IP Library › Granted Patent US 10,356,583
Granted Patent B2
US 10,356,583 · App. 15/876,996 · Granted Jul 16, 2019

Management of wireless devices in limited radio coverage

Inventors: Paul Schliwa-Bertling (Ljungsbro, SE); Mårten Sundberg (Årsta, SE); John Walter Diachina (Garner, NC); Nicklas Johansson (Brokind, SE)
Assignee: Telefonaktiebolaget LM Ericsson (publ)
H04W4/70H04L1/0013H04L1/08H04L1/1812H04W68/02H04W88/02H04W88/14
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Quick Facts
Patent No.
US 10,356,583
App. No.
15/876,996
Granted
Jul 16, 2019
Kind
B2
Abstract

A mechanism is described herein for enhancing the radio coverage for a wireless device based on an exchange of uplink and downlink radio condition information, referred to as uplink and downlink Radio Coverage Category (RCC) values, between the wireless device and a network (e.g., a Radio Access Network (RAN) node, Core Network (CN) node) for use in data transmission (e.g., control plane related signaling or user plane related payload transmission).

Claims (85)

1. A wireless device configured to communicate with a Radio Access Network (RAN) node and a Core Network (CN) node, the wireless device comprising:

a processor; and,

a memory that stores processor-executable instructions, wherein the processor interfaces with the memory to execute the processor-executable instructions, whereby the wireless device is operable to:

transmit, to the RAN node, one or more access burst (AB) based first messages per an uplink Radio Coverage Category (RCC) value, wherein each of the one or more AB based first messages includes a downlink RCC value;

determine that a first AB based system access failed after transmitting the one or more AB based first messages; and

upon the determination that the first AB based system access failed:

increment both the downlink RCC value and the uplink RCC value; and

transmit, to the RAN node, one or more access burst (AB) based second messages per the incremented uplink RCC value, wherein each of the one or more AB based second messages includes the incremented downlink RCC value.

2. The wireless device of claim 1 , wherein the wireless device is further operable to:

determine that a second AB based system access failed after transmitting the one or more AB based second messages; and

upon the determination that the second AB based system access failed:

re-increment both the incremented downlink RCC value and the incremented uplink RCC value; and

transmit, to the RAN node, one or more access burst (AB) based third messages per the uplink RCC value after the re-increment operation, wherein each of the one or more AB based third messages includes the downlink RCC value after the re-increment operation; or

trigger a cell re-selection procedure.

3. The wireless device of claim 1 , wherein the wireless device is further operable to:

determine that a second AB based system access succeeded after transmitting the one or more AB based second messages; and

upon the determination that the second AB based system access succeeded, use Normal Burst (NB) based messages in subsequent system access attempts.

4. The wireless device of claim 3 , wherein the wireless device is further operable to:

receive, from the RAN node, a first message having a number of repeated downlink transmissions based on (1) the downlink RCC value when the first AB based system access succeeded, or (2) the incremented downlink RCC value when the second AB based system access succeeded.

5. The wireless device of claim 4 , wherein:

the first message includes another uplink RCC value, and

the wireless device is further operable to:

map the another uplink RCC value to a number of repeated uplink transmissions; and

transmit, to the RAN node, one or more second messages repeated according to the number of repeated uplink transmissions.

6. The wireless device of claim 5 , wherein the first message further includes a new downlink RCC value.

7. The wireless device of claim 1 , wherein the wireless device is further operable to

transmit, to the CN node, an updated downlink RCC value in a cell update, wherein the updated downlink RCC value is estimated at a predetermined time prior to a next occurrence of a paging group.

8. The wireless device of claim 1 , wherein the wireless device is further operable to

map the estimated downlink radio condition to one of a plurality of uplink RCC values.

9. A method in a wireless device configured to communicate with a Radio Access Network (RAN) node and a Core Network (CN) node, the method comprising:

transmitting, to the RAN node, one or more access burst (AB) based first messages per an uplink Radio Coverage Category (RCC) value, wherein each of the one or more AB based first messages includes a downlink RCC value;

determining that a first AB based system access failed after transmitting the one or more AB based first messages; and

upon the determination that the first AB based system access failed:

incrementing both the downlink RCC value and the uplink RCC value; and

transmitting, to the RAN node, one or more access burst (AB) based second messages per the incremented uplink RCC value, wherein each of the one or more AB based second messages includes the incremented downlink RCC value.

10. The method of claim 9 , further comprising:

determining that a second AB based system access failed after transmitting the one or more AB based second messages; and

upon the determination that the second AB based system access failed:

re-incrementing both the incremented downlink RCC value and the incremented uplink RCC value; and

transmitting, to the RAN node, one or more access burst (AB) based third messages per the uplink RCC value after the re-incrementing step, wherein each of the one or more AB based third messages includes the downlink RCC value after the re-incrementing step; or

triggering a cell re-selection procedure.

11. The method of claim 9 , further comprising:

determining that a second AB based system access succeeded after transmitting the one or more AB based second messages; and

upon determining that the second AB based system access succeeded, use Normal Burst (NB) based messages in subsequent system access attempts.

