Abstract:
An apparatus and method for transparently relaying a signal using a plurality of frequency bands in a multi-hop relay cellular network are provided, in which a Relay Station (RS) communicates with a Base Station (BS) via a relay link in a first frequency band and communicates with a Mobile Station (MS) within the sub-cell of the RS via a sub-cell link in a second frequency band different from the first frequency band.
Abstract:
A method and system for acquiring information about neighbor base stations (BSs) and neighbor relay stations (RSs) in a multi-hop relay broadband wireless access communication system are provided. In the method, a serving BS collects information about the neighbor BSs and the neighbor RSs, generates a message including the collected information, and transmits the message to a serving RS and an MSS directly communicating with the serving BS. The serving RS transmits the message to an MSS communicating with the serving BS via the serving RS.
Abstract:
A vehicle position information providing device and method suitable to a vehicle co-owner of a multi-family house is provided. The device includes: a first card reader for reading vehicle relating information from a card provided to a vehicle; a second card reader for reading parking relating information from one of cards provided to vehicle co-owners; a parking and vehicle management server for previously storing information relating to the vehicle co-owners, and connected with the first and second card readers; a Web server for receiving advertisement message data from event companies and storing the received advertisement message data; and a short message transmitting server connected with the Web server, and transmitting the short message to wireless terminals of vehicle co-owners of the multi-family house.
Abstract:
Provided is a routing method in a multi-hop relay cellular network including a mobile station (MS), a base station (BS), and at least one relay station (RS). One of RSs neighboring the MS measures quality of a link to the BS, generates link quality information using the measured link quality, and transmits the link quality information to the MS. The MS receives the link quality information from the RSs, selects an optimal path depending on the received link quality information, and transmits information on the selected optimal path to the BS.
Abstract:
An apparatus and method for transmission/reception of system information in a broadband wireless communication system are provided. An operation of a Base Station (BS) in a broadband wireless communication system includes determining whether to apply a system configuration corresponding to a previous value of a Secondary-Super Frame Header (S-SFH) change count changed according to update of system information and, when applying the system configuration corresponding to the previous value of the S-SFH change count, setting a parameter representing the applied system configuration to a first value and, when applying a system configuration corresponding to a current value of the S-SFH change count, setting the parameter to a second value, and transmitting a Primary-Super Frame Header (P-SFH) including the S-SFH change count and the parameter set to the first value or the second value.
Abstract:
A multiple antenna system including a mobile station and a base station are operable to perform a method for transmitting control information for interference mitigation. A Mobile Station (MS) can transmit control information for interference mitigation. The MS determines a first Precoding Matrix Index (PMI) and a second PMI for interference from an adjacent Base Station (BS). Based on a correlation level from correlation values between one of the first PMI and second PMI and the remaining PMIs in the codebook, the MS determines a level of a subset of PMIs, and feeds back information indicating the correlation level.
Abstract:
A method of signal transmission/reception by a transmitter in a wireless mobile communication system is provided. The method includes determining a signal transmission/reception corresponding relation between a downlink and an uplink of the wireless mobile communication system using a super-frame, the super-frame including at least one frame, said at least one frame including at least one downlink sub-frame and at least one uplink sub-frame, the signal transmission/reception corresponding relation enabling each sub-frame within a link including fewer sub-frames to correspond to at least one sub-frame within a link including more sub-frames when the downlink and the uplink of the wireless mobile communication system include different numbers of sub-frames, wherein the signal transmission/reception corresponding relation is also determined when the downlink and the uplink of the wireless mobile communication system include a same number of sub-frames, and transmitting and receiving signals to and from a receiver through at least one downlink sub-frame and at least one uplink sub-frame according to the determined signal transmission/reception corresponding relation.
Abstract:
A panel including a thermochromic layer. A panel includes a transparent substrate, a plurality of thermochromic layers on the transparent substrate, and a plurality of dielectric layers stacked with the thermochromic layers. The thermochromic layers may include vanadium oxide, in which a chemical stoichiometric ratio of vanadium to oxygen may be about 1:2 or about 2:5.
Abstract:
Disclosed is a positive electrode for a rechargeable lithium battery and a rechargeable lithium battery including the same. The positive electrode includes a current collector; a positive active material layer including a positive active material and a vanadium oxide; and a vanadium oxide-contained coating layer formed between the current collector and the positive active material layer.
Abstract:
A light transmittance adjustment layer configured to be coupled to a glass substrate for windows, the light transmittance adjustment layer including a plurality of light blocking layers therein, the plurality of light blocking layers spaced apart from and substantially parallel to one another in a direction substantially perpendicular to a surface of the light transmittance adjustment layer, wherein intervals between the plurality of light blocking layers and heights of the plurality of light blocking layers are arranged such that (90°−latitude−23.5)