Claims
- 1. A mobile radio communication system comprising:
a first communication system employing a code division multiple access method of transmitting frames by using a first superframe which is formed of a plural frames which expresses a frame transmission period, and a second communication system for observing frequency component of control data transmission channel by making use of a specified idle period, the specified idle period being inserted in a second superframe for downlink user data transmission channel on the basis of the difference between the number of frames of integer multiple of second superframe expressing a frame transmission period in user data transmission channel and the number of frames of third superframe expressing a frame transmission period in control data transmission channel, error correction and interleaving of frames being performed when said first communication system transmits the frames, wherein the specified idle period is at most half of the time of one frame that forms the first superframe and inserted in the first superframe at intervals of a specified number of frames, and wherein the frequency component of control data transmission channel of said second communication system is observed from said first communication system by making use of the idle period.
- 2. The mobile radio communication system according to claim 1,
wherein said first communication system is the UMTS that transmits frames by using a first superframe which is formed of a plural frames and which expresses a frame transmission period, and wherein said second communication system is an another system that transmits frames by using a second superframe of an equal transmission period as the first superframe of said UMTS.
- 3. The mobile radio communication system according to claim 2, wherein the interval of a specified number of frames is determined according to the difference in the transmission period between said UMTS and said another system.
- 4. The mobile radio communication system according to claim 2 or 3, wherein the specified idle period is placed in the center of the frame that is the unit of a superframe of said UMTS.
- 5. A mobile radio communication system comprising:
a first communication system employing a code division multiple access method of transmitting frames by using a first superframe which is formed of a plural frames and which expresses a frame transmission period, and a second communication system for observing frequency component of control data transmission channel by making use of a specified idle period, the specified idle period being inserted in a second superframe for downlink user data transmission channel on the basis of the difference between the number of frames of integer multiple of second superframe expressing a frame transmission period in user data transmission channel and the number of frames of third superframe expressing a frame transmission period in control data transmission channel, error correction and interleaving of frames is performed when said first communication system transmits the frames, wherein the specified idle period is at most half of the time of one frame that forms the first superframe and inserted in the first superframe at not necessarily regular intervals of a specified number of slots, and wherein the frequency component of control data transmission channel of said second communication system is observed from said first communication system by making use of the idle period.
- 6. The mobile radio communication system according to claim 5,
wherein said first communication system is the UMTS that transmits frames by using a first superframe which is formed of a plural frames and which expresses a frame transmission period, and wherein said second communication system is an another system that transmits frames by using a second superframe of an equal transmission period as the first superframe of said UMTS.
- 7. The mobile radio communication system according to claim 6, wherein the interval of a specified number of slots is determined according to the difference in the transmission period between said UMTS and said another system.
- 8. The mobile radio communication system according to any one of claims 1 to 7, wherein the specified idle period is provided at many places in a UMTS superframe and the idle period may be differently set in each frame.
- 9. The mobile radio communication system according to claim 8, wherein the total of the idle period is equal to the specified idle period provided for observing the frequency component between said another systems.
- 10. The mobile radio communication system according to any one of claims 1 to 9, wherein the frame in which the specified idle period is inserted is compressed and transmitted intermittently.
- 11. The mobile radio communication system according to claim 10, wherein the compressed frame is generated by increasing the coding rate.
- 12. The mobile radio communication system according to claim 11, wherein the compressed frame is generated at a spreading factor that is the same as the spreading factor at which a frame that do not contain the specified idle period is generated.
- 13. A communication apparatus, applied in a mobile radio communication system having,
a first communication system employing a code division multiple access method of transmitting frames by using a first superframe which is formed of a plural frames and which expresses a frame transmission period, and a second communication system for observing frequency component of control data transmission channel by making use of a specified idle period, the specified idle period being inserted in a second superframe for downlink user data transmission channel on the basis of the difference between the number of frames of integer multiple of second superframe expressing a frame transmission period in user data transmission channel and the number of frames of third superframe expressing a frame transmission period in control data transmission channel, error correction and interleaving of frames being performed when said first communication system transmits the frames, frames being transmitted continuously in the case of normal mode, and compressed frames being transmitted intermittently in the case of compressed mode, wherein said communication apparatus comprises a control unit for inserting a specified idle period, during the compressed mode, in the first superframe, having a duration that is at most portion of one frame that forms, the first superframe, and at intervals of a specified number of frames, and wherein the frequency component of control data transmission channel of said second communication system is observed from said first communication system by making use of the specified idle period inserted by said control unit.
- 14. The communication apparatus applied in a mobile radio communication system according to claim 13,
wherein said first communication system is the UMTS that transmits frames by using a first superframe which is formed of a plural frames and which expresses a frame transmission period, and wherein said second communication system is an another system that transmits frames by using a second superframe of an equal transmission period as the first superframe of said UMTS.
- 15. The communication apparatus applied in a mobile radio communication system according to claim 14, wherein said control unit determines the interval of a specified number of frames according to the difference in the transmission period between said UMTS and said another system.
- 16. The communication apparatus applied in a mobile radio communication system according to claim 14 or 15, wherein said control unit places the specified idle period in the center of the frame that is the unit of superframe of said UMTS.
