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METHOD FOR CELLULAR, a base transceiver station cellular network, the device user CELLULAR NETWORK, BASE STATION CONTROL NETWORK CELLULAR NETWORK AND CELLULAR
METHOD FOR CELLULAR, a base transceiver station cellular network, the device user CELLULAR NETWORK, BASE STATION CONTROL NETWORK CELLULAR NETWORK AND CELLULAR
1. The base transceiver station of a cellular network, comprising at least one pair consisting of a transmitter and a radio receiver, wherein at least one of said transmitter and / or receiver arranged to operate in a protective band.;2. Station according to claim 1, wherein said transmitter is adapted to operate in the frequency band from within any guard bands, the frequency selected from the group consisting of 915-935 MHz, 1785-1805 MHz, 1910-1930 MHz and 849-869 MHz and said receiver is adapted to operate in another frequency band within the bandwidth of said guard bandwidth.;3. The station of claim 1, wherein said transmitter is adapted to operate in a frequency band within one of the guard bands, the frequency selected from the group consisting of 915-935 MHz, 1785-1805 MHz, 1910-1930 MHz and 849-869 MHz and said receiver is adapted to operate in any of the frequency bands selected from the group of frequencies consisting of 890-960 MHz, 1710-1880 MHz, 1850-1990 MHz and 824-894 MHz.;4. The station of claim 1, wherein said receiver is configured to operate in any frequency band within the guard bands of selected frequencies from the group consisting of 915-935 MHz, 1785-1805 MHz, 1910-1930 MHz and 849-869 MHz and said transmitter is adapted to operate in any of the frequency bands selected from the group of frequencies consisting of 890-960 MHz, 1710-1880 MHz, 1850-1990 MHz and 824-894 MHz.;5. A device user cellular communication network comprising at least one pair consisting of a radio transmitter and a radio receiver, wherein at least one of said transmitter and / or receiver arranged to operate at a frequency of guard bandwidth.;6. The apparatus of claim 5, wherein said transmitter is adapted to operate in the frequency band from within any guard bands, the frequency selected from the group consisting of 915-935 MHz, 1785-1805 MHz, 1910-1930 MHz and 849-869 MHz and said receiver is adapted to operate in another frequency band within the bandwidth of said guard bandwidth.;7. The apparatus of claim 5, wherein said transmitter is adapted to operate in the frequency band from within any guard bands, the frequency selected from the group consisting of 915-935 MHz, 1785-1805 MHz, 1910-1930 MHz and 849-869 MHz and said receiver is adapted to operate in any of the frequency bands selected from the group of frequencies consisting of 890-960 MHz, 1710-1880 MHz, 1850-1990 MHz and 824-894 MHz.;8. The apparatus of claim 5, wherein said receiver is configured to operate in any frequency band within the guard bands of selected frequencies from the group consisting of 915-935 MHz, 1785-1805 MHz, 1910-1930 MHz and 849-869 MHz and said transmitter is adapted to operate in any of the frequency bands selected from the group of frequencies consisting of 890-960 MHz, 1710-1880 MHz, 1850-1990 MHz and 824-894 MHz.;9. Basic cellular network control station including at least one pair consisting of a transmitter and a radio receiver, wherein at least one of said transmitter and / or receiver arranged to operate at a frequency of guard bandwidth.;10. The station of claim 9, wherein said transmitter is adapted to operate in the frequency band from within any guard bands, the frequency selected from the group consisting of 915-935 MHz, 1785-1805 MHz, 1910-1930 MHz and 849-869 MHz and said receiver is adapted to operate in another frequency band within the bandwidth of said guard bandwidth.;11. The station of claim 9, wherein said transmitter is adapted to operate in the frequency band from within any guard bands, the frequency selected from the group consisting of 915-935 MHz, 1785-1805 MHz, 1910-1930 MHz and 849-869 MHz and said receiver is adapted to operate in any of the frequency bands selected from the group of frequencies consisting of 890-960 MHz, 1710-1880 MHz, 1850-1990 MHz and 824-894 MHz.;12. The station of claim 9, wherein said receiver is configured to operate in any frequency band within the guard bands of selected frequencies from the group consisting of 915-935 MHz, 1785-1805 MHz, 1910-1930 MHz and 849-869 MHz and said transmitter is adapted to operate in any of the frequency bands 890-960 MHz, 1710-1880 MHz, 1850-1990 MHz and 824-894 MHz.;13. Cellular network comprising a base transceiver station of a cellular network, comprising at least one pair consisting of a radio transmitter and a radio receiver, of which at least one is adapted to operate in the protective band, the user device is a cellular network communication comprising at least one pair consisting of a radio transmitter and a radio receiver, of which at least one is adapted to operate in the protective band and the base network management station cellular communications comprising at least one pair of consisting of a radio transmitter and a radio receiver, of which at least one is adapted to operate in a protective band.;14. The mobile communication method comprising the use of at least one guard bandwidth for the uplink and / or downlink communication between the user device and the cellular network base transceiver stations and / or between the base transceiver stations and base station control cellular network.;15. The method of claim 14, wherein said uplink frequency band is used in any of the guard bands, the frequency selected from the group consisting of 915-935 MHz, 1785-1805 MHz, 1910-1930 MHz and 849-869 MHz and said downward frequency used in the frequency band corresponding to a different strip of said protective bands.;16. The method of claim 14, wherein said frequency uplink / downlink frequency band used in each of the guard bands, the frequency selected from the group consisting of 915-935 MHz, 1785-1805 MHz, 849-869 MHz and 1910- 1930 MHz and said downlink / uplink frequency used in any of the frequency bands selected from the group of frequencies consisting of 890-960 MHz, 1710-1880 MHz, 1850-1990 MHz and 824-894 MHz.;17. The method of claim 14, wherein chavstotu used for receiving in the frequency band from within any protective bands of frequencies selected from the group consisting of 915-935 MHz, 1785-1805 MHz, 1910-1930 MHz and 849-869 MHz, a frequency used to transmit at any of the frequency bands selected from the group of frequencies consisting of 890-960 MHz, 1710-1880 MHz, 1850-1990 MHz and 824-894 MHz.
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