EP2084875B1

Cell ID detection in an OFDM communication system

Abstract

Ascertaining which one of a number of cells of a cellular communication system transmitted an Orthogonal Frequency Division Multiplexing (OFDM) signal involves obtaining reference symbols from the OFDM signal. Compensating phase shift values for phase aligning the plurality of reference symbols are estimated and used to generate phase corrected reference symbols. At least two scrambling code sequences are applied to the phase corrected reference symbols to obtain at least two de-scrambled phase corrected reference symbol sequences, wherein each of the scrambling codes is associated with a respectively different one of the cells of the cellular communication system. A power value of each of the de-scrambled phase corrected reference symbol sequences is ascertained. That one of the scrambling codes that is associated with a highest one of the power values is ascertained, thereby ascertaining which one of the number of cells of the cellular communication system transmitted the OFDM signal.

EP2084875B1, drawing sheet 1
Sheet 1 of 20

Term

1 yearleft in the term

Expires 2 October 2027.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

14 claims: 4 independent, 10 dependent

  1. 1
    A method of ascertaining which one of a number of cells of a cellular communication system transmitted an Orthogonal Frequency Division Multiplexing (OFDM) signal, the method comprising:obtaining a plurality of reference symbols from the OFDM signal;estimating one or more compensating phase shift values for aligning the plurality of reference symbols with respect to phase without utilizing a reference phase obtained by channel estimation;generating a plurality of phase corrected reference symbols by using the one or more compensating phase shift values to align the plurality of reference symbols with respect to phase;applying at least two scrambling code sequences to the phase corrected reference symbols to obtain at least two de-scrambled phase corrected reference symbol sequences, wherein each of the scrambling codes is associated with a respectively different one of the cells of the cellular communication system, and wherein each of the scrambling code sequences comprises at least one of a pseudorandom noise sequence and an orthogonal code;ascertaining a power value of each of the de-scrambled phase corrected reference symbol sequences;and ascertaining which one of the scrambling codes is associated with a highest one of the power values, thereby ascertaining which one of the number of cells of the cellular communication system transmitted the OFDM signal, wherein obtaining the plurality of reference symbols from the OFDM signal comprises: applying a Fast Fourier Transform (FFT) to a plurality of samples of the OFDM signal;and obtaining therefrom one or more of the reference symbols from a group of one or more of a number of sub-carriers of the OFDM signal;and obtaining therefrom one or more of the reference symbols from a different group of one or more ones of the sub-carriers of the OFDM signal, and wherein: estimating the one or more compensating phase shift values for aligning the plurality of reference symbols with respect to phase comprises: ascertaining which of the plurality of samples of the OFDM signal would be a starting point of the FFT causing a smallest rotation across sub-carriers;and estimating the one or more compensating phase shift values as a function of a relative distance between an actual starting point of the FFT and the starting point of the FFT causing the smallest rotation across sub-carriers.
  2. 4
    A method of ascertaining which one of a number of cells of a cellular communication system transmitted an Orthogonal Frequency Division Multiplexing (OFDM) signal, the method comprising:obtaining a plurality of reference symbols from the OFDM signal;estimating one or more compensating phase shift values for aligning the plurality of reference symbols with respect to phase without utilizing a reference phase obtained by channel estimation;generating a plurality of phase corrected reference symbols by using the one or more compensating phase shift values to align the plurality of reference symbols with respect to phase;applying at least two scrambling code sequences to the phase corrected reference symbols to obtain at least two de-scrambled phase corrected reference symbol sequences, wherein each of the scrambling codes is associated with a respectively different one of the cells of the cellular communication system, and wherein each of the scrambling code sequences comprises at least one of a pseudorandom noise sequence and an orthogonal code;ascertaining a power value of each of the de-scrambled phase corrected reference symbol sequences;and ascertaining which one of the scrambling codes is associated with a highest one of the power values, thereby ascertaining which one of the number of cells of the cellular communication system transmitted the OFDM signal, wherein obtaining the plurality of reference symbols from the OFDM signal comprises: applying a Fast Fourier Transform (FFT) to a plurality of samples of the OFDM signal;and obtaining therefrom one or more of the reference symbols from a group of one or more of a number of sub-carriers of the OFDM signal;and obtaining therefrom one or more of the reference symbols from a different group of one or more ones of the sub-carriers of the OFDM signal, and wherein: estimating the one or more compensating phase shift values for aligning the plurality of reference symbols with respect to phase comprises: applying each of a plurality, K , of hypothesized sets of phase corrections to the plurality of reference symbols to obtain K sets of hypothesized phase corrected reference symbols;and applying at least two scrambling code sequences to the phase corrected reference symbols to obtain at least two de-scrambled phase corrected reference symbol sequences comprises: applying at least two scrambling code sequences to each of the K sets of hypothesized phase corrected reference symbols to obtain at least 2 K de-scrambled phase corrected reference symbol sequences.
