Radio-wave arrival-direction estimating apparatus and...

Communications: directive radio wave systems and devices (e.g. – Directive – Beacon or receiver

Reexamination Certificate

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C342S442000

Reexamination Certificate

active

06642888

ABSTRACT:

FIELD OF THE INVENTION
The present invention relates to a radio-wave arrival-direction estimating apparatus employing an array antenna, and a directivity variable transceiver for varying antenna directivity based on an estimation result from the estimating apparatus.
BACKGROUND OF THE INVENTION
An arrival direction of radio wave is conventionally estimated accurately in a method such as Multiple Signal Classification (MUSIC) method, using an array antenna comprising a plurality of antenna elements. The MUSIC method is disposed in R. O. Schmidt, “Multiple Emitter Location and Signal Parameter Estimation”, Institute of Electrical and Electronics Engineers (IEEE) Trans., AP-34, pp. 276-280 (1986). This method includes an algorism for accurately estimating a direction of a plurality of incident waves with the same frequency band.
In this method, M (>1) antenna elements receive signals, and a receiving unit connected to each antenna element converts the frequency of each of the received signals, detects a phase of it, and demodulates the received signal to a signal comprising orthogonal I and Q signals. An analog/digital converter (A/D converter) converts the demodulated signal to sampling data and outputs the data to a direction estimating processor. The direction estimating processor estimates a direction of the incident waves using the sampling data by the MUSIC method. In other words, using sampling data x
1
(k), x
2
(k), . . . , x
M
(k) at sampling time k&Dgr;T obtained by respective antenna elements, a correlation matrix calculation unit creates receiving vector x (k) written as
x
(
k
)=[
x
1
(
k
)
x
2
(
k
) . . .
x
M
(
k
)]
T
  (Equation 1),
where T shows transposition of a vector, &Dgr;T is a sampling interval, and k is a natural number. The correlation matrix calculation unit, using receiving vectors x(k) for k=1 to N, further finds M×M correlation matrix R written as
R
=

k
=
1
N

x

(
k
)

x

(
k
)
H
/
N
,
(
Equation



2
)
where H shows complex conjugate transposition of a vector.
The calculation unit calculates eigenvalues &lgr;
1
−&lgr;
M
of correlation matrix R in the descending order, and eigenvactors e
1
−e
M
corresponding to eigenvalues &lgr;
1
−&lgr;
M
.
Next, the calculation unit calculates an evaluation value of an arrival-angle evaluation function, assuming number of the incident waves is S, and using noise spatial eigenmatrix E
N
=[e
S+1
, . . . , e
M
] and a feature that signal eigenvector space E
S
=[e
1
, . . . e
S
] and E
N
are orthogonal to each other. This E
N
is formed with (M−S) eigenvactors, namely column vectors, belonging to a noise eigenvactor space having the relation written as
&lgr;
1
≧&lgr;
2
≧ . . . ≧&pgr;
S
>&lgr;
S+1
=&lgr;
S+2
= . . . =&lgr;
M
  (Equation 3)
and E
S
is formed with eigenvactors e
1
−e
S
. In other words, arrival-angle evaluation function F(&thgr;) for evaluating orthogonality between E
N
and E
S
is defined by
F

(
θ
)
=
1
a
H

(
θ
)

