EP0891060A2

Link setup, which allows several modulation formats

Abstract

To perform communication at a higher speed than in the past using a new communication device without giving influence on the existing slave communication device, on a master device of a communication system such as PHS, there are provided two series of modulators and demodulators for conventional speed and for higher speed, the two different speeds being changeable by a changeover switch. A slave device to be added newly is also designed in almost the same configuration. In the link setup phase, an information to request change of modulation method is notified together with a request of communication from the slave device to the master device. From the master device, an information to specify time slots to be used in the communication phase and an information to specify modulation method are notified to the slave device. In the communication phase, communication is performed using the modulation method and the time slots as specified. The slave device can select the modulation method corresponding to the transmitting speed as required. In case the modulation method is not specified from the slave device, the same modulation method as that of the link setup phase is used in the communication phase, and the existing slave device not equipped with the means to specify the modulation method can be used without any change.

EP0891060A2, drawing sheet 1
Sheet 1 of 13

Term

Term ended

Projected expiry passed 30 June 2018, 8.2 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

15 claims: 5 independent, 10 dependent

  1. 1
    A communication method for performing one-to-multiple digital communication between a master device and a plurality of slave devices, using a downward transmission frame to transmit from said master device to said slave device and an upward transmission frame to transmit from said slave device to said master device, at least one of the downward and upward transmission frames has a plurality of time slots, whereby, in a link setup phase at the start of communication, an information to specify time slot to be used in a communication phase is transmitted using one time slot each of said upward transmission frame and said downward transmission frame modulated by a first modulation method, and in case high-speed communication is performed, an information to specify a second modulation method to provide transmission at higher speed than said first modulation method is transmitted, and in case high-speed communication is not performed, an information to specify the same second modulation method as said first modulation method is transmitted, or the information to specify the second modulation method is not transmitted, and in the subsequent communication phase, communication is performed using the time slot specified in said link setup phase and by said second modulation method, and, in case there is no information to specify said second modulation method, said first modulation method can be selected.
  2. 5
    A master device for performing communication using the communication method according to one of claims 1 to 4, wherein said master device comprises a data processing unit for exchanging data to be transmitted or received and for allotting time slots, a frame generating unit for inputting transmission data from said data processing unit and for assembling a downward frame with base band, a plurality of modulators having different modulation methods, a first changeover switch for connecting said frame generating unit to one of said plurality of modulators, a transmission interface means for transmitting to a transmission line, a second changeover switch for connecting the modulator connected to said first changeover switch to said transmission interface means, a receiving interface means for receiving data from the transmission line, a plurality of demodulators for demodulating signals with different modulation methods, a frame disassembling unit for performing frame synchronizing of the upward frame, for dividing the data to each time slot and for delivering the data to said data processing unit, and a third changeover switch for connecting one of said plurality of demodulators to said frame disassembling unit.
  3. 6
    A slave device for performing communication by the communication method according to one of claims 1 to 4, comprising a data processing unit for picking up only data of the time slot directed to own station from received signal and for outputting the data, and for inputting transmission data and for delivering the data to a time slot generator, a time slot generator for outputting a transmission data base band signal from said data processing unit to a time slot which allows transmission, a plurality of modulators having different modulation methods, a first changeover switch for connecting said time slot generator to one of said plurality of modulators, a transmission interface means for transmitting the data to a transmission line, a second changeover switch for connecting the modulator connected to said first changeover switch to said transmission interface means, a receiving interface means for receiving data from a transmission line, a plurality of demodulators for demodulating signals having different modulation methods, a frame disassembling unit for performing frame synchronizing of a downward frame, for dividing the received data to each time slot, and for delivering the data to said data processing unit, and a third changeover switch for connecting one of said plurality of demodulators to said frame disassembling unit.
  4. 7
    A data transmission method for performing data transmission from a center device to a plurality of terminal device using a frame at a given cycle, whereby said frame comprises a common unit to be received by all of the terminal devices and an individual unit to be received by a part of the terminal devices, and said common unit is transmitted by a first modulation method and said individual unit is transmitted by a second modulation method having higher number of transmittable bits per unit time than said first modulation method.
  5. 13
    A data communication system for communication between a center device and a plurality of terminal devices, whereby said center device forms a frame at a given cycle, said frame comprising a common unit to be received by all of the terminal devices so that data transmission is performed from said center device to said terminal device and an individual unit to be received by a part of the terminal devices, said common unit is modulated by a first modulation method, said individual unit is modulated by a second modulation method having higher number of transmittable bits per unit time than said first modulation method, said part of the devices demodulates said common unit by a first demodulation method corresponding to said first modulation method and demodulates said individual unit by a second demodulation method corresponding to said second demodulation method.
  6. 14
    A center device in a data communication system for performing communication between a center device and a plurality of terminal devices, whereby said center devices at least comprises a frame forming means for forming a frame at a given cycle, said frame containing a common unit to be received by all terminal devices so that data transmission can be performed from said center device to said terminal devices and an individual unit to be received by a part of the terminal devices, a first modulation means for modulating said common unit by a first modulation method, and a second modulation means for modulating said individual unit by a second modulation method having higher number of transmittable bits per unit time than said first modulation method.
  7. 15
    A terminal device in a data communication system for performing communication from a center device to a plurality of terminal devices, whereby said center device forms a frame at a given cycle, said frame containing a common unit to be received by all terminal devices and an individual unit to be received by a part of the terminal devices, said common unit is modulated by a first modulation method, and said individual unit is modulated by a second modulation method having higher number of transmittable bits per unit time than said first modulation method, a terminal device in said part of the terminal device at least comprises a first demodulation means for demodulating said common unit by a first demodulation method corresponding to said first modulation method, and a second demodulation means for demodulating said individual unit by a second demodulation method corresponding to said second modulation method.