Abstract
A method is provided for allocating resources of a control channel in a mobile communication system using Orthogonal Frequency Division Multiplexing (OFDM). The method includes when a time index and a frequency index of available Resource Elements (REs) are defined as l and k respectively dividing the available REs in a two-dimensional structure of (k l); and time-first-allocating each RE to a plurality of RE groups while increasing the time index l for each frequency index k from an initial value up to a predetermined range.
Technology | Declaration Information | Specification Information | Explicitly Disclosed | Patent Type | |||||
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Declaration Date | Declaration Reference | Declaring Company | Specification Number | ||||||
4G | 29/12/2008 | ISLD-200812-015 | SAMSUNG | Yes | Basis Patent | ||||
4G | 17/12/2015 | ISLD-201512-007 | SAMSUNG | No | Family Member | ||||
4G | 08/05/2019 | ISLD-201905-012 | SAMSUNG |
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Yes | Basis Patent | |||
5G | 30/07/2019 | ISLD-201907-043 | SAMSUNG |
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Yes | Basis Patent | |||
Not Available | 30/07/2019 | ISLD-201907-043 | SAMSUNG | Yes | Basis Patent |
Specification Information
Specification Information
Technologies
Family Information
All Granted Patents In Patent Family : | ---- |
All Pending Patents In Patent Family : | ---- |
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US2009097447A1 | 4G | 17/12/2015 | ISLD-201512-007 | SAMSUNG | No | Family Member | ||||
US2009097447A1 | 4G | 08/05/2019 | ISLD-201905-012 | SAMSUNG |
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Yes | Basis Patent | |||
US2009097447A1 | 5G | 30/07/2019 | ISLD-201907-043 | SAMSUNG |
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Yes | Basis Patent | |||
US2009097447A1 | Not Available | 30/07/2019 | ISLD-201907-043 | SAMSUNG | Yes | Basis Patent | ||||
WO2009045076A2 | 4G | 29/12/2008 | ISLD-200812-015 | SAMSUNG | Yes | Family Member | ||||
WO2009045076A2 | 4G | 17/12/2015 | ISLD-201512-007 | SAMSUNG | No | Family Member | ||||
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RU2011150472A | 4G | 29/12/2008 | ISLD-200812-015 | SAMSUNG | No | Family Member | ||||
RU2011150472A | 4G | 17/12/2015 | ISLD-201512-007 | SAMSUNG | No | Family Member | ||||
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RU2583045C2 | 4G | 17/12/2015 | ISLD-201512-007 | SAMSUNG | No | Family Member | ||||
RU2583045C2 | 4G | 08/05/2019 | ISLD-201905-012 | SAMSUNG |
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US2015201407A1 | 4G | 17/12/2015 | ISLD-201512-007 | SAMSUNG | Yes | Basis Patent | ||||
US2015201407A1 | 4G | 08/05/2019 | ISLD-201905-012 | SAMSUNG |
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US9167569B2 | 4G | 17/12/2015 | ISLD-201512-007 | SAMSUNG | Yes | Basis Patent | ||||
US9167569B2 | 4G | 08/05/2019 | ISLD-201905-012 | SAMSUNG |
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US9167569B2 | 5G | 30/07/2019 | ISLD-201907-043 | SAMSUNG |
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US9167569B2 | Not Available | 30/07/2019 | ISLD-201907-043 | SAMSUNG | No | Family Member | ||||
BRPI0817494A2 | 4G | 29/12/2008 | ISLD-200812-015 | SAMSUNG | No | Family Member | ||||
BRPI0817494A2 | 4G | 17/12/2015 | ISLD-201512-007 | SAMSUNG | No | Family Member | ||||
BRPI0817494A2 | 4G | 08/05/2019 | ISLD-201905-012 | SAMSUNG |
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BRPI0817494A2 | Not Available | 30/07/2019 | ISLD-201907-043 | SAMSUNG | No | Family Member | ||||
CN104253682A | 4G | 29/12/2008 | ISLD-200812-015 | SAMSUNG | No | Family Member | ||||
CN104253682A | 5G | 30/07/2019 | ISLD-201907-043 | SAMSUNG |
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CN104253682A | Not Available | 30/07/2019 | ISLD-201907-043 | SAMSUNG | No | Family Member | ||||
JP2014078986A | 4G | 29/12/2008 | ISLD-200812-015 | SAMSUNG | No | Family Member | ||||
JP2014078986A | 4G | 17/12/2015 | ISLD-201512-007 | SAMSUNG | No | Family Member | ||||
