Phase Aligned Time-Reversal for Multi-User Wireless Power Transfer Systems With Non-Linear Energy Harvesting
In this paper, we study a waveform design based on time-reversal (TR) for multi-user wireless power transfer (WPT) systems in multipath channels. The existing waveforms for WPT using the non-linear energy harvesting (EH) model have been designed in the frequency domain, whereas we design the wavefor...
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doaj-04cdc3f56942402898f5976f9e1839c12021-08-10T23:00:11ZengIEEEIEEE Access2169-35362021-01-01910997610998510.1109/ACCESS.2021.31028649507494Phase Aligned Time-Reversal for Multi-User Wireless Power Transfer Systems With Non-Linear Energy HarvestingHongsun An0https://orcid.org/0000-0001-8560-5217Minyoung Hwang1https://orcid.org/0000-0001-7459-695XHyuncheol Park2https://orcid.org/0000-0002-7346-1364School of Electrical Engineering, Korea Advanced Institute of Science and Technology, Daejeon, South KoreaSchool of Electrical Engineering, Korea Advanced Institute of Science and Technology, Daejeon, South KoreaSchool of Electrical Engineering, Korea Advanced Institute of Science and Technology, Daejeon, South KoreaIn this paper, we study a waveform design based on time-reversal (TR) for multi-user wireless power transfer (WPT) systems in multipath channels. The existing waveforms for WPT using the non-linear energy harvesting (EH) model have been designed in the frequency domain, whereas we design the waveform directly in the time domain by modifying TR to be suitable for WPT. In the non-linear EH model, the peak signal with the largest magnitude among the received signals is responsible for most of the harvested energy at the energy receiver (ER). Since the peak signal of TR for multi-user consists of the sum of the inter-user interference (IUI) signal and the desired signal, the phase difference between these signals can reduce the magnitude of the peak signal. Thus, we propose a novel waveform based on TR, called a phase aligned TR (PATR). The objective of the proposed PATR is to increase the harvested energy by aligning the phase between the desired signal and IUI signal as in-phase. We derive the optimal phase set to be pre-rotated for maximizing the peak signal, and design the PATR waveform by combining the modified TR and the derived optimal phase set. We prove the superior performance of the proposed PATR compared to the existing schemes in the multi-user WPT systems with the non-linear EH model by simulation. Moreover, we show that the gain for the harvested energy of the proposed PATR increases as the number of transmit antennas and the number of ERs increase.https://ieeexplore.ieee.org/document/9507494/Wireless power transferenergy harvestingtime-reversalnon-linear energy harvesting circuitinterference alignment |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Hongsun An Minyoung Hwang Hyuncheol Park |
spellingShingle |
Hongsun An Minyoung Hwang Hyuncheol Park Phase Aligned Time-Reversal for Multi-User Wireless Power Transfer Systems With Non-Linear Energy Harvesting IEEE Access Wireless power transfer energy harvesting time-reversal non-linear energy harvesting circuit interference alignment |
author_facet |
Hongsun An Minyoung Hwang Hyuncheol Park |
author_sort |
Hongsun An |
title |
Phase Aligned Time-Reversal for Multi-User Wireless Power Transfer Systems With Non-Linear Energy Harvesting |
title_short |
Phase Aligned Time-Reversal for Multi-User Wireless Power Transfer Systems With Non-Linear Energy Harvesting |
title_full |
Phase Aligned Time-Reversal for Multi-User Wireless Power Transfer Systems With Non-Linear Energy Harvesting |
title_fullStr |
Phase Aligned Time-Reversal for Multi-User Wireless Power Transfer Systems With Non-Linear Energy Harvesting |
title_full_unstemmed |
Phase Aligned Time-Reversal for Multi-User Wireless Power Transfer Systems With Non-Linear Energy Harvesting |
title_sort |
phase aligned time-reversal for multi-user wireless power transfer systems with non-linear energy harvesting |
publisher |
IEEE |
series |
IEEE Access |
issn |
2169-3536 |
publishDate |
2021-01-01 |
description |
In this paper, we study a waveform design based on time-reversal (TR) for multi-user wireless power transfer (WPT) systems in multipath channels. The existing waveforms for WPT using the non-linear energy harvesting (EH) model have been designed in the frequency domain, whereas we design the waveform directly in the time domain by modifying TR to be suitable for WPT. In the non-linear EH model, the peak signal with the largest magnitude among the received signals is responsible for most of the harvested energy at the energy receiver (ER). Since the peak signal of TR for multi-user consists of the sum of the inter-user interference (IUI) signal and the desired signal, the phase difference between these signals can reduce the magnitude of the peak signal. Thus, we propose a novel waveform based on TR, called a phase aligned TR (PATR). The objective of the proposed PATR is to increase the harvested energy by aligning the phase between the desired signal and IUI signal as in-phase. We derive the optimal phase set to be pre-rotated for maximizing the peak signal, and design the PATR waveform by combining the modified TR and the derived optimal phase set. We prove the superior performance of the proposed PATR compared to the existing schemes in the multi-user WPT systems with the non-linear EH model by simulation. Moreover, we show that the gain for the harvested energy of the proposed PATR increases as the number of transmit antennas and the number of ERs increase. |
topic |
Wireless power transfer energy harvesting time-reversal non-linear energy harvesting circuit interference alignment |
url |
https://ieeexplore.ieee.org/document/9507494/ |
work_keys_str_mv |
AT hongsunan phasealignedtimereversalformultiuserwirelesspowertransfersystemswithnonlinearenergyharvesting AT minyounghwang phasealignedtimereversalformultiuserwirelesspowertransfersystemswithnonlinearenergyharvesting AT hyuncheolpark phasealignedtimereversalformultiuserwirelesspowertransfersystemswithnonlinearenergyharvesting |
_version_ |
1721211745965441024 |