KR20030012444A - Dialing method for effecting internatioal call in intelligent cellular phone - Google Patents
Dialing method for effecting internatioal call in intelligent cellular phone Download PDFInfo
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- KR20030012444A KR20030012444A KR1020010046462A KR20010046462A KR20030012444A KR 20030012444 A KR20030012444 A KR 20030012444A KR 1020010046462 A KR1020010046462 A KR 1020010046462A KR 20010046462 A KR20010046462 A KR 20010046462A KR 20030012444 A KR20030012444 A KR 20030012444A
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- cellular phone
- international
- telephone number
- access code
- call
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/26—Devices for calling a subscriber
- H04M1/27—Devices whereby a plurality of signals may be stored simultaneously
- H04M1/274—Devices whereby a plurality of signals may be stored simultaneously with provision for storing more than one subscriber number at a time, e.g. using toothed disc
- H04M1/2745—Devices whereby a plurality of signals may be stored simultaneously with provision for storing more than one subscriber number at a time, e.g. using toothed disc using static electronic memories, e.g. chips
- H04M1/27485—Appending a prefix to or inserting a pause into a dialling sequence
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/26—Devices for calling a subscriber
- H04M1/27—Devices whereby a plurality of signals may be stored simultaneously
- H04M1/274—Devices whereby a plurality of signals may be stored simultaneously with provision for storing more than one subscriber number at a time, e.g. using toothed disc
- H04M1/2745—Devices whereby a plurality of signals may be stored simultaneously with provision for storing more than one subscriber number at a time, e.g. using toothed disc using static electronic memories, e.g. chips
- H04M1/2749—Automatic dialling or redialling systems, e.g. on off-hook or redial on busy
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Abstract
Description
본 발명은 인공지능 셀룰러폰에 있어서의 국제 전화를 하는 다이이링 방법에 관한 것이다.The present invention relates to a dialing method for making international calls in an artificial cellular phone.
셀룰러폰은 휴대성, 다 기능성 및 저렴한 단위 가격으로 인해, 사교 또는 업무용 통신장치로 최근에 세계적으로 유명하게 되었다. 더구나, 종래의 무선 전화에 비하여, 셀룰러폰은 옥외장소에서의 편리함과 휴대성을 갖는다는 장점이 있다. 그러나, 셀룰러폰의 기능성은 아직까지 완벽하지 않다. 예를들어, 전화하는 위치 영역의 국제 액세스 코드가 사용자에 의해 전화번호부책에 미리 설정된 코드와 다른 경우, 셀룰러 폰의 전화번호책에 기억된 전화번호가 이용될 수 없다. 국제 로밍의 예에서 있어서, 성공적인 셀룰러폰 호출은 사용자가 국제 액세스 코드, 국내코드,지역 코드 및 수화 당사자의 전화번호를 안 후에 만, 가능하게 된다. 즉, 사용자는, 국제 액세스 코드, 국내 코드, 지역 모드 및 번호를 순서대로 다이얼해야 한다. 상술한 내용을 고려하면, 셀룰러폰에 의한 국제 전화는 불편하다. 상이한 국가사이에 위치한 여러 사람과 대화하는 또 다른 경우에는, 대응하는 국제 액세스 코드와 이의 작동을 위한 검사처리는 더 복잡하고 시간이 소모된다. 이는 매우 셀룰러폰 사용자를 괴롭히게 되어 불편함을 야기한다. 따라서, 셀룰러폰에 의한 국제 전화와 관련된 상기 문제를 해결해야 한다. 더구나, 상기 선행기술의 단점을 극복하기 위해 편리하고 효과작인 방식으로 국제 전화를 하는 다이어링 방법을 제공하는 것이 바람직 하다.Cellular phones have recently become world famous for social or business communication devices due to their portability, versatility and low unit price. Moreover, compared with the conventional wireless telephone, the cellular phone has the advantage of having convenience and portability in outdoor places. However, cellular phone functionality is not yet perfect. For example, if the international access code of the calling location area is different from the code preset in the phone book by the user, the phone number stored in the phone book of the cellular phone cannot be used. In the example of international roaming, successful cellular phone calls are possible only after the user knows the international access code, the domestic code, the area code and the telephone number of the signing party. That is, the user must dial the international access code, the domestic code, the local mode and the number in order. In view of the above, international calls by cellular phones are inconvenient. In another case of talking to several people located between different countries, the corresponding international access code and the inspection process for its operation are more complicated and time consuming. This is very annoying to cell phone users and causes inconvenience. Thus, the above problem related to international calls by cellular phones has to be solved. Moreover, it is desirable to provide a dialing method for making international calls in a convenient and effective manner to overcome the disadvantages of the prior art.
