Optimal Transmit Strategy for Multi-user MIMO WPT Systems With Non-linear Energy Harvesters
Nikita Shanin, Laura Cottatellucci, Robert Schober

TL;DR
This paper develops an optimal transmit strategy for multi-user MIMO wireless power transfer systems with non-linear energy harvesters, improving power transfer efficiency and revealing key properties of optimal signaling.
Contribution
It introduces a novel optimal transmit strategy for multi-user MIMO WPT with non-linear harvesters, including low-complexity algorithms and insights into power trade-offs.
Findings
Optimal signaling involves scalar symbols with at most two mass points.
The proposed strategy outperforms linear model-based schemes.
Harvested power saturates with increasing antennas.
Abstract
In this paper, we study multi-user multi-antenna wireless power transfer (WPT) systems, where each antenna at the energy harvesting (EH) nodes is connected to a dedicated non-linear rectifier. We propose an optimal transmit strategy which maximizes a weighted sum of the average harvested powers at the EH nodes under a constraint on the power budget of the transmitter. First, for multiple-input single-output (MISO) WPT systems, we show that it is optimal to transmit scalar symbols with an arbitrary phase and an amplitude, whose probability density function (pdf) has at most two mass points, using maximum ratio transmission (MRT) beamforming. Then, we prove that for single-input multiple-output (SIMO) WPT systems, the optimal transmit symbol amplitudes are discrete random variables, whose pdf also has no more than two mass points. For general multi-user MIMO WPT systems, we show that the…
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Taxonomy
TopicsEnergy Harvesting in Wireless Networks · Antenna Design and Analysis · Advanced MIMO Systems Optimization