JP2014078986A | 4G | 08/05/2019 | ISLD-201905-012 | SAMSUNG |
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JP2014078986A | 5G | 30/07/2019 | ISLD-201907-043 | SAMSUNG |
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JP2014078986A | Not Available | 30/07/2019 | ISLD-201907-043 | SAMSUNG | No | Family Member | ||||
JP5784692B2 | 4G | 29/12/2008 | ISLD-200812-015 | SAMSUNG | No | Family Member | ||||
JP5784692B2 | 4G | 17/12/2015 | ISLD-201512-007 | SAMSUNG | No | Family Member | ||||
JP5784692B2 | 4G | 08/05/2019 | ISLD-201905-012 | SAMSUNG |
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JP5784692B2 | 5G | 30/07/2019 | ISLD-201907-043 | SAMSUNG |
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JP5784692B2 | Not Available | 30/07/2019 | ISLD-201907-043 | SAMSUNG | No | Family Member | ||||
US2015163776A1 | 4G | 29/12/2008 | ISLD-200812-015 | SAMSUNG | No | Family Member | ||||
US2015163776A1 | 4G | 17/12/2015 | ISLD-201512-007 | SAMSUNG | No | Family Member | ||||
US2015163776A1 | 4G | 08/05/2019 | ISLD-201905-012 | SAMSUNG |
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US2015163776A1 | 5G | 30/07/2019 | ISLD-201907-043 | SAMSUNG |
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US2015163776A1 | Not Available | 30/07/2019 | ISLD-201907-043 | SAMSUNG | No | Family Member | ||||
US9282547B2 | 4G | 29/12/2008 | ISLD-200812-015 | SAMSUNG | No | Family Member | ||||
US9282547B2 | 4G | 17/12/2015 | ISLD-201512-007 | SAMSUNG | No | Family Member | ||||
US9282547B2 | 4G | 08/05/2019 | ISLD-201905-012 | SAMSUNG |
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US9282547B2 | 5G | 30/07/2019 | ISLD-201907-043 | SAMSUNG |
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US9282547B2 | Not Available | 30/07/2019 | ISLD-201907-043 | SAMSUNG | No | Family Member | ||||
US2015163777A1 | 4G | 29/12/2008 | ISLD-200812-015 | SAMSUNG | No | Family Member | ||||
US2015163777A1 | 4G | 17/12/2015 | ISLD-201512-007 | SAMSUNG | No | Family Member | ||||
US2015163777A1 | 4G | 08/05/2019 | ISLD-201905-012 | SAMSUNG |
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No | Family Member | |||
US2015163777A1 | 5G | 30/07/2019 | ISLD-201907-043 | SAMSUNG |
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No | Family Member | |||
US2015163777A1 | Not Available | 30/07/2019 | ISLD-201907-043 | SAMSUNG | No | Family Member | ||||
US9380565B2 | 4G | 29/12/2008 | ISLD-200812-015 | SAMSUNG | No | Family Member | ||||
US9380565B2 | 4G | 17/12/2015 | ISLD-201512-007 | SAMSUNG | No | Family Member | ||||
US9380565B2 | 4G | 08/05/2019 | ISLD-201905-012 | SAMSUNG |
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No | Family Member | |||
US9380565B2 | 5G | 30/07/2019 | ISLD-201907-043 | SAMSUNG |
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No | Family Member | |||
US9380565B2 | Not Available | 30/07/2019 | ISLD-201907-043 | SAMSUNG | No | Family Member | ||||
US2015163778A1 | 4G | 29/12/2008 | ISLD-200812-015 | SAMSUNG | No | Family Member | ||||
US2015163778A1 | 4G | 17/12/2015 | ISLD-201512-007 | SAMSUNG | No | Family Member | ||||
US2015163778A1 | 4G | 08/05/2019 | ISLD-201905-012 | SAMSUNG |
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No | Family Member | |||
US2015163778A1 | 5G | 30/07/2019 | ISLD-201907-043 | SAMSUNG |
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No | Family Member | |||
US2015163778A1 | Not Available | 30/07/2019 | ISLD-201907-043 | SAMSUNG | No | Family Member | ||||
US9277544B2 | 4G | 29/12/2008 | ISLD-200812-015 | SAMSUNG | No | Family Member | ||||
US9277544B2 | 4G | 17/12/2015 | ISLD-201512-007 | SAMSUNG | No | Family Member | ||||
US9277544B2 | 4G | 08/05/2019 | ISLD-201905-012 | SAMSUNG |
S1
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Technologies

Product


Use Cases

Services

Claim
1. A method for transmitting a downlink control channel in mobile communication system using Orthogonal Frequency Division Multiplexing (OFDM), the method comprising the steps of:
mapping the downlink control channel to Resource Elements (REs), wherein the downlink control channel comprises a plurality of RE groups;
