{"@type": "dcat:Dataset", "accessLevel": "public", "bureauCode": ["006:55"], "contactPoint": {"fn": "Anirudha Sahoo", "hasEmail": "mailto:anirudha.sahoo@nist.gov"}, "description": "The General Authorized Access (GAA) users in the Citizens Broadband Radio Service (CBRS) band are the lowest priority users. They must cooperate with each other to minimize mutual interference and increase spectrum utilization. The Wireless Innovation Forum (WInnForum), a standardization body, has recommended three schemes to address this GAA-GAA coexistence issue.  This dataset contains the performance data obtained from simulation experiments run to evaluate the performance of the WInnForum scheme called \"Approach 3\".  Various performance graphs using this dataset has been published in the publication titled \"GAA-GAA Coexistence in the CBRS Band: Performance Evaluation of Approach 3\" which appeared in the IEEE Conference on Local Computer Networks (LCN) 2020.", "distribution": [{"accessURL": "https://doi.org/10.18434/mds2-2346", "title": "DOI Access for GAA-GAA Coexistence in the CBRS Band: Performance Evaluation of Approach 3"}, {"description": "Distribution of Inter-CxG Edge Weights of all CBSDs in CxG_0 when deployment density = 10 CBSD/square km, propagation model=ITM and number of CxGs=4", "downloadURL": "https://data.nist.gov/od/ds/mds2-2346/figure_10.txt", "format": "ASCII text", "mediaType": "text/plain", "title": "distribution of Inter-CxG Edge Weights"}, {"description": "This data shows the variation of Average Maximum Allocable Bandwidth of CBSDs in a CxG (AMABCC) in San Diego and Virginia Beach as deployment density changes (for both ITM and Hybrid propagation models) when number of Coexistence Groups = 3", "downloadURL": "https://data.nist.gov/od/ds/mds2-2346/figure_4.txt", "format": "ASCII text", "mediaType": "text/plain", "title": "Average Maximum Allocable Bandwidth of CBSDs in a CxG vs Deployment Density"}, {"description": "This data shows the variation of Average Maximum Allocable Bandwidth of CBSDs in a CxG (AMABCC) in San Diego and Virginia Beach as deployment density changes (for both ITM and Hybrid propagation models) when number of Coexistence Groups = 4", "downloadURL": "https://data.nist.gov/od/ds/mds2-2346/figure_5.txt", "format": "ASCII text", "mediaType": "text/plain", "title": "Average Maximum Allocable Bandwidth of CBSDs in a CxG vs Deployment Density"}, {"description": "This data shows the variation of coverage ratio in San Diego and Virginia Beach as deployment density changes (for both ITM and Hybrid propagation models)", "downloadURL": "https://data.nist.gov/od/ds/mds2-2346/figure_2.txt", "format": "this file is in ASCII text format", "mediaType": "text/plain", "title": "coverage ratio vs deployment density"}, {"description": "This data shows the variation of coverage ratio in San Diego and Virginia Beach as deployment density changes (for both ITM and Hybrid propagation models) when number of Coexistence Groups = 4", "downloadURL": "https://data.nist.gov/od/ds/mds2-2346/figure_3.txt", "format": "ASCII text", "mediaType": "text/plain", "title": "Coverage Ratio vs Deployment Density"}, {"description": "variation of Average Aggregate Interference per inter-CxG Interfered Grid of a CxG (AAICIGC) in San Diego and Virginia Beach (for both ITM and Hybrid models) as deployment density varies when the number of CxGs = 3", "downloadURL": "https://data.nist.gov/od/ds/mds2-2346/figure_8.txt", "format": "ASCII text", "mediaType": "text/plain", "title": "Average Aggregate Interference per inter-CxG Interfered Grid of a CxG (AAICIGC)  vs Deployment Density"}, {"description": "variation of Average Aggregate