E
N

E
N
H

a

(
θ
)
,
(
Equation



4
)
where a(&thgr;) is a complex response (hereinafter called a steering vector) of the array antenna as a function of azimuth &thgr;. Azimuth &thgr; varies in a predetermined angle range. When azimuth &thgr; equals to the arrival angle, ideally, arrival-angle evaluation function F(&thgr;) is infinite. A resultant peak direction of F(&thgr;) from calculation for the varied &thgr; is set to be the arrival-angle evaluation value of the incident waves.
Number S of incident waves is generally unknown, so that the number is determined based on an eigenvalue distribution and number-of-signal determination criteria. The criteria is described in M. Wax and T. Kailath, “Detection of Signals by Information Theoretic Criteria”, IEEE Trans. On Acoustics, Speech and Signal Processing, Vol. ASSP 33 (2), pp. 387-392, February (1985).
The radio-wave arrival-direction estimating apparatus employing the MUSIC method discussed above estimates an arrival direction accurately by signal processing, using an algorithm of deriving engenvalue of a correlation matrix of array received signals. In such an estimating apparatus, correlation between waves generated by reflection on the ground or a building increases when a relative delay time between these waves is shorter than a symbol length. In this case, correlation matrix R degrades, and therefore the incident waves cannot be precisely separated.
For preventing the degradation, a spatial smoothing technique is proposed. This spatial smoothing technique is described in Pillai et al, “Forward/Backward Spatial Smoothing Techniques for Coherent Signal Identification”, IEEE Trans. On Acoustics, Speech and Signal Processing, Vol. 37, No. 1, 1989. The example has estimated the arrival direction using spatial samples from the array antenna; however the MUSIC method can be similarly applied to a signal sampled every frequency and the delay time of the received waves can be estimated at high resolution.
The estimation accuracy of the arrival direction in the MUSIC method depends on variation step &Dgr;&thgr; of &thgr; in the arrival-angle evaluation function (Eq.4). When &Dgr;&thgr; increases, a calculation amount in the entire variation range of &thgr; decreases, but the peak direction of the arrival-angle evaluation function cannot accurately detect the peak direction and the accuracy decreases. When &Dgr;&thgr; decreases, the peak direction of the arrival-angle evaluation function can be accurately detected, but a calculation amount in the entire variation range of &thgr; increases.
SUMMARY OF THE INVENTION
It is an object of the present invention to provide a radio-wave arrival-direction estimating apparatus allowing reduction of a total calculation amount for an arrival-angle evaluation function without causing accuracy degradation of the arrival direction. It is another object of the present invention to provide a directivity variable transceiver for improving transmitting and receiving quality by controlling antenna directivity.
In the present invention, product of a noise spatial eigenmatrix and a conjugated and transposed matrix of it is a product of an upper or lower triangular matrix. Therefore, the calculation amount for the arrival-angle evaluation function can be reduced in the entire angle range for the estimation of the arrival direction. The arrival angle evaluation using the arrival-angle evaluation function that has a heavy calculation load can be significantly reduced during angle sweeping in the MUSIC method. Processing of the arrival-direction estimating apparatus can be speeded or an apparatus structure can be simplified.


REFERENCES:
patent: 5262789 (1993-11-01), Silverstein
patent: 5299148 (1994-03-01), Gardner et al.
patent: 5943013 (1999-08-01), Ohashi
patent: 6084928 (2000-07-01), Kuwahara
patent: 6091361 (2000-07-01), Davis et al.
patent: 6351238 (2002-02-01), Kishigami et al.
patent: 6529745 (2003-03-01), Fukagawa et al.
patent: 0 632 286 (1995-01-01), None
patent: 0 971 485 (2000-01-01), None
patent: 1 031 846 (2000-08-01), None
patent: 99 65160 (1999-12-01), None
H. Karimi et al., “A Novel and Efficient Solution to Block-Based Joint-Detection Using Approximate Cholesky Factorization”, vol. 3, 1998, pp. 130-1345.
R. Schmidt, “Multiple Emitter Location and Signal Parameter Estimation”, Mar. 1, 1986 IEEE Transactions on Terminals and Propagation, IEEE Inc. New York, U.S. vol. AP-34, No. 3, pp. 276-280.
European Search Report, application No. 01129227.3, dated Jul. 16, 2002.
Schmidt, Ralph O., “Multiple Emitter Location and Signal Parameter Estimation,” IEEE Trans., vol. AP-34, No. 3, pp. 276-280 (Mar. 1986).
Wax et al., “Detection of Signals By Information Theoretic Criteria,” IEEE Trans., vol. ASSP-33, No. 2, pp. 387-392 (Apr. 1985).
Pillai et al., “Forward/Backward Spatial Smoothing Techniques For Coherent Signal Identification,” IEEE Trans. vol

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