Method and apparatus of uplink interference suppression and cancellation for advanced wireless communication systems

US2016173152A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2016173152-A1
Application numberUS-201514968680-A
CountryUS
Kind codeA1
Filing dateDec 14, 2015
Priority dateDec 15, 2014
Publication dateJun 16, 2016
Grant date

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  1. Title

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  5. First independent claim

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Abstract

Official abstract text for this publication.

A base station includes a transceiver and processor. The transceiver receives an uplink signal from each of a plurality of user equipment. UEs comprise desired UEs each with a desired uplink signal and at least one interfering UE with an interfering uplink signal interfering with the received uplink signals. The processor identifies a set of interfering uplink signals from the at least one interfering UE. The set includes at least one interfering uplink signal. The at least one interfering uplink signal overlaps with at least one PRB of the desired uplink signal. The processor identifies one or more subsets of interfering uplink signals from the identified set of interfering uplink signals based on one or more metrics each of which is a function of parameters of the interfering uplink signals. The processor performs interference suppression or interference cancellation on at least one of the one or more identified subsets.

First claim

Opening claim text (preview).

What is claimed is: 1 . A base station comprising: a transceiver configured to receive an uplink signal from each of a plurality of user equipment (UEs), wherein the plurality of UEs comprises desired UEs each with a desired uplink signal and at least one interfering UE with an interfering uplink signal interfering with the received uplink signals; and at least one processor configured to: identify a set of interfering uplink signals from the at least one interfering UE, the set comprising at least one interfering uplink signal, wherein the at least one interfering uplink signal overlap with at least one PRB of the desired uplink signal; identify one or more subsets of interfering uplink signals from the identified set of interfering uplink signals based on one or more metrics each of which is a function of parameters of the interfering uplink signals; and perform interference suppression or interference cancellation on at least one of the one or more identified subsets. 2 . The base station of claim 1 , wherein the at least one processor is further configured to identify a priority over the one or more identified subsets based on a set of rules, and wherein the at least one processor configured to perform the interference suppression or the interference cancellation on the at least one of the one or more identified subsets comprises the at least one processor configured to perform the interference suppression or the interference cancellation on the at least one of the one or more identified subsets based on the priority. 3 . The base station of claim 1 , wherein the metrics include cross-correlation values calculated using the received uplink signals and estimated interfering signals corresponding to the identified set of interfering uplink signals. 4 . The base station of claim 1 , wherein the metrics include a log likelihood ratios (LLR) calculated using estimated interfering signal corresponding to each interfering uplink signal in the identified set of interfering uplink signals. 5 . The base station of claim 4 , wherein the at least one processor is further configured to: calculate the LLR based on channel estimation and a modulation order detection for each of the interfering uplink signals in the identified set of interfering uplink signals. 6 . The base station of claim 4 , wherein the at least one processor is further configured to: calculate a plurality of LLRs based on channel estimation and multiple modulation order detection hypothesis for each interfering uplink signal in the identified set of interfering uplink signals. 7 . The base station of claim 4 , wherein the at least one processor configured to identify the one or more identified subsets of the interfering uplink signals from the identified set based on the parameters of the interfering uplink signals comprises the at least one processor further configured to: select an interfering uplink signal, for a subset of the one or more subsets, with a maximum average LLR value. 8 . The base station of claim 4 , wherein the at least one processor configured to identify the one or more identified subsets of the interfering uplink signals from the identified set based on the parameters of the interfering uplink signals comprises the at least one processor further configured to: select at least one interfering uplink signal, for a subset of the one or more subsets, with a maximum average LLR value, wherein none of the at least one interfering uplink signal overlap. 9 . The base station of claim 4 , wherein the at least one processor configured to identify the one or more identified subsets of the interfering uplink signals from the identified set based on the parameters of the interfering uplink signals comprises the at least one processor further configured to: select at least one interfering uplink signal, for a subset of the one or more subsets, with a maximum average LLR value, wherein none of the at least one interfering uplink signal, of UEs from a same serving cell, overlap. 10 . The base station of claim 2 , wherein the priority is based on a total LLR of each of the one or more identified subsets. 11 . The base station of claim 2 , wherein the priority is based on a number of overlapping physical resource blocks in each of the one or more identified subsets. 12 . The base station of claim 2 , wherein the priority is based on a total LLR of overlapping physical resource blocks in each of the one or more identified subsets. 13 . A method comprising: receiving an uplink signal from each of a plurality of user equipment (UEs), wherein the plurality of UEs comprises desired UEs each with a desired uplink signal and at least one interfering UE with an interfering uplink signal interfering with the received uplink signals; and identifying a set of interfering uplink signals from the at least one interfering UE, the set comprising at least one interfering uplink signal, wherein the at least one interfering uplink signal overlap with at least one PRB of the desired uplink signal; identifying one or more subsets of interfering uplink signals from the identified set of interfering uplink signals based on parameters of the interfering uplink signals; and performing interference suppression or interference cancellation on at least one of the one or more identified subsets. 14 . The method of claim 13 , further comprising: identifying a priority over the one or more identified subsets based on a set of rules, and wherein performing the interference suppression or the interference cancellation on the at least one of the one or more identified subsets comprises performing the interference suppression or the interference cancellation on the at least one of the one or more identified subsets based on the priority. 15 . The method of claim 13 , wherein the metrics includes cross-correlation values calculated using the received uplink signals and estimated interfering signals corresponding to the identified set of interfering uplink signals. 16 . The method of claim 13 , wherein the metrics includes a log likelihood ratios (LLR) calculated using estimated interfering signal corresponding to each interfering uplink signal in the identified set of interfering uplink signals. 17 . The method of claim 16 , further comprising: calculating the LLR based on channel estimation and a modulation order detection for each of the interfering uplink signals in the identified set of interfering uplink signals. 18 . The method of claim 16 , further comprising: calculating a plurality of LLRs based on channel estimation and multiple modulation order detection hypothesis for each interfering uplink signal in the identified set of interfering uplink signals. 19 . The method of claim 16 , wherein identifying the one or more identified subsets of the interfering uplink signals from the identified set based on the parameters of the interfering uplink signals comprises: selecting an interfering uplink signal, for a subset of the one or more subsets, with a maximum average LLR value. 20 . The method of claim 16 , wherein identifying the one or more identified subsets of the interfering uplink signals from the identified set based on the parameters of the interfering uplink signals comprises: selecting at least one interfering uplink signal, for a subset of the one or more subsets, with a maximum average LLR value, wherein none of the at least one interfering uplink signal overlap.

Assignees

Inventors

Classifications

  • H04B1/1027Primary

    assessing signal quality or detecting noise/interference for the received signal · CPC title

  • Inter-base station aspects · CPC title

  • Out-of-cell user aspects · CPC title

  • at the receiver · CPC title

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Frequently asked questions

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What does patent US2016173152A1 cover?
A base station includes a transceiver and processor. The transceiver receives an uplink signal from each of a plurality of user equipment. UEs comprise desired UEs each with a desired uplink signal and at least one interfering UE with an interfering uplink signal interfering with the received uplink signals. The processor identifies a set of interfering uplink signals from the at least one inte…
Who is the assignee on this patent?
Samsung Electronics Co Ltd
What technology area does this patent fall under?
Primary CPC classification H04B1/1027. Mapped technology areas include Electricity.
When was this patent published?
Publication date Thu Jun 16 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 3 related publications on this page (citations in our corpus or others sharing the same primary CPC).