EP1802004A2

Transmission of a plurality of channels for CDMA telecommunications system

Abstract

A novel and improved method for implementing a high-transmission-rate over-the-air interface is described. A transmit system provides an in-phase channel set (90) and a quadrature-phase channel set (92). The in-phase channel set (90) is used to provide a complete set of orthogonal medium rate control and traffic channels. The quadrature-phase channel (92) set is used to provide a high-rate supplemental channel and an extended set of medium rate channels that are orthogonal to each other and the original medium rate channels. The high-rate supplemental channel is generated over a set of medium rate channels using a short channel code. The medium rate channel are generated using a set of long channel codes.

EP1802004A2, drawing sheet 1
Sheet 1 of 9

Term

Term ended

Projected expiry passed 19 December 2017, 8.8 years ago.

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

11 claims: 11 independent, 0 dependent

  1. 1
    An apparatus for transmitting a plurality of channels using code division multiple access radio frequency signal processing, the apparatus comprising:a code generator for generating a set of orthogonal codes;first signal processing means for modulating a first set of channels using the set of orthogonal codes to produce a first set of modulated channels that are orthogonal to each other on a first modulation path;andsecond signal processing means for modulating a second set of channels using the set of orthogonal codes to produce a second set of modulated channels that are orthogonal to each other on a second modulation path;wherein at least one channel in the first set of modulated channels is modulated with the same code as the code used to modulate another channel in the second set of modulated channels;wherein the first and second processing means are configured to use different length codes from the set of orthogonal codes for modulating the channels in the first and second sets of channels, wherein the length of codes used for high rate channels in the first and second sets of channels is shorter than the length of codes used for medium rate channels in the first and second sets of channels, while maintaining channel orthogonally within the first set of modulated channels and within the second set of modulated channels by eliminating, based on the length of codes used for high rate channels, a number of codes from the set of orthogonal codes available for modulating the first and second set of channels.
  2. 2
    The apparatus as recited in claim 1 further comprising:channel gain adjusting means for adjusting channel gain of each channel in the first and second sets of modulated channels;a first summer for summing the first set of modulated channels after the channel gain adjustment to produce a first summed data signal on the first modulation path;a second summer for summing the second set of modulated channels after the channel gain adjustment to produce a second summed data signal on the second modulation path.
  3. 3
    The apparatus as recited in claim 2 further comprising:a complex multiplier for complex multiplying the first and second summed data signals to produce a signal for transmission.
  4. 4
    The apparatus as recited in claim 1, wherein the first and second modulation paths are in-phase and quadrature-phase modulation paths.
  5. 5
    The apparatus as recited in claim 1, wherein the first and second sets of channels include at least one control channel and a plurality of traffic channels.
  6. 6
    A method for transmitting a plurality of channels using code division multiple access radio frequency signal processing, the method comprising:generating a set of orthogonal codes;modulating a first set of channels using the set of orthogonal codes to produce a first set of modulated channels that are orthogonal to each other on a first modulation path;andmodulating a second set of channels using the set of orthogonal codes to produce a second set of modulated channels that are orthogonal to each other on a second modulation path;wherein at least one channel in the first set of modulated channels is modulated with the same code as the code used to modulate another channel in the second set of modulated channelswherein the step of modulating a first set of channels and the step of modulating a second set of channels use different length codes from the set of orthogonal codes for modulating the channels, wherein the length of codes used for high rate channels in the first and second sets of channels is shorter than the length of codes used for medium rate channels in the first and second sets of channels, while maintaining channel orthogonally within the first set of modulated channels and within the second set of modulated channels by eliminating, based on the length of codes used for high rate channels, a number of codes from the set of orthogonal codes available for modulating the first and second set of channels.
  7. 7
    The method as recited in claim 6 further comprising:adjusting channel gain of each channel in the first and second sets of modulated channels;summing the first set of modulated channels after the channel gain adjustment to produce a first summed data signal on the first modulation path;summing the second set of modulated channels after the channel gain adjustment to produce a second summed data signal on the second modulation path.
  8. 8
    The method as recited in claim 7 further comprising:complex multiplying the first and second summed data signals to produce a signal for transmission.
  9. 9
    The method as recited in claim 6, wherein the first and second modulation paths are in-phase and quadrature-phase modulation paths.
  10. 10
    The method as recited in claim 6, wherein the first and second sets of channels include at least one control channel and a plurality of traffic channels.
  11. 11
    A telecommunications system for conducting a high-rate communication in conjunction with a set of medium rate communications using code division multiple access radio frequency signal processing comprising:first signal processing means for transmitting the set of medium rate communications over a first set of medium rate channels in a radio frequency bandwidth;andsecond signal processing means for transmitting the high-rate communication over a second set of medium rate channels in said radio frequency bandwidth, wherein said second set of medium rate channels is orthogonal to said first set of medium rate channels.