Time-Invariant Angle-Range Dependent Directional Modulation Based on Time-Modulated Frequency Diverse Arrays

We first review the fundamentals of directional modulation (DM) based on frequency diverse arrays (FDA), which is capable of achieving angle-range dependent point-to-point physical layer secure communications where the phase shifters of the FDA-based DM must be optimized continuously with time by co...

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Main Authors: Qian Cheng, Jiang Zhu, Tao Xie, Junshan Luo, Zuohong Xu
Format: Article
Language:English
Published: IEEE 2017-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8104957/
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spelling doaj-0213640a4a1847e88a6bb22b065df03f2021-03-29T20:18:24ZengIEEEIEEE Access2169-35362017-01-015262792629010.1109/ACCESS.2017.27722468104957Time-Invariant Angle-Range Dependent Directional Modulation Based on Time-Modulated Frequency Diverse ArraysQian Cheng0https://orcid.org/0000-0002-1999-387XJiang Zhu1Tao Xie2Junshan Luo3Zuohong Xu4School of Electronic Science, National University of Defense Technology, Changsha, ChinaSchool of Electronic Science, National University of Defense Technology, Changsha, ChinaSchool of Electronic Science, National University of Defense Technology, Changsha, ChinaSchool of Electronic Science, National University of Defense Technology, Changsha, ChinaSchool of Electronic Science, National University of Defense Technology, Changsha, ChinaWe first review the fundamentals of directional modulation (DM) based on frequency diverse arrays (FDA), which is capable of achieving angle-range dependent point-to-point physical layer secure communications where the phase shifters of the FDA-based DM must be optimized continuously with time by complex algorithms like genetic algorithm (GA). Thereafter, in order to overcome the time-variant drawbacks of conventional FDA-based DM, we propose a time-invariant angle-range dependent DM based on time-modulated logarithmically increasing frequency offset FDA (TDM-log-FDA). Different from the conventional FDA-based DM, where the frequency offsets are linear and determinate, the frequency offsets of TDM-log-FDA are elaborately designed as time-modulated nonlinear logarithmically increasing values guaranteeing the time-invariant characteristic of TDM-log-FDA. Additionally, an improved dot-shaped time-invariant DM based on time-modulated multicarrier frequency offset FDA (DTDM-mc-FDA) is put forward to achieve time-invariant spatial fine focusing point-to-point physical layer secure communications, where multiple carriers instead of a single carrier are transmitted through each antenna element and the corresponding frequency offsets are also time-modulated. Using GA, we obtain the optimized phase shifters for the proposed two time-invariant DMs once and for all, which reduces the realization complexity of phase shifters greatly. Besides, a new metric called secure area is proposed to evaluate the security performance of DM systems. The simulated results demonstrate that the proposed TDM-log-FDA can realize time-invariant angle-range dependent secure communications, while the proposed DTDM-mc-FDA can further enhance the security with more accurately focusing secure area despite a small penalty of complexity.https://ieeexplore.ieee.org/document/8104957/Time-invariant directional modulation (DM)time-modulated frequency diverse array (FDA)physical layer security (PLS)secure area
collection DOAJ
language English
format Article
sources DOAJ
author Qian Cheng
Jiang Zhu
Tao Xie
Junshan Luo
Zuohong Xu
spellingShingle Qian Cheng
Jiang Zhu
Tao Xie
Junshan Luo
Zuohong Xu
Time-Invariant Angle-Range Dependent Directional Modulation Based on Time-Modulated Frequency Diverse Arrays
IEEE Access
Time-invariant directional modulation (DM)
time-modulated frequency diverse array (FDA)
physical layer security (PLS)
secure area
author_facet Qian Cheng
Jiang Zhu
Tao Xie
Junshan Luo
Zuohong Xu
author_sort Qian Cheng
title Time-Invariant Angle-Range Dependent Directional Modulation Based on Time-Modulated Frequency Diverse Arrays
title_short Time-Invariant Angle-Range Dependent Directional Modulation Based on Time-Modulated Frequency Diverse Arrays
title_full Time-Invariant Angle-Range Dependent Directional Modulation Based on Time-Modulated Frequency Diverse Arrays
title_fullStr Time-Invariant Angle-Range Dependent Directional Modulation Based on Time-Modulated Frequency Diverse Arrays
title_full_unstemmed Time-Invariant Angle-Range Dependent Directional Modulation Based on Time-Modulated Frequency Diverse Arrays
title_sort time-invariant angle-range dependent directional modulation based on time-modulated frequency diverse arrays
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2017-01-01
description We first review the fundamentals of directional modulation (DM) based on frequency diverse arrays (FDA), which is capable of achieving angle-range dependent point-to-point physical layer secure communications where the phase shifters of the FDA-based DM must be optimized continuously with time by complex algorithms like genetic algorithm (GA). Thereafter, in order to overcome the time-variant drawbacks of conventional FDA-based DM, we propose a time-invariant angle-range dependent DM based on time-modulated logarithmically increasing frequency offset FDA (TDM-log-FDA). Different from the conventional FDA-based DM, where the frequency offsets are linear and determinate, the frequency offsets of TDM-log-FDA are elaborately designed as time-modulated nonlinear logarithmically increasing values guaranteeing the time-invariant characteristic of TDM-log-FDA. Additionally, an improved dot-shaped time-invariant DM based on time-modulated multicarrier frequency offset FDA (DTDM-mc-FDA) is put forward to achieve time-invariant spatial fine focusing point-to-point physical layer secure communications, where multiple carriers instead of a single carrier are transmitted through each antenna element and the corresponding frequency offsets are also time-modulated. Using GA, we obtain the optimized phase shifters for the proposed two time-invariant DMs once and for all, which reduces the realization complexity of phase shifters greatly. Besides, a new metric called secure area is proposed to evaluate the security performance of DM systems. The simulated results demonstrate that the proposed TDM-log-FDA can realize time-invariant angle-range dependent secure communications, while the proposed DTDM-mc-FDA can further enhance the security with more accurately focusing secure area despite a small penalty of complexity.
topic Time-invariant directional modulation (DM)
time-modulated frequency diverse array (FDA)
physical layer security (PLS)
secure area
url https://ieeexplore.ieee.org/document/8104957/
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AT jiangzhu timeinvariantanglerangedependentdirectionalmodulationbasedontimemodulatedfrequencydiversearrays
AT taoxie timeinvariantanglerangedependentdirectionalmodulationbasedontimemodulatedfrequencydiversearrays
AT junshanluo timeinvariantanglerangedependentdirectionalmodulationbasedontimemodulatedfrequencydiversearrays
AT zuohongxu timeinvariantanglerangedependentdirectionalmodulationbasedontimemodulatedfrequencydiversearrays
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