IP Library › Granted Patent US 11,277,758
Granted Patent B2
US 11,277,758 · App. 16/483,083 · Granted Mar 15, 2022

Communication apparatus and communication method

Inventors: Yasunori Futatsugi (Tokyo, JP); Toshiharu Ito (Tokyo, JP); Manabu Arikawa (Tokyo, JP)
Assignee: NEC CORPORATION
H04W24/02H04L1/08H04L43/0888H04W40/12
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Quick Facts
Patent No.
US 11,277,758
App. No.
16/483,083
Granted
Mar 15, 2022
Kind
B2
Abstract

It is difficult in related communication apparatuses to avoid degradation of communication quality due to fading and achieve sufficient throughput performance; therefore, a communication apparatus according to an exemplary aspect of the present invention includes fade avoidance rate calculation means for calculating, from a time variation in communication quality information and a transmission pattern in transmitting a communication packet repeatedly, a fade avoidance rate of a probability that the communication packet lies outside a fade duration, with respect to each transmission pattern; throughput calculation means for calculating, from the transmission pattern and the fade avoidance rate, a throughput of the communication packet with respect to each transmission pattern; and transmission pattern determination means for determining an optimum transmission pattern, of the transmission pattern, by which the throughput is maximized.

Claims (57)

1. A communication apparatus, comprising:

a fade avoidance rate calculator configured to calculate, from a time variation in communication quality information and a transmission pattern in transmitting a communication packet repeatedly, a fade avoidance rate of a probability that the communication packet lies outside a fade duration, with respect to each transmission pattern;

a throughput calculator configured to calculate, from the transmission pattern and the fade avoidance rate, a throughput of the communication packet with respect to each transmission pattern;

a transmission pattern determination section configured to determine an optimum transmission pattern, of the transmission pattern, by which the throughput is maximized;

a repeated transmission number/interval selector configured to select a combination of number of times of repeated transmission and a repeated transmission interval of the communication packet, and

a transmission pattern generator configured to generate the transmission pattern based on the combination, wherein

the fade avoidance rate calculator calculates the fade avoidance rate with respect to each combination,

the throughput calculator calculates, from the number of times of repeated transmission and the fade avoidance rate, the throughput of the communication packet with respect to each combination, and

the transmission pattern determination section determines the optimum transmission pattern based on an optimum combination, of the combination, by which the throughput is maximized.

2. The communication apparatus according to claim 1 , further comprising

a post-synthetic packet error rate acquisition section configured to determine a packet error rate of communication packets that are repeatedly transmitted based on a time variation in the communication quality information and the number of times of repeated transmission, and coherently synthesized, wherein

the throughput calculator calculates the throughput of the communication packet with respect to each combination from the number of times of repeated transmission, the fade avoidance rate, and the packet error rate.

3. The communication apparatus according to claim 2 , further comprising

an average communication quality calculator configured to average the communication quality information within a predetermined time and calculate average communication quality information, wherein

the post-synthetic packet error rate acquisition section determines the packet error rate based on the average communication quality information and the number of times of repeated transmission.

4. The communication apparatus according to claim 3 , further comprising

a fading speed varying time calculator configured to calculate, based on a time variation in the communication quality information, a fading speed varying time when a variation in a fading speed is regarded as constant, wherein

the average communication quality calculator calculates the average communication quality information based on the fading speed varying time.

5. A communication method, comprising:

calculating, from a time variation in communication quality information and a transmission pattern in transmitting a communication packet repeatedly, a fade avoidance rate of a probability that the communication packet lies outside a fade duration, with respect to each transmission pattern;

calculating, from the transmission pattern and the fade avoidance rate, a throughput of the communication packet with respect to each transmission pattern;

determining an optimum transmission pattern, of the transmission pattern, by which the throughput is maximized;

selecting a combination of number of times of repeated transmission and a repeated transmission interval of the communication packet, and

generating the transmission pattern based on the combination, wherein

the calculating of the fade avoidance rate includes calculating the fade avoidance rate with respect to each combination,

the calculating of the throughput includes calculating, from the number of times of repeated transmission and the fade avoidance rate, the throughput of the communication packet with respect to each combination, and

the determining of the optimum transmission pattern includes determining the optimum transmission pattern based on an optimum combination, of the combination, by which the throughput is maximized.

6. The communication method according to claim 5 , further comprising

determining a packet error rate of communication packets that are repeatedly transmitted based on a time variation in the communication quality information and the number of times of repeated transmission, and coherently synthesized, wherein

the calculating of the throughput includes calculating the throughput of the communication packet with respect to each combination from the number of times of repeated transmission, the fade avoidance rate, and the packet error rate.

7. The communication apparatus according to claim 1 , further comprising

a fading speed varying time calculator configured to calculate, based on a time variation in the communication quality information, a fading speed varying time when a variation in a fading speed is regarded as constant, wherein

the fade avoidance rate calculator calculates the fade avoidance rate based on the fading speed varying time.

8. The communication apparatus according to claim 2 , further comprising

a fading speed varying time calculator configured to calculate, based on a time variation in the communication quality information, a fading speed varying time when a variation in a fading speed is regarded as constant, wherein

the fade avoidance rate calculator calculates the fade avoidance rate based on the fading speed varying time.

9. The communication apparatus according to claim 3 , further comprising

a fading speed varying time calculator configured to calculate, based on a time variation in the communication quality information, a fading speed varying time when a variation in a fading speed is regarded as constant, wherein

the fade avoidance rate calculator calculates the fade avoidance rate based on the fading speed varying time.

10. The communication apparatus according to claim 4 , further comprising

a fading speed varying time calculator configured to calculate, based on a time variation in the communication quality information, a fading speed varying time when a variation in a fading speed is regarded as constant, wherein

the fade avoidance rate calculator calculates the fade avoidance rate based on the fading speed varying time.

11. The communication apparatus according to claim 1 , further comprising

a storage configured to store a time variation in the communication quality information, and

a transmitter-receiver configured to transmit and receive the communication packet based on the optimum transmission pattern.

12. The communication apparatus according to claim 2 , further comprising

a storage configured to store a time variation in the communication quality information, and

a transmitter-receiver configured to transmit and receive the communication packet based on the optimum transmission pattern.

13. The communication apparatus according to claim 3 , further comprising

a storage configured to store a time variation in the communication quality information, and

a transmitter-receiver configured to transmit and receive the communication packet based on the optimum transmission pattern.

14. The communication apparatus according to claim 4 , further comprising

a storage configured to store a time variation in the communication quality information, and

a transmitter-receiver configured to transmit and receive the communication packet based on the optimum transmission pattern.

15. The communication apparatus according to claim 7 , further comprising

a storage configured to store a time variation in the communication quality information, and

a transmitter-receiver configured to transmit and receive the communication packet based on the optimum transmission pattern.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 2, 2019
From: FUTATSUGI, YASUNORI; ITO, TOSHIHARU; ARIKAWA, MANABU
To: NEC CORPORATION
Reel/Frame 049939/0482 →
Priority Claims (1)
JP JP2017-028058 · Feb 17, 2017 · national
Continuity (1)
Related Publication 20200015099A1 · Jan 9, 2020