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Seminar: Majid Khormuji, Huawei Sweden

Tid: Onsdag 24 februari 2016 kl 17:00 - 19:00 2016-02-24T17:00:00 2016-02-24T19:00:00

Kungliga Tekniska högskolan
VT 2016

Plats: Q2

Aktivitet: Seminarium

Studentgrupper: TIKTM_1, TIKTM_2, TIVNM_DMTE_1, TIVNM_DMTE_2, TIVNM_ITAK_2, TTLSM_1, TTLSM_2

Info: Title: Non-Orthogonal Multiple-Access for 5G Systems Abstract: In current LTE systems, multiple-access is generally performed by allocating orthogonal sets of time-frequency resources to different users. This way, inter-user interference is reduced and the task of separating users' signals at the receiver is made easier. However, it is well-known that orthogonal transmission schemes do not achieve the capacity of multiuser channels. In downlink transmission, multiple access schemes performing simultaneous transmission to multiple users, like those based on the principle of superposition coding, can be employed in order to achieve increased data rates. In this talk, we present and discuss some potential non-orthogonal schemes for 5G systems.
Schemahandläggare skapade händelsen 23 september 2015

ändrade rättigheterna 3 november 2015

Kan därmed läsas av alla och ändras av lärare.
Schemahandläggare tog bort händelsen 13 november 2015
Lärare Lars Kildehøj redigerade 21 december 2015

Seminarium: Majid Khormuji, Huawei Sweden

Lärare Lars Kildehøj redigerade 13 januari 2016

Seminarium: Majid Khormuji, Huawei Sweden

Lärare Lars Kildehøj redigerade 24 februari 2016

Title: Non-Orthogonal Multiple-Access for 5G Systems Abstract: In current LTE systems, multiple-access is generally performed by allocating orthogonal sets of time-frequency resources to different users. This way, inter-user interference is reduced and the task of separating users' signals at the receiver is made easier. However, it is well-known that orthogonal transmission schemes do not achieve the capacity of multiuser channels. In downlink transmission, multiple access schemes performing simultaneous transmission to multiple users, like those based on the principle of superposition coding, can be employed in order to achieve increased data rates. In this talk, we present and discuss some potential non-orthogonal schemes for 5G systems.

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Senast ändrad 2016-02-24 09:42

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