IP Library Granted Patent US 8,619,608
Granted Patent B2
US 8,619,608 · App. 12/989,512 · Granted Dec 31, 2013

Other radio technology / GERAN interworking for neighbor cell measurement reporting

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Quick Facts
Patent No.
US 8,619,608
App. No.
12/989,512
Granted
Dec 31, 2013
Kind
B2
Abstract

In accordance with an example embodiment of the present invention, an apparatus places an indication of a wireless communication system cell measurement in a measurement report message, where the indication comprises a corresponding frequency index, and a first part and a second part of an m-bit value representing a physical layer cell identification in a first and a second field, respectively, and a k-bit value representing a measurement result in the second field corresponding to the index. The apparatus then sends the measurement report message to a network interface.

Claims (37)

1. A method comprising:

placing an indication of a wireless communication system cell measurement in a measurement report message, wherein the indication includes a corresponding frequency index, and where said measurement report message comprises a first part and a second part of an m-bit value representing a physical layer cell identification in a first and a second field, respectively, and a k-bit value representing a measurement result in the second field corresponding to the frequency index, wherein m and k are whole numbers, wherein the frequency index is a broadcast control channel allocation index, and wherein the first field is a base station identity code field and the second field is a received signal level field; and

sending the measurement report message towards a network interface.

2. The method as in claim 1 , wherein the measurement report message comprises a global system for mobile communications/enhanced data rates for global evolution radio access network measurement report.

3. The method as in claim 2 , wherein the global system for mobile communications/enhanced data rates for global evolution radio access network measurement report is a global system for mobile communications/enhanced data rates for global evolution radio access network measurement report.

4. The method as in claim 1 , wherein the wireless communication system is an evolved universal terrestrial radio access network.

5. The method as in claim 1 , wherein the first part and the second part of the m-bit value has a combined length of 9 bits, and wherein the k-bit value has a length of 3 bits.

6. The method as in claim 1 , comprising transmitting the measurement report.

7. A non-transitory computer memory embodying a computer program executable to

place an indication of a wireless communication system cell measurement in a measurement report message, wherein the indication includes a corresponding frequency index, and where said measurement report message comprises a first part and a second part of an m-bit value representing a physical layer cell identification in a first and a second field, respectively, and a k-bit value representing a measurement result in the second field corresponding to the frequency index, wherein m and k are whole numbers, wherein the frequency index is a broadcast control channel allocation index, and wherein the first field is a base station identity code field and the second field is a received signal level field; and

send the measurement report message towards a network interface.

8. An apparatus, comprising:

at least one processor; and

at least one non-transitory memory including computer program code,

the at least one memory and the computer program code configured to, with the at least one processor, cause the apparatus at least to perform:

place an indication of a wireless communication system cell measurement in a measurement report message, wherein the indication includes a corresponding frequency index, and where said measurement report message comprises a first part and a second part of an m-bit value representing a physical layer cell identification in a first and a second field, respectively, and a k-bit value representing a measurement result in the second field corresponding to the frequency index, wherein m and k are whole numbers, wherein the frequency index is a broadcast control channel allocation index, and wherein the first field is a base station identity code field and the second field is a received signal level field; and

send the measurement report message towards a network interface.

9. The apparatus as in claim 8 , wherein the measurement report message comprises a global system for mobile communications/enhanced data rates for global evolution radio access network measurement report.

10. The apparatus as in claim 9 , wherein the global system for mobile communications/enhanced data rates for global evolution radio access network measurement report is a global system for mobile communications/enhanced data rates for global evolution radio access network measurement report.

11. The apparatus as in claim 8 , wherein the wireless communication system is an evolved universal terrestrial radio access network.

12. The apparatus as in claim 8 , wherein the first part and the second part of the m-bit value has a combined length of 9 bits, and wherein the k-bit value has a length of 3 bits.

13. The apparatus as in claim 8 , the at least one non-transitory memory and the computer program code further configured to transmit the measurement report sent to the network interface.

14. A method comprising,

receiving a measurement report message comprising an indication of a wireless communication system cell measurement, wherein the indication includes a corresponding frequency index, and where said measurement report message comprises a first part and a second part of an m-bit value representing a physical layer cell identification in a first and a second field, respectively, and a k-bit value representing a measurement result in the second field corresponding to the frequency index, wherein m and k are whole numbers, wherein the frequency index is a broadcast control channel allocation index, and wherein the first field is a base station identity code field and the second field is a received signal level field; and

using the received measurement report in performing a handover.

15. The method as in claim 14 , wherein the measurement report comprises a global system for mobile communications/enhanced data rates for global evolution radio access network measurement report.

16. The method as in claim 14 , wherein the wireless communication system is an evolved universal terrestrial radio access network.

17. The method as in claim 14 , wherein the first part and the second part of the m-bit value has a combined length of 9 bits, and wherein the k-bit value has a length of 3 bits.

18. An apparatus, comprising:

at least one processor; and

at least one non-transitory memory including computer program code,

the at least one memory and the computer program code configured to, with the at least one processor, cause the apparatus at least to perform:

receive a measurement report message comprising an indication of a wireless communication system cell measurement, wherein the indication includes a corresponding frequency index, and where said measurement report message comprises a first part and a second part of an m-bit value representing a physical layer cell identification in a first and a second field, respectively, and a k-bit value representing a measurement result in the second field corresponding to the frequency index, wherein m and k are whole numbers, wherein the frequency index is a broadcast control channel allocation index, and wherein the first field is a base station identity code field and the second field is a received signal level field; and

use the received measurement report in performing a handover.

19. The apparatus as in claim 18 , wherein the measurement report comprises a global system for mobile communications/enhanced data rates for global evolution radio access network measurement report.

20. The apparatus as in claim 18 , wherein the wireless communication system is an evolved universal terrestrial radio access network.

21. The apparatus as in claim 18 , wherein the first part and the second part of the m-bit value has a combined length of 9 bits, and wherein the k-bit value has a length of 3 bits.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 30, 2016
From: NOKIA CORPORATION
To: NOKIA TECHNOLOGIES OY
Reel/Frame 040812/0353 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 5, 2010
From: SEBIRE, GUILAUME; JOKINEN, HARRI AATOS; KANGAS, ANTTI OLAVI
To: NOKIA CORPORATION
Reel/Frame 025327/0840 →