Method and apparatus for receiving control information in wireless communication system
US-2015181568-A1 · Jun 25, 2015 · US
US12556960B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12556960-B2 |
| Application number | US-202519280444-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 25, 2025 |
| Priority date | Nov 26, 2012 |
| Publication date | Feb 17, 2026 |
| Grant date | Feb 17, 2026 |
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Systems and methods are described for exploiting inter-cell interference to achieve multiplexing gain in a multiple antenna system (MAS) with multi-user (MU) transmissions (“MU-MAS”). For example, a MU-MAS of one embodiment comprises a wireless cellular network with multiple distributed antennas operating cooperatively to eliminate inter-cell interference and increase network capacity exploiting inter-cell multiplexing gain.
Opening claim text (preview).
We claim: 1 . A wireless system comprising: a plurality of wireless user equipment devices (“UEs”), and a wireless transceiver station comprising more than eight antennas, the wireless transceiver station configured to be communicatively coupled to the plurality of UEs and configured to simultaneously transmit on the more than eight antennas overlapping wireless waveforms including a same 3GPP cell-specific reference signal (“CRS”) and, at a same time or different time, simultaneously transmit or receive at least one or more of a 3GPP cell-specific channel state information reference signal (“CSI-RS”), a sounding reference signal (“SRS”), or a demodulation reference signal (“DMRS”), wherein the wireless transceiver station is configured to utilize precoding to combine N streams of information from M streams of bits to create a plurality of concurrent non-interfering downlink “DL” data links, wherein the wireless transceiver station is configured to maintain a plurality of concurrent non-interfering DL links between the more than eight antennas and the plurality of UEs within a same frequency band when transmitting and configured to maintain a plurality of uplink (“UL”) links between the more than eight antennas and the plurality of UEs within a same frequency band when receiving, wherein each of the plurality of UEs is configured to receive the same 3GPP CRS and a DL data link from the wireless transceiver station and transmit a UL data link to the wireless transceiver station, and is configured to transmit or receive one or more of the 3GPP CSI-RS, SRS, or DMRS signals; and wherein M and N are integer numbers less than or equal to the number of the more than eight antennas. 2 . The system as in claim 1 wherein the wireless transceiver station is part of a mobile network. 3 . The system as in claim 1 , wherein the wireless transceiver stations is compatible with 3GPP protocols. 4 . The system as in claim 1 , wherein the wireless transceiver station uses closed-loop or open-loop precoding methods. 5 . The system as in claim 1 , wherein a DL or UL reference signal is used to estimate a channel state information “CSI” of each of the plurality of UEs. 6 . The system as in claim 1 , wherein UL/DL reciprocity is exploited to estimate a channel state information “CSI” of each of the plurality of UEs. 7 . A method implemented within a wireless system including a plurality of user equipment devices (UEs) and a wireless transceiver station comprising: simultaneously transmitting, by the wireless transceiver station, overlapping wireless waveforms from more than eight antennas including a same 3GPP cell-specific reference signal (“CRS”), and at a same or different time, simultaneously transmitting or receiving one or more of a 3GPP cell-specific channel state information reference signal (“CSI-RS”), a sounding reference signal (“SRS”), or a demodulation reference signal (“DMRS”), precoding, by the wireless transceiver station, to combine N streams of information from M streams of bits to create: a. a plurality of concurrent non-interfering downlink “DL” data links; and b. a plurality of concurrent non-interfering uplink “UL” data links; simultaneously receiving, by each of the plurality of UEs, the same 3GPP CRS and a downlink (DL) data link from the wireless transceiver station, and at a same or different time, each of the plurality of UEs transmits or receives one or more of the 3GPP CSI-RS, SRS or DMRS signals, maintaining, by the wireless transceiver station, a plurality of concurrent non-interfering DL links between the more than eight antennas and the plurality of UEs within a same frequency band when transmitting and maintaining a plurality of concurrent non-interfering UL links between the more than eight antennas and the plurality of UEs within a same frequency band when receiving, and wherein M and N are integer numbers less than or equal to the number of the more than eight antennas. 8 . The method as in claim 7 , wherein the wireless transceiver station is part of a mobile network. 9 . The method as in claim 7 , wherein the wireless transceiver station is compatible with 3GPP protocols. 10 . The method as in claim 7 , wherein the wireless transceiver station uses closed-loop or open-loop precoding. 11 . The method as in claim 7 , wherein the wireless transceiver station uses a DL or UL reference signal to estimate a channel state information “CSI” of each of the plurality of UEs. 12 . The method as in claim 7 , wherein the wireless transceiver station exploits UL/DL reciprocity to estimate a channel state information “CSI” of each of the plurality of UEs.
Multi-user MIMO systems · CPC title
using co-ordinated multipoint transmission/reception (co-ordinated antenna or beam-forming aspects H04B7/022) · CPC title
Using selective indices, e.g. of a codebook, e.g. pre-distortion matrix index [PMI] or for beam selection · CPC title
Channel quality parameters, e.g. channel quality indicator [CQI] · CPC title
Parameters other than those covered in groups H04B7/0623 - H04B7/0634, e.g. channel matrix rank or transmit mode selection · CPC title
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