IP Library Granted Patent US 10,219,172
Granted Patent B2
US 10,219,172 · App. 15/051,986 · Granted Feb 26, 2019

Method and apparatus for testing mobile terminals in an OFDM system

Inventors: Muhammad Kazmi (Bromma, SE); Joakim Axmon (Kävlinge, SE); Christian Bergljung (Lund, SE); Farshid Ghasemzadeh (Sollentuna, SE); Walter Gerhard Alois Müller (Upplands Väsby, SE)
Assignee: Telefonaktieboloaget LM Ericsson (publ)
H04W24/06H04W24/08H04W72/04
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Quick Facts
Patent No.
US 10,219,172
App. No.
15/051,986
Granted
Feb 26, 2019
Kind
B2
Abstract

The present invention relates to a method and apparatus for testing mobile terminals in an OFDMA system, in which all or part of available downlink radio resources in a cell are transmitted. A processing unit in a test apparatus splits a set of contiguous resource blocks into separate contiguous portions. A first contiguous portion of the set of resource blocks is allocated to users of a first type, and a second contiguous portion of the set of resource blocks is allocated to users of a second type. A transmitter in the test apparatus transmits test signals to the users of the first type and the second type using the at least one contiguous set of resource blocks.

Claims (28)

1. A method for testing Orthogonal Frequency Division Multiplexing (OFDM) mobile terminals, said method comprising:

splitting radio resources available in a cell of an OFDM system into contiguous unities in the frequency domain;

wherein the radio resources of one or more of said contiguous unities in the center of an available cell bandwidth are allocated to one or more mobile terminals being tested; and

wherein the radio resources of at least one of said contiguous unities are allocated to virtual users, said virtual users emulating a load of a cell to create a realistic test environment for the mobile terminals being tested; and

transmitting test signals to the one or more mobile terminals being tested on the radio resources allocated to the one or more mobile terminals being tested and transmitting test signals to the virtual users on the radio resources allocated to the virtual users to verify performance requirements in an OFDM system for the one or more mobile terminals being tested under the emulated load.

2. The method according to claim 1 wherein splitting the radio resources available in the cell of the OFDM system into contiguous unities in the frequency domain comprises splitting the radio resources such that at least one of the one or more contiguous unities of radio resources at the edges of said cell bandwidth are allocated to virtual users.

3. The method according to claim 1 further comprising allocating one resource block out of the contiguous unities of radio resources available for the virtual users to each of the said virtual users.

4. The method according to claim 1 wherein transmitting the test signals to said virtual users on radio resources allocated to the virtual users comprises transmitting Quadrature Phase Shift Keying (QPSK) modulated signals to the virtual users on radio resources allocated to the virtual users.

5. The method according to claim 1 wherein transmitting the test signals to said virtual users on radio resources allocated to the virtual users comprises transmitting test signals to the virtual users from two or more uncorrelated transmitted antennas.

6. The method according to claim 1 wherein transmitting the test signals to said virtual users on radio resources allocated to the virtual users comprises transmitting test signals according to the same Multiple Input Multiple Output (MIMO) transmission method and using same correlation model as used for the one or more mobile terminals under test.

7. The method according to claim 1 wherein the allocation of radio resources to the one or more mobile terminals under test and the virtual users respectively is fixed.

8. The method according to claim 1 wherein transmitting the test signals to said one or more mobile terminals being tested on the radio resources allocated to the mobile terminals being tested comprises the step of transmitting Physical Downlink Shared Channel (PDSCH) signals as test signals on radio resources allocated for the one or more mobile terminals being tested.

9. The method according to claim 1 carried out by an OFDMA simulator capable of simulating an OFDMA system.

10. The method according to claim 1 carried out by a base station capable of operating in an OFDMA system.

11. A test apparatus for testing mobile terminals in an Orthogonal Frequency Division Multiplexing (OFDM) system, said test apparatus comprising:

a processing circuit configured to split radio resources in an OFDMA cell into contiguous unities in the frequency domain;

wherein the radio resources of one or more of said contiguous unities in the center of an available cell bandwidth are allocated to one or more mobile terminals being tested; and

wherein the radio resources of at least one of said contiguous unities are allocated to virtual users, said virtual users emulating a load of a cell to create a realistic test environment for the mobile terminals being tested;

a transmitter operatively connected to the processing circuit, the transmitter configured to transmit test signals to the one or more mobile terminals being tested on the radio resources allocated to the mobile terminals being tested, and to transmit test signals to the virtual users on the radio resources allocated to the virtual users to verify performance requirements in an OFDM system for the one or more mobile terminals being tested under the emulated load.

12. The test apparatus according to claim 11 wherein said processing circuit is configured to split the radio resources such that at least one of the one or more contiguous unities of radio resources at the edges of said cell bandwidth are allocated to virtual users.

13. The test apparatus according to claim 11 wherein said processing circuit is configured to allocate one resource block out of the contiguous unities of radio resources available for the virtual users to each of the said virtual users.

14. The test apparatus according to claim 11 wherein said processing circuit is configured to use Quadrature Phase Shift Keying (QPSK) modulation for test signals transmitted by the transmitter on radio resources allocated to the virtual users.

15. The test apparatus according to claim 11 wherein the transmitter is configured to transmit the test signals to the virtual users via two or more uncorrelated transmitted antennas to simulate Multiple Input Multiple Output (MIMO) operations.

16. The test apparatus according to claim 11 wherein the transmitter is configured to transmit the test signals to the virtual users using the same Multiple Input Multiple Output (MIMO) transmission method and the same correlation model as used for the one or more mobile terminals under test to simulate MIMO operations.

17. The test apparatus according to claim 11 wherein the processing circuit is configured to allocate radio resources to the one or more mobile terminals under test and the virtual users in a fixed manner.

18. The test apparatus according to claim 11 wherein the transmitter is configured to transmit Physical Downlink Shared Channel (PDSCH) signals as the test signals on radio resources allocated to the one or more mobile terminals under test.

19. The test apparatus according to claim 11 wherein said test apparatus comprises an OFDMA simulator capable of simulating an OFDMA system.

20. The test apparatus according to claim 11 wherein said test apparatus comprises a base station capable of operating in an OFDMA system.

Assignments (2)
CHANGE OF NAME Recorded Jan 6, 2020
From: TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)
To: TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
Reel/Frame 051485/0095 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 24, 2016
From: AXMON, JOAKIM; BERGLJUNG, CHRISTIAN; MÜLLER, WALTER; GHASEMZADEH, FARSHID; KAZMI, MUHAMMAD
To: TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)
Reel/Frame 037813/0938 →
Priority Claims (1)
SE PCT/SE2008/051421 · Dec 8, 2008 · national
Continuity (4)
Continuation 13668890 · Nov 5, 2012
Continuation 12472430 · May 27, 2009
Provisional Application 61061290 · Jun 13, 2008
Related Publication 20160174086A1 · Jun 16, 2016