Abstract
Provided is a radio communication device which can prevent interference between SRS and PUCCH when the PUCCH transmission bandwidth fluctuates and suppress degradation of CQI estimation accuracy by the band where no SRS is transmitted. The device includes: an SRS code generation unit ( 201) which generates an SRS (Sounding Reference Signal) for measuring uplink line data channel quality; an SRS arrangement unit (202) which frequency-multiplexes the SRS on the SR transmission band and arranges it; and an SRS arrangement control unit (208) which controls SRS frequency multiplex so as to be uniform in frequency without modifying the bandwidth of one SRS multiplex unit in accordance with the fluctuation of the reference signal transmission bandwidth according to the SRS arrangement information transmitted from the base station and furthermore controls the transmission interval of the frequency-multiplexed SRS.
Technology | Declaration Information | Specification Information | Explicitly Disclosed | Patent Type | |||||
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Declaration Date | Declaration Reference | Declaring Company | Specification Information | ||||||
4G | 25/10/2010 | ISLD-201011-016 | PANASONIC CORP | No | Family Member | ||||
4G | 21/08/2020 | ISLD-202010-016 | PANASONIC CORP |
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No | Family Member | |||
5G | 21/08/2020 | ISLD-202010-016 | PANASONIC CORP |
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No | Family Member |
Specification Information
Specification Information
Technologies
Family Information
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CN101779512A | 4G | 21/08/2020 | ISLD-202010-016 | PANASONIC CORP |
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Publication No | Technology | Declaration Information | Specification Information | Explicitly Disclosed | Patent Type | Status | National Phase Entries | |||||
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Technologies
Product
Use Cases
Services
Claim
1. A mobile station apparatus, comprising:
circuitry which, in at least one mode of operation, maps a reference signal to each of one or more frequency resources, into which a frequency band having a transmission bandwidth is uniformly divided depending on a size variation of the transmission bandwidth within a system bandwidth, wherein the transmission bandwidth is provided between control channels mapped to both ends of the system bandwidth; and
a transmitter which, in at least the one mode of operation, transmits the reference signal.
2. The mobile station apparatus according to claim 1 wherein the transmission bandwidth is variable in the system bandwidth while a central frequency of the transmission bandwidth remains the same.
3. The mobile station apparatus according to claim 1 wherein in at least one mode of operation, each of the one or more frequency resources has a fixed bandwidth regardless of the variation of the transmission bandwidth.
4. The mobile station apparatus according to claim 1 wherein in at least one mode of operation, the one or more frequency resources are uniformly dispersed in the frequency band having the transmission bandwidth.
5. The mobile station apparatus according to claim 1, comprising a receiver which, in at least the one mode of operation, receives control information associated with a reference-signal mapping, wherein the circuitry maps the reference signal based on the control information.
6. The mobile station apparatus according to claim 1 wherein the frequency band having the transmission bandwidth is obtained by subtracting a band, to which the control channels are mapped, from the system bandwidth.
7. The mobile station apparatus according to claim 1 wherein in at least one mode of operation, each of the one or more frequency resources has a narrow bandwidth, and the transmission bandwidth is a wide bandwidth.
8. The mobile station apparatus according to claim 1 wherein in at least one mode of operation, the one or more frequency resources consists of a single frequency resource having the transmission bandwidth.
9. The mobile station apparatus according to claim 1 wherein in at least one mode of operation, the one or more frequency resources comprises a plurality of frequency resources and the circuitry maps the reference signal with frequency hopping using each of the plurality of frequency resources.
10. The mobile station apparatus according to claim 1 wherein in at least one mode of operation, the one or more frequency resources consists of a single frequency resource having the transmission bandwidth and the circuitry maps the reference signal without frequency hopping.
11. The mobile station apparatus according to claim 1 wherein the transmission bandwidth is one of a plurality of different transmission bandwidths.
12. The mobile station apparatus according to claim 1 wherein each of the one or more frequency resources is a unit of transmission of a reference signal.
13. The mobile station apparatus according to claim 1 wherein a number of the one or more frequency resources is different depending on the variation of the transmission bandwidth.
14. The mobile station apparatus according to claim 1 wherein the one or more frequency resources cover the frequency band of the transmission bandwidth.
15. The mobile station apparatus according to claim 1 wherein in at least one mode of operation, the one or more frequency resources comprises a plurality of frequency resources which are different time resources.
16. The mobile station apparatus according to claim 1 wherein the reference signal is a sounding reference signal.
17. A radio communication method, comprising:
mapping, using a mobile station, a reference signal to each of one or more frequency resources, into which a frequency band having a transmission bandwidth is uniformly divided depending on a size variation of the transmission bandwidth within a system bandwidth, wherein the transmission bandwidth is provided between control channels mapped to both ends of the system bandwidth; and
transmitting the reference signal.
18. A mobile station, comprising:
circuitry which, in at least a first mode of operation, maps one or more reference signals to one or more frequency resources in a frequency band, the frequency band having a variable transmission bandwidth within a system bandwidth, the transmission bandwidth being provided between control channels mapped to both ends of the system bandwidth, wherein each of the one or more frequency resources is of a fixed bandwidth and the one or more frequency resources are uniformly distributed in the frequency band according to the variable transmission bandwidth; and
a transmitter which, in at least the first mode of operation, transmits the one or more reference signals.
19. The mobile station of claim 18 wherein a number of the one or more frequency resources varies according to the variable transmission bandwidth.
20. The mobile station of claim 18 wherein in a second mode of operation, the circuitry maps a reference signal to a single frequency resource, the single frequency resource having a bandwidth equal to the transmission bandwidth.
21. The mobile station of claim 19 wherein the number of the one or more frequency resources is one.
22. The mobile station of claim 18, comprising a receiver which, in at least the first mode of operation, receives control information associated with the one or more frequency resources, wherein the circuitry maps the one or more reference signals to the one or more frequency resources based on the control information.
23. The mobile station of claim 18 wherein the variable transmission bandwidth is equal to the system bandwidth minus a band to which the control channels are mapped.
24. The mobile station of claim 19 wherein when the number is greater than one, the circuitry maps a plurality of reference signals to a plurality of frequency resources using frequency hopping to transmit a reference signal on each of the plurality of frequency resources.
25. The mobile station of claim 18 wherein the transmission bandwidth is one of a plurality of different transmission bandwidths.
26. The mobile station of claim 18 wherein each of the one or more frequency resources is a unit of transmission of a reference signal.
27. The mobile station of claim 18 wherein the one or more reference signals are one or more sounding reference signals.
28. The mobile station of claim 18 wherein the one or more frequency resources are different time resources.
29. A communication method, comprising:
mapping, using a mobile station, one or more reference signals to one or more frequency resources in a frequency band, the frequency band having a variable transmission bandwidth within a system bandwidth, the transmission bandwidth being provided between control channels mapped to both ends of the system bandwidth, wherein each of the one or more frequency resources is of a fixed bandwidth and the one or more frequency resources are uniformly distributed in the frequency band according to the variable transmission bandwidth; and
transmitting the one or more reference signals.
Associated Portfolios
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The information in blue was extracted from the third parties (Standard Setting Organisation, Espacenet)
The information in grey was provided by the patent holder
The information in purple was extracted from the FrandAvenue
Explicitly disclosed patent:openly and comprehensibly describes all details of the invention in the patent document.
Implicitly disclosed patent:does not explicitly state certain aspects of the invention, but still allows for these to be inferred from the information provided.
Basis patent:The core patent in a family, outlining the fundamental invention from which related patents or applications originate.
Family member:related patents or applications that share a common priority or original filing.