Abstract:
A method of requesting a plurality of different characteristic indicators from a second communications apparatus in a wireless communications network including a first communications apparatus and a plurality of such second communications apparatuses which communicate with the first communications apparatus, the method includes the first communications apparatus transmitting a single standing instruction to the second communications apparatus defining at least two interleaving patterns, each interleaving pattern specifying one or more of the characteristic indicators and defining a pattern according to which the second communications apparatus is to interleave the specified characteristic indicators in a single feedback channel allocated to the second communications apparatus, the single standing instruction further defining a selection signal to be transmitted from the first communications apparatus to the second communications apparatus according to which the second communications apparatus is to select one of the interleaving patterns.
Abstract:
A method of coverage hole compensation is provided in a wireless telecommunications network including a plurality of base station transmitters, each transmitter providing a coverage area for communication with user equipment, wherein a coverage hole is present within a coverage area provided by a transmitting transmitter; the method comprising selecting transmitters which are to be adjusted, including a first dominant transmitter within the coverage hole, and adjusting a transmission parameter of the selected transmitters, wherein the amount of adjustment of the selected first dominant transmitter in the coverage hole is greater than the amount of adjustment of any other selected transmitter.
Abstract:
An inter-cell interference mitigation signalling method for controlling the use of a plurality of inter-cell interference mitigation methods during wireless communications between a first wireless communications apparatus and a second wireless communications apparatus, the method comprising performing a system configuration procedure to select one or more of the inter-cell interference mitigation methods for use during the wireless communications between the first wireless communications apparatus and the second wireless communications apparatus; performing an initiation procedure to start the use of the one or more selected inter-cell interference mitigation methods in response to the meeting of the predetermined initiation criteria; and performing a termination procedure to end the use of the one or more selected inter-cell interference mitigation methods in response to the meeting of predetermined termination criteria.
Abstract:
A signalling mechanism in an OFDMA-based wireless communication system in which the number of bits used to indicate the 2-D resource allocation in each frame are reduced, and optimised for the particular frame configuration. The numbers of bits within the MAP-IEs in at least the DL_MAP and optionally also the UL_MAP of each frame, used to represent the Symbol offset and No. of Symbols, are scaled to the frame duration and the subcarrier allocation scheme used for the zone to which the DL-MAP_IE is associated. Likewise, a variable number of bits is used for the subchannel offset and number of subchannels, which can be optimised based on the selected FFT size and subcarrier allocation scheme. The bit numbers in use can be TLV encoded and transmitted within a downlink channel descriptor following the DL_MAP and UL_MAP. Therefore, in subsequent frames each subscriber station knows the number of bits being used to represent these parameters, and thus the field sizes in the MAP_IEs, until such time as the DCD is updated. In this way, the signalling overhead incurred by the MAP_IEs, which can be very significant for a large number of users and with some frame and FFT sizes, is reduced.
Abstract:
The present invention relates to a method and system for automated correlation of genetic test results. The method includes: receiving a first genetic test result from an individual's genetic history and receiving a second genetic test result for the individual. The method further includes determining based on result criteria if the second genetic test result should be identified as the primary genetic test result for the individual and, if so, identifying said second genetic test result as the primary genetic test result in the individual's genetic history.
Abstract:
A signalling method for use in a multiple-access communication system, the system comprising a first communication apparatus and a plurality of second communication apparatuses, the second communication apparatuses being operable to communicate with the first communication apparatus using respective parts of a shared communication frame and each using an available service level for such communication, the method comprising: assessing service-level requests from the second communication apparatuses to determine if there is a group of the second communication apparatuses that have corresponding service-level requirements; if it is determined that such a group exists, employing a first control scheme for transmission in the shared communication frame of communication control information for the second communication apparatuses of the group; and for any second communication apparatus not part of the group, employing a further control scheme different from said first control scheme for transmission in the shared communication frame of communication control information for that second communication apparatus, wherein the first and further control schemes are configured such that use of the first control scheme for said group of second communication apparatuses enables communication for more such second communication apparatuses to be supported in said shared communication frame than if such a further control scheme were used for said group of second communication apparatuses.
Abstract:
A method of operating a wireless communications system comprising at least a base station, a first relay station, a second relay station and one or more subscriber stations; using at least a first wireless protocol with the first relay station, and using at least a second wireless protocol with the second relay station. Operation of the method comprises using a subframe which comprises: a first-protocol access period; a firstprotocol relay period; a second-protocol access period; and a second-protocol relay period. The subframe further comprises an idle period to avoid communications using the first wireless protocol interfering with communications using the second wireless protocol and the overall frame structure is arranged to position the idle period for the first relay station between the first-protocol access period and the first-protocol relay period, to accommodate switching of the first relay station between transmit and receive modes.
Abstract:
A method of operating a wireless communications system comprising at least a base station, a first relay station, a second relay station and one or more subscriber stations; using at least a first wireless protocol with the first relay station, and using at least a second wireless protocol with the second relay station. Operation of the method comprises using a subframe which comprises: a first-protocol access period; a firstprotocol relay period; a second-protocol access period; and a second-protocol relay period. The subframe further comprises an idle period to avoid communications using the first wireless protocol interfering with communications using the second wireless protocol and the overall frame structure is arranged to position the idle period for the first relay station between the first-protocol access period and the first-protocol relay period, to accommodate switching of the first relay station between transmit and receive modes.
Abstract:
A method for cooperative data transfer includes establishing a primary wireless connection with a primary access station. The primary wireless connection uses a primary synchronization channel that is transmitted during a first frame of a super frame. The super frame comprises a plurality of frames. The method also includes detecting a secondary synchronization channel generated by an alternate access station during a subsequent frame of the super frame. The method further includes determining whether the detected secondary synchronization channel has a signal strength greater than a threshold signal strength. The method additionally includes receiving permission to begin a cooperative data transfer operation with both the primary access station and the alternate access station.
Abstract:
A method for cooperative data transfer includes establishing a primary wireless connection with a primary access station. The primary wireless connection uses a primary synchronization channel that is transmitted during a first frame of a super frame. The super frame comprises a plurality of frames. The method also includes detecting a secondary synchronization channel generated by an alternate access station during a subsequent frame of the super frame. The method further includes determining whether the detected secondary synchronization channel has a signal strength greater than a threshold signal strength. The method additionally includes receiving permission to begin a cooperative data transfer operation with both the primary access station and the alternate access station.