MIMO wireless communications under statistical queueing constraints

M. C. Gursoy
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引用次数: 11

Abstract

The performance of multiple-input multiple-output wireless systems is investigated in the presence of statistical queueing constraints. Queuing constraints are imposed as limitations on buffer violation probabilities. The performance under such constraints is captured through the effective capacity formulation. A detailed analysis of the effective capacity is carried out in the low-power and wideband regimes. In the low-power analysis, expressions for the first and second derivatives of the effective capacity with respect to SNR at SNR = 0 are obtained under various assumptions on the degree of channel state information at the transmitter. Transmission strategies that are optimal in the sense of achieving the first and second derivatives are identified. It is shown that while the first derivative does not get affected by the presence of queueing constraints, the second derivative gets smaller as the constraints become more stringent. Through the energy efficiency analysis, this is shown to imply that the minimum bit energy requirements do not change with more strict limitations but the wideband slope diminishes. Similar results are obtained in the wideband regime if rich multipath fading is being experienced. On the other hand, sparse multipath fading with bounded number of degrees of freedom is shown to increase the minimum bit energy requirements in the presence of queueing constraints.
统计排队约束下的MIMO无线通信
研究了存在统计排队约束的多输入多输出无线系统的性能。排队约束作为缓冲区违反概率的限制。在这种约束下的性能是通过有效容量公式捕获的。对低功耗和宽带的有效容量进行了详细的分析。在低功率分析中,在对发射机信道状态信息程度的各种假设下,得到了在信噪比= 0时有效容量对信噪比的一阶导数和二阶导数的表达式。确定了在实现一阶导数和二阶导数的意义上最优的传输策略。结果表明,虽然一阶导数不受排队约束的影响,但随着约束的严格,二阶导数变小。通过能效分析,这意味着最小比特能量需求不会随着更严格的限制而改变,但宽带斜率减小。在宽频带中,如果经历了丰富的多径衰落,也会得到类似的结果。另一方面,在存在排队约束的情况下,具有有限自由度的稀疏多径衰落会增加最小比特能量需求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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