Massive MIMO is one of the key technologies in future 5G communications which can satisfy the requirement of high speed and large capacity. This paper considers antenna selection and power allocation design to promote...Massive MIMO is one of the key technologies in future 5G communications which can satisfy the requirement of high speed and large capacity. This paper considers antenna selection and power allocation design to promote energy conservation then provide good quality of service(QoS) for the whole massive MIMO uplink network. Unlike previous related works, hardware impairment, transmission efficiency, and energy consumption at the circuit and antennas are involved in massive MIMO networks. In order to ensure the QoS, we consider the minimum rate constraint for each user and the system, which increases the complexity of power allocation problem for maximizing energy and spectral efficiency in massive MIMO system. To this end, a quantum-inspired social emotional optimization(QSEO) algorithm is proposed to obtain the optimal power control strategy in massive MIMO uplink networks. Simulation results assess the great advantages of QSEO which previous strategies do not have.展开更多
根据信道统计特性,研究了放大转发(amplify-and-forward,AF)协作中继网络中的中继选择协作通信方法.首先分析指出在等功率条件下,当信噪比小于某个门限时,选择单个中继节点进行转发(pre-select single relay AF,SAF)比所有节点都转发(al...根据信道统计特性,研究了放大转发(amplify-and-forward,AF)协作中继网络中的中继选择协作通信方法.首先分析指出在等功率条件下,当信噪比小于某个门限时,选择单个中继节点进行转发(pre-select single relay AF,SAF)比所有节点都转发(all relays AF,AAF)的中断概率小.基于此信噪比门限提出一种中继选择协作通信方法,并且指出这种选择方法使得SAF的中断概率最小;然后结合功率分配提出了一种使中断概率最小化的最优中继选择协作通信方法;最后为了降低复杂度,提出了一种次优中继选择协作通信方法.仿真结果表明,这种次优方法和最优中继选择协作通信方法相比,性能相近.展开更多
基金supported by the National Natural Science Foundation of China (No. 61571149)the Special China Postdoctoral Science Foundation (2015T80325)+1 种基金the Fun-damental Research Funds for the Central Universities (HEUCFP201808)the China Postdoctoral Science Foundation (2013M530148)
文摘Massive MIMO is one of the key technologies in future 5G communications which can satisfy the requirement of high speed and large capacity. This paper considers antenna selection and power allocation design to promote energy conservation then provide good quality of service(QoS) for the whole massive MIMO uplink network. Unlike previous related works, hardware impairment, transmission efficiency, and energy consumption at the circuit and antennas are involved in massive MIMO networks. In order to ensure the QoS, we consider the minimum rate constraint for each user and the system, which increases the complexity of power allocation problem for maximizing energy and spectral efficiency in massive MIMO system. To this end, a quantum-inspired social emotional optimization(QSEO) algorithm is proposed to obtain the optimal power control strategy in massive MIMO uplink networks. Simulation results assess the great advantages of QSEO which previous strategies do not have.