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Energy-efficient scheduling with individual packet delay constraints and non-ideal circuit power

机译:具有单个数据包延迟约束和非理想电路功率的节能调度

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Exploiting the energy-delay tradeoff for energy saving is critical for developing green wireless communication systems. In this paper, we investigate the delay-constrained energy-efficient packet transmission. We aim to minimize the energy consumption of multiple randomly arrived packets in an additive white Gaussian noise channel subject to individual packet delay constraints, by taking into account the practical on-off circuit power consumption at the transmitter. First, we consider the offline case, by assuming that the full packet arrival information is known a priori at the transmitter, and formulate the energy minimization problem as a non-convex optimization problem. By exploiting the specific problem structure, we propose an efficient scheduling algorithm to obtain the globally optimal solution. It is shown that the optimal solution consists of two types of scheduling intervals, namely "selected-off" and "always-on" intervals, which correspond to bits-per-joule energy efficiency maximization and "lazy scheduling" rate allocation, respectively. Next, we consider the practical online case where only causal packet arrival information is available. Inspired by the optimal offline solution, we propose a new online scheme. It is shown by simulations that the proposed online scheme has a comparable performance with the optimal offline one and outperforms the design without considering on-off circuit power as well as the other heuristically designed online schemes.
机译:利用能源延迟权衡以节省能源对于开发绿色无线通信系统至关重要。在本文中,我们研究了延迟受限的节能数据包传输。我们的目标是通过考虑发射机的实际开关电路功耗,将加性高斯白噪声信道中多个随机到达的数据包的能量消耗降至最低,这要受到各个数据包延迟约束的影响。首先,通过假设完整的数据包到达信息是先验已知的发射机,我们考虑了离线情况,并将能量最小化问题公式化为非凸优化问题。通过利用特定的问题结构,我们提出了一种有效的调度算法来获得全局最优解。结果表明,最佳解决方案由两种调度间隔组成,即“选择关闭”间隔和“始终开启”间隔,分别对应于每比特比特的能量效率最大化和“惰性调度”速率分配。接下来,我们考虑只有因果数据包到达信息可用的实际在线情况。受最佳离线解决方案的启发,我们提出了一种新的在线方案。通过仿真表明,所提出的在线方案具有与最佳离线方案相当的性能,并且在不考虑开关电路功率以及其他启发式设计的在线方案的情况下优于设计。

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