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Optimal transmission schemes for parallel and fading Gaussian broadcast channels with an energy harvesting rechargeable transmitter

机译:具有能量收集可充电发射机的并行和衰落高斯广播信道的最佳传输方案

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We consider an energy harvesting transmitter sending messages to two users over parallel and fading Gaussian broadcast channels. Energy required for communication arrives (is harvested) at the transmitter and a finite-capacity battery stores it before being consumed for transmission. Under off-line knowledge of energy arrival and channel fading variations, we obtain the trade-off between the performances of the users by characterizing the maximum departure region in a given interval. We first analyze the transmission with an energy harvesting transmitter over parallel broadcast channels. We show that the optimal total transmit power policy that achieves the boundary of the maximum departure region is the same as the optimal policy for the non-fading broadcast channel, which does not depend on the priorities of the users, and therefore is the same as the optimal policy for the non-fading scalar single-user channel. The optimal total transmit power can be found by a directional water-filling algorithm. The optimal splitting of the power among the parallel channels is performed in each epoch separately. Next, we consider fading broadcast channels and obtain the transmission policies that achieve the boundary of the maximum departure region. The optimal total transmit power allocation policy is found using a specific directional water-filling algorithm for fading broadcast channels. The optimal power allocation depends on the priorities of the users unlike in the case of parallel broadcast channels. Finally, we provide numerical illustrations of the optimal policies and maximum departure regions for both parallel and fading broadcast channels.
机译:我们考虑一个能量采集发射机,它通过并行且衰落的高斯广播信道向两个用户发送消息。通信所需的能量到达(收集)到变送器,并由有限容量的电池存储,然后再被消耗以进行传输。在能量到达和信道衰落变化的离线知识下,我们通过表征给定间隔内的最大离开区域来获得用户性能之间的权衡。我们首先分析能量收集发射机在并行广播信道上的传输。我们表明,达到最大离开区域边界的最优总发射功率策略与非衰落广播信道的最优策略相同,它不取决于用户的优先级,因此与非衰落标量单用户通道的最佳策略。最佳的总发射功率可以通过定向注水算法找到。在每个时期分别在并行信道之间进行功率的最佳分配。接下来,我们考虑衰落的广播信道并获得达到最大离开区域边界的传输策略。使用特定的定向注水算法来发现广播信道的衰落,可以找到最佳的总发射功率分配策略。与并行广播信道的情况不同,最佳功率分配取决于用户的优先级。最后,我们提供了并行和衰落广播信道的最佳策略和最大离开区域的数值说明。

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