Abstract:
PURPOSE: A component distribution method is provided to distribute applications and components which have dependency to each other to server instances as the volume of traffic increases or decreases. CONSTITUTION: A distributed computing system (500) comprises a load sharer (510), a component distribution chart (520), a provisioning administrator (530), a component repository (540), and a server virtual cluster (600). The load sharer routes application servers which are requested by users (410, 420) to instants and makes an optimal selection in the server virtual cluster by referring to the component distribution chart. The component distribution chart stores the distribution status of applications or components, and if the distribution status of components is changed by the provisioning administrator, the result is also stored. [Reference numerals] (410,420) User; (500) Distributed computing system; (510) Load sharer; (520) Component distribution chart; (530,540) Provisioning administrator; (610) Server instance 1 (OS + component execution platform); (611,621,631) Provisioning agent; (612) Component 1; (613) Component 2; (620) Server instance 2 (OS + component execution platform); (622) Component 3; (623) Component 4; (630) Server instance N (OS + component execution platform)
Abstract:
PURPOSE: An automatic annotation apparatus and a method thereof based on SOAP(Simple Object Access Protocol) and REST(Representational State Transfer) are provided to register an annotation result in a service registry and perform annotation about a service. CONSTITUTION: An annotation block(220) performs crawling of semantic information from a URL(Uniform Resource Locator) and generates an annotated service. A publication block(230) registers semantic information of the annotated service in a registry(240). An edition block(210) receives service annotation and registration request.
Abstract:
PURPOSE: A method and device for decoding an audio signal are provided to improve quality of a synthesized signal. CONSTITUTION: An encoded audio signal is decoded(S402). According to a hierarchy structure of a hierarchical sine pulse coding, smoothing frequency band of a decoded audio signal is set(S404). The smoothing frequency band is divided into at least one sub band(S406). The decoded audio signal is smoothed per each bandwidth(408).
Abstract:
PURPOSE: A method for encoding and decoding an audio signal using adaptive sinusoidal pulse coding and a device thereof are provided to increase quality of combined signals using sinusoidal pulse coding. CONSTITUTION: An input unit(204) receives a converted audio signal. An operating unit(206) divides the converted audio signal into a plurality of sub bands. The operating unit computes energy of the sub bands. The operating unit selects a fixed number of sub bands with relatively large energy among the sub bands. A coding unit(208) performs sinusoidal pulse coding about the selected sub bands.
Abstract:
PURPOSE: A wireless and wired integration communications device is provided to offer multimedia internet service by performing wireless connection with AP, and performing connection of mobile communications network while processing input-output of a wideband voice signal. CONSTITUTION: An application processor(301) supports a wideband voice codec, and processes a protocol according to one or more wireless communications methods. A wideband voice signal input-output part(312) is connected to an application processor, and processes input-output of a wideband voice signal. A mobile network connection unit(326) is connected to the application processor. A WLAN(Wireless Local Area Network) connector(328) is connected to the application processor, and perform wireless connection with an AP(Access Point).
Abstract:
PURPOSE: A CELP-based codec processing device is provided to drive CELP-based codec without increasing operation clocks or replacing a processor built in a mobile terminal or an embedded device. CONSTITUTION: A core processor(10) produces first encoding values by enabling a software process of a first encoder function. A distribution codec process unit(100) produces a second encoding value by encoding audio signals provided from the core processor. The core processor produces the final encoding value by multiplexing the first encoding value and the first encoding value. The first encoder is one of an FEC(Forward Error Correction) encoder and a TDBWE(Time Domain Band-Width extension) encoder.
Abstract:
본 발명은 개방형 API(Application Program Interface) 및 메시지방송 서비스를 이용하여 미아찾기 서비스를 제공하기 위한 방법 및 시스템에 관한 것이다. 본 발명은 이동통신망의 신고자 단말로부터 개방형 서비스를 제공하는 미아찾기 콜 센터로 미아발생 신고를 접수하는 제1단계; 상기 미아찾기 콜 센터가 상기 신고자 단말의 위치정보를 확인하는 제2단계; 상기 신고자 단말의 위치정보를 이용하여 해당 위치에 대응하는 지도정보를 검색하여 미아 발생 지역을 확인하는 제3단계; 상기 미아 발생 지역에 미아찾기를 위한 방송메시지를 송신하는 제4단계; 상기 방송메시지를 수신한 미아발견자로부터 상기 미아찾기 콜 센터로 미아발견 신고를 접수하는 제5단계; 및 상기 미아찾기 콜 센터에서 상기 신고자 단말과 미아발견자 단말 간에 전화를 연결시키는 제6단계를 포함한다. 개방형서비스 인터페이스, 위치기반 서비스, 미아찾기, 메시지방송, CBC
Abstract:
동족코덱 결여시에 호 설정을 위한 미디어게이트웨이 제어장치 및 방법이 개시된다. 저장부에는 제1코덱으로부터 제2코덱으로의 코덱변환관계를 나타내는 코덱테이블이 저장된다. 수신부는 발신측 코덱데이터를 포함하는 제1호설정데이터를 발신측으로부터 수신하고, 착신측 코덱데이터를 포함하는 제1호응답데이터를 착신측으로부터 수신한다. 데이터변경부는 발신측 코덱데이터를 기초로 코덱테이블로부터 제1코덱을 검색하고 검색된 제1코덱에 해당하는 제2코덱을 제1호설정데이터에 부가하여 제2호설정데이터를 생성한다. 또한, 데이터변경부는 착신측 코덱데이터를 기초로 코덱테이블로부터 제2코덱을 검색하고 검색된 제2코덱에 해당하는 제1코덱을 제1호응답데이터의 코덱데이터와 교체하여 제2호응답데이터를 생성한다. 송신부는 제2호설정데이터를 착신측으로 송신하고, 제2호응답데이터를 발신측으로 송신한다. 이로써, 발신측과 수신측이 동일한 네트워크 또는 상이한 네트워크에서 상이한 코덱을 사용하는 경우에 호 설정되도록 하여 상호 음성통화를 할 수 있다.
Abstract:
PURPOSE: A media gateway control device and a method for call setting are provided to enable a call setup when the same CODEC lacks between an originating side and a receiving side, and to perform a mutual voice call by a CODEC conversion of a media gateway, then to carry out a voice call while setting a call in the case that CODECs are different in the originating and receiving sides. CONSTITUTION: A storage(130) stores a CODEC table(132) showing a CODEC conversion relation between the first CODEC and the second CODEC. A receiver(100) receives the first call setup data from an originating side, and receives the first call response data including receiving side CODEC data from a receiving side. A data changing unit(110) retrieves the first CODEC to generate the second call setup data by adding the second CODEC corresponding to the first CODEC to the first call setup data, or retrieves the second CODEC to replace the first CODEC corresponding to the second CODEC with CODEC data of the first call response data, and generates the second call response data. A transmitter(120) transmits the second call setup data to the receiving side, and transmits the second call response data to the originating side.
Abstract:
PURPOSE: A method and system for providing a supplementary service and an intelligent network service in a PSTN are provided to provide a supplementary service to every subscriber regardless of capacity or performance of a PSTN exchange. CONSTITUTION: An origination side exchange(102) is connected to a caller terminal(101). A destination side exchange(104) is connected to a callee terminal(106). A database(103) stores subscriber supplementary service information and intelligent network service trigger data and provides information according to request from each exchange(102,104). An intelligent network SCP(Service Control Point)(105) stores intelligent network information and provides it according to request from exchanges(102,104). The callee terminal(106) receives a call.