IP Library Patent Application 15150991
Patent Application
App. No. 15/150,991

Use of Different Precoders for Superposed Signals in Downlink Multiuser Superposition Transmission

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Quick Facts
Patent No.
US None
App. No.
15/150,991
Abstract

A method of performing downlink multiuser superposition transmission (MUST) when different precoders are applied to superposed signals is proposed. For demodulation reference signal (DM-RS) transmission mode, the near-user can estimate the far-user's channel by means of separate DM-RS symbols. For common reference signal (CRS) transmission mode, the near-user can blindly detect code far-user's precoder that is not signaled to the near-user. As a result, even the downlink control information (DCI) format is designed for the situation using the same precoder for superposed signals, the MUST scheme works and the near-user receiver can separate the superposed signal for the far-user.

Claims (28)

1 . A method comprising:

receiving configuration information from a serving base station by a first user equipment (UE) for downlink multiuser superposition transmission (MUST) in a wireless communication network;

measuring reference signals from the base station by the first UE;

receiving a first signal scheduled to the first UE and a second superposed signal scheduled to a second UE over an allocated time-frequency radio resource for MUST, wherein the first signal is applied with a first precoder and the second signal is applied with a second precoder; and

performing interference cancellation on the second superposed signal using the reference signals and thereby decoding the first signal.

2 . The method of claim 1 , wherein the reference signals comprise a first demodulation reference signal (DM-RS) configured to the first UE and a second DM-RS configured to the second UE.

3 . The method of claim 2 , wherein the first and second DM-RS are applied with the first and the second precoders, respectively.

4 . The method of claim 2 , wherein the first and the second DM-RS are applied with power splitting factors between the first UE and the second UE for MUST.

5 . The method of claim 2 , wherein the first DM-RS is applied with a power boosting factor to enhance a channel estimation for the first UE.

6 . The method of claim 2 , wherein the first UE estimates an effective channel response matrix of the second UE based on the second DM-RS without detecting the second precoder.

7 . The method of claim 1 , wherein the reference signals comprise a common reference signal (CRS) configured to the first UE and the second UE.

8 . The method of claim 7 , wherein the configuration information includes the first precoder but does not include the second precoder.

9 . The method of claim 7 , wherein the first UE estimates a channel response matrix of the second UE based on the CRS, and wherein the first UE blindly detects the second precoder.

10 . The method of claim 9 , wherein the first UE determines whether a blindly detected precoder is accurate based on addition information including a received power ratio between the first signal and the second signal.

11 . A User Equipment (UE) comprising:

a controller that handles configuration information from a serving base station for downlink multiuser superposition transmission (MUST) in a wireless communication network;

a measurement circuit that measures reference signals from the base station by the UE;

a receiver that receives a first signal scheduled to the UE and a second superposed signal scheduled to a second UE over an allocated time-frequency radio resource for MUST, wherein the first signal is applied with a first precoder and the second signal is applied with a second precoder; and

an interference canceller (IC) that performs interference cancellation on the second superposed signal using the reference signals and thereby decoding the first signal.

12 . The UE of claim 11 , wherein the reference signals comprise a first demodulation reference signal (DM-RS) configured to the UE and a second DM-RS configured to the second UE.

13 . The UE of claim 12 , wherein the first and second DM-RS are applied with the first and the second precoders, respectively.

14 . The UE of claim 12 , wherein the first and the second DM-RS are applied with power splitting factors between the UE and the second UE for MUST.

15 . The UE of claim 12 , wherein the first DM-RS is applied with a power boosting factor to enhance a channel estimation for the UE.

16 . The UE of claim 12 , wherein the UE estimates an effective channel response matrix of the second UE based on the second DM-RS without detecting the second precoder.

17 . The UE of claim 11 , wherein the reference signals comprise a common reference signal (CRS) configured to the first UE and the second UE.

18 . The UE of claim 17 , wherein the configuration information includes the first precoder but does not include the second precoder.

19 . The UE of claim 17 , wherein the UE estimates a channel response matrix of the second UE based on the CRS, and wherein the UE blindly detects the second precoder.

20 . The UE of claim 19 , wherein the UE determines whether a blindly detected precoder is accurate based on addition information including a received power ratio between the first signal and the second signal.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 13, 2018
From: MEDIATEK INC.
To: HFI INNOVATION INC.
Reel/Frame 047068/0617 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 10, 2016
From: HWANG, CHIEN-HWA; LIAO, YI-JU; TSAI, LUNG-SHENG; LIAO, PEI-KAI
To: MEDIATEK INC.
Reel/Frame 038662/0151 →