Trustworthy Jammer Selection with Truth-Telling for Wireless Cooperative Systems
In this paper, we propose a trustworthy friendly jammer selection scheme with truth-telling for wireless cooperative systems. We first utilize the reverse auction scheme to enforce truth-telling as the dominant strategy for each candidate friendly jammer. Specifically, we consider two auction cases:...
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Series: | Wireless Communications and Mobile Computing |
Online Access: | http://dx.doi.org/10.1155/2021/6626355 |
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doaj-a2ac69ee8559478da36b5545039fa36e2021-02-22T00:01:37ZengHindawi-WileyWireless Communications and Mobile Computing1530-86772021-01-01202110.1155/2021/6626355Trustworthy Jammer Selection with Truth-Telling for Wireless Cooperative SystemsYingkun Wen0Tao Jing1Qinghe Gao2School of Electronics and Information EngineeringSchool of Electronics and Information EngineeringSchool of Electronics and Information EngineeringIn this paper, we propose a trustworthy friendly jammer selection scheme with truth-telling for wireless cooperative systems. We first utilize the reverse auction scheme to enforce truth-telling as the dominant strategy for each candidate friendly jammer. Specifically, we consider two auction cases: (1) constant power (CP) case and (2) the utility of the BS maximization (UBM) case. In both cases, the reverse auction scheme enforces truth-telling as the dominant strategy. Next, we introduce the trust category and trust degree to evaluate the trustworthiness of each Helper transmitter (Helper-Tx). Specifically, an edge controller calculates the reputation value of each Helper-Tx periodically using an additive-increase multiplicative-decrease algorithm by observing its jamming behavior. With the historical reputation values, the edge controller (EC) classifies a Helper-Tx into one of four trust categories and calculates its trust degree. Then, the EC selects the best Helper-Tx based on the trust category and trust degree. Lastly, we present numerical results to demonstrate the performance of our proposed jammer selection scheme.http://dx.doi.org/10.1155/2021/6626355 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yingkun Wen Tao Jing Qinghe Gao |
spellingShingle |
Yingkun Wen Tao Jing Qinghe Gao Trustworthy Jammer Selection with Truth-Telling for Wireless Cooperative Systems Wireless Communications and Mobile Computing |
author_facet |
Yingkun Wen Tao Jing Qinghe Gao |
author_sort |
Yingkun Wen |
title |
Trustworthy Jammer Selection with Truth-Telling for Wireless Cooperative Systems |
title_short |
Trustworthy Jammer Selection with Truth-Telling for Wireless Cooperative Systems |
title_full |
Trustworthy Jammer Selection with Truth-Telling for Wireless Cooperative Systems |
title_fullStr |
Trustworthy Jammer Selection with Truth-Telling for Wireless Cooperative Systems |
title_full_unstemmed |
Trustworthy Jammer Selection with Truth-Telling for Wireless Cooperative Systems |
title_sort |
trustworthy jammer selection with truth-telling for wireless cooperative systems |
publisher |
Hindawi-Wiley |
series |
Wireless Communications and Mobile Computing |
issn |
1530-8677 |
publishDate |
2021-01-01 |
description |
In this paper, we propose a trustworthy friendly jammer selection scheme with truth-telling for wireless cooperative systems. We first utilize the reverse auction scheme to enforce truth-telling as the dominant strategy for each candidate friendly jammer. Specifically, we consider two auction cases: (1) constant power (CP) case and (2) the utility of the BS maximization (UBM) case. In both cases, the reverse auction scheme enforces truth-telling as the dominant strategy. Next, we introduce the trust category and trust degree to evaluate the trustworthiness of each Helper transmitter (Helper-Tx). Specifically, an edge controller calculates the reputation value of each Helper-Tx periodically using an additive-increase multiplicative-decrease algorithm by observing its jamming behavior. With the historical reputation values, the edge controller (EC) classifies a Helper-Tx into one of four trust categories and calculates its trust degree. Then, the EC selects the best Helper-Tx based on the trust category and trust degree. Lastly, we present numerical results to demonstrate the performance of our proposed jammer selection scheme. |
url |
http://dx.doi.org/10.1155/2021/6626355 |
work_keys_str_mv |
AT yingkunwen trustworthyjammerselectionwithtruthtellingforwirelesscooperativesystems AT taojing trustworthyjammerselectionwithtruthtellingforwirelesscooperativesystems AT qinghegao trustworthyjammerselectionwithtruthtellingforwirelesscooperativesystems |
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1714853073789124608 |