- 17. A communication apparatus, applied in a mobile radio communication system having,
a first communication system employing a code division multiple access method of transmitting frames by using a first superframe which is formed of a plural frames and which expresses a frame transmission period, and a second communication system for observing frequency component of control data transmission channel by making use of a specified idle period, the specified idle period being inserted in a second superframe for downlink user data transmission channel, on the basis of the difference between the number of frames of integer multiple of second superframe expressing a frame transmission period in user data transmission channel and the number of frames of third superframe expressing a frame transmission period in control data transmission channel, error correction and interleaving of frames being performed when said first communication system transmits the frames, frames being transmitted continuously in the case of normal mode, and compressed frames being transmitted intermittently in the case of compressed mode, wherein said communication apparatus comprises a control unit for inserting a specified idle period, during the compressed mode, in the first superframe, having a duration that is at most portion of one frame that forms the first superframe, and at not necessarily regular intervals of a specified number of slots, and wherein the frequency component of control data transmission channel of said second communication system is observed from said first communication system by making use of the specified idle period inserted by said control unit.
- 18. The communication apparatus applied in a mobile radio communication system according to claim 17,
wherein said first communication system is the UMTS that transmits frames by using a first superframe which is formed of a plural frames and which expresses a frame transmission period, and wherein said second communication system is an another system that transmits frames by using a second superframe of an equal transmission period as the first superframe of said UMTS.
- 19. The communication apparatus applied in a mobile radio communication system according to claim 18, wherein said control unit determines the interval of a specified number of frames according to the difference in the transmission period between said UMTS and said another system.
- 20. The communication apparatus applied in a mobile radio communication system according to any one of claims 13 to 19, wherein said control unit provides the specified idle period at many places in a frame of a UMTS superframe and the sets the idle period differently in each frame.
- 21. The communication apparatus applied in a mobile radio communication system according to claim 20, wherein said control unit sets the idle period in such a way that the total of it is equal to the specified idle period provided for observing the frequency component between said another systems.
- 22. The communication apparatus applied in a mobile radio communication system according to any one of claims 13 to 21, wherein said control unit increases the coding rate when generating the compressed frame.
- 23. The communication apparatus applied in a mobile radio communication system according to claim 22, wherein said control unit sets a spreading factor when generating the compressed mode frame that is the same as the spreading factor at which a frame that do not contain the specified idle period is generated.
- 24. The communication apparatus applied in a mobile radio communication system according to any one of claims 13 to 23, wherein said control unit increases the average transmission power during the compressed mode.
- 25. A mobile radio communication method, applied in a mobile radio communication system having,
a first communication system employing a code division multiple access method of transmitting frames by using a first superframe which is formed of a plural frames and which expresses a frame transmission period, and a second communication system for observing frequency component of control data transmission channel by making use of a specified idle period, the specified idle period being inserted in a second superframe for downlink user data transmission channel on the basis of the difference between the number of frames of integer multiple of second superframe expressing a frame transmission period in user data transmission channel and the number of frames of third superframe expressing a frame transmission period in control data transmission channel, error correction and interleaving of frames being performed when said first communication system transmits the frames, frames being transmitted continuously in the case of normal mode, and compressed frames being transmitted intermittently in the case of compressed mode, the method comprising: a first step of compressing frames to be transmitted intermittently during the compressed mode, and a second step of transmitting the frames compressed in the first step intermittently by inserting a specified idle period, in the first superframe, having a duration that is at most portion of one frame that forms the first superframe, and at intervals of a specified number of frames determined by the relation of the frame structure between said first communication system and said second communication system, and the frequency component of control data transmission channel of said second communication system being observed from said first communication system by making use of the specified idle period inserted in the second step.
- 26. A mobile radio communication method, applied in a mobile radio communication system having,
a first communication system employing a code division multiple access method of transmitting frames by using a first superframe which is formed of a plural frames and which expresses a frame transmission period, and a second communication system for observing frequency component of control data transmission channel by making use of a specified idle period, the specified idle period being inserted in a second superframe for downlink user data transmission channel on the basis of the difference between the number of frames of integer multiple of second superframe expressing a frame transmission period in user data transmission channel and the number of frames of third superframe expressing a frame transmission period in control data transmission channel, error correction and interleaving of frames being performed when said first communication system transmits the frames, frames being transmitted continuously in the case of normal mode, and compressed frames being transmitted intermittently in the case of compressed mode, the method comprising: a first step of compressing frames to be transmitted intermittently during the compressed mode, and a second step of transmitting the frames compressed in the first step intermittently by inserting a specified idle period, in the first superframe, having a duration that is at most half of one frame that forms the first superframe, and at intervals of a specified number of slots determined by the relation of the frame structure between said first communication system and said second communication system, and the frequency component of control data transmission channel of said second communication system being observed from said first communication system by making use of the specified idle period inserted in the second step.
- 27. The mobile radio communication method according to claim 25 or 26,
wherein said first communication system is the UMTS that transmits frames by using a first superframe which is formed of a plural frames and which expresses a frame transmission period, and wherein said second communication system is an another system that transmits frames by using a second superframe of an equal transmission period as the first superframe of said UMTS.
- 28. The mobile radio communication method according to any one of claims 25 to 27, wherein the compressed frames are generated in the first step by increasing the coding rate.
- 29. The mobile radio communication method according to claim 28, wherein the compressed frame is generated in the first step at a spreading factor that is the same as the spreading factor at which a frame that do not contain the specified idle period is generated.
- 30. The mobile radio communication method according to any one of claims 25 to 29, wherein average transmission power is increased in the second step during the compressed mode.
Priority Claims (1)
Number |
Date |
Country |
Kind |
10-114003 |
Apr 1998 |
JP |
|
Parent Case Info
[0001] This application is a continuation of International Application PCT/JP99/01051, with an international filing date of Mar. 4, 1999, which designated the United States, the entire contents of which are hereby incorporated by references.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09467063 |
Dec 1999 |
US |
Child |
10208813 |
Aug 2002 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/JP99/01051 |
Mar 1999 |
US |
Child |
09467063 |
Dec 1999 |
US |