따라서, 본 발명의 목적은, 세계적인 다수의 네트워크사의 시스템 코드와 이들의 국제 액세스 코드를 셀룰러폰의 메모리의 데이터의 변환표에 저장하는 단계와;It is therefore an object of the present invention to store system codes of a number of global network companies and their international access codes in a conversion table of data in a memory of a cellular phone;
데이터베이스의 전화번호부상에 상이한 수화자의 상대방의 다수의 전화번호를 저장하는 단계와;Storing a plurality of telephone numbers of the other party of the called party in the telephone directory of the database;
다이얼될 수화자 상대방의 이름에 따라 전화번호부에 저장된 전화번호을 검색하는 단계와;Retrieving the telephone number stored in the telephone book according to the name of the called party to be dialed;
이 전화번호를 호출하는 위치영역의 인접한 전화회사로부터 수신된 시스템코드가 전화번호부에 전화번호를 저장하는 시스템코드와 다른지를 결정하는 단계와; 다른 경우, 개정포에 액세스하여 인접한 전화 회사의 시스템 코드와 대응하는 국제액세스 코드를 검색하는 단계와;Determining whether a system code received from an adjacent telephone company in a location area for calling the telephone number is different from a system code for storing the telephone number in a telephone book; In other cases, accessing the revised package to retrieve the international access code corresponding to the system code of the adjacent telephone company;
전화번호부로부터 검색된 전화번호의 국제 액세스 코드를 인접한 전화회사로부터 수신된 시스템 코드에 따라, 개정표로부터 검색된 전화 액세스 코드와 대치하는 단계와;Replacing the international access code of the telephone number retrieved from the telephone directory with the telephone access code retrieved from the revision table according to the system code received from the adjacent telephone company;
정정 국제 액액세스 코드를 갖는 전화번호를 자동으로 다이어링하는 단계를 구비한, 인공지능 셀룰러폰에 있어서의 국제전화를 하는 다이어링 방법을 제공하는 것이다.A dialing method for making an international call in an artificial cellular phone, comprising automatically dialing a telephone number having a corrected international access code.
본 발명의 상기 및 기타 목적, 특징 및 장점은 수반한 도면을 참고로 하여 다음 발명의 상세한 설명으로부터 분명해질 것이다.The above and other objects, features and advantages of the present invention will become apparent from the following detailed description of the invention with reference to the accompanying drawings.
도 1은 본 발명에 의한 국제전화를 하는 인공지능 셀룰러폰의 전자소자의 블록도.1 is a block diagram of an electronic device of an artificial intelligence cellular phone making an international call according to the present invention;
도 2는 이러한 국제전화를 하는 다이어링 방법의 흐름도.2 is a flowchart of a dialing method for making such an international call.
본 발명은 인공지능 셀룰러 폰을 이용하여 국제 전화를 하는 다이어링 방법에 관한 것이다. 인공지능 셀룰러 폰은 시스템 코드와 많은 국제 전화회사로부터 제공된 국제 액세스코드와 다른 수화 상태방에 관한(국제 액세스 코드, 국가 코드, 지역 코드 및 번호를 포함하는)다수의 전화번호를 포함하는 데이터베이스의 전화번호부를 포함하는 메모리(11)의 데이터베이스에 변환표를 포함한다. 셀룰러폰을 사용자가 이용하면, 중앙처리장치(CPU)(13)는 전화번호부 모드가 작동하는 지를 결정한다. 작동하지 않는 경우, CPU(13)는 입력 전화번호를 수신하여 이를 직접 전송한다. 전화번호부 모드가 작동하는 경우, CPU(13)는 전화번호부로부터 사용자가 선택하고 있는 이름에 따라 수화되어 가는 상대방의 전화번호를 검색한다. 다음, CPU((13)는 이 전화를 호출하는 위치영역에 있는 인접한 전화 회사로 부터 수된된시스템 코드가 전화번호를 전화번호부에 저장하는 시스템 코드와 다른지 여부를 결정한다. 같은 경우, CPU(13)는 셀룰러폰의 디스플레이 상에 전화번호부로부터 검색된 전화번호를 나타내어 이를 전송한다. 인접한 전화회사로부터 수신된 시스템 코드가 이 전화번호를 전화번호부에 저장하는 시스템코드와 다른 경우, CPU(13)는 인접한 전화 회사의 시스템 코드와 관련된 국제 액세스 코드를 검색하는 메모리(11)의 개정표에 액세스하여 전화번호부로 부터 검색된 전화번호의 국제 액세스 코드를 인접한 전화회사로부터 수신된 시스템 코드에 따라서 개정표로부터 검색된 국제 액세스 코드와 대체한다. 정정 국제 액세스 코드를 갖는 전화번호는 셀룰러폰의 디스플레이(15)에 나타난다. 오약하면, 셀룰러폰 사용자는 전화반호로부터 수화할 바람직한 전화번호를 선택할 수 있다. 본 발명의 시스템은 정정 국제 액세스 코드를 인접한 전화 회사로부터 수신된 시스템 코드에 대응하는 전화번호부로 부터 검색된 전화번호에 자동으로 끼운후 이를 다이어링한다. 