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Doc.: IEEE 802.11-14/1226r0 Submission Sep 2014 Slide 1 SLS Box 1&2 Calibration Results Date: 2014-09-13 Authors: Russell Huang (MediaTek)

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Presentation on theme: "Doc.: IEEE 802.11-14/1226r0 Submission Sep 2014 Slide 1 SLS Box 1&2 Calibration Results Date: 2014-09-13 Authors: Russell Huang (MediaTek)"— Presentation transcript:

1 doc.: IEEE 802.11-14/1226r0 Submission Sep 2014 Slide 1 SLS Box 1&2 Calibration Results Date: 2014-09-13 Authors: Russell Huang (MediaTek)

2 doc.: IEEE 802.11-14/1226r0 Submission Abstract Provide SLS calibration result for Box 1&2 tests in 4 scenarios. Help verify the test results of other calibrating companies. Prepare for further calibration tests. Sep 2014 Slide 2Russell Huang (MediaTek)

3 doc.: IEEE 802.11-14/1226r0 Submission Overview Background –Evaluation methodology has been defined in [4]. –4 test scenarios have been specified in [3]. Some modifications of calibration setting had been proposed in [2]. –4 companies provided box1 & 2 calibration results in July meeting [1]. –Some companies provide further results [5]. PHY abstraction calibrated already. Simulation tool: NS3 (with Channel D and Umi channel generated by Matlab) Our results: –Following documents [3], [2] and [4]. –Box 1 & 2 calibration results presented in this document. –Curves compared with the ones from [1] are available. –Some curves are not smooth enough due to short of running time. Slide 3Russell Huang (MediaTek) Sep 2014

4 doc.: IEEE 802.11-14/1226r0 Submission Test Cases Run Box 1 –T1: Interference-free –T2: DL only –T3: UL only –T4: 50%UL + 50%DL, outputting SINR for UL and DL –T5: all active, outputting SINR for UL and DL Box2 –T1: Interference-free, outputting Per Tone SNR and Effective SNR –T2: DL only, outputting Per Tone SINR and Effective SINR –T3: CCA on, selecting Tx according to specified algorithm, outputting Per Tone SINR and Effective SINR for UL and DL. Sep 2014 Slide 4Russell Huang(MediaTek)

5 doc.: IEEE 802.11-14/1226r0 Submission Box 1 Apartment Scenario Sep 2014 Slide 5Russell Huang(MediaTek)

6 doc.: IEEE 802.11-14/1226r0 Submission Box 1 Enterprise Scenario Sep 2014 Slide 6Russell Huang(MediaTek)

7 doc.: IEEE 802.11-14/1226r0 Submission Box 1 Indoor Scenario Sep 2014 Slide 7Russell Huang(MediaTek)

8 doc.: IEEE 802.11-14/1226r0 Submission Box 1 Outdoor Scenario Sep 2014 Slide 8Russell Huang(MediaTek)

9 doc.: IEEE 802.11-14/1226r0 Submission Box 2 Apartment Scenario Sep 2014 Slide 9Russell Huang(MediaTek)

10 doc.: IEEE 802.11-14/1226r0 Submission Box 2 Enterprise Scenario Sep 2014 Slide 10Russell Huang(MediaTek)

11 doc.: IEEE 802.11-14/1226r0 Submission Box 2 Indoor Scenario Sep 2014 Slide 11Russell Huang(MediaTek)

12 doc.: IEEE 802.11-14/1226r0 Submission Box 2 Outdoor Scenario Sep 2014 Slide 12Russell Huang(MediaTek)

13 doc.: IEEE 802.11-14/1226r0 Submission Some Notes on Calibration Three 80MHz 5G channels are used for residential scenario (SS1). Four 80MHz 5G channels are used for Enterprise scenarios (SS2). A minimum 10m distance from APs for STA dropping is applied for outdoor scenario (SS4). STA num, SS1: 10 per apartment, SS2: 4 per cubicle, SS3: 30 per BSS, SS4: 50 per BSS Association is assumed to be static. CCA level in Box 2 Test 3 is -70. STAs are dropped within the big hexagon that covers all the cells in SS3 and SS4. 1000+ entries can give you smooth curves. Sep 2014 Slide 13Russell Huang(MediaTek)

14 doc.: IEEE 802.11-14/1226r0 Submission Summary All curves of box1 and box2 are present. Our curve are either coincide with the result in [1] or sitting in between the curves in [1] Sep 2014 Slide 14Russell Huang(MediaTek)

15 doc.: IEEE 802.11-14/1226r0 Submission Reference [1]. Doc. IEEE 802.11-14/0800r3 11ax Box1&2 calibration result [2]. Doc. IEEE 802.11-14/0621r3 / Doc. IEEE 802.11-14/0980r2 ax Simulation scenarios [3]. Doc. IEEE 802.11-14/0799r2 Modifications to simulation scenarios [4]. Doc. IEEE 802.11-14/0571r3 11ax evaluation methodology [5]. Doc. IEEE 802.11-14/0871r1 Further calibration results toward integrated SLS Sep 2014 Slide 15Russell Huang (MediaTek)


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