IEEE 802.15-12-0307-00-004N Submission Raymond Krasinski, PhilipsSlide 1 Project: IEEE P802.15 Working Group for Wireless Personal Area Networks (WPANs)

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IEEE N Submission Raymond Krasinski, PhilipsSlide 1 Project: IEEE P Working Group for Wireless Personal Area Networks (WPANs) Submission Title:Interference Issue in IEEE n Standard Date Submitted:July 12, 2012 Source: Ning Li, TuShu, BUPT ; Liang Li, Vinno; Suite 202, Building D, No.2 Xinxi Lu, Beijing, China, Voice: , FAX: , Abstract: Opening report for TG4n(MBAN) Task Group Purpose: Outline accomplishments from the March 2012 meeting and planned tasks for this meeting. Notice:This document has been prepared to assist the IEEE P It is offered as a basis for discussion and is not binding on the contributing individual(s) or organization(s). The material in this document is subject to change in form and content after further study. The contributor(s) reserve(s) the right to add, amend or withdraw material contained herein. Release:The contributor acknowledges and accepts that this contribution becomes the property of IEEE and may be made publicly available by P July 2012

IEEE N Submission Interference Sources on 4n Frequency Bands Fig 1. Interference source in 4n band The IEEE n frequency band are : 、 、 MHz.Fig1 shows interference sources in 4n band. Slide 1

IEEE N Submission Slide 2 The Television Interference on MHz Band There are 2 Television Standard in China, one is mandatory stand and the other is industry standard: ● DTMB (GB , Mandatory Standard) ● CMMB (GYT , Industry Standard) Those standards define 3 Television Channels in MHz and every channel has a bandwidth of 8MHz : ● DS-25: MHz ● DS-25: MHz ● DS-25: MHz

IEEE N Submission Fig 2. The PSD of transmit signal of DTMB StandardFig 3. The PSD of transmit signal of CMMB Standard Fig 2 and Fig 3 show the PSD of transmit signal of DTMB and CMMB standards. We choose CMMB signal as interference signal in this research. The PSD of Digital Television Signal Slide 3

IEEE N Submission Interference Scene and Path Loss Model First, we set the interference scene as Fig 4 shows. Then, we select the Path Loss Model for CMMB signal(PL-cmmb ) and 4n signal (PL-4n). Fig 4. Interference Scene Slide 4

IEEE N Submission ● For PL-cmmb,we choose the ITU-Hata-Okumura Model. As follow: is the Path Loss in dB, it’s not contain Building Penetration Loss. is the center carrier frequency.we choose DS-26, so. is the efficient height of antenna of CMMB station, we set. is the efficient height of antenna of 4n receiver, we set it value accord to different floor and assume 3m per floor. is the distance from CMMB BaseStation to 4n receiver. In Fig 4,it’s d2. is antenna correction factor, we choose : is distance correction factor when transmit distance over 20km.We set the longest transmit distance is 15km,so. is urban building density correction factor, as follow : and we choose. Considering the ITU-R BT and ITU-R P , We set Building Penetration Loss is 11dB.So the final PL for CMMB signal is : Slide 5

IEEE N Submission ● For PL-4n, the document of Coexistence analysis of IEEE with other IEEE standards and proposed standards(IEEE P ) define a PL model in 900MHz for indoor environment. As follow: d is the distance between 4n transmitter and receiver, we assume the d<=8m. In Fig 4, d1 represent d. We will computing SIR beyond d=1,3,5,7m respectively. Slide 6

IEEE N Submission The SIR Result We computing SIR using MATLAB under different condition. We assume the transmit power of CMMB signal is 1000W(60dBm) and the 4n is 0dBm.The result as follow: Slide 7

IEEE N Submission Conclusion From the SIR result,we got following conclusion in MHz: (1) 、 There exist a region around the digital television basestation that low transmitter power device, just like IEEE n, can not work normally. (2) 、 The range of the region is depend the height of 4n receiver. The range will lager if the 4n receiver is higher. Slide 8