IP Library Granted Patent US 9,667,393
Granted Patent B2
US 9,667,393 · App. 15/214,134 · Granted May 30, 2017

Scheduling apparatus and scheduling method

Inventors: Takashi Iwai (Ishikawa, JP); Sadaki Futagi (Ishikawa, JP); Daichi Imamura (Beijing, CN); Akihiko Nishio (Osaka, JP); Seigo Nakao (Singapore, SG); Yoshihiko Ogawa (Kanagawa, JP)
Assignee: Sun Patent Trust
H04L5/0041H04L5/0037H04L5/0064H04W72/042H04W72/0413H04W72/0453H04W72/08H04L5/006H04L5/0091
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Quick Facts
Patent No.
US 9,667,393
App. No.
15/214,134
Granted
May 30, 2017
Kind
B2
Abstract

A scheduling apparatus and a scheduling method, wherein the amount of signaling for frequency resource allocation information can be reduced while maintaining system throughput performance. In a base station apparatus ( 100 ), a scheduling section ( 113 ) allocates frequency resources to frequency allocation target terminals based on set frequency allocation units, and a frequency allocation parameter setting section ( 112 ) adjusts the set frequency allocation units set in the scheduling section ( 113 ) based on cluster numbers. Due to this, in each cluster number, frequency resources can be allocated based on the most suitable frequency allocation units with respect to the signaling bit number. As a result, the amount of signaling for frequency resource allocation information can be reduced. Further, system throughput can be maintained by making the cluster number, which is a parameter having little effect on system throughput, a setting parameter for frequency allocation units.

Claims (11)

1. An integrated circuit, comprising:

receiving circuitry, which, in operation, receives control information that includes cluster information that specifies a number of clusters which is a number of frequency resources allocated to a user equipment, each of the clusters being located on a separate position from other cluster(s) on a frequency axis; and

control circuitry, which, in operation, sets a resource block group size for allocating one or more frequency resources according to both a system bandwidth and the number of clusters, wherein the resource block group size is a number of resource blocks included in a resource block group, each of the clusters comprising one or more resource block groups, each of the one or more resource block groups having the resource block group size, and maps data to the one or more frequency resources, in one or more units of the resource block size.

2. The integrated circuit according to claim 1 wherein a common signaling format is used for both continuous frequency resource allocation where the number of clusters is one, and non-continuous frequency resource allocation where the number of clusters is two or more.

3. The integrated circuit according to claim 2 wherein the common signaling format includes a type bit indicative of the number of clusters and allocation information indicative of the frequency resource allocation.

4. The integrated circuit according to claim 3 wherein the allocation information has N bits calculated according to a following equation:

N =┌log 2 ((┌ N RB /P ┐+1) C (2 N Cluster ))┐

wherein, N RB is the system bandwidth, P is the resource block group size, N cluster is the number of clusters, and C means a number of combinations of selecting 2*N Cluster cluster starting and ending positions out of ┌N RB /P┐+1 number of possible cluster starting and ending positions.

5. The integrated circuit according to claim 3 wherein the type bit is indicative of a restricted number of clusters.

6. The integrated circuit according to claim 1 wherein a total number of bits in a signaling format used for continuous frequency resource allocation where the number of clusters is one is equal to a total number of bits in a signaling format used for non-continuous frequency resource allocation where the number of clusters is two or more.

7. The integrated circuit according to claim 1 wherein the resource block group size is set to a larger number as the number of clusters is larger.

Priority Claims (1)
JP 2009-035617 · Feb 18, 2009 · national
Continuity (3)
Continuation 14799316 · Jul 14, 2015
Continuation 13201767
Related Publication 20160330002A1 · Nov 10, 2016