Nova Patents
EP1035698A2

Mutliresolution transmission system

Abstract

At the transmitter side, carrier waves are modulated according to an input signal for producing relevant signal points in a signal space diagram. The input signal is divided into, two, first and second, data streams. The signal points are divided into signal point groups to which data of the first data stream are assigned. Also, data of the second data stream are assigned to the signal points of each signal point group. A difference in the transmission error rate between first and second data streams is developed by shifting the signal points to other positions in the space diagram expressed at least in the polar coordinate system. At the receiver side, the first and/or second data streams can be reconstructed from a received signal. In TV broadcast service, a TV signal is divided by a transmitter into, low and high, frequency band components which are designated as a first and a second data streams respectively. Upon receiving the TV signal, a receiver can reproduce only the low frequency band component or both the low and high frequency band components, depending on its capability. Furthermore, a communication system based on an QFDM system is utilized for data transmission of a plurality of subchannels, wherein the subchannels are differentiated by changing the length of a guard time slot or a carrier wave interval of a symbol transmission time slot, or changing the transmission electric power of the carrier.

EP1035698A2, drawing sheet 1
Sheet 1 of 172

Term

Term ended

Projected expiry passed 24 September 2013, 13 years ago.

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

14 claims: 8 independent, 6 dependent

  1. 1
    A signal transmission apparatus comprising:a modulator for assigning a first data stream of layer A, a second data stream of layer A, a first data stream of layer B and a second data stream of layer B to a respective constellation in a signal space to produce a modulated signal of layer A and a modulated signal of layer B, an Inverse Fast Fourier Transformer for converting said modulated signal of layer A and said modulated signal of layer B into a transmission signal in layer A on a time axis and a transmission signal in layer B on a time axis respectively, wherein each transmission signal comprises an effective symbol signal and a guard interval signal, a transmitter for transmitting said transmission signals;and wherein the number of signal points of said first data stream of layer A assigned in said signal space is different from the number of signal points of said second data stream of layer A assigned in said signal space, the number of signal points of said first data stream of layer B assigned in said signal space is different from the number of signal points of said second data stream of layer B assigned in said signal space and the period of said effective symbol signal in layer A is larger than the period of said effective symbol signal in layer B.
  2. 3
    A signal receiving apparatus comprising:a modulation signal in layer A, and a modulation signal in layer B, a Fast Fourier Transformer for converting said modulation signal in layer A and said modulation signal in layer B into a converted signal on a frequency axis in layer A and a converted signal on a frequency axis in layer B, a demodulator for demodulating said converted signal in layer A into a first data stream of layer A and a second data stream of layer A and demodulating said converted signal in layer B into a first data stream of layer B and a second data stream of layer B, and wherein the number of signal points of said first data stream of layer A assigned in said signal space is different from the number of signal points of said second data stream of layer A assigned in said signal space, the number of signal points of said first data stream of layer B assigned in said signal space is different from the number of signal points of said second data stream of layer B assigned in said signal space, and wherein the period of said effective symbol signal in layer A is larger than the period of said effective symbol signal in layer B
  3. 5
    A signal transmission method comprising:a modulation step for assigning a first data stream of layer A, a second data stream of layer A, a first data stream of layer B and a second data stream of layer B to a respective constellation in a signal space to produce a modulated signal of layer A and a modulated signal of layer B, an Inverse Fast Fourier Transforming step for converting said modulated signal of layer A and said modulated signal of layer B into a transmission signal in layer A on a time axis and a transmission signal in layer B on a time axis respectively, wherein each transmission signal comprises an effective symbol signal and a guard interval signal, a transmission step for transmitting said transmission signals;and wherein the number of signal points of said first data stream of layer A assigned in said signal space is different from the number of signal points of said second data stream of layer A assigned in said signal space, the number of signal points of said first data stream of layer B assigned in said signal space is different from the number of signal points of said second data stream of layer B assigned in said signal space and the period of said effective symbol signal in layer A is larger than the period of said effective symbol signal in layer B.
  4. 7