transmitting downlink control information via the mapped downlink control channel;
wherein each of the plurality of RE groups comprises four REs, and each RE group has a single time index; and
wherein the plurality of RE groups are allocated to available resources in the downlink control channel in a time first manner, wherein the available resources are divided into a two-dimensional frequency/time structure, and wherein, during allocation, a time index is increased from an initial value up to a predetermined value in a given frequency index, before increasing to a next frequency index and resetting the time index to the initial value.', 'mapping the downlink control channel to Resource Elements (REs), wherein the downlink control channel comprises a plurality of RE groups;', 'transmitting downlink control information via the mapped downlink control channel;', 'wherein each of the plurality of RE groups comprises four REs, and each RE group has a single time index; and', 'wherein the plurality of RE groups are allocated to available resources in the downlink control channel in a time first manner, wherein the available resources are divided into a two-dimensional frequency/time structure, and wherein, during allocation, a time index is increased from an initial value up to a predetermined value in a given frequency index, before increasing to a next frequency index and resetting the time index to the initial value.
2. The method of claim 1, wherein at least one of the plurality of RE groups comprises an RE for transmission of a reference signal used for channel estimation.
3. The method of claim 2, wherein the at least one of the plurality of RE groups that comprises the RE for transmission of the reference signal has a number of allocated REs that is greater than four.
4. The method of claim 1, wherein the downlink control channel is a Packet Dedicated Control Channel (PDCCH) and the plurality of RE groups are not assigned a Physical Channel Format Indication Channel (PCFICH) or a Physical Hybrid Automatic Repeat reQuest (H-ARO) Indicator Channel (PHICH).
5. The method of claim 1, further comprising transmitting information associated with the available resources.
6. The method of claim 1, wherein the predetermined value is a number of OFDM symbols used for transmission of the downlink control channel.
7. The method of claim 1, wherein a time index of a first RE in a given RE group is the single time index for the given RE group.
8. An apparatus for transmitting a downlink control channel in a mobile communication system using Orthogonal Frequency Division Multiplexing (OFDM), the apparatus comprising:
a controller for allocating a plurality of Resource Element (RE) groups to available resources in the downlink control channel in a time first manner, wherein the available resources are divided into a two-dimensional frequency/time structure, and wherein, during allocation, a time index is increased from an initial value up to a predetermined value in a given frequency index, before increasing to a next frequency index and resetting the time index to the initial value;
a mapper for mapping the downlink control channel to REs; and
a transmitter for transmitting downlink control information via the mapped downlink control channel;
wherein each of the plurality of RE groups comprises four REs, and each RE group has a single time index.', 'a controller for allocating a plurality of Resource Element (RE) groups to available resources in the downlink control channel in a time first manner, wherein the available resources are divided into a two-dimensional frequency/time structure, and wherein, during allocation, a time index is increased from an initial value up to a predetermined value in a given frequency index, before increasing to a next frequency index and resetting the time index to the initial value;', 'a mapper for mapping the downlink control channel to REs; and', 'a transmitter for transmitting downlink control information via the mapped downlink control channel;', 'wherein each of the plurality of RE groups comprises four REs, and each RE group has a single time index.
