Effect of Node Mobility on MU-MIMO Transmissions in Mobile Ad Hoc Networks

In this paper, we investigate the expected outage probability and expected throughput of a multi-user multiple-input multiple-output (MU-MIMO) transmission in mobile ad hoc networks (MANET) in the presence of co-channel interference and unpredictable inter-beam interference. In order to achieve mult...

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Main Authors: Wenjian Zhang, Senlin Jiang
Format: Article
Language:English
Published: Hindawi-Wiley 2021-01-01
Series:Wireless Communications and Mobile Computing
Online Access:http://dx.doi.org/10.1155/2021/9954940
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spelling doaj-4879520a87dc44f5905349e91c7e91e22021-05-17T00:01:39ZengHindawi-WileyWireless Communications and Mobile Computing1530-86772021-01-01202110.1155/2021/9954940Effect of Node Mobility on MU-MIMO Transmissions in Mobile Ad Hoc NetworksWenjian Zhang0Senlin Jiang1Wuxi Institute of TechnologyWuxi Institute of TechnologyIn this paper, we investigate the expected outage probability and expected throughput of a multi-user multiple-input multiple-output (MU-MIMO) transmission in mobile ad hoc networks (MANET) in the presence of co-channel interference and unpredictable inter-beam interference. In order to achieve multi-user diversity gain, the receiving nodes are required to report measured channel information to the transmitting node. During the time gap between channel measurement and data transmission, the channel may change with the location of moving nodes. The unpredictable behavior may cause a mismatch between the weight of beams and the instantaneous channel and the inter-beam interference in the data transmission phase. In order to obtain the closed form expected outage probability, we categorize the behavior of nodes according to whether the inter-beam interference exists or not and the number of received interference beams. The probability of each category and the closed form outage probability of an instantaneous MU-MIMO transmission of each category are derived. Additionally, the expected throughput of an MU-MIMO transmission which changes with the number of receiving nodes is obtained, and the optimal value of receiving nodes to maximize the expected throughput is discussed. Numeric results show the unpredictable inter-beam interference degrades the outage probability performance. Reducing the duration of the time gap could improve the expected outage probability and expected throughput.http://dx.doi.org/10.1155/2021/9954940
collection DOAJ
language English
format Article
sources DOAJ
author Wenjian Zhang
Senlin Jiang
spellingShingle Wenjian Zhang
Senlin Jiang
Effect of Node Mobility on MU-MIMO Transmissions in Mobile Ad Hoc Networks
Wireless Communications and Mobile Computing
author_facet Wenjian Zhang
Senlin Jiang
author_sort Wenjian Zhang
title Effect of Node Mobility on MU-MIMO Transmissions in Mobile Ad Hoc Networks
title_short Effect of Node Mobility on MU-MIMO Transmissions in Mobile Ad Hoc Networks
title_full Effect of Node Mobility on MU-MIMO Transmissions in Mobile Ad Hoc Networks
title_fullStr Effect of Node Mobility on MU-MIMO Transmissions in Mobile Ad Hoc Networks
title_full_unstemmed Effect of Node Mobility on MU-MIMO Transmissions in Mobile Ad Hoc Networks
title_sort effect of node mobility on mu-mimo transmissions in mobile ad hoc networks
publisher Hindawi-Wiley
series Wireless Communications and Mobile Computing
issn 1530-8677
publishDate 2021-01-01
description In this paper, we investigate the expected outage probability and expected throughput of a multi-user multiple-input multiple-output (MU-MIMO) transmission in mobile ad hoc networks (MANET) in the presence of co-channel interference and unpredictable inter-beam interference. In order to achieve multi-user diversity gain, the receiving nodes are required to report measured channel information to the transmitting node. During the time gap between channel measurement and data transmission, the channel may change with the location of moving nodes. The unpredictable behavior may cause a mismatch between the weight of beams and the instantaneous channel and the inter-beam interference in the data transmission phase. In order to obtain the closed form expected outage probability, we categorize the behavior of nodes according to whether the inter-beam interference exists or not and the number of received interference beams. The probability of each category and the closed form outage probability of an instantaneous MU-MIMO transmission of each category are derived. Additionally, the expected throughput of an MU-MIMO transmission which changes with the number of receiving nodes is obtained, and the optimal value of receiving nodes to maximize the expected throughput is discussed. Numeric results show the unpredictable inter-beam interference degrades the outage probability performance. Reducing the duration of the time gap could improve the expected outage probability and expected throughput.
url http://dx.doi.org/10.1155/2021/9954940
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