Secrecy wireless information and power transfer: challenges and opportunities

Wireless information and power transfer (WIPT) enables more sustainable and resilient communications due to the fact that it avoids frequent battery charging and replacement. However, it also suffers from possible information interception due to the open nature of wireless channels. Compared to trad...

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Published inIEEE wireless communications Vol. 23; no. 2; pp. 54 - 61
Main Authors Xiaoming Chen, Ng, Derrick Wing Kwan, Hsiao-Hwa Chen
Format Journal Article
LanguageEnglish
Published New York IEEE 01.04.2016
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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Abstract Wireless information and power transfer (WIPT) enables more sustainable and resilient communications due to the fact that it avoids frequent battery charging and replacement. However, it also suffers from possible information interception due to the open nature of wireless channels. Compared to traditional secure communications, secrecy wireless information and power transfer (SWIPT) has several distinct characteristic features. Wireless power transfer may increase vulnerability to eavesdropping, since a power receiver as a potential eavesdropper usually has a shorter access distance than an information receiver. On the other hand, wireless power transfer can be exploited to enhance wireless security. This article reviews the security issues in various SWIPT scenarios, with an emphasis on revealing the challenges and opportunities for implementing SWIPT. Furthermore, we provide a survey on a variety of physical layer security techniques to improve secrecy performance. In particular, we propose to use massive MIMO techniques to enhance power transfer efficiency and secure information transmission simultaneously. Finally, we discuss several potential research directions to further enhance the security in SWIPT systems.
AbstractList Wireless information and power transfer (WIPT) enables more sustainable and resilient communications due to the fact that it avoids frequent battery charging and replacement. However, it also suffers from possible information interception due to the open nature of wireless channels. Compared to traditional secure communications, secrecy wireless information and power transfer (SWIPT) has several distinct characteristic features. Wireless power transfer may increase vulnerability to eavesdropping, since a power receiver as a potential eavesdropper usually has a shorter access distance than an information receiver. On the other hand, wireless power transfer can be exploited to enhance wireless security. This article reviews the security issues in various SWIPT scenarios, with an emphasis on revealing the challenges and opportunities for implementing SWIPT. Furthermore, we provide a survey on a variety of physical layer security techniques to improve secrecy performance. In particular, we propose to use massive MIMO techniques to enhance power transfer efficiency and secure information transmission simultaneously. Finally, we discuss several potential research directions to further enhance the security in SWIPT systems.
Author Ng, Derrick Wing Kwan
Hsiao-Hwa Chen
Xiaoming Chen
Author_xml – sequence: 1
  surname: Xiaoming Chen
  fullname: Xiaoming Chen
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  givenname: Derrick Wing Kwan
  surname: Ng
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  organization: Univ. of New South Wales, Sydney, NSW, Australia
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  surname: Hsiao-Hwa Chen
  fullname: Hsiao-Hwa Chen
  email: hshwchen@ieee.org
  organization: Dept. of Eng. Sci., Nat. Cheng Kung Univ., Tainan, Taiwan
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SubjectTerms Battery chargers
Channels
Communication system security
Computer information security
Eavesdropping
Energy transfer
Information processing
Network security
Power transfer
Receivers
Relays
Secrecy aspects
Security
Sustainability
Sustainable development
Transmitters
Wireless communication
Title Secrecy wireless information and power transfer: challenges and opportunities
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