Abstract:
An apparatus and method of dynamically managing resources for interference control of a satellite and terrestrial integrated communication system is disclosed, the apparatus including a frequency band determiner to determine a frequency band of a satellite beam and a frequency band of a wireless signal based on information on interference between the satellite beam and the wireless signal to which a frequency band identical to the satellite beam is allocated, and a remote controller to remotely control a space-based station to output a satellite beam at an intensity corresponding to a frequency band of a satellite beam, and an earth-based station to output a wireless signal at an intensity corresponding to a frequency band of a wireless signal.
Abstract:
A communication apparatus of an earth station to avoid frequency interference with a terrestrial communication system is provided. The communication apparatus may include a signal extractor configured to acquire a signal of a terrestrial radio station by cancelling a signal transmitted by the earth station from received signals, a detector configured to detect an interference state between a satellite communication network and a terrestrial communication network by comparing a signal strength of the signal of the terrestrial radio station to a predetermined interference signal threshold, and a frequency allocator configured to allocate a new frequency slot to be used by the earth station to transmit a signal, when the detector detects the interference state.
Abstract:
An operation method in a communication system may comprise: obtaining information on a per-beam required traffic amount; determining whether the per-beam required traffic amount can be serviced while satisfying a first condition according to a first model generated through pre-training in a first machine learning structure; in response to determining that the per-beam required traffic amount can be serviced while satisfying the first condition, calculating per-beam bandwidth allocation information based on the per-beam required traffic amount; calculating per-beam power allocation information based on the per-beam bandwidth allocation information; identifying whether an SNR condition included in the first condition is satisfied based on the per-beam power allocation information; and in response to identifying that the SNR condition is satisfied, outputting the per-beam bandwidth allocation information and the per-beam power allocation information.
Abstract:
The present invention relates to an apparatus and a method of predicting radio interference of a receiver. The apparatus includes a radio station information collecting unit which receives information related to a target radio station and interfering radio stations; a grouping unit which groups the interfering radio stations using the collected information; an interference parameter distribution estimating unit which models distribution characteristics of interference parameters for interfering radio stations; and an interference intensity predicting unit which predicts a distribution characteristic at least one of an interference signal intensity of a single interfering radio station and an aggregated interference signal intensity for a plurality of interfering radio stations by using a probability density function models of the interference parameters for every interference group, and predicts a total radio interference intensity from the entire interfering radio stations using the single interference signal distribution characteristic which is calculated for every group.
Abstract:
A satellite communication system and method for an adaptive channel assignment is disclosed in which the satellite communication apparatus include a satellite beam generator to generate a satellite beam to be output to a coverage area, a channel assignor to assign a channel for the satellite beam based on interference information of the coverage area, and a communication link forming unit to form a communication link with an earth station disposed in the coverage area based on the assigned channel.
Abstract:
An operation method of a satellite in a non-terrestrial network may comprise: determining a frequency resource allocation order for allocating frequency resources to beams in consideration of a frequency band of a terrestrial system and degrees of interference to the terrestrial system; configuring a minimum performance condition for maintaining a service of the non-terrestrial network, the minimum performance condition being applied to each of the beams; configuring an operating condition of a multi-agent deep reinforcement learning for each beam controller of the satellite; and controlling the each beam controller to sequentially allocate the frequency resources to a managed beam according to the frequency resource allocation order while considering the minimum performance condition.
Abstract:
A frequency resource allocation apparatus comprising a processor is configured to select resources for transmitting a signal to a user based on a learning model, allocate the selected resources to the user, transmit the signal to the user using the selected resources, receive information about whether the transmission of the signal is successful or not from the user via a feedback channel after a delayed time, and update an internal parameter of the learning model with respect to the resources used for transmitting the signal.
Abstract:
An interference effect mitigating method may be a method of mitigating interference effects of a mobile earth station to a terrestrial radio station. The interference effect mitigating method may include collecting position information including a position, of a communication device of a first wireless communication network, which changes over time, determining an antenna discrimination angle based on the collected position information, and determining a transmission power and a transmission scheme of the communication device of the first wireless communication network based on the determined antenna discrimination angle, to mitigate interference effects of the communication device of the first wireless communication network to a communication device of a second wireless communication network.
Abstract:
Disclosed are a satellite power transmission system and a communication method. The satellite power transmission system includes: a reference value determining unit determining reference values of signal to interference ratios for each beam coverage of a multi-beam satellite network system; an interference amount determining unit determining an interference amount for each beam coverage of the multi-beam satellite network system; a signal power determining unit determining signal power corresponding to each beam coverage based on the reference value determined by the reference value determining unit and the interference amount determined by the interference amount determining unit; and a signal power allocating unit allocating the signal power determined by the signal power determining unit to each beam to communicate with each earth station.