System and method for hand-in disambiguation using user equipment wifi location in a network environment
US-2015351072-A1 · Dec 3, 2015 · US
US9294963B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9294963-B2 |
| Application number | US-201214348116-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 26, 2012 |
| Priority date | Sep 30, 2011 |
| Publication date | Mar 22, 2016 |
| Grant date | Mar 22, 2016 |
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The following methods are disclosed: A method of initiating handover of a User Equipment, UE, in a cellular network comprising a plurality of enhanced Node Bs, eNBs, the method comprising: receiving at a source eNB, from the UE, a handover measurement report containing a Physical Cell Identifier, PCI, of a cell of a neighboring eNB; at the source eNB, performing a lookup of a Neighbor Relation Relation Table to identify a global cell identity and access mode associated with the PCI; and using the identified global cell identity and the access mode to determine an eNB identity for said neighboring eNB. A method of initiating handover of a User Equipment, UE, in a cellular net-work comprising a plurality of enhanced Node Bs, eNBs, the method comprising: receiving at a source eNB, from the UE, a handover measurement report containing a Physical Cell Identifier, PCI, of a cell of a neighboring eNB; at the source eNB, performing a lookup of a Neighbor Relation Table to identify a plurality of global cell identities associated with the PCI, the neighbor relation table also containing, for each such global cell identity, PCIs of neighboring cells; selecting the correct global cell identity from said plurality of global cell identities by comparing the PCIs of further neighboring eNBs cells reported by the UE with the neighboring PCIs of each of said plurality of global cell identities; and deriving from the selected correct global cell identity, an eNB identity of said neighboring eNB. A method of initiating handover of a subscriber from a cell of a source enhanced Node B, eNB, to a cell of a target enhanced Node B, eNB, via the X2 interface, the method comprising, at the source eNB, maintaining a Neighbor Relation Table (NRT) identifying the connectivity of the source eNB to cells of its neighboring eNBs, this information including for each eNB cell an indication that the eNB cell is an open, closed or hybrid eNB cell and, for each closed and hybrid eNB cell, a Closed Subscriber Group, CSG, identity; determining that a handover of the UE is required and using the information stored in the NRT to identify closed and optionally hybrid eNBs cells to which the subscriber has access, selecting a target eNB cell from the available open eNBs cells and the identified closed and optionally hybrid eNBs cells, and performing handover of the subscriber from the source to the target eNB cell including an X2 interface between the source and the target eNBs where no such interface exists a priori.
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The invention claimed is: 1. A method of initiating handover of a User Equipment (UE) via an X2 interface in a cellular network comprising a plurality of enhanced Node Bs (eNBs), the method comprising: receiving at a source eNB, from the UE, a handover measurement report containing a Physical Cell Identifier (PCI) of a cell of a neighboring eNB; at the source eNB, performing a lookup of a Neighbor Relation Relation Table to identify a cell global identity (CGI) and access mode associated with the PCI; and using the identified CGI and the access mode to construct an eNB (eNB ID) for said neighboring eNB. 2. The method according to claim 1 , wherein the CGI comprises a 28 bit cell identity (CI); if said access mode identifies the neighboring eNB as a Home eNB, said eNB identity is constructed using the entire 28 bit CI of the CGI, and if the access mode identifies the neighboring eNB as a macro eNB, said eNB identity is constructed using the first 20 bits of the CI. 3. The method according to claim 2 , further comprising maintaining within said Neighbor Relation Table, for each neighboring cell, PCIs of one or more cells neighboring that neighboring cell. 4. The method according to claim 1 , further comprising maintaining within said Neighbor Relation Table, for each neighboring cell, PCIs of one or more cells neighboring that neighboring cell. 5. The method of claim 1 , wherein the CGI comprises a 28 bit cell identity (CI); and constructing the eNB ID using the CGI and access mode comprises: 1) determining whether the access mode indicates that the PCI reported by the UE corresponds to an eNB cell; and (2) in response to determining that the access mode indicates that the PCI reported by the UE corresponds to an eNB cell, the eNB ID is constructed using only 20 bits of the CI. 6. The method of claim 1 , wherein the CGI comprises a 28 bit cell identity (CI); and constructing the eNB ID using the CGI and access mode comprises: 1) determining whether the access mode indicates that the PCI reported by the UE corresponds to an open access HeNB cell; and (2) in response to determining that the access mode indicates that the PCI reported by the UE corresponds to an open access HeNB cell, the eNB ID is constructed using the entire 28 bits of the CI. 7. A method of initiating handover of a User Equipment (UE) in a cellular network comprising a plurality of enhanced Node Bs (eNBs), the method comprising: receiving at a source eNB, from the UE, a handover measurement report containing a Physical Cell Identifier (PCI) of a cell of a neighboring eNB; at the source eNB, performing a lookup of a Neighbor Relation Table to identify a plurality of cell global identities (CGIs) associated with the PCI, the neighbor relation table also containing, for each such CGI, PCIs of neighboring cells; and selecting the correct CGI from said plurality of CGIs by comparing the PCIs of further neighboring eNBs cells reported by the UE with the neighboring PCIs of each of said plurality of CGIs; and deriving from the selected correct CGI, an eNB identity of said neighboring eNB. 8. A method of initiating handover of a User Equipment (UE) from a cell of a source enhanced Node B (eNB) to a cell of a target eNB via the X2 interface, the method comprising: at the source eNB, maintaining a Neighbor Relation Table (NRT) comprising a plurality of target cell identifiers (TCIs), including a first TCI for identifying a first target cell and an second TCI for identifying a second target cell, wherein the NRT further comprises a first access mode identifier associated with the first TCI and a second access mode identifier associated with the second TCI, wherein the first access mode identifier indicates that the first target cell is one of an open cell, a closed cell, and a hybrid cell, and the second access mode identifier indicates that the second target cell is one of an open cell, a closed cell, and a hybrid cell; determining that a handover of the UE is required; using the information stored in the NRT to identify any closed and hybrid target cells to which UE has access; forming a set of candidate target cells, said set of target cells including all closed target cells and hybrid targets cells to which the UE has access, if any selecting a target cell from the set of candidate target cells; and performing handover of the subscriber from the source to the selected target cell including establishing an X2 interface between the source eNB and a target eNB serving the selected target cell. 9. The method according to claim 8 , wherein said step of determining that a handover of the UE is required comprises receiving at the source eNB, from said UE, reports of neighboring eNB cells including, where available, the CSG identity and access mode of a neighboring eNB cell. 10. The method according to claim 9 , further comprising maintaining within said Neighbor Relation Table, for each neighboring cell, PCIs of one or more cells neighboring that neighboring cell. 11. The method according to claim 8 , further comprising maintaining within said Neighbor Relation Table, for each neighboring cell, PCIs of one or more cells neighboring that neighboring cell.
between access points · CPC title
Determination of parameters used for hand-off, e.g. generation or modification of neighbour cell lists · CPC title
Control or signalling for completing the hand-off · CPC title
using private Base Stations, e.g. femto Base Stations, home Node B · CPC title
Determination of neighbour cell lists · CPC title
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