9. The apparatus of claim 8, wherein at least one of the plurality of RE groups comprises an RE for transmission of a reference signal used for channel estimation
10. The apparatus of claim 9, wherein the at least one of the plurality of RE groups that comprises the RE for transmission of the reference signal has a number of allocated REs that is greater than four
11. The apparatus of claim 8, wherein the downlink control channel is a Packet Dedicated Control Channel (PDCCH) and the plurality of RE groups are not assigned a Physical Channel Format Indication Channel (PCFICH) or a Physical Hybrid Automatic Repeat reQuest (H-ARO) Indicator Channel (PHICH)
12. The apparatus of claim 8, wherein the transmitter transmits information associated with the available resources
13. The apparatus of claim 8, wherein the predetermined value is a number of OFDM symbols used for transmission of the downlink control channel
14. The apparatus of claim 8, wherein a time index of a first RE in a given RE group is the single time index for the given RE group
15. A method for receiving a downlink control channel in a mobile communication system using Orthogonal Frequency Division Multiplexing (OFDM), the method comprising the steps of:
receiving the downlink control channel comprising a plurality of Resource Element (RE) groups; and
demapping downlink control information from the received downlink control channel;
wherein each of the plurality of RE groups comprises four REs, and each RE group has a single time index; and
wherein the plurality of RE groups are allocated to available resources in the downlink control channel in a time first manner, wherein the available resources are divided into a two-dimensional frequency/time structure, and wherein, during allocation, a time index is increased from an initial value up to a predetermined value in a given frequency index, before increasing to a next frequency index and resetting the time index to the initial value.', 'receiving the downlink control channel comprising a plurality of Resource Element (RE) groups; and', 'demapping downlink control information from the received downlink control channel;', 'wherein each of the plurality of RE groups comprises four REs, and each RE group has a single time index; and', 'wherein the plurality of RE groups are allocated to available resources in the downlink control channel in a time first manner, wherein the available resources are divided into a two-dimensional frequency/time structure, and wherein, during allocation, a time index is increased from an initial value up to a predetermined value in a given frequency index, before increasing to a next frequency index and resetting the time index to the initial value
16. The method of claim 15, further comprising receiving information associated with the available resources
17. The method of claim 15, wherein the predetermined value is a number of OFDM symbols used for transmission of the downlink control channel
18. The method of claim 15, wherein the downlink control channel is a Packet Dedicated Control Channel (PDCCH) and the plurality of RE groups are not assigned a Physical Channel Format Indication Channel (PCFICH) or a Physical Hybrid Automatic Repeat reQuest (H-ARQ) Indicator Channel (PHICH)
19. The method of claim 15, wherein a time index of a first RE in a given RE group is the single time index for the given RE group.
20. The method of claim 15, wherein at least one of the plurality of RE groups comprises an RE for transmission of a reference signal used for channel estimation.
21. The method of claim 20, wherein the at least one of the plurality of RE groups that comprises the RE for transmission of the reference signal has a number of allocated REs that is greater than four.
22. An apparatus for receiving a downlink control channel in a mobile communication system using Orthogonal Frequency Division Multiplexing (OFDM), the apparatus comprising:
a receiver for receiving the downlink control channel;
a demapper for demapping downlink control information from the received downlink control channel; and
a controller for identifying that the control channel comprises a plurality of Resource Element (RE) groups that are allocated to available resources in the downlink control channel in a time first manner, wherein the available resources are divided into a two-dimensional frequency/time structure, and wherein, during allocation, a time index is increased from an initial value up to a predetermined value in a given frequency index, before increasing to a next frequency index and resetting the time index to the initial value;
wherein each of the plurality of RE groups comprises four REs, and each RE group has a single time index.', 'a receiver for receiving the downlink control channel;', 'a demapper for demapping downlink control information from the received downlink control channel; and', 'a controller for identifying that the control channel comprises a plurality of Resource Element (RE) groups that are allocated to available resources in the downlink control channel in a time first manner, wherein the available resources are divided into a two-dimensional frequency/time structure, and wherein, during allocation, a time index is increased from an initial value up to a predetermined value in a given frequency index, before increasing to a next frequency index and resetting the time index to the initial value;', 'wherein each of the plurality of RE groups comprises four REs, and each RE group has a single time index.
23. The apparatus of claim 22, wherein the receiver receives information associated with the available resources.
24. The apparatus of claim 22, wherein the predetermined value is a number of OFDM symbols used for transmission of the downlink control channel.
25. The apparatus of claim 22, wherein the downlink control channel is a Packet Dedicated Control Channel (PDCCH) and the plurality of RE groups are not assigned a Physical Channel Format Indication Channel (PCFICH) or a Physical Hybrid Automatic Repeat reQuest (H-ARQ) Indicator Channel (PHICH).
26. The apparatus of claim 22, wherein a time index of a first RE in a given RE group is the single time index for the given RE group.
27. The apparatus of claim 22, wherein at least one of the plurality of RE groups comprises an RE for transmission of a reference signal used for channel estimation.
28. The apparatus of claim 27, wherein the at least one of the plurality of RE groups that comprises the RE for transmission of the reference signal has a number of allocated REs that is greater than four.']
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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.