IP Library Granted Patent US 9,036,663
Granted Patent B2
US 9,036,663 · App. 13/119,630 · Granted May 19, 2015

Method and system for space code transmit diversity of PUCCH

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Quick Facts
Patent No.
US 9,036,663
App. No.
13/119,630
Granted
May 19, 2015
Kind
B2
Abstract

Aspects of the invention are directed to a transmit diversity method for use in a wireless terminal having a plurality of antennas and a wireless terminal configured to implement the method. The transmit diversity method includes using a different orthogonal sequence for each antenna, or group of antennas, for transmitting an uplink control channel from a wireless terminal to a base station. A first step of the method involves assigning at least one orthogonal sequence to one or more of the plurality of antennas, each of the plurality of antennas being assigned at least one orthogonal sequence. Once the orthogonal sequence is assigned, a further step involves scrambling a signal to be transmitted on the physical uplink control channel (PUCCH) using the at least one orthogonal sequence for each antenna thereby producing a scrambled PUCCH for transmission by each antenna. The scrambled PUCCH can then be transmitted on the plurality of antennas.

Claims (50)

1. A method for use in a wireless terminal having a plurality of antennas comprising:

when the wireless terminal is not to implement a transmit diversity scheme based at least in part on at least one of mobility properties of the wireless terminal, location properties of the wireless terminal and statistical properties of a channel between the wireless terminal and a base station, each of the plurality of antennas being assigned a same orthogonal sequence;

when the wireless terminal is to implement the transmit diversity scheme based at least in part on at least one of mobility properties of the wireless terminal, location properties of the wireless terminal and statistical properties of the channel between the wireless terminal and the base station, each antenna of the plurality of antennas being assigned a respective one of a plurality of different orthogonal sequences;

scrambling a signal to be transmitted on a physical uplink control channel (PUCCH) based on the assignment, thereby producing a scrambled PUCCH for transmission by each antenna;

transmitting the scrambled PUCCH on the plurality of antennas; and

if each antenna of the plurality of antennas is assigned a respective one of the plurality of different orthogonal sequences, performing one of:

a) receiving a single orthogonal sequence index for one of the plurality of different orthogonal sequences to configure a first orthogonal sequence that the wireless terminal is to use; and

determining indices of the remaining plurality of different orthogonal sequences as a function of the single orthogonal sequence index, the plurality of different orthogonal sequences being assigned based on the single orthogonal sequence index and determined indices; and

b) receiving an orthogonal sequence index for each orthogonal sequence that the wireless terminal is to use, the plurality of different orthogonal sequences being assigned based on the received orthogonal sequence indices.

2. The method of claim 1 further comprising receiving higher layer signaling for configuring which orthogonal sequences the wireless terminal is to use.

3. The method of claim 1 wherein for a given wireless terminal, a same number of orthogonal sequences are used to scramble a reference signal (RS) as are used to scramble the PUCCH.

4. The method of claim 1 wherein the wireless terminal is serviced by a network configured to support wireless terminals comprising at least two antennas that can perform uplink signaling simultaneously.

5. The method of claim 4 wherein the network is a Long Term Evolution-Advanced (LTE-A) network.

6. The method of claim 1 wherein

the assignment is based on at least one of: PUCCH format 1/1a/1b; and PUCCH format 2/2a/2b.

7. A wireless terminal comprising:

a plurality of antennas;

a receiver coupled to at least one receive antenna of the plurality of antennas;

a transmitter coupled to at least one transmit antenna of the plurality of antennas;

an uplink transmit controller, the uplink transmit controller configured to:

assign at least one orthogonal sequence to a physical uplink control channel (PUCCH) to be transmitted on the at least one transmit antenna;

scramble the PUCCH using at least one of the at least one orthogonal sequence to be transmitted by the transmitter thereby producing a scrambled PUCCH for the at least one transmit antenna;

the transmitter configured to transmit the scrambled PUCCH on the at least one transmit antenna; and

when the wireless terminal is not to implement a transmit diversity scheme based at least in part on at least one of mobility properties of the wireless terminal, location properties of the wireless terminal and statistical properties of a channel between the wireless terminal and a base station, the same orthogonal sequence being assigned to each of the at least one transmit antenna;

when the wireless terminal is to implement the transmit diversity scheme based at least in part on at least one of mobility properties of the wireless terminal, location properties of the wireless terminal and statistical properties of the channel between the wireless terminal and the base station, each antenna of the at least one transmit antenna being assigned a respective one of a plurality of different orthogonal sequences; and

if the plurality of different orthogonal sequences are assigned to the wireless terminal, one of:

a) the receiver being configured to receive a single orthogonal sequence index for one of the plurality of different orthogonal sequences to configure a first orthogonal sequence that the wireless terminal is to use; and

the uplink transmit controller being further configured to determine indices of the remaining plurality of different orthogonal sequences as a function of the single orthogonal sequence index, the plurality of different orthogonal sequences being assigned based on the single orthogonal sequence index and determined indices; and

b) the receiver being configured to receive an orthogonal sequence index for each orthogonal sequence that the wireless terminal is to use, the plurality of different orthogonal sequences being assigned based on the received orthogonal sequence indices.

