Energy efficiency optimization with non-linear precoding in multi-cell MISO broadcast channels

X Gui, KJ Lee, Z Zhu, J Jung… - 2015 IEEE International …, 2015 - ieeexplore.ieee.org
X Gui, KJ Lee, Z Zhu, J Jung, I Lee
2015 IEEE International Conference on Communications (ICC), 2015ieeexplore.ieee.org
In this paper, we focus on maximizing weighted sum energy efficiency (EE) for a multi-cell
multi-user channel. In order to solve this non-convex problem, we first decompose the
original problem into a sequence of parallel subproblems which can be optimized
separately. For each subproblem, a base station employs dirty paper coding to maximize the
EE for users within the cell while regulating interference induced to other cells. Since each
subproblem can be transformed to a convex multiple-access channel problem, the proposed …
In this paper, we focus on maximizing weighted sum energy efficiency (EE) for a multi-cell multi-user channel. In order to solve this non-convex problem, we first decompose the original problem into a sequence of parallel subproblems which can be optimized separately. For each subproblem, a base station employs dirty paper coding to maximize the EE for users within the cell while regulating interference induced to other cells. Since each subproblem can be transformed to a convex multiple-access channel problem, the proposed method provide a closed-form power allocation. Then, based on the optimal covariance matrix, a locally optimal solution is obtained to maximize the sum EE. Finally, simulation results show that our algorithm based on the non-linear precoding achieves close to 20 percent gain than the conventional linear precoding method.
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