Method, system and equipment for sending inter-system neighbor cell information and establishing neighbor cell relationship
A technology of neighbor information and neighbor relationship, which is used in wireless communication, electrical components, etc.
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
example 1
[0099] Example 1: eNBA discovers and acquires the information of UTRAN neighbor cell W, and then transmits the information of neighbor cell W to eNBB when eNBA establishes X2 with eNBB;
[0100] The eNBA obtains some information of the UTRAN neighbor cell W through the aforementioned ANR process, including the carrier frequency, scrambling code, CGI, LAC and RAC of the cell W;
[0101] The eNBA establishes an X2 interface with the adjacent eNBB, and the X2SETUPREQUEST message sent by the eNBA carries the carrier frequency, scrambling code, CGI, LAC and RAC of the UTRAN neighboring cell W, and the eNBB saves the information locally after receiving it;
[0102] After that, a UE served by eNBB reports that it has detected the carrier frequency and scrambling code of a UTRAN neighboring cell, so that it can know that the UTRAN cell is adjacent to the current serving cell of the UE under eNBB;
[0103] The eNBB compares the carrier frequency and scrambling code of the UTRAN cell re...
example 2
[0105] Example 2: eNBA establishes an X2 interface with eNBB first, then eNBA discovers and acquires the information of UTRAN neighboring cell W, and then eNBA transmits the information of neighboring cell W to eNBB through ENBCONFIGURATIONUPDATE message;
[0106] The eNBA establishes an X2 interface with the adjacent eNBB;
[0107] Afterwards, the eNBA obtained some information about the UTRAN neighbor cell W through the aforementioned ANR process, including the carrier frequency, scrambling code, CGI, LAC and RAC of the cell W;
[0108] Because the neighbor relationship of eNBA changes, it sends ENBCONFIGURATIONUPDATE message to eNBB, which carries the carrier frequency, scrambling code, CGI, LAC and RAC of UTRAN neighbor W, and eNBB saves the information locally after receiving it;
[0109] Afterwards, a UE served by the eNBB reports that it has detected the carrier frequency and scrambling code of a UTRAN neighbor cell;
[0110] The eNBB compares the carrier frequency and...
example 3
[0112] Example 3: eNBA discovers and obtains the information of UTRAN neighboring cells W and Y, and eNBB discovers and obtains the information of UTRAN neighboring cells W and Z, and then when eNBA and eNBB establish X2, the two exchange their respective UTRAN neighboring cell information.
[0113] eNBA obtains some information of UTRAN neighboring cells W and Y through the aforementioned ANR process, including the carrier frequency, scrambling code, CGI, LAC and RAC of cells W and Y;
[0114] eNBB obtains some information about UTRAN neighboring cells W and Z through the aforementioned ANR process, including the carrier frequency, scrambling code, CGI, LAC and RAC of cells W and Z;
[0115] The eNBA establishes an X2 interface with the adjacent eNBB. The X2SETUPREQUEST message sent by the eNBA carries the carrier frequencies, scrambling codes, CGI, LAC, and RAC of the UTRAN neighbors W and Y, and the X2SETUPRESPONSE message returned by the eNBB carries the UTRAN neighbors. T...
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More 