IL170335A

Frequency hop sequences for multi-band communication systems

Abstract

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IL170335A, drawing sheet 1
Sheet 1 of 7

Term

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28 claims: 9 independent, 19 dependent

  1. 1
    A method of obtaining a frequency hop (FH) sequence, comprising:obtaining a first sequence of elements for an expression 1/k, where k is an index for the elements in the first sequence;and 5 obtaining a second sequence of elements for an expression 10g a 1/k based on the first sequence, wherein the expression 1/k and 10g a 1/k are evaluated with modulo-p operation, where p is a prime number and a is a primitive root of p, and wherein the FH sequence is derived based on the second sequence. 10
  2. 7
    A method of processing data for transmission in a multi-band communication system, comprising:receiving data for transmission on a plurality of frequency bands;30 determining a particular one of the plurality of frequency bands to use in each of a plurality of time intervals based on a frequency hop (FH) sequence, wherein the FH sequence is generated based on an algebraic expression y(k) =10g a l/k (mod p), where p is a prime number, a is a primitive root of p, k is an index for elements of the FH sequence, and (mod p) denotes modulo־p operation;and processing the data for transmission on frequency bands determined by the FH sequence.
  3. 11
    An apparatus in a multi-band communication system, comprising:means for receiving data for transmission on a plurality of frequency bands;means for determining a particular one of the plurality of frequency bands to use in each of a plurality of time intervals based on a frequency hop (FH) sequence, wherein the FH sequence is generated based on an algebraic expression y(k)=10g a l/k (mod p), where p is a prime number, a is a primitive root of p, k is an index for elements of tlie FH sequence, and (mod p) denotes modulo־p operation;and means for processing the data for transmission on frequency bands determined by the FH sequence.
  4. 14
    A transmitter unit in a multi-band communication system, comprising:a modulator operative to modulate data for transmission on a plurality of frequency bands;a switch operative to determine a particular one of the plurality of frequency bands to use in each of a plurality of time intervals based on a frequency hop (FH) sequence, wherein the FH sequence is generated based on an algebraic expression y(k)=10g a l/k (mod p), where p is a prime number, a is a primitive root of p, k is an index for elements of the FH sequence, and (mod p) denotes modulo-p operation;and a signal processor operative to process the modulated data for transmission on frequency bands determined by the FH sequence.
  5. 16
    A method of processing data for transmission in a multi-band communication system, comprising:receiving data for transmission on a first traffic channel;determining a particular one of a plurality of frequency bands to use forte first traffic channel in each of a plurality of time intervals based on a first frequency hop (FH) sequence, wherein the first FH sequence is assigned to the first traffic channel and generated based on an algebraic expression y(k)=10g a l/k (mod p), where p is a prime number, a is a primitive root of p, k is an index for elements of the first FH sequence, and (mod p) denotes modulo-p operation;and processing the data for the first traffic channel for transmission on frequency bands determined by the first FH sequence.
  6. 22
    A method of recovering a data transmission in a multi-band communication system, comprising:obtaining received symbols for a plurality of frequency hands;determining a particular one of the plurality of frequency bands used for the data transmission in each of a plurality of time intervals based on a frequency hop (FH) sequence, wherein the FH sequence is assigned to the data transmission and generated based on an algebraic expression y(k)=10g a 1/k (mod p) where p is a prime number, a is a primitive root of p, k is an index for elements of the FH sequence, and (mod p) denotes modulo-p operation;and processing received symbols for frequency bands determined by the FH sequence to recover the data transmission.
  7. 23
    An apparatus in a multi-band communication system, comprising:means for obtaining received symbols for a plurality of frequency bands;means for determining a particular one of the plurality of frequency bands used for the data transmission in each of a plurality of time intervals based on a frequency hop (FH) sequence, wherein the FH sequence is assigned to the data transmission and generated based on an algebraic expression y(k)=10g a l/k (mod p), where p is a prime number, a is a primitive root of p, k is an index for elements of the FH sequence, and (mod p) denotes modulo-p operation;and means for processing received symbols for frequency bands determined by the FH sequence to recover the data transmission.
  8. 24
    A method of obtaining a frequency hop sequence, comprising:generating a first sequence of elements that are indexed;obtaining a second sequence of elements utilizing a logarithmic function and a modulo operation from tire elements of the first sequence, and generating a frequency hop sequence based upon the second sequence, wherein the logarithmic function comprises 10g a l/k and the modulo operation comprises mod(p), where p is a prime number and a a is a primitive root of p.
  9. 27
    A transmitter comprising:a controller that generates frequency hopping sequence utilizing a logarithmic function and a modulo operation;a modulator that modulates data;and a switch that assigns a frequency of a plurality of frequencies to the data according to the frequency hopping sequence, wherein tire logarithmic function comprises 10g a l/k and the modulo operation comprises mod(p), where p is a prime number and .alpha, is a primitive root of p.