuous-time Markov chain. Using the effective bandwidth of Markov sources and the effective capacity of the Markov fluid transmission model, a characterization of the maximum average arrival rate that can be supported in the Rayleigh fading channel under buffer constraints is given, and energy efficiency is analyzed by determining the minimum energy per bit and wideband slope expressions. The impact of queueing constraints, source and channel parameters, and fixed-rate transmissions on the energy efficiency is identified.
机译:在存在马尔可夫源和排队约束的情况下分析了无线传输的能效。不知道信道状况,假设发射机在瑞利衰落信道上以固定速率发送数据。该固定速率传输被建模为两状态(ON / OFF)连续时间马尔可夫链。利用马尔可夫信号源的有效带宽和马尔可夫流体传输模型的有效容量,给出了在瑞利衰落信道中在缓冲约束下可以支持的最大平均到达率的特征,并通过确定最小值来分析能量效率。每比特能量和宽带斜率表达式。确定了排队约束,源和通道参数以及固定速率传输对能效的影响。

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