Resource Allocation Algorithms Supporting Coexistence of Cognitive Vehicular and IEEE 802.22 Networks
Many studies show that the dedicated short range communication (DSRC) band is insufficient to carry increasing wireless traffic demands in vehicular networks. The release of TV white space band by the Federal Communications Commission (FCC) for cognitive access provides additional bandwidth to solve...
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| Veröffentlicht in: | IEEE transactions on wireless communications Jg. 16; H. 2; S. 1066 - 1079 |
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| Sprache: | Englisch |
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IEEE
01.02.2017
The Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
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| Abstract | Many studies show that the dedicated short range communication (DSRC) band is insufficient to carry increasing wireless traffic demands in vehicular networks. The release of TV white space band by the Federal Communications Commission (FCC) for cognitive access provides additional bandwidth to solve the DSRC spectrum scarcity problem. However, FCC requires portable devices to use significantly lower transmitting power than fixed devices, which creates a challenging coexistence environment for portable (e.g., vehicular) and fixed (e.g., IEEE 802.22) networks. In this paper, we address the coexistence problem between a vehicular and an 802.22 network via resource allocation. We first formulate the coexistence problem as a mixed-integer nonlinear programming (MINLP) problem, to which three algorithms are developed. The first algorithm converts the MINLP into a convex program and obtains a near-optimal solution to the initial MINLP. In the other two algorithms, we first convert the MINLP into an integer programming (IP) problem. Then, we solve the linear program relaxation of the IP and obtain a fractional solution. Thereafter, two rounding algorithms are developed to round the fractional solution based on column-sparse packing and dependent rounding techniques, respectively. Finally, we compare the performance of the proposed algorithms with an optimal MINLP solver through numerical examples. |
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| AbstractList | Many studies show that the dedicated short range communication (DSRC) band is insufficient to carry increasing wireless traffic demands in vehicular networks. The release of TV white space band by the Federal Communications Commission (FCC) for cognitive access provides additional bandwidth to solve the DSRC spectrum scarcity problem. However, FCC requires portable devices to use significantly lower transmitting power than fixed devices, which creates a challenging coexistence environment for portable (e.g., vehicular) and fixed (e.g., IEEE 802.22) networks. In this paper, we address the coexistence problem between a vehicular and an 802.22 network via resource allocation. We first formulate the coexistence problem as a mixed-integer nonlinear programming (MINLP) problem, to which three algorithms are developed. The first algorithm converts the MINLP into a convex program and obtains a near-optimal solution to the initial MINLP. In the other two algorithms, we first convert the MINLP into an integer programming (IP) problem. Then, we solve the linear program relaxation of the IP and obtain a fractional solution. Thereafter, two rounding algorithms are developed to round the fractional solution based on column-sparse packing and dependent rounding techniques, respectively. Finally, we compare the performance of the proposed algorithms with an optimal MINLP solver through numerical examples. |
| Author | You Han Altintas, Onur Kremo, Haris Ekici, Eylem |
| Author_xml | – sequence: 1 surname: You Han fullname: You Han email: han.639@osu.edu organization: Dept. of Electr. & Comput. Eng., Ohio State Univ., Columbus, OH, USA – sequence: 2 givenname: Eylem surname: Ekici fullname: Ekici, Eylem email: ekici@ece.osu.edu organization: Dept. of Electr. & Comput. Eng., Ohio State Univ., Columbus, OH, USA – sequence: 3 givenname: Haris surname: Kremo fullname: Kremo, Haris email: kremoh@tcd.ie organization: Toyota InfoTechnology Center, Co., Ltd., Tokyo, Japan – sequence: 4 givenname: Onur surname: Altintas fullname: Altintas, Onur email: onur@us.toyota-itc.com organization: Toyota InfoTechnology Center, USA, Inc., Mountain View, CA, USA |
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| CitedBy_id | crossref_primary_10_1016_j_comnet_2020_107126 crossref_primary_10_1109_TCCN_2022_3173671 crossref_primary_10_1109_TVT_2018_2855683 crossref_primary_10_3390_telecom1030012 crossref_primary_10_1049_cmu2_12178 crossref_primary_10_1109_TMC_2019_2939803 crossref_primary_10_1109_ACCESS_2020_2997936 crossref_primary_10_3390_s20216402 crossref_primary_10_1109_JIOT_2018_2872013 crossref_primary_10_1016_j_phycom_2019_100760 crossref_primary_10_1109_TVT_2018_2883156 crossref_primary_10_1016_j_vehcom_2017_05_004 crossref_primary_10_1007_s11276_017_1537_7 crossref_primary_10_1109_ACCESS_2019_2899111 crossref_primary_10_1109_TCCN_2019_2930594 crossref_primary_10_1109_ACCESS_2018_2879988 crossref_primary_10_1109_TVT_2024_3481300 crossref_primary_10_1109_TCOMM_2018_2885999 crossref_primary_10_1109_TMC_2023_3342102 crossref_primary_10_1007_s11235_025_01310_1 |
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| SubjectTerms | Algorithms channel allocation Cognitive vehicular networks FCC IEEE 802.22 Standard Integer programming IP (Internet Protocol) linear programming Mixed integer Networks Nonlinear programming Portable equipment Power control Resource allocation Resource management Rounding submodular set function Vehicles Wireless communication |
| Title | Resource Allocation Algorithms Supporting Coexistence of Cognitive Vehicular and IEEE 802.22 Networks |
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