이는 편리하고 실용적인 고안이다.The present invention relates to a dialing method for making an international call using an artificial cellular phone. An AI cellular phone is a telephone in a database that contains a system code and a number of telephone numbers (including international access codes, country codes, area codes, and numbers) relating to international access codes provided by many international telephone companies and other sign language rooms. The conversion table is included in the database of the memory 11 including the directory. When the user uses the cellular phone, the central processing unit (CPU) 13 determines whether the phone book mode is activated. If it does not work, the CPU 13 receives the input telephone number and sends it directly. When the phone book mode is activated, the CPU 13 searches for the phone number of the other party to be hydrated according to the name selected by the user from the phone book. Next, the CPU 13 determines whether the system code received from the adjacent telephone company in the location area for calling this phone is different from the system code for storing the phone number in the phone book. Indicates the phone number retrieved from the phone book on the display of the cellular phone and transmits it.If the system code received from the adjacent telephone company is different from the system code storing the phone number in the phone book, the CPU 13 Access the revision table of the memory 11, which retrieves the international access code associated with the telephone company's system code, and retrieve the international access code of the telephone number retrieved from the telephone book according to the system code received from the adjacent telephone company. The phone number with the correct international access code is displayed on the cellular phone 15. In case of weakness, the cellular phone user can select a preferred telephone number to sign from the telephone call The system of the present invention can retrieve a corrected international access code from a telephone directory corresponding to a system code received from an adjacent telephone company. Automatic insertion into the number and then dialing it is a convenient and practical design.
도 1은 본 발명에 의한 국제 전화를 하는 인공지능 셀룰러폰의 전자소자의 블록도이다. 셀룰러폰의 CPU(13)는 송수신기 회로(16)와 안테나(17)를 통해 기지국과의 연결을 설정할 수 있다. 따라서, CPU(13)는 기지국으로부터 전화신호를 수신할 수 있다. 수신된 신호는 음성파로 변환한 후, 이를 스피커(18)를 통해 증폭한다. 또한, 마이크로폰(19)으로부터의 음성파는 CPU(13)에 의해 수신된다. 수신된 음성파는 CPU(13)에서 전화신호로 변환한 다음, 송수신기 회로(16) 및 안테나(17)를 통해 기지국에 전송된다. 더구나, CPU(13)는 처리된 데이터를 디스플레이(15)에전송하여 이를 디스플에이에 나타내어 메모리(11)에 저장한다. 또한, CPU(13)는 메모리(11)에 저장된 데이터를 액세스할 수 있다. 더구나, CPU(13)는 사용자에 의해 키패드(110)로 부터 입력 수문자 데이터를 수신할 수 있다.1 is a block diagram of an electronic device of an artificial intelligence cellular phone making an international call according to the present invention. The cellular phone CPU 13 may establish a connection with the base station via the transceiver circuit 16 and the antenna 17. Thus, the CPU 13 can receive a telephone signal from the base station. The received signal is converted into a sound wave and then amplified by the speaker 18. In addition, the sound wave from the microphone 19 is received by the CPU 13. The received sound wave is converted into a telephone signal by the CPU 13 and then transmitted to the base station through the transceiver circuit 16 and the antenna 17. Moreover, the CPU 13 transmits the processed data to the display 15 and displays it on the display to store in the memory 11. In addition, the CPU 13 can access data stored in the memory 11. Moreover, the CPU 13 can receive input alphanumeric data from the keypad 110 by the user.
도 2는 국제로밍에서 호출 중, 셀룰러폰이 대기상태로 되는 경우, 셀룰러 폰의 CPU(13)에 의해 상기 국제 전화를 하는 다이어링 처리의 흐름도이다.Fig. 2 is a flowchart of a dialing process for making an international call by the CPU 13 of the cellular phone when the cellular phone goes to standby during a call in international roaming.
