Abstract:
본 발명은, 통신 시스템에서 기지국, 예컨대 액세스 포인트(AP: Access Point)와 복수의 단말들, 예컨대 스테이션(STA: Station)들 간의 데이터 송수신을 위해 다중 채널을 동적(dynamic)으로 할당하며, STA들에게 할당된 채널들 간의 간섭(interference)을 최소화하여 채널을 할당하는 장치 및 방법에 관한 것으로, 복수의 단말들로부터 상기 단말들의 데이터 송수신 방식에 대한 정보가 포함된 단말 정보를 수신하고, 상기 단말들의 데이터 송수신 방식을 확인하고, 상기 단말들에게 할당된 채널들에서의 간섭을 확인하며, 상기 단말들의 데이터 송수신 방식을 바탕으로 상기 단말들의 프라이머리 채널(primary channel) 및 세컨더리 채널(secondary channel)을 상기 단말들에게 할당하고, 상기 간섭을 바탕으로 상기 프라이머리 채널 및 상기 세컨더리 채널을 변경하여 상기 단말들� ��게 할당하며, 상기 단말들에게 할당된 프라이머리 채널 및 세컨더리 채널에 대한 채널 할당 정보를 상기 단말들에게 송신한다.
Abstract:
In the present invention, disclosed are an apparatus for allocating a resource using a hybrid mode in a wireless network and a method thereof. The apparatus for allocating the resource using the hybrid mode in the wireless network includes: an information collecting unit which receives at least one preset feature parameter from a plurality of network groups; a group determining unit which classifies the corresponding network group into a resource allocation group for performing centralized resource allocation or dispersed resource allocation based on at least one feature parameter and a preset threshold value; and a resource allocating unit which controls each network group to perform the centralized resource allocation or the dispersed resource allocation according to the classified resource allocation group.
Abstract:
PURPOSE: A secondary transmitting station included in a cognitive radio communication system and a communication method of the station are provided to broaden a spectrum bandwidth selected by a secondary user by using a spectrum band not used by a primary user and a spectrum band used by the primary user together. CONSTITUTION: A secondary transmitting station estimates an interference channel between the secondary transmitting station and a primary user at each of one or more first spectrum bands used by a primary system(330). The secondary transmitting station calculates an orthogonal projection matrix(340). The secondary transmitting station calculates an effective channel between the secondary transmitting station and a secondary receiving station. The secondary transmitting station selects an index of an optimized spectrum band from one or more first spectrum bands based on the orthogonal projection matrix and the effective channel(350). [Reference numerals] (310) Sensing all spectrum bands available for primary users; (320) Spectrum band k is in use?; (330) Estimating interference channel g(k); (340) Calculating an orthogonal projection matrix P_g(k); (350) Selecting index k^ of an optimized spectrum band; (360) Regulating the covariance, R^_s, of a transmission signal; (370) Orthogonal projection matrix P_g(k) = identical matrix I_Nt; (380) Storing in order in a backup channel list, beginning the index of the optimized spectrum band; (AA) Start; (BB) End
Abstract:
PURPOSE: A method for communicating between a terminal and a base station based on interference alignment in a multi cell multi user multiple input multiple output (MIMO) antenna interference channel environment and a communication method using interference alignment and block successive interference pre-cancellation in a multi user MIMO interference channel are provided to perform communication by aligning interference in order to maximize signal to interference and noise ratio (SINR) and signal to leakage and noise ratio (SLNR) in the multi cell multi user MIMO antenna interference channel. CONSTITUTION: A channel matrix between antennas installed in a terminal and antennas installed in a first base station (111) and a channel matrix between the antennas installed in the terminal and antennas installed in a second base station (121) are recognized. A channel matrix between antenna installed in at least one other terminal in a first cell and antennas installed in the first base station and a channel matrix between the antennas installed in the at least one other terminal and antennas installed in the second base station are recognized. A precoding matrix used in communication between the first base station and the terminal is determined on the basis of the channel matrixes, in order to maximize SLNR for the terminal. [Reference numerals] (110) First cell; (111) First base station; (112,113,122,AA,DD,EE) Device; (120) Second cell; (121) Second base station; (BB) K^th cell; (CC) K^th base station
Abstract:
PURPOSE: A channel searching method of a wireless network system and a device thereof are provided to search a channel based on the determined time by determining time for searching the time. CONSTITUTION: A data transmission and searching signal reception unit(11) executes a data transceiving function and a searching signal reception function. A network transceiving information collecting unit(12) collects information related to transceiving from the received data channel. A searching channel and time determination unit(13) determines time and a channel by searching the time and the channel based on network information collected from the network transceiving information collecting unit. A channel searching unit(14) searches a channel according to the determined channel and time. [Reference numerals] (1) Channel searching device; (11) Data transmission and searching signal reception unit; (12) Network transceiving information collecting unit; (13) Searching channel and time determination unit; (14) Channel searching unit
Abstract:
An embodiment according to the present invention provides a carrier integration device including: a level management unit leveling license bands allocated to a cognitive radio cell into PRP (primary radio resource) levels and a cognitive radio database or sharable bands obtained with spectrum sensing into ARR (auxiliary radio resource) levels, and managing them; a determination unit determining the service quality level for the communication service provided to the cognitive radio cell; and a service-providing unit allocating frequency resource of the PRR level when the service quality level requires a first communication service, and allocating frequency resource of the ARR level when the service quality level requires a second communication service lower than the first communication service. [Reference numerals] (100) Carrier integration apparatus
Abstract:
PURPOSE: A cognitive radio base station in a multiuser multiple input/output cognitive radio communication system, a communication method of the cognitive radio base station, and a device thereof are provided to simply obtain a beam formation vector without repetitions by using a closed-shape unit. CONSTITUTION: A cognitive radio base station calculates an orthogonal projection matrix(410). The cognitive radio base station sets an intermediate matrix(420). The cognitive radio base station performs the QR decomposition of the intermediate matrix(430). The cognitive radio base station calculates a right singular matrix based on a sub matrix(440). The cognitive radio base station obtains a beam formation weight vector(450). [Reference numerals] (410) Calculating an orthogonal projection matrix; (420) Setting an intermediate matrix including an effective channel based on the orthogonal projection matrix and noise between cognitive radio terminals; (430) QR decomposing the intermediate matrix; (440) Calculating a right singular matrix based on a sub matrix; (450) Acquiring a beam formation weight vector; (AA) Start; (BB) End