Joint Channel Allocation and Power Control for Device-to-Device Communication Underlaying Downlink Cellular Networks: Clique-Based Approaches
碩士 === 國立清華大學 === 資訊工程學系所 === 105 === Device-to-device (D2D) communication underlying cellular networks has been proven to increase system throughput and to achieve higher spectral efficiency in future fifth generation wireless networks. However, resource sharing under D2D communications may cause s...
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ndltd-TW-105NTHU53921422019-05-16T00:00:23Z http://ndltd.ncl.edu.tw/handle/qqmgh9 Joint Channel Allocation and Power Control for Device-to-Device Communication Underlaying Downlink Cellular Networks: Clique-Based Approaches 在下載蜂巢式網路中使用分團方法對D2D通訊裝置做資源分配 Lin, Hung-Chien 林宏鍵 碩士 國立清華大學 資訊工程學系所 105 Device-to-device (D2D) communication underlying cellular networks has been proven to increase system throughput and to achieve higher spectral efficiency in future fifth generation wireless networks. However, resource sharing under D2D communications may cause serious mutual interferences among DUE pairs and cellular users. In this thesis, we formulate the downlink resource allocation problem and propose joint channel and power allocation algorithms to manage the resource and achieve a maximum sum rate. Using the maximum clique and the minimum clique cover method respectively in the proposed channel allocation algorithms, we make as many DUE pairs reusing the channel pre-allocated to cellular users as possible. After the channel is assigned to DUE pairs, we determine the transmitted power for both the base station and the transmitters of DUE pairs according to the feasible power region. Meanwhile, the signal-to-interference-plus-noise requirements for both cellular users and DUE pairs are guaranteed. Simulation results show that our proposed algorithms not only is superior in terms of the number of serving DUE pairs, but also maintain the higher system sum rate, than the compared method. Kao, Jung-Chun 高榮駿 2017 學位論文 ; thesis 63 en_US |
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碩士 === 國立清華大學 === 資訊工程學系所 === 105 === Device-to-device (D2D) communication underlying cellular networks has been proven to increase system throughput and to achieve higher spectral efficiency in future fifth generation wireless networks. However, resource sharing under D2D communications may cause serious mutual interferences among DUE pairs and cellular users. In this thesis, we formulate the downlink resource allocation problem and propose joint channel and power allocation algorithms to manage the resource and achieve a maximum sum rate.
Using the maximum clique and the minimum clique cover method respectively in the proposed channel allocation algorithms, we make as many DUE pairs reusing the channel pre-allocated to cellular users as possible. After the channel is assigned to DUE pairs, we determine the transmitted power for both the base station and the transmitters of DUE pairs according to the feasible power region. Meanwhile, the signal-to-interference-plus-noise requirements for both cellular users and DUE pairs are guaranteed.
Simulation results show that our proposed algorithms not only is superior in terms of the number of serving DUE pairs, but also maintain the higher system sum rate, than the compared method.
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author2 |
Kao, Jung-Chun |
author_facet |
Kao, Jung-Chun Lin, Hung-Chien 林宏鍵 |
author |
Lin, Hung-Chien 林宏鍵 |
spellingShingle |
Lin, Hung-Chien 林宏鍵 Joint Channel Allocation and Power Control for Device-to-Device Communication Underlaying Downlink Cellular Networks: Clique-Based Approaches |
author_sort |
Lin, Hung-Chien |
title |
Joint Channel Allocation and Power Control for Device-to-Device Communication Underlaying Downlink Cellular Networks: Clique-Based Approaches |
title_short |
Joint Channel Allocation and Power Control for Device-to-Device Communication Underlaying Downlink Cellular Networks: Clique-Based Approaches |
title_full |
Joint Channel Allocation and Power Control for Device-to-Device Communication Underlaying Downlink Cellular Networks: Clique-Based Approaches |
title_fullStr |
Joint Channel Allocation and Power Control for Device-to-Device Communication Underlaying Downlink Cellular Networks: Clique-Based Approaches |
title_full_unstemmed |
Joint Channel Allocation and Power Control for Device-to-Device Communication Underlaying Downlink Cellular Networks: Clique-Based Approaches |
title_sort |
joint channel allocation and power control for device-to-device communication underlaying downlink cellular networks: clique-based approaches |
publishDate |
2017 |
url |
http://ndltd.ncl.edu.tw/handle/qqmgh9 |
work_keys_str_mv |
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