  3. 8
    An apparatus for ascertaining which one of a number of cells of a cellular communication system transmitted an Orthogonal Frequency Division Multiplexing (OFDM) signal, the apparatus comprising:logic configured to obtain a plurality of reference symbols from the OFDM signal;logic configured to estimate one or more compensating phase shift values for aligning the plurality of reference symbols with respect to phase without utilizing a reference phase obtained by channel estimation;logic configured to generate a plurality of phase corrected reference symbols by using the one or more compensating phase shift values to align the plurality of reference symbols with respect to phase;logic configured to apply at least two scrambling code sequences to the phase corrected reference symbols to obtain at least two de-scrambled phase corrected reference symbol sequences, wherein each of the scrambling codes is associated with a respectively different one of the cells of the cellular communication system, and wherein each of the scrambling code sequences comprises at least one of a pseudorandom noise sequence and an orthogonal code;logic configured to ascertain a power value of each of the de-scrambled phase corrected reference symbol sequences;and logic configured to ascertain which one of the scrambling codes is associated with a highest one of the power values, thereby ascertaining which one of the number of cells of the cellular communication system transmitted the OFDM signal, wherein the logic configured to obtain the plurality of reference symbols from the OFDM signal comprises: logic configured to apply a Fast Fourier Transform (FFT) to a plurality of samples of the OFDM signal;and logic configured to obtain therefrom one or more of the reference symbols from a group of one or more of a number of sub-carriers of the OFDM signal;and logic configured to obtain therefrom one or more of the reference symbols from a different group of one or more ones of the sub-carriers of the OFDM signal, and wherein: the logic configured to estimate the one or more compensating phase shift values for aligning the plurality of reference symbols with respect to phase comprises: logic configured to ascertain which of the plurality of samples of the OFDM signal would be a starting point of the FFT causing a smallest rotation across sub-carriers;and logic configured to estimate the one or more compensating phase shift values as a function of a relative distance between an actual starting point of the FFT and the starting point of the FFT causing the smallest rotation across sub-carriers.
  4. 11
    An apparatus for ascertaining which one of a number of cells of a cellular communication system transmitted an Orthogonal Frequency Division Multiplexing (OFDM) signal, the apparatus comprising:logic configured to obtain a plurality of reference symbols from the OFDM signal;logic configured to estimate one or more compensating phase shift values for aligning the plurality of reference symbols with respect to phase without utilizing a reference phase obtained by channel estimation;logic configured to generate a plurality of phase corrected reference symbols by using the one or more compensating phase shift values to align the plurality of reference symbols with respect to phase;logic configured to apply at least two scrambling code sequences to the phase corrected reference symbols to obtain at least two de-scrambled phase corrected reference symbol sequences, wherein each of the scrambling codes is associated with a respectively different one of the cells of the cellular communication system, and wherein each of the scrambling code sequences comprises at least one of a pseudorandom noise sequence and an orthogonal code;logic configured to ascertain a power value of each of the de-scrambled phase corrected reference symbol sequences;and logic configured to ascertain which one of the scrambling codes is associated with a highest one of the power values, thereby ascertaining which one of the number of cells of the cellular communication system transmitted the OFDM signal, wherein the logic configured to obtain the plurality of reference symbols from the OFDM signal comprises: logic configured to apply a Fast Fourier Transform (FFT) to a plurality of samples of the OFDM signal;and logic configured to obtain therefrom one or more of the reference symbols from a group of one or more of a number of sub-carriers of the OFDM signal;and logic configured to obtain therefrom one or more of the reference symbols from a different group of one or more ones of the sub-carriers of the OFDM signal, and wherein: the logic configured to estimate the one or more compensating phase shift values for aligning the plurality of reference symbols with respect to phase comprises: logic configured to apply each of a plurality, K , of hypothesized sets of phase corrections to the plurality of reference symbols to obtain K sets of hypothesized phase corrected reference symbols;and the logic configured to apply at least two scrambling code sequences to the phase corrected reference symbols to obtain at least two de-scrambled phase corrected reference symbol sequences comprises: logic configured to apply at least two scrambling code sequences to each of the K sets of hypothesized phase corrected reference symbols to obtain at least 2 K de-scrambled phase corrected reference symbol sequences.