IP Library › Granted Patent US 10,321,345
Granted Patent B2
US 10,321,345 · App. 15/915,286 · Granted Jun 11, 2019

Measurement procedure under adaptive frequency separation

Inventors: Muhammad Kazmi (Bromma, SE); Johan Bergman (Stockholm, SE); Gary Boudreau (Kanata, CA)
Assignee: Telefonaktiebolaget LM Ericsson (publ)
H04W24/08H04W4/70H04W76/28H04W24/10
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Quick Facts
Patent No.
US 10,321,345
App. No.
15/915,286
Granted
Jun 11, 2019
Kind
B2
Abstract

According to some embodiments, a method in a wireless device comprises determining the wireless device is capable of narrow bandwidth operation. The wireless device obtains a parameter associated with a measurement pattern. The measurement pattern comprises: a first time period and a second time period; a first type of radio measurements to be performed during the first time period on radio signals transmitted in a first set of physical resource channels; and a second type of radio measurements to be performed during the second time period on radio signals transmitted in a second set of physical resource channels. The wireless device determines a measurement pattern using the obtained parameter, and performs radio measurements of the first type during the first time period.

Claims (52)

1. A method in a wireless device of a wireless communication network, the wireless device capable of narrow bandwidth operation, narrow bandwidth operation comprising transmitting and receiving wireless signals using a number of physical resource channels that is less than a total number of physical resource channels supported by the wireless communication network and using a transmit-receive frequency separation that is less than a transmit-receive frequency separation of a total bandwidth of the wireless communication network, the method comprising:

obtaining a measurement pattern, the measurement pattern comprising:

a first time period and a second time period;

one or more radio measurements of a first type to be performed during the first time period on one or more radio signals transmitted in a first set of physical resource channels;

one or more radio measurements of a second type to he performed during the second time period on one or more radio signals transmitted in a second set of physical resource channels, at least one physical resource channel of the second set of physical resource channels different than the physical resource channels of the first set of physical resource channels; and

performing one or more radio measurements of the first type during the first time period according to the measurement pattern.

2. The method of Claim 1 , wherein the first set of physical resource channels comprises a first number of physical resource channels, the first number of physical resource channels less than the total number of physical resource channels supported by the wireless communication network.

3. The method of claim 1 , wherein the first set of physical resource channels are located at a specific frequency location within the bandwidth of the wireless communication system and the second set of physical resource channels are located at any frequency location within the bandwidth of the wireless communication system.

4. The method of claim 3 , wherein the first set of physical resource channels is located at the center of the bandwidth of the wireless communication system.

5. The method of claim 1 , wherein the first set of physical resource channels comprises six physical resource blocks.

6. The method of claim 1 , wherein the first time period overlaps with an ON duration of a discontinuous receive cycle of the wireless device.

7. A method in a network node of a wireless communication network, the method comprising:

determining a wireless device is capable of narrow bandwidth operation, narrow bandwidth operation comprising transmitting and receiving wireless signals using a number of physical resource channels that is less than a total number of physical resource channels supported by the wireless communication network and using a transmit-receive frequency separation that is less than a transmit-receive frequency separation of a total bandwidth of the wireless communication network;

determining a measurement pattern, the measurement pattern comprising:

a first time period and a second time period;

one or more radio measurements of a first type to be performed during the first time period on one or more radio signals transmitted in a first set of physical resource channels;

one or more radio measurements of a second type to be performed during the second time period on one or more radio signals transmitted in a second set of physical resource channels, at least one physical resource channel of the second set of physical resource channels different than the physical resource channels of the first set of physical resource channels; and

communicating the measurement pattern to the wireless device.

8. The method of claim 7 , wherein the first set of physical resource channels comprises a first number of physical resource channels, the first number of physical resource channels less than the total number of physical resource channels supported by the wireless communication network.

9. The method of claim 7 , wherein the first set of physical resource channels are located at a specific frequency location within the bandwidth of the wireless communication system and the second set of physical resource channels are located at any frequency location within the bandwidth of the wireless communication system.

10. The method of claim 9 , wherein the first set of physical resource channels is located at the center of the bandwidth of the wireless communication system.

