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1 Title: Performance of Default Parameters for 1xEV-DO RTCMAC Source: Christopher Lott, QUALCOMM Incorporated 858-651-4393, clott@qualcomm.com Date: Februrary 9, 2004 Recommendation: FYI Notice QUALCOMM Incorporated grants a free, irrevocable license to 3GPP2 and its Organization Partners to incorporate text or other copyrightable material contained in the contribution and any modifications thereof in the creation of 3GPP2 publications; to copyright and sell in Organizational Partner’s name any Organizational Partner’s standards publication even though it may include portions of the contribution; and at the Organization Partner’s sole discretion to permit others to reproduce in whole or in part such contributions or the resulting Organizational Partner’s standards publication. QUALCOMM Incorporated is also willing to grant licenses under such contributor copyrights to third parties on reasonable, non- discriminatory terms and conditions for purpose of practicing an Organizational Partner’s standard which incorporates this contribution. This document has been prepared by QUALCOMM Incorporated to assist the development of specifications by 3GPP2. It is proposed to the Committee as a basis for discussion and is not to be construed as a binding proposal on QUALCOMM Incorporated. QUALCOMM Incorporated specifically reserves the right to amend or modify the material contained herein and nothing herein shall be construed as conferring or offering licenses or rights with respect to any intellectual property of QUALCOMM Incorporated other than provided in the copyright statement above. C25-20040209-xxxSeoul
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2 Performance of Default Parameters Outline Present performance data from simulation using the default parameters from the baseline document C00-20040209-018 DO Evaluation Methodology RTCMAC Subtype 2 and Subtype 3 Full buffer and bursty source Single and 57-sector
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3 Full Buffer Example Single and 57-Sector 8 and 16 AT’s Full Buffer Sector loaded, so FRAB is high and gu/gd give stable operation Standard fairness (no rate shaping based on FLSinr)
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4 RTCMAC Subtype 2 T2P Allocation 8 AT’s 1 Sector DV Channel Mix ROT Threshold 5.2dB 16-slot RAB Rate Allocation
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5 RTCMAC Subtype 2 T2P Allocation 16 AT’s 1 Sector DV Channel Mix ROT Threshold 5.2dB 16-slot RAB Rate Allocation
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6 RTCMAC Subtype 3 T2P Allocation 8 AT’s 1 Sector DV Channel Mix ROT Threshold 5.8dB 1-slot RAB Mean Rate
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7 RTCMAC Subtype 3 T2P Allocation 16 AT’s 1 Sector DV Channel Mix ROT Threshold 5.8dB 1-slot RAB Mean Rate
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8 RTCMAC Subtype 2 and 3 Rise Tail 8 and 16 AT’s 1 Sector DV Channel Mix ROT Threshold 5.2 and 5.8 dB 16-slot RAB
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9 RTCMAC Subtype 2 and 3 Rise Tail 8 and 16 AT’s 57 Sector DV Channel Mix ROT Threshold 5.2 and 5.8 dB 16-slot RAB
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10 Bursty Arrival Example 1 Sector 1 AT 60 Kbytes arrive every 2700 slots Sector unloaded, so FRAB is low and gu ramping is rapid
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11 RTCMAC Subtype 2 T2P Allocation 1 AT 1 Sector Model A ROT Threshold 5.2dB Mean Rate
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12 RTCMAC Subtype 3 T2P Allocation 1 AT 1 Sector Model A ROT Threshold 7dB Mean Rate
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