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The OFA continuously measures the power spectra, spectral matrices, and complex spectra.
The cases of real matrices and complex matrices are considered separately.
We use the superscripts T, H, -1, +, and * for transposition, Hermitian transposition, matrix inversion, the Moore-Penrose pseudo inverse of matrices, and complex conjugation, respectively.
(mathbb{C}^{n}), (mathbb{R}^{mtimes n}), and (mathbb{C}^{mtimes n}) represent the set of n-dimensional complex vectors, (mtimes n) real matrices, and complex matrices, respectively.
The OFA successfully obtained electric and magnetic field power spectra every 0.5 4 s and spectral matrices and complex spectra every 4 32 s.
let i denote the imaginary unit, i.e. (mathrm{i}=sqrt{-1}). (mathbb{C}^{n}), (mathbb{R}^{mtimes n}) and (mathbb{C}^{mtimes n}) denote, respectively, the set of n-dimensional complex vectors, (mtimes n) real matrices and complex matrices.
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The relationships between OFA