11. The method of claim 7 , wherein the first set of physical resource channels comprises six physical resource blocks.

12. The method of claim 7 , wherein the first time period overlaps with an ON duration of a discontinuous receive cycle of the wireless device.

13. A wireless device capable of narrow bandwidth operation, narrow bandwidth operation comprising transmitting and receiving wireless signals using a number of physical resource channels that is less than a total number of physical resource channels supported by a wireless communication network and using a transmit-receive frequency separation that is less than a transmit-receive frequency separation of a total bandwidth of the wireless communication network, the wireless device comprising:

a processor coupled to a memory;

the memory comprising instructions;

the instructions, when executed by the processor, are operable to:

obtain a measurement pattern, the measurement pattern comprising:

a first time period and a second time period;

one or more radio measurements of a first type to be performed during the first time period on one or more radio signals transmitted in a first set of physical resource channels;

one or more radio measurements of a second type to be performed during the second time period on one or more radio signals transmitted in a second set of physical resource channels, at least one physical resource channel of the second set of physical resource channels different than the physical resource channels of the first set of physical resource channels; and

perform one or more radio measurements of the first type during the first time period according to the measurement pattern.

14. The wireless device of claim 13 , wherein the first set of physical resource channels comprises a first number of physical resource channels, the first number of physical resource channels less than the total number of physical resource channels supported by the wireless communication network.

15. The wireless device of claim 13 , wherein the first set of physical resource channels are located at a specific frequency location within the bandwidth of the wireless communication system and the second set of physical resource channels are located at any frequency location within the bandwidth of the wireless communication system.

16. The wireless device of claim 15 , wherein the first set of physical resource channels is located at the center of the bandwidth of the wireless communication system.

17. The wireless device of claim 13 , wherein the first set of physical resource channels comprises six physical resource blocks.

18. The wireless device of claim 13 , wherein the first time period overlaps with an ON duration of a discontinuous receive cycle of the wireless device.

19. A network node comprising:

a processor coupled to a memory;

the memory comprising instructions;

the instructions, when executed by the processor, are operable to:

determine a wireless device is capable of narrow bandwidth operation, narrow bandwidth operation comprising transmitting and receiving wireless signals using a number of physical resource channels that is less than a total number of physical resource channels supported by the wireless communication network and using a transmit-receive frequency separation that is less than a transmit-receive frequency separation of a total bandwidth of the wireless communication network;

determine a measurement pattern, the measurement pattern comprising:

a first time period and a second time period;

one or more radio measurements of a first type to be performed during the first time period on one or more radio signals transmitted in a first set of physical resource channels;

one or more radio measurements of a second type to be performed during the second time period on one or more radio signals transmitted in a second set of physical resource channels, at least one physical resource channel of the second set of physical resource channels different than the physical resource channels of the first set of physical resource channels; and

communicate the measurement pattern to the wireless device.

20. The network node of claim 19 , wherein the first set of physical resource channels comprises a first number of physical resource channels, the first number of physical resource channels less than the total number of physical resource channels supported by the wireless communication network.

21. The network node of claim 19 , wherein the first set of physical resource channels are located at a specific frequency location within the bandwidth of the wireless communication system and the second set of physical resource channels are located at any frequency location within the bandwidth of the wireless communication system.

22. The network node of claim 21 , wherein the first set of physical resource channels is located at the center of the bandwidth of the wireless communication system.

23. The network node of claim 19 , wherein the first set of physical resource channels comprises six physical resource blocks.

24. The network node of claim 19 , wherein the first time period overlaps with an ON duration of a discontinuous receive cycle of the wireless device.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 8, 2018
From: BERGMAN, JOHAN; BOUDREAU, GARY; KAZMI, MUHAMMAD
To: TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
Reel/Frame 045143/0097 →
Continuity (3)
Continuation 15015606 · Feb 4, 2016
Provisional Application 62112410 · Feb 5, 2015
Related Publication 20180213422A1 · Jul 26, 2018
Cited By (4)
US 12,391,686 US 12,528,825 US 12,590,079 US 12,686,687