    A signal receiving method comprising:a modulation signal in layer A, and a modulation signal in layer B, a Fast Fourier Transforming step for converting said modulation signal in layer A and said modulation signal in layer B into a converted signal on a frequency axis in layer A and a converted signal on a frequency axis in layer B, a demodulation step for demodulating said converted signal in layer A into a first data stream of layer A and a second data stream of layer A and demodulating said converted signal in layer B into a first data stream of layer B and a second data stream of layer B, and wherein the number of signal points of said first data stream of layer A assigned in said signal space is different from the number of signal points of said second data stream of layer A assigned in said signal space, the number of signal points of said first data stream of layer B assigned in said signal space is different from the number of signal points of said second data stream of layer B assigned in said signal space, and wherein the period of said effective symbol signal in layer A is larger than the period of said effective symbol signal in layer B
  5. 8
    A signal transmission apparatus comprising:a modulator for assigning a first data stream of layer A, a second data stream of layer A, a first data stream of layer B and a second data stream of layer B to a respective constellation in a signal space to produce a modulated signal of layer A and a modulated signal of layer B, an Inverse Fast Fourier Transformer for converting said modulated signal of layer A and said modulated signal of layer B into a transmission signal in layer A on a time axis and a transmission signal in layer B on a time axis respectively, wherein each transmission signal comprises an effective symbol signal and a guard interval signal, a transmitter for transmitting said transmission signals;and wherein the number of signal points of said first data stream of layer A assigned in said signal space is different from the number of signal points of said second data stream of layer A assigned in said signal space, the number of signal points of said first data stream of layer B assigned in said signal space is different from the number of signal points of said second data stream of layer B assigned in said signal space and wherein a carrier space of said effective symbol signal in layer B is larger than a carrier space of said effective symbol signal in layer A.
  6. 10
    A signal receiving apparatus comprising:a modulation signal in layer A, and a modulation signal in layer B, a Fast Fourier Transformer for converting said modulation signal in layer A and said modulation signal in layer B into a converted signal on a frequency axis in layer A and a converted signal on a frequency axis in layer B, a demodulator for demodulating said converted signal in layer A into a first data stream of layer A and a second data stream of layer A and demodulating said converted signal in layer B into a first data stream of layer B and a second data stream of layer B, and wherein the number of signal points of said first data stream of layer A assigned in said signal space is different from the number of signal points of said second data stream of layer A assigned in said signal space, the number of signal points of said first data stream of layer B assigned in said signal space is different from the number of signal points of said second data stream of layer B assigned in said signal space, and wherein a carrier space of said effective symbol signal in layer B is larger than a carrier space of said effective symbol signal in layer A.
  7. 12
    A signal transmission method comprising:a modulation step for assigning a first data stream of layer A, a second data stream of layer A, a first data stream of layer B and a second data stream of layer B to a respective constellation in a signal space to produce a modulated signal of layer A and a modulated signal of layer B, an Inverse Fast Fourier Transforming step for converting said modulated signal of layer A and said modulated signal of layer B into a transmission signal in layer A on a time axis and a transmission signal in layer B on a time axis respectively, wherein each transmission signal comprises an effective symbol signal and a guard interval signal, a transmission step for transmitting said transmission signals;and wherein the number of signal points of said first data stream of layer A assigned in said signal space is different from the number of signal points of said second data stream of layer A assigned in said signal space, the number of signal points of said first data stream of layer B assigned in said signal space is different from the number of signal points of said second data stream of layer B assigned in said signal space and wherein a carrier space of said effective symbol signal in layer B is larger than a carrier space of said effective symbol signal in layer A.
  8. 14
    A signal receiving method comprising:a modulation signal in layer A, and a modulation signal in layer B, a Fast Fourier Transforming step for converting said modulation signal in layer A and said modulation signal in layer B into a converted signal on a frequency axis in layer A and a converted signal on a frequency axis in layer B, a demodulation step for demodulating said converted signal in layer A into a first data stream of layer A and a second data stream of layer A and demodulating said converted signal in layer B into a first data stream of layer B and a second data stream of layer B, and wherein the number of signal points of said first data stream of layer A assigned in said signal space is different from the number of signal points of said second data stream of layer A assigned in said signal space, the number of signal points of said first data stream of layer B assigned in said signal space is different from the number of signal points of said second data stream of layer B assigned in said signal space, and wherein a carrier space of said effective symbol signal in layer B is larger than a carrier space of said effective symbol signal in layer A.