The main reason for the preference for single- carrier transmission is the lower peak- to- average power ratio (PAPR), compared to multi- carrier signals (OFDMAв. Furthermore, for higher/lower symbol rate, the number of в.
OFDM (Orthogonal Frequency Division Multiplex), is that, in the former case, each в. It is the same dependency between the в. For simplicity, this downlink channel is referred to the в. GPP TS 3. 6. 3. 21, в. Bj shall be initialized to zero when the related logical channel is established, and incremented by the product PBRГ—TTI duration for each TTI, where PBR is Prioritized Bit Rate of logical channel j.
The bucket size of a logical channel is equal to PBRГ—BSD, where PBR and BSD are configured by upper layers. For details on semi- persistent scheduling, see 3. GPP TS 3. 6. 3. 00, в. The function Ж’( ) is signaled to the user equipment via higher layers. At the 3. GPP TSG RAN #3. Study Item description on в.
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Depending on the aggregation scenario, the n. Г—3. 00 k. Hz spacing can be facilitated by insertion of a low number of unused subcarriers between contiguous component carriers. There is (in the absence of Single Userв. For this purpose a component carrier identification field is introduced in the respective DCI formats (called в. Similarly, the n transport blocks corresponding to the n uplink resource assignments can be represented by sequences of bits в””b. For instance, a respective MAC control element can be either categorized as a mobile terminal- specific MAC control element or as a component carrier- specific MAC control element, and the transport block to which the respective MAC control element is added depends on whether it is component carrier- specific (в.
In this embodiment, the generation method for the transport blocks ensures that a maximum of l logical channels is grouped into a respective one of the first nв. The grouping unit groups a maximum of l logical channels into a respective one of the first nв. Using HARQ on the uplink, it can be assumed that transport blocks are generated only for initial transmissions, so that the priority field on the PDCCH is dispensable for adaptive retransmission grantв.
When receiving an uplink resource assignment (PDCCH) at the physical layer, the MAC layer is informed onв. Therefore the accumulation of the uplink resource assignments means that the mobile terminal accumulates the transport block sizes of the corresponding received uplink resource assignments and forms one в.
The mobile terminal forms a в. The variable Bj is initialized to zero when the related logical channel is established, and is incremented by the product PBRГ—TTI duration for each TTI, where PBR is Prioritized Bit Rate of logical channel j. If the PBR of a radio bearer is set to в. It can be assumed that there are n uplink resource assignments RAi,i в. When now performing the joint logical channel prioritization procedure for the в.
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Furthermore when only a limited number of logical channelsв. This component carrier is also referred to as the в. Furthermore, the mobile terminal accumulates 5. According to the procedure above, up to a maximum of 1. LCH3в. 1. 3 is that the terminal- specific MAC control elements and the component carrier- specific MAC control elements are already considered 1. When distributing 1. MAC control elements will be transmitted in the transport block scheduled for the highest priority component carrier as the MAC control elements have in general a higher priority than data of any logical channels (except for data from UL- CCCH)в.
Hence, in the majority of cases, the transport block scheduled for the highest priority component carrier contains all MAC control elements (except a в. According to one exemplary embodiment all MAC control elements except a в. In another embodiment of the invention a complexity reduction is achieved by dividing one в. For generating the third transport block TB3, the transport block size yielded by the uplink resource assignment for transport block TB3 is equal to the в. Further, the mobile terminal performs a first joint logical channel prioritization procedure on the two highest priority logical channels (LCH1 and LCH2) to fill the first virtual transport block accumulated from transport blocks (TB1 and TB2, andв. In order to regain uplink synchronization for the в.
Nevertheless, the virtual transport blocks per component carrier obtained by division needs to be further divided to transport blocks for the MIMO layers in each component carrierв.