12. The method of claim 11 , further comprising:

receiving, from the RAN node, a first message having a number of repeated downlink transmissions based on (1) the downlink RCC value when the first AB based system access succeeded, or (2) the incremented downlink RCC value when the second AB based system access succeeded.

13. The method of claim 12 , wherein:

the first message includes another uplink RCC value, and

the method further comprises:

mapping the another uplink RCC value to a number of repeated uplink transmissions; and

transmitting, to the RAN node, one or more second messages repeated according to the number of repeated uplink transmissions.

14. The method of claim 13 , wherein the first message further includes a new downlink RCC value.

15. The method of claim 9 , further comprising:

transmitting, to the CN node, an updated downlink RCC value in a cell update, wherein the updated downlink RCC value is estimated at a predetermined time prior to a next occurrence of a paging group.

16. The method of claim 9 , wherein the mapping step further comprises mapping the estimated downlink radio condition to one of a plurality of uplink RCC values.

17. A wireless device configured to communicate with a Radio Access Network (RAN) node, the wireless device comprising:

a processor; and,

a memory that stores processor-executable instructions, wherein the processor interfaces with the memory to execute the processor-executable instructions, whereby the wireless device is operable to:

determine whether control channels received from the RAN node indicate a first cell size or a second cell size, where the first cell size is smaller than the second cell size;

based on the determination that the received control channels indicate the first cell size, transmit, to the RAN node, one or more normal burst (NB) based first messages, wherein each of the one or more NB based first messages includes a downlink Radio Coverage Category (RCC) value; and

based on the determination that the received control channels indicate the second cell size, transmit, to the RAN node, one or more access burst (AB) based first messages, wherein each of the one or more AB based first messages includes the downlink RCC value.

18. The wireless device of claim 17 , wherein the wireless device is further operable to:

determine that a NB based system access failed after transmitting the one or more NB based first messages; and

upon the determination that the NB based system access failed, perform an AB based system access.

19. The wireless device of claim 17 , wherein the wireless device is further operable to:

upon successfully performing the AB based system access after transmitting the one or more AB based first messages, (1) retain knowledge of Timing Advance (TA) information and (2) subsequently perform a NB based system access utilizing the TA information.

20. The wireless device of claim 17 , wherein the wireless device is further operable to map the estimated downlink radio condition to one of a plurality of uplink RCC values.

21. A method in a wireless device configured to communicate with a Radio Access Network (RAN) node, the method comprising:

determining whether control channels received from the RAN node indicate a first cell size or a second cell size, where the first cell size is smaller than the second cell size;

based on the determination that the received control channels indicate the first cell size, transmitting, to the RAN node, one or more normal burst (NB) based first messages, wherein each of the one or more NB based first messages includes a downlink Radio Coverage Category (RCC) value; and

based on the determination that the received control channels indicate the second cell size, transmitting, to the RAN node, one or more access burst (AB) based first messages, wherein each of the one or more AB based first messages includes the downlink RCC value.

22. The method of claim 21 , further comprising:

determining that a NB based system access failed after transmitting the one or more NB based first messages; and

upon determining that the NB based system access failed, performing an AB based system access.

23. The method of claim 21 , further comprising:

upon successfully performing the AB based system access after transmitting the one or more AB based first messages, (1) retaining knowledge of Timing Advance (TA) information and (2) subsequently performing a NB based system access utilizing the TA information.

24. The method of claim 21 , wherein the mapping step further comprises mapping the estimated downlink radio condition to one of a plurality of uplink RCC values.

25. A wireless device configured to communicate with a Radio Access Network (RAN) node, the wireless device comprising:

a processor; and,

a memory that stores processor-executable instructions, wherein the processor interfaces with the memory to execute the processor-executable instructions, whereby the wireless device is operable to:

map a determined number of blind transmissions needed to decode a synchronization channel (SCH) to an uplink Radio Coverage Category (RCC) value and a downlink RCC value; and,

transmit, to the RAN node, a first message having a number of repeated transmissions based on the uplink RCC value, wherein the first message also includes the downlink RCC value.

26. A method in a wireless device configured to communicate with a Radio Access Network (RAN) node, the method comprising:

mapping a determined number of blind transmissions needed to decode a synchronization channel (SCH) to an uplink Radio Coverage Category (RCC) value and a downlink RCC value; and,

transmitting, to the RAN node, a first message having a number of repeated transmissions based on the uplink RCC value, wherein the first message also includes the downlink RCC value.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 31, 2019
From: SCHLIWA-BERTLING, PAUL; SUNDBERG, MÅRTEN; DIACHINA, JOHN WALTER; JOHANSSON, NICKLAS
To: TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
Reel/Frame 049330/0692 →
Continuity (5)
Continuation 15013835 · Feb 2, 2016
Continuation In Part 14748026 · Jun 23, 2015
Provisional Application 62107847 · Jan 26, 2015
Provisional Application 62016558 · Jun 24, 2014
Related Publication 20180146358A1 · May 24, 2018