Abstract
A method and apparatus for cell update while in a Cell_FACH state are disclosed. After selecting a target cell system information is read from the target cell including high speed downlink shared channel (HS-DSCH) common system information. A radio network temporary identity (RNTI) received in a source cell is cleared and a variable HS_DSCH_RECEPTION is set to TRUE. An HS-DSCH medium access control (MAC-hs) entity is configured based on the HS-DSCH common system information. High speed downlink packet access (HSDPA) transmission is then received in the target cell. A CELL UPDATE message is sent to notify of a cell change. The HSDPA transmission may be received using a common H-RNTI broadcast in the system information a reserved H-RNTI as requested in a CELL UPDATE message or a temporary identity which is a subset of a U-RNTI. The MAC-hs entity may be reset.
A method and apparatus for cell update while in a Cell_FACH state are disclosed. After selecting a target cell system information is read from the target cell including high speed downlink shared channel (HS-DSCH) common system information. A radio network temporary identity (RNTI) received in a source cell is cleared and a variable HS_DSCH_RECEPTION is set to TRUE. An HS-DSCH medium access control (MAC-hs) entity is configured based on the HS-DSCH common system information. High speed downlink packet access (HSDPA) transmission is then received in the target cell. A CELL UPDATE message is sent to notify of a cell change. The HSDPA transmission may be received using a common H-RNTI broadcast in the system information a reserved H-RNTI as requested in a CELL UPDATE message or a temporary identity which is a subset of a U-RNTI. The MAC-hs entity may be reset.
Technology | Declaration Information | Specification Information | Explicitly Disclosed | Patent Type | |||||
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Declaration Date | Declaration Reference | Declaring Company | Specification Number | ||||||
3G | 18/09/2008 | ISLD-200901-001 | INTERDIGITAL INC | No | Family Member | ||||
3G | 21/12/2016 | ISLD-201706-014 | INTERDIGITAL INC |
S2
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No | Family Member | |||
3G | 30/10/2019 | ISLD-201909-015 | INTERDIGITAL INC | No | Family Member | ||||
3G | 30/10/2019 | ISLD-201909-015 | INTERDIGITAL INC | Yes | Basis Patent |
Specification Information
Specification Information
Technologies
Family Information
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All Pending Patents In Patent Family : | ---- |
Publication No | Technology | Declaration Information | Specification Information | Explicitly Disclosed | Patent Type | |||||
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No | Family Member | |||
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No | Family Member | |||
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No | Family Member | |||
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US9918257B2 | 3G | 18/09/2008 | ISLD-200901-001 | INTERDIGITAL INC | No | Family Member | ||||
US9918257B2 | 3G | 21/12/2016 | ISLD-201706-014 | INTERDIGITAL INC |
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Technologies

Product
Use Cases

Services
Claim
1. A method for performing cell reselection while in a Cell_FACH state when a target cell supports Enhanced CeIl-FACH, the method comprising: selecting a target cell; reading system information from the target cell, the system information including high speed downlink shared channel (HS-DSCH) common system information; clearing a radio network temporary identity (RNTI) received in a source cell, the RNTI being at least one of an HS-DSCH RNTI (H-RNTI) and a cell RNTI (C-RNTI); resetting an HS-DSCH medium access control (MAC-ehs) entity configured in the source cell; setting up random access channel (RACH) communication; sending a CELL UPDATE message; configuring a MAC-ehs entity based on the HS-DSCH common system information; and receiving high speed downlink packet access (HSDPA) transmission in the target cell.
2. The method of claim 1 wherein an index to one of a plurality of reserved HS-DSCH radio network temporary identities (RH-RNTIs) is included in the CELL UPDATE message.
3. The method of claim 2 wherein the HSDPA transmission is received using an RH-RNTI as requested in the CELL UPDATE message.
4. The method of claim 1 wherein the HSDPA transmission is received using a temporary identity which is a subset of a universal terrestrial radio access network (UTRAN) radio network temporary (U-RNTI).
5. The method of claim 1 further comprising: enabling HS-DSCH reception by setting an HS-DSCH reception variable to TRUE.
6. The method of claim 1 wherein the MAC-ehs entity is reset for both a common H-RNTI and a dedicated H-RNTI, if the common H-RNTI and the dedicated H-RNTI are configured with separate MAC-ehs entities.
7. The method of claim 1 wherein the MAC-ehs entity is reset only when cell reselection results in an inter-Node B cell change.
8. The method of claim 1 wherein the MAC-ehs entity is reset only when cell reselection results in an intra-node B cell change for a Node B that does not support MAC-ehs preservation.
