Nova Patents
EP0589709A2

Multiresolution transmission system.

Abstract

In the transmitter, data are divided in to two or more groups, according to importance. In a three group system, for example, the data streams are then mapped onto a multiresolution constellation (QAM or modified PSK) in the following way. The most important data determine the quadrant, the next most important determine which of four subsets is used in the quadrant, and the least important determine which point is used within that subset. This mapping system allows receivers of differing capabilities to detect as much data as they are able, or a single receiver to detect a much data as the channel quality allows. For example, a QPSK receiver could detect the most important data, a modified 16QAM receiver could detect the most important and second most important data, while a modified 64QAM receiver could receive all the data. Furthermore, in an OFDM system, multiresolution transmission is provided by using long guard times and/or wider channel spacing (equivalently, longer symbols) for the more important data.

EP0589709A2, drawing sheet 1
Sheet 1 of 161

Term

Term ended

Projected expiry passed 24 September 2013, 13 years ago.

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

10 claims: 10 independent, 0 dependent

  1. 1
    A communication system comprising:a transmitter having a signal input means, a modulator means for producing m (m≧4) signal points in a signal space diagram expressed at least in a polar coordinate system (r, ϑ) through modulation of a carrier wave using an input signal fed from the signal input means, and a transmitting means for transmitting a modulated signal modulated in said modulator means, in which said input signal contains a first data stream of n values and a second data stream, said m signal points are divided into n signal point groups, said n values of the first data stream are assigned to specify said n signal point groups respectively, and said second data stream is assigned to specify signal points in each signal point group;and    a receiver having input means for reception of said modulated signal transmitted from the transmitter, a demodulating means for demodulating said modulated signal into a multi-level signal representing P signal points in a signal space diagram expressed at least in the polar coordinate system (r, ϑ), and an output means for outputting a signal demodulated by said demodulating means, in which said P signal points are divided into signal point groups of n values, the first data stream of n values is demodulated so as to be assign to said n values of said signal point groups, and the second data stream of P/n values is demodulated so as to be assigned to P/n signal points of each point group for reconstruction of data of the first and second data streams.
  2. 2
    A communication system in accordance with claim 1, wherein said signal points are divided into a plurality of groups in a radius (r) direction of said polar coordinate system to encode said first or second data stream.
  3. 3
    A communication system in accordance with claim 1, wherein said signal points are divided into a plurality of groups in an angular (ϑ) direction of said polar coordinate system to encode said first or second data stream.
  4. 4
    A communication system based on an OFDM system in which a plurality of carriers being quadrate with each other are used for data transmission of a plurality of subchannels, characterized in that    a guard time slot containing no signal, disposed in front of a symbol transmission time slot on time base, is differentiated in each subchannel.
  5. 5
    A communication system in accordance with claim 4, wherein said subchannels includes a first subchannel transmitting a high-frequency component of a TV signal and a second subchannel transmitting a low-frequency component thereof, in which a guard time slot of said second subchannel is set to be larger than a guard time slot of said first subchannel.
  6. 6
    A communication system based on an OFDM system in which a plurality of carriers being quadrate with each other are used for data transmission of a plurality of subchannels, characterized in that    a guard time slot containing no signal is disposed in front of a symbol transmission time slot on time base, and a carrier wave interval of said symbol transmission time slot is differentiated in each subchannel.
  7. 7
    A communication system in accordance with claim 6, wherein said subchannels includes a first subchannel transmitting a high-frequency component of a TV signal and a second subchannel transmitting a low-frequency component thereof, in which a carrier wave interval of said second subchannel is set to be larger than a carrier wave interval of said first subchannel.
  8. 8
    A communication system based on an OFDM system in which a plurality of carriers being quadrate with each other are used for data transmission of a plurality of subchannels, characterized in that    transmission electric power of said carrier is differentiated in each subchannel.
  9. 9
    A transmitter for a communication system, the transmitter comprising:a signal input means, a modulator means for producing m (m≧4) signal points in a signal space diagram expressed at least in a polar coordinate system (r, ϑ) through modulation of a carrier wave using an input signal fed from the signal input means, and a transmitting means for transmitting a modulated signal modulated in said modulator means, in which said input signal contains a first data stream of n values and a second data stream, said m signal points are divided into n signal point groups, said n values of the first data stream are assigned to specify said n signal point groups respectively, and said second data stream is assigned to specify signal points in each signal point group.
  10. 10
    A receiver for a communication system, the receiver comprising:input means for reception of said modulated signal transmitted from the transmitter, a demodulating means for demodulating said modulated signal into a multi-level signal representing P signal points in a signal space diagram expressed at least in the polar coordinate system (r, ϑ), and an output means for outputting a signal demodulated by said demodulating means, in which said P signal points are divided into signal point groups of n values, the first data stream of n values is demodulated so as to be assign to said n values of said signal point groups, and the second data stream of P/n values is demodulated so as to be assigned to P/n signal points of each point group for reconstruction of data of the first and second data streams.