단계(1)에서, 처리는 셀룰로폰이 전화번호부 작동 모드로 들어 갖는지를 결정한다. 들어 가지 않은 경우, 처리는 입력 전화번호를 직접 수신한 다음, 단계(5)에 진행한다(단계(2). 들어간 경우, 처리는 이름과 같은 수화 상대방의 데이터를 수신하여 전화 번호부로부터 관련된 전화 번호를 검색한다. 단계(3)에서, 처리는 네트워크사의 인접한 기지국에 의해 전송된 시스템 코드를 검색하고 나서, 이와 연결을 설정한다. 다음, 셀룰러폰은 메모리(11)의 개정표을 액세스하여 인접한 기지국으로부터 수신된 시스템 코드에 대응하는 국제 액세스 코드를 검색하고 나서, 이 전화번호을 다이얼링하는 위치 영역의 국제 액세스 코드가 전화번호를 저장하는 국제 액세스 코드와 같은지를 결정한다. 같으며, 처리가 단계(4)에 진행하고, 같지 않은 경우, 처리가 다이얼된 전화번호의 국제 액세스코드가 개정 표로부터 검색된 국제 액세스 코드와 대치되고 나서, 단계(4)로 진행한다. 단계(4)에서, 처리는 다이럴될 정정 국제 액세스 코드를 갖는 전화번호를 셀룰러폰의 디스플레이(15)상에 나다낸다. 다음, 단계(5)에서, 처리는 전화번호가 다이얼되었는 지를 결정한다. 결정되지 않으면, 처리는 단계(1)에 귀환한다.In step (1), the process determines whether the cellular phone has entered the phonebook operating mode. If not, the process directly receives the input telephone number, and then proceeds to step 5 (step 2). If so, the process receives data of a sign language counterpart, such as a name, and receives the associated telephone number from the telephone directory. In step (3), the process retrieves the system code sent by the neighboring base station of the network company and then establishes a connection with it.The cellular phone then accesses the revision table of the memory 11 and receives from the neighboring base station. Search for an international access code corresponding to the system code, and then determine whether the international access code of the location area for dialing this telephone number is the same as the international access code for storing the telephone number. If it is not the same, the international access code of the dialed telephone number is replaced by the international access code retrieved from the revision table. The process then proceeds to step 4. In step 4, the process exits the telephone number with the correct international access code to be dialed on the display 15 of the cellular phone. The process determines if the telephone number has been dialed, if not, the process returns to step (1).
요약하면, 셀룰러폰 사용자가 전화번호부 작동모드에 들어가 수화할 전화번호가 전화번호부로 부터 선택되는 경우, CPU(13)는 메모리(11)의 개정표에 액세스하여 전화를 호출하게 하는 위치영역의 네트워크사로 부터 수신된 시스템 코드에 대응하는 정정 국제 액세스 코드을 검색한다. 정정 국제 액세스 코드를 갖는 전화번호는 자동적으로 다이얼된다. 이는 편리하고 실용적인 고안이다. 이 방법을 이용함으로써, 상이한 나라에 있는 여러 사럼과 대화할 때의 불편합, 대응하는 국제 액세스 코드 및 이의 작동의 검색 절차에 관한 시간낭비등이 실질적으로 해결된다.In summary, when the cellular phone user enters the phone book operation mode and a phone number to be picked up is selected from the phone book, the CPU 13 accesses the network company of the location area to access the revision table of the memory 11 to call the phone. Retrieve the corrected international access code corresponding to the received system code. Phone numbers with a correct international access code are dialed automatically. This is a convenient and practical design. By using this method, the inconvenience of talking with several people in different countries, the time wasted regarding the corresponding international access code and the retrieval procedure of its operation, etc. are substantially solved.
더구나, 셀룰러폰의 데이터베이스는 정기적으로 갱신된다. 또한, 이러한 셀룰러폰은 셀롤러폰 기능성을 갖는 개인휴대 단말기(PDA)로 실행될 수 있다.Moreover, the database of cellular phones is updated regularly. This cellular phone can also be implemented as a personal digital assistant (PDA) with cellular phone functionality.
본발명은 특정한 실시예에 의해 설명되었지만, 당업자라면, 본발명의 정신 및 범위에서 벗어나지 않으면, 여러 수정과 변경이 가능하다는 것을 알수 있을 것이다.Although the present invention has been described in terms of specific embodiments, those skilled in the art will recognize that various modifications and changes can be made without departing from the spirit and scope of the invention.
본 발명은 인공지능 시스템에 있어서 국제전화를 용이하게 할수 있다.The present invention can facilitate international calls in the artificial intelligence system.
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Family Cites Families (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
KR19990001251A (en) * | 1997-06-13 | 1999-01-15 | 배순훈 | Vertical size adjusting device for image processing |
KR19990001251U (en) * | 1997-06-18 | 1999-01-15 | 유기범 | Handheld phone with dialing function with setting number |
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JP3351396B2 (en) * | 1999-07-22 | 2002-11-25 | 株式会社デンソー | Wireless telephone equipment |
-
2001
- 2001-08-01 KR KR1020010046462A patent/KR100719130B1/en not_active IP Right Cessation
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