8. The wireless terminal of claim 7 wherein the receiver is further configured to receive higher layer signaling to determine which orthogonal sequences the wireless terminal is to use.

9. The wireless terminal of claim 7 wherein the plurality of antennas is equal to a multiple of two antennas.

10. The wireless terminal of claim 7 wherein the number of transmit antennas and the number of receive antennas is equal, which is equal to the total number of the plurality of antennas.

11. The wireless terminal of claim 7 wherein the wireless terminal is serviced by a network configured to support wireless terminals comprising at least two antennas that can perform uplink signaling simultaneously.

12. The wireless terminal of claim 11 wherein the network is a Long Term Evolution-Advanced (LTE-A) network.

13. A method for use in a base station for configuring a multi-antenna wireless terminal that the base station is configured to support, the method comprising:

determining whether the wireless terminal is to implement a transmit diversity scheme based at least in part on at least one of mobility properties of the wireless terminal, location properties of the wireless terminal and statistical properties of a channel between the wireless terminal and the base station;

if the wireless terminal is not to implement the transmit diversity scheme based on the determination, assigning each of a plurality of antennas of the wireless terminal a same orthogonal sequence;

if the wireless terminal is to implement the transmit diversity scheme based on the determination, assigning each antenna of the plurality of antennas of the wireless terminal a respective one of a plurality of different orthogonal sequences on the basis of one of a single orthogonal sequence indicator and an orthogonal sequence indicator identifying each orthogonal sequence;

if the wireless terminal is to be assigned the plurality of different orthogonal sequences on the basis of a single orthogonal sequence indicator, the method further includes:

defining a relation between indices associated with the multiple orthogonal sequences; and

transmitting a single orthogonal sequence indicator for one of the plurality of orthogonal sequences to configure a first orthogonal sequence that the wireless terminal is to use for transmission; and

if the wireless terminal is to be assigned the plurality of different orthogonal sequences on the basis of an orthogonal sequence indicator identifying each orthogonal sequence, the method further includes:

transmitting an orthogonal sequence indicator for each orthogonal sequence that the wireless terminal is to use for transmission.

14. A method for use in a base station for receiving a signal from a multi-antenna wireless terminal that the base station supports, the method comprising:

receiving at least two signals from each of separate transmit antennas of the multi-antenna wireless terminal, each of the at least two signals comprising a signal that has been transmitted on a physical uplink control channel (PUCCH) that is encoded using at least one orthogonal sequence assigned to a respective transmit antenna of the multi-antenna wireless terminal, the assignment being based at least in part on at least one of mobility properties of the multi-antenna wireless terminal, location properties of the multi-antenna wireless terminal and statistical properties of a channel between the multi-antenna wireless terminal and the base station;

performing channel estimation;

combining the at least two signals based at least in part on the channel estimation thereby producing a combined signal;

decoding the combined signal transmitted on the PUCCH;

when the at least one assigned orthogonal sequence is not a plurality of different orthogonal sequences, each transmit antenna of the multi-antenna wireless terminal being assigned the same orthogonal sequence; and

when the at least one assigned orthogonal sequence is the plurality of different orthogonal sequences, each transmit antenna of the multi-antenna wireless terminal being assigned a respective one of the plurality of different orthogonal sequences.

Assignments (8)
RELEASE OF SECURITY INTEREST Recorded Oct 26, 2020
From: JEFFERIES FINANCE LLC
To: RPX CLEARINGHOUSE LLC
Reel/Frame 054305/0505 →
SECURITY INTEREST Recorded Jun 29, 2018
From: RPX CLEARINGHOUSE LLC
To: JEFFERIES FINANCE LLC
Reel/Frame 046485/0644 →
RELEASE (REEL 038041 / FRAME 0001) Recorded Jan 2, 2018
From: JPMORGAN CHASE BANK, N.A.
To: RPX CORPORATION; RPX CLEARINGHOUSE LLC
Reel/Frame 044970/0030 →
SECURITY AGREEMENT Recorded Mar 9, 2016
From: RPX CORPORATION; RPX CLEARINGHOUSE LLC
To: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
Reel/Frame 038041/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 9, 2015
From: ROCKSTAR CONSORTIUM US LP; ROCKSTAR CONSORTIUM LLC; BOCKSTAR TECHNOLOGIES LLC; CONSTELLATION TECHNOLOGIES LLC; MOBILESTAR TECHNOLOGIES LLC; NETSTAR TECHNOLOGIES LLC
To: RPX CLEARINGHOUSE LLC
Reel/Frame 034924/0779 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 25, 2013
From: ROCKSTAR BIDCO, LP
To: ROCKSTAR CONSORTIUM US LP
Reel/Frame 030876/0902 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 28, 2011
From: NORTEL NETWORKS LIMITED
To: ROCKSTAR BIDCO, LP
Reel/Frame 027143/0717 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 28, 2011
From: BALIGH, MOHAMMADHADI; EBRAHIMI TAZEH MAHALLEH, MASOUD; MA, JIANGLEI; XU, HUA; JIA, MING; KHANDANI, AMIR
To: NORTEL NETWORKS LIMITED
Reel/Frame 026512/0723 →