Reverse-link interference canceling in HAPS multi-feeder link

US11683084B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11683084-B2
Application numberUS-202017625118-A
CountryUS
Kind codeB2
Filing dateMar 18, 2020
Priority dateAug 26, 2019
Publication dateJun 20, 2023
Grant dateJun 20, 2023

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Abstract

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It is dynamically suppressed of a downlink interference in a reverse link of a multi-feeder link of a same frequency between an aerial-staying type communication relay apparatus and plural gateway (GW) stations. A relay communication station of the communication relay apparatus estimates plural propagation path responses respectively between plural GW stations and an antenna for feeder link of the communication relay apparatus based on reception results of plural pilot signals received from each of plural GW stations. The relay communication station calculates a weight for suppressing an interference signal that causes an interference by a transmission signal transmitted from a relay communication station to the GW station and received by another GW station, based on the plural propagation path responses, with respect to each of the plural GW stations. The relay communication station adds or subtracts, for the transmission signal to be transmitted to the GW station, a transmission signal to be transmitted to another gateway station that is multiplied by the weight corresponding to the other gateway station, with respect to each of the plural GW stations.

First claim

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The invention claimed is: 1. A system comprising an aerial-staying type communication relay apparatus including a relay communication station that relays a radio communication of a terminal apparatus, comprising plural gateway stations that are time-synchronized with each other and transmit and receive relay signals different from each other on a same frequency in a feeder link to and from the relay communication station of the aerial-staying type communication relay apparatus, and wherein the relay communication station comprises a feeder-link communication section that transmits and receives relay signals different from each other on a same frequency in the feeder link to and from the plural gateway stations, and an interference suppression section that suppresses an interference between plural feeder links formed with the plural gateway stations, wherein the feeder-link communication section of the relay communication station transmits plural pilot signals having frequencies different from each other, to each of the plural gateway stations, in order to estimate plural propagation path responses between the gateway station and an antenna for feeder link of the communication relay apparatus in a transmission signal band of the feeder link, wherein each of the plural gateway stations receives the plural pilot signals for estimating the plural propagation path responses, the plural pilot signals being transmitted from the relay communication station, wherein any one gateway station of the plural gateway stations or a common apparatus common to each gateway station: estimates the plural propagation path responses between the gateway station and the antenna for feeder link of the communication relay apparatus in the transmission signal band of the feeder link, based on reception results of the plural pilot signals; and transmits estimation results of the propagation path responses to the relay communication station; wherein the feeder-link communication section of the relay communication station receives the plural propagation path responses transmitted from the any one gateway station or the common apparatus, and wherein the interference suppression section of the relay communication station: calculates a weight for suppressing an interference signal that causes an interference by a transmission signal transmitted from the relay communication station to the gateway station and received by another gateway station, based on the plural propagation path responses, with respect to each of the plural gateway station; and adds or subtracts, for the transmission signal to be transmitted to the gateway station, a transmission signal to be transmitted to another gateway station that is multiplied by the weight corresponding to the other gateway station, with respect to each of the plural gateway station, wherein each of the plural gateway stations: receives the plural pilot signals transmitted from the relay communication station, and separates each of the received plural pilot signals with a filter; divides the transmission signal band of the feeder link into plural divided bands, and estimates a propagation path response between the gateway station and the antenna for feeder link of the communication relay apparatus in the transmission signal band of the feeder link for each of the plural divided bands, with a center frequency of each of the plural divided bands as an estimated frequency, based on the reception result of the pilot signal received from the relay communication station and separated; and transmits the estimation result of the propagation path response of each of the plural divided bands, to the relay communication station, wherein the feeder-link communication section of the relay communication station receives the estimation result of the propagation path response of each of the plural divided bands transmitted from each of the plural gateway stations, wherein the interference suppression section of the relay communication station: calculates a weight for suppressing an interference signal that causes an interference by a transmission signal transmitted from the relay communication station to the gateway station and received by another gateway station, based on the propagation path response of each of the plural divided bands received from each of the plural gateway stations, for each of the divided bands with respect to each of the plural gateway stations; and generates a divided transmission signal by adding or subtracting, for the transmission signal to be transmitted to the gateway station, a transmission signal to be transmitted to another gateway station that is multiplied by the weight corresponding to the other gateway station, for each of the divided bands with respect to each of the plural gateway stations, and generates a transmission signal by synthesizing the divided transmission signals of the plural divided bands. 2. A system comprising an aerial-staying type communication relay apparatus including a relay communication station that relays a radio communication of a terminal apparatus, comprising plural gateway stations that are time-synchronized with each other and transmit and receive relay signals different from each other on a same frequency in a feeder link to and from the relay communication station of the aerial-staying type communication relay apparatus, and wherein the relay communication station comprises a feeder-link communication section that transmits and receives relay signals different from each other on a same frequency in the feeder link to and from the plural gateway stations, and an interference suppression section that suppresses an interference between plural feeder links formed with the plural gateway stations, wherein the feeder-link communication section of the relay communication station transmits plural pilot signals having frequencies different from each other, to each of the plural gateway stations, in order to estimate plural propagation path responses between the gateway station and an antenna for feeder link of the communication relay apparatus in a transmission signal band of the feeder link, wherein each of the plural gateway stations: receives the plural pilot signals for estimating the plural propagation path responses, the plural pilot signals being transmitted from the relay communication station; and transmits reception results of the plural pilot signals to the relay communication station, wherein the feeder-link communication section of the relay communication station receives the reception results of the plural pilot signals transmitted from each of the plural gateway stations, wherein the interference suppression section of the relay communication station: estimates the plural propagation path responses between the gateway station and the antenna for feeder link of the communication relay apparatus in the transmission signal band of the feeder link, based on the reception results of the plural pilot signals received from each of the plural gateway stations; calculates a weight for suppressing an interference signal that causes an interference by a transmission signal transmitted from the relay communication station to the gateway station and received by another gateway station, based on the estimation results of the plural propagation path responses, with respect to each of the plural gateway station; and adds or subtracts, for the transmission signal to be transmitted to the gateway station, a transmission signal to be transmitted to another gateway station that is multiplied by the weight corresponding to the other gateway station, with respect to each of the plural gateway station, wherein each of the plural gateway stations: receives the plural pilot signals transmitted from the relay communication station, and separates each of the received plural pilot signals with a filter; divi

Assignees

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Classifications

  • Aircraft used as relay or high altitude atmospheric platform · CPC title

  • Transmission in a satellite or space-based system · CPC title

  • for beam forming · CPC title

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What does patent US11683084B2 cover?
It is dynamically suppressed of a downlink interference in a reverse link of a multi-feeder link of a same frequency between an aerial-staying type communication relay apparatus and plural gateway (GW) stations. A relay communication station of the communication relay apparatus estimates plural propagation path responses respectively between plural GW stations and an antenna for feeder link of …
Who is the assignee on this patent?
Hapsmobile Inc
What technology area does this patent fall under?
Primary CPC classification H04B7/18504. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Jun 20 2023 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).