IP Library Granted Patent US 11,742,903
Granted Patent B2
US 11,742,903 · App. 17/559,923 · Granted Aug 29, 2023

Communication apparatus and communication method

Inventor: Yutaka Murakami (Kanagawa, JP)
Assignee: Panasonic Intellectual Property Corporation of America
H04B7/0452H04B7/04H04B7/0617H04B7/086H04J3/00H04J11/00H04J11/003H04L27/262H04L27/2662H04L27/2675H04L27/2692H04L27/2626H04W72/0446
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Quick Facts
Patent No.
US 11,742,903
App. No.
17/559,923
Granted
Aug 29, 2023
Kind
B2
Abstract

A communication apparatus includes a receiver and a decoder. The receiver includes a plurality of antenna elements and, in operation, receives from a base station apparatus a modulated signal mapped to one of a plurality of subframes defined in a frame corresponding to a communicable range to which the communication apparatus belongs. The plurality of subframes are defined by time-division, frequency-division, or time-and-frequency division of the frame. A maximum number of modulated signals that can be simultaneously transmitted in a subframe from the base station apparatus varies depending on the communicable range. The decoder, in operation, decodes the received modulated signal.

Claims (44)

1. A communication apparatus comprising:

a receiver, which, in operation, receives from a base station apparatus a downlink signal mapped to one of a plurality of resources defined in a frame corresponding to a communicable range to which the communication apparatus belongs, wherein the plurality of resources are defined by time-division, frequency-division, or time-and-frequency division of the frame, and wherein a maximum number of downlink signals that can be simultaneously transmitted in a resource from the base station apparatus varies depending on the communicable range; and

a decoder, which, in operation, decodes the received downlink signal.

2. The communication apparatus according to claim 1 , wherein

the downlink signal is transmitted using directive transmission from the base station apparatus.

3. The communication apparatus according to claim 1 , wherein

as the communicable range becomes smaller, the maximum number of downlink signals that can be simultaneously transmitted from the base station apparatus in the frame becomes larger.

4. The communication apparatus according to claim 1 , wherein

as the communicable range becomes smaller, the maximum number of downlink signals that can be simultaneously transmitted from the base station apparatus in the resource becomes larger.

5. The communication apparatus according to claim 1 , wherein

an outer edge of the communicable range is defined by a distance from the base station apparatus.

6. The communication apparatus according to claim 1 , wherein

when a plurality of downlink signals are simultaneously transmitted from the base station apparatus, each of the plurality of downlink signals is mapped to a corresponding one of the plurality of resources defined in the frame.

7. The communication apparatus according to claim 1 , wherein

a plurality of downlink signals are simultaneously transmitted from the base station apparatus in a same time period and in a same frequency band.

8. The communication apparatus according to claim 1 , wherein

a first number of downlink signals is a maximum number of transmission beams that can be simultaneously transmitted in a same time period and in a same frequency band within a first communicable range;

a second number of downlink signals is a maximum number of transmission beams that can be simultaneously transmitted in a same period of time and in a same frequency band within a second communicable range that is exclusive of the first communicable range; and

the first number of downlink signals is larger than the second number of downlink signals.

9. The communication apparatus according to claim 8 , wherein

a third number of downlink signals is a maximum number of transmission beams that can be simultaneously transmitted in a same period of time and in a same frequency band within a third communicable range that is exclusive of the second communicable range, and

the second number of downlink signals is larger than the third number of downlink signals.

10. A communication method for a communication apparatus, the communication method comprising:

receiving from a base station apparatus a downlink signal mapped to one of a plurality of resources defined in a frame corresponding to a communicable range to which the communication apparatus belongs, wherein the plurality of resources are defined by time-division, frequency-division, or time-and-frequency division of the frame, and wherein a maximum number of downlink signals that can be simultaneously transmitted in a resource from the base station apparatus varies depending on the communicable range; and

decoding the received downlink signal.

11. The communication method according to claim 10 , wherein

the downlink signal is transmitted using directive transmission from the base station apparatus.

12. The communication method according to claim 10 , wherein

as the communicable range becomes smaller, the maximum number of downlink signals that can be simultaneously transmitted from the base station apparatus in the frame becomes larger.

13. The communication method according to claim 10 , wherein

as the communicable range becomes smaller, the maximum number of downlink signals that can be simultaneously transmitted from the base station apparatus in the resource becomes larger.

14. The communication method according to claim 10 , wherein

an outer edge of the communicable range is defined by a distance from the base station apparatus.

15. The communication method according to claim 10 , wherein

when a plurality of downlink signals are simultaneously transmitted from the base station apparatus, each of the plurality of downlink signals is mapped to a corresponding one of the plurality of resources defined in the frame.

16. The communication method according to claim 10 , wherein

a plurality of downlink signals are simultaneously transmitted from the base station apparatus in a same time period and in a same frequency band.

17. The communication method according to claim 10 , wherein

a first number of downlink signals is a maximum number of transmission beams that can be simultaneously transmitted in a same time period and in a same frequency band within a first communicable range;

a second number of downlink signals is a maximum number of transmission beams that can be simultaneously transmitted in a same period of time and in a same frequency band within a second communicable range that is exclusive of the first communicable range; and

the first number of downlink signals is larger than the second number of downlink signals.

18. The communication method according to claim 17 , wherein

a third number of downlink signals is a maximum number of transmission beams that can be simultaneously transmitted in a same period of time and in a same frequency band within a third communicable range that is exclusive of the second communicable range, and

the second number of downlink signals is larger than the third number of downlink signals.

Priority Claims (1)
JP 2015-206449 · Oct 20, 2015 · national
Continuity (6)
Continuation 17101565 · Nov 23, 2020
Continuation 16676909 · Nov 7, 2019
Continuation 16180525 · Nov 5, 2018
Continuation 15925438 · Mar 19, 2018
Continuation PCTJP2016004129 · Sep 12, 2016
Related Publication 20220116257A1 · Apr 14, 2022
Cited By (1)
US 12,308,909