Joint Power Allocation and Load Balancing Optimization for Energy-Efficient Cell-Free Massive MIMO Networks

02/04/2020
by   Trinh Van Chien, et al.
0

Large-scale distributed antenna systems with many access points (APs) that serve the users by coherent joint transmission is being considered for 5G-and-beyond networks. The technology is called Cell-free Massive MIMO and can provide a more uniform service level to the users than a conventional cellular topology. For a given user set, only a subset of the APs is likely needed to satisfy the users' performance demands, particularly outside the peak traffic hours. To find a flexible and energy-efficient implementation, we minimize the total downlink power consumption at the APs, considering both the transmit powers and hardware dissipation. APs can be temporarily turned off to reduce the latter part. The formulated optimization problem is non-convex but, nevertheless, a globally optimal solution is obtained by solving a mixed-integer second-order cone program. Since the computational complexity is prohibitive for real-time implementation, we also propose two low-complexity algorithms that exploit the inherent group-sparsity and the optimized transmit powers in the problem formulation. Numerical results manifest that our optimization algorithms can greatly reduce the power consumption compared to keeping all APs turned on and only minimizing the transmit powers. Moreover, the low-complexity algorithms can effectively handle the power allocation and AP activation for large-scale networks.

READ FULL TEXT
research
11/26/2019

Optimal Design of Energy-Efficient Cell-Free Massive MIMO: Joint Power Allocation and Load Balancing

A large-scale distributed antenna system that serves the users by cohere...
research
04/11/2018

Cooperative Energy Efficient Power Allocation Algorithm for downlink massive MIMO

In this paper power allocation in a cellular network, which transmitter ...
research
12/31/2021

Centralized and Distributed Power Allocation for Max-Min Fairness in Cell-Free Massive MIMO

Cell-free Massive MIMO systems consist of a large number of geographical...
research
04/24/2019

Power-Efficient Resource Allocation in C-RANs with SINR Constraints and Deadlines

In this paper, we address the problem of power-efficient resource manage...
research
10/08/2020

Adaptive Subcarrier, Parameter, and Power Allocation for Partitioned Edge Learning Over Broadband Channels

A main edge learning paradigm, called partitioned edge learning (PARTEL)...
research
11/14/2021

Cell-Free Massive MIMO with Low-Complexity Hybrid Beamforming

Cell-Free Massive Multiple-input Multiple-output (mMIMO) consists of man...
research
07/02/2019

On the Optimal Refresh Power Allocation for Energy-Efficient Memories

Refresh is an important operation to prevent loss of data in dynamic ran...

Please sign up or login with your details

Forgot password? Click here to reset