Abstract:
There are provided a resource allocating method for machine type communication (MTC), a data transmission and reception method for an MTC device, and an MTC device using the data transmission and reception method. The transmission and reception method for the MTC device includes: receiving a downlink frame from a base station; searching for a control information block in a downlink control resource area of the downlink frame; determining whether the control information block is for MTC service or includes control information whose destination is the MTC device, using an MTC device identifier or an identifier designated for MTC service scheduling; and extracting MTC service packet data included in a radio resource for transmission of MTC data, using the control information block, according to the results of the determination.
Abstract:
Disclosed is a method for a performance test of an online game server that may easily perform controlling of a virtual user and producing and editing of a scenario, and may monitor a test progress state. A method for a performance test of an online game server according to an exemplary embodiment of the present disclosure includes:constructing a test database including virtual user information, unit action information, and map information by capturing a communication packet between a game server and a client; creating a test map that reflects an actual game environment using the map information; producing a scenario by setting a movement path of virtual users and unit actions to be performed at a predetermined point on the test map; establishing the entire test schedule using the test database and the scenario; and monitoring a test progress state.
Abstract:
Disclosed is an apparatus and method for predicting a real-time water quality, and the apparatus including a hydrodynamic model creating unit to create a hydrodynamic model optimized to a location at which a water quality is to be predicted based on flow rate information, and a water quality predicting unit to predict the water quality by applying water quality information to the optimized hydrodynamic model.
Abstract:
A data transmission/reception apparatus in a data communication system includes a transmission/reception unit connected to a device within a board and configured to wirelessly transmit transmission data from the device within the board to another device placed in one of other boards outside the board or another device placed in the board and wirelessly receive reception data from the another device, wherein the transmission/reception unit transmits the transmission data and receives the reception data using millimeter wave bands.
Abstract:
The present invention relates to an apparatus and method for sensing an image formed by a fluid that is wetted to a real paint brush, such as water. The image sensing apparatus includes an input unit configured to receive an image using a paint brush that is wet with a fluid, a light source unit configured to emit infrared light to the input unit for sensing the image, and a sensing unit configured to sense scattered light generated in response to the image received by the input unit using the wet paint brush and to image sensed results.
Abstract:
An apparatus for transmitting wireless energy in an energy transmission system includes a transmission resonator block configured to have a plurality of transmission resonators arranged therein, a transmission signal generation block configured to generate an energy signal, a switch block connected to the plurality of transmission resonators and configured to switch the energy signal to the plurality of transmission resonators in response to a switching control signal, and a control block configured to generate the switching control signal for switching the energy signal to a transmission resonator including a transmission region where a receiver is placed when detecting the receiver placed in the transmission regions of the plurality of transmission resonators.
Abstract:
Disclosed herein are a method for handover in vehicular communications and On-Board Equipment (OBE) using the same. In the method for handover in vehicular communications, OBE performs a handover from first Road-Side Equipment (RSE) to second RSE. The OBE receives beacon frames from the first RSE and the second RSE. The first average value of a received signal strength indication corresponding to the beacon frame received from the first RSE and the second average value of a received signal strength indication corresponding to the beacon frame received from the second RSE are calculated. The first cumulative gradient of the first average value and the second cumulative gradient of the second average value are calculated. The handover from the first RSE to the second RSE is performed based on the first average value, the second average value, the first gradient, and the second gradient.
Abstract:
Disclosed is a magnetic field intensity conversion method in a magnetic field intensity conversion device configured to convert and output magnetic field intensity for each distance from a magnetic field source, and the method includes: receiving a reference distance and a target distance from the magnetic field source through an input unit; primarily comparing the reference distance with a critical value calculated in accordance with the wavelength of an electromagnetic wave, in a control unit; secondarily comparing the target distance with the critical distance, in the control unit; and calculating conversion magnetic field intensity by converting reference magnetic field intensity prescribed for the reference distance into magnetic field intensity at the target distance, on the basis of the comparing results in the primary comparing and the secondary comparing, in the control unit.
Abstract:
Disclosed is a display device including a plurality of channels for forming a specific pattern, in which each of the channels includes: a light source module comprising one or more light sources for generating optical signals having different wavelengths; a driving module for controlling on/off or strength of the optical signal generated in the light source module; an optical waveguide for transferring the optical signal generated in the light source module to an outside without a loss of the optical signal; and a scattering pattern for scattering the optical signal transferred through the optical waveguide and displaying the scattered optical signal to the outside.
Abstract:
Provided is an organic light emitting device. The organic light emitting devices includes: a light emitting part where a first electrode, an organic light emitting layer, and a second electrode are stacked ; and a thin film layer having a plurality of holes and micro-resonating the light emitted from the organic light emitting layer.