Interference per inter-CxG Interfered Grid of a CxG (AAICIGC) in San Diego and Virginia Beach (for both ITM and Hybrid models) as deployment density varies when the number of CxGs = 4", "downloadURL": "https://data.nist.gov/od/ds/mds2-2346/figure_9.txt", "format": "ASCII text", "mediaType": "text/plain", "title": "Average Aggregate Interference per inter-CxG Interfered Grid of a CxG (AAICIGC) vs Deployment Density"}, {"description": "variation of Ratio of inter-CxG Interfered Area of a CxG (RCIAC) in San Diego and Virginia Beach (for both ITM and Hybrid models) as deployment density changes when the number of CxGs=3", "downloadURL": "https://data.nist.gov/od/ds/mds2-2346/figure_6.txt", "format": "ASCII text", "mediaType": "text/plain", "title": "Ratio of inter-CxG Interfered Area of a CxG (RCIAC) vs Deployment Density"}, {"description": "variation of Ratio of inter-CxG Interfered Area of a CxG (RCIAC) in San Diego and Virginia Beach (for both ITM and Hybrid models) as deployment density changes when the number of CxGs=4", "downloadURL": "https://data.nist.gov/od/ds/mds2-2346/figure_7.txt", "format": "ASCII text", "mediaType": "text/plain", "title": "Ratio of inter-CxG Interfered Area of a CxG (RCIAC) vs Deployment Density"}, {"downloadURL": "https://data.nist.gov/od/ds/mds2-2346/figure_10.txt.sha256", "mediaType": "text/plain", "title": "SHA256 File for distribution of Inter-CxG Edge Weights"}, {"downloadURL": "https://data.nist.gov/od/ds/mds2-2346/figure_2.txt.sha256", "mediaType": "text/plain", "title": "SHA256 File for coverage ratio vs deployment density"}, {"downloadURL": "https://data.nist.gov/od/ds/mds2-2346/figure_3.txt.sha256", "mediaType": "text/plain", "title": "SHA256 File for Coverage Ratio vs Deployment Density"}, {"downloadURL": "https://data.nist.gov/od/ds/mds2-2346/figure_4.txt.sha256", "mediaType": "text/plain", "title": "SHA256 File for Average Maximum Allocable Bandwidth of CBSDs in a CxG vs Deployment Density"}, {"downloadURL": "https://data.nist.gov/od/ds/mds2-2346/figure_5.txt.sha256", "mediaType": "text/plain", "title": "SHA256 File for Average Maximum Allocable Bandwidth of CBSDs in a CxG vs Deployment Density"}, {"downloadURL": "https://data.nist.gov/od/ds/mds2-2346/figure_6.txt.sha256", "mediaType": "text/plain", "title": "SHA256 File for Ratio of inter-CxG Interfered Area of a CxG (RCIAC) vs Deployment Density"}, {"downloadURL": "https://data.nist.gov/od/ds/mds2-2346/figure_7.txt.sha256", "mediaType": "text/plain", "title": "SHA256 File for Ratio of inter-CxG Interfered Area of a CxG (RCIAC) vs Deployment Density"}, {"downloadURL": "https://data.nist.gov/od/ds/mds2-2346/figure_8.txt.sha256", "mediaType": "text/plain", "title": "SHA256 File for Average Aggregate Interference per inter-CxG Interfered Grid of a CxG (AAICIGC)  vs Deployment Density"}, {"downloadURL": "https://data.nist.gov/od/ds/mds2-2346/figure_9.txt.sha256", "mediaType": "text/plain", "title": "SHA256 File for Average Aggregate Interference per inter-CxG Interfered Grid of a CxG (AAICIGC) vs Deployment Density"}], "identifier": "ark:/88434/mds2-2346", "issued": "2021-01-05", "keyword": ["3.5 GHz", "Approach 3", "CBRS", "Coexistence", "GAA", "WInnForum"], "landingPage": "https://data.nist.gov/od/id/mds2-2346", "language": ["en"], "license": "https://www.nist.gov/open/license", "modified": "2020-05-15 00:00:00", "programCode": ["006:045"], "publisher": {"@type": "org:Organization", "name": "National Institute of Standards and Technology"}, "theme": ["Advanced Communications:Wireless (RF)", "Information Technology:Networking"], "title": "GAA-GAA Coexistence in the CBRS Band: Performance Evaluation of Approach 3"}