9. The method of claim 1 wherein the MAC-ehs entity is reset only if reordering queues are used
10. The method of claim 1 wherein the MAC-ehs entity is reset only if reordering queues are used and cell reselection results in an inter-Node B cell change or an intra-node B cell change for a Node B that does not support MAC-ehs preservation
11. The method of claim 1 wherein the MAC-ehs entity is reset in accordance with an indication from a network
12. The method of claim 1 further comprising: flushing hybrid automatic repeat request (HARQ) soft buffers
13. The method of claim 1 further comprising: sending a radio link control (RLC) status report upon cell reselection
14. The method of claim 13 wherein the RLC status report is sent prior to sending the CELL UPDATE message and after selecting the target cell
15. The method of claim 13 wherein the RLC status report is included in the CELL UPDATE message
16. The method of claim 13 wherein the RLC status report is sent after receiving the CELL UPDATE CONFIRM message
17. The method of claim 1 wherein the system information includes an indication of enhanced Cell_FACH capability
18. The method of claim 1 wherein the HS-DSCH common system information includes at least one of a high speed shared control channel (HS- SCCH) scrambling code and channelization code, channel quality indicator (CQI) feedback information, the number of hybrid automatic repeat request (HARQ) processes, memory partitioning, and a set of reserved HS-DSCH RNTIs (H-RNTIs)
19. A method for performing cell reselection while in a Cell_FACH state when only a source cell supports Enhanced Cell_FACH, the method comprising: selecting a target cell; reading system information from the target cell; clearing a radio network temporary identity (RNTI) received in a source cell; resetting an HS-DSCH medium access control (MAC-ehs) entity configured in the source cell; preventing HS-DSCH reception by setting an HS-DSCH reception variable to FALSE; setting up secondary common control physical channel (S-CCPCH) and random access channel (RACH) communication; sending a CELL UPDATE message; and receiving downlink transmission on an S-CCPCH.
20. The method of claim 19 further comprising: sending a radio link control (RLC) status report upon cell reselection.
21. The method of claim 20 wherein the RLC status report is sent prior to sending the CELL UPDATE message and after selecting the target cell.
22. The method of claim 20 wherein the RLC status report is included in the CELL UPDATE message.
23. The method of claim 20 wherein the RLC status report is sent after receiving a CELL UPDATE CONFIRM message.
24. A method for performing cell update while in a Cell_FACH state, the method comprising: detecting a cell update triggering event while receiving HSDPA transmission in a Cell_DCH state using a dedicated high speed downlink shared channel (HS-DSCH) radio network temporary identity (H-RNTI), the cell update triggering event being one of a radio link failure and a radio link control (RLC) unrecoverable error; reading system information in a target cell; clearing a radio network temporary identity (RNTI) received in a source cell; setting up random access channel (RACH) communication, sending a CELL UPDATE message via an RACH; enabling HS-DSCH reception by setting an HS-DSCH reception variable to TRUE, if it is determined from the system information that the target cell supports an enhanced Cell_FACH state; and receiving HSDPA transmission using the dedicated H-RNTI.
25. The method of claim 24 further comprising: resetting an HS-DSCH medium access control (MAC-ehs) entity upon detection of one of radio link failure and RLC unrecoverable error; and setting up HSDPA communication based on HS-DSCH common system information included in the system information.
26. A wireless transmit/receive unit (WTRU) for performing cell reselection while in a Cell_FACH state, the WTRU comprising: a transceiver; a high speed downlink shared channel (HS-DSCH) medium access control (MAC-ehs) entity for high speed downlink packet access (HSDPA) communication; and a controller configured to, while in a Cell_FACH state, select a target cell, read system information from the target cell, clear a radio network temporary identity (RNTI) received in a source cell, the RNTI being at least one of an HS-DSCH RNTI (H-RNTI) and a cell RNTI (C-RNTI), reset the MAC-ehs entity configured in the source cell, set up random access channel (RACH) communication, send a CELL UPDAATE message, and configure HSDPA communication based on HS-DSCH common system information included in the system information.
27. The WTRU of claim 26 wherein an index to one of a plurality of reserved HS-DSCH radio network temporary identities (RH-RNTIs) is included in the CELL UPDATE message.
28. The WTRU of claim 26 wherein the HSDPA communication is received using an RH-RNTI as requested in the CELL UPDATE message.
29. The WTRU of claim 26 wherein the HSDPA communication is received using a temporary identity which is a subset of a universal terrestrial radio access network (UTRAN) radio network temporary (U-RNTI).
30. The WTRU of claim 26 wherein the controller enables HS-DSCH reception by setting an HS-DSCH reception variable to TRUE.
31. The WTRU of claim 26 wherein the MAC-ehs entity is reset for both a common H-RNTI and a dedicated H-RNTI if the common H-RNTI and the dedicated H-RNTI are configured with separate MAC-ehs entities.
32. The WTRU of claim 26 wherein the MAC-ehs entity is reset only when cell reselection results in an inter-Node B cell change.
33. The WTRU of claim 26 wherein the MAC-ehs entity is reset only when cell reselection results in an intra-node B cell change for a Node B that does not support MAC-ehs preservation.
34. The WTRU of claim 26 wherein the MAC-ehs entity is reset only if reordering queues are used.
35. The WTRU of claim 26 wherein the MAC-ehs entity is reset only if reordering queues are used and cell reselection results in an inter-Node B cell change or an intra-node B cell change for a Node B that does not support MAC-ehs preservation.
36. The WTRU of claim 26 wherein the controller resets the MAC- ehs entity in accordance with an indication from a network.
37. The WTRU of claim 26 wherein the controller flushes hybrid automatic repeat request (HARQ) soft buffers.
38. The WTRU of claim 26 further comprising a radio link control (RLC) entity configured to send an RLC status report upon cell reselection.
39. The WTRU of claim 38 wherein the RLC status report is sent prior to sending the CELL UPDATE message and after selecting the target cell.
40. The WTRU of claim 38 wherein the RLC status report is included in the CELL UPDATE message.
41. The WTRU of claim 38 wherein the RLC status report is sent after receiving a CELL UPDATE CONFIRM message.
42. The WTRU of claim 26 wherein the system information includes an indication of enhanced Cell_FACH capability.
43. The WTRU of claim 26 wherein the HS-DSCH common system information includes at least one of a high speed shared control channel (HS- SCCH) scrambling code and channelization code, channel quality indicator (CQI) feedback information, the number of hybrid automatic repeat request (HARQ) processes, memory partitioning, and a set of reserved HS-DSCH RNTIs (H-RNTIs).
44. A wireless transmit/receive unit (WTRU) for performing cell reselection while in a Cell_FACH state when only a source cell supports Enhanced Cell_FACH, the WTRU comprising: a transceiver; a high speed downlink shared channel (HS-DSCH) medium access control (MAC-ehs) entity for high speed downlink packet access (HSDPA) communication; and a controller configured to, while in a Cell_FACH state, select a target cell, read system information from the target cell, clear a radio network temporary identity (RNTI) received in a source cell, reset the MAC-ehs entity configured in the source cell, prevent HS-DSCH reception by setting an HS- DSCH reception variable to FALSE, set up secondary common control physical channel (S-CCPCH) and random access channel (RACH) communication, send a CELL UPDATE message, and configure the transceiver to receive downlink transmission on an S-CCPCH.
45. The WTRU of claim 44 further comprising: a radio link control (RLC) entity for sending an RLC status report upon cell reselection.
46. The WTRU of claim 45 wherein the RLC status report is sent prior to sending the CELL UPDATE message and after selecting the target cell.
47. The WTRU of claim 45 wherein the RLC status report is included in the CELL UPDATE message.
48. The WTRU of claim 45 wherein the RLC status report is sent after receiving a CELL UPDATE CONFIRM message.
49. A wireless transmit/receive unit (WTRU) for performing cell update while in a Cell_FACH state, the WTRU comprising: a transceiver; a high speed downlink shared channel (HS-DSCH) medium access control (MAC-ehs) entity for high speed downlink packet access (HSDPA) communication; and a controller configured to, while in a CeIl-FACH state, detect a cell update triggering event while receiving HSDPA transmission in a Cell_DCH state using a dedicated high speed downlink shared channel (HS-DSCH) radio network temporary identity (H-RNTI), the cell update triggering event being one of a radio link failure and a radio link control (RLC) unrecoverable error, read system information in a target cell, clear a radio network temporary identity (RNTI) received in a source cell, set up random access channel (RACH) communication, if it is determined from the system information that the target cell supports an enhanced Cell_FACH state, send a CELL UPDATE message via an RACH, enable HS-DSCH reception by setting an HS-DSCH reception variable to TRUE, and configure the MAC-ehs entity based on the common HS-DSCH system information included in the system information to receive HSDPA transmission in the target cell.
50. The WTRU of claim 49 wherein the MAC-ehs entity is reset upon detection of one of radio link failure and radio link control (RLC) unrecoverable error.']
Associated Portfolios

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SUMMARY
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The information in blue was extracted from the third parties (Standard Setting Organisation, Espacenet)
The information in grey was provided by the patent holder
The information in purple was extracted from the FrandAvenue
Explicitly disclosed patent:openly and comprehensibly describes all details of the invention in the patent document.
Implicitly disclosed patent:does not explicitly state certain aspects of the invention, but still allows for these to be inferred from the information provided.
Basis patent:The core patent in a family, outlining the fundamental invention from which related patents or applications originate.
Family member:related patents or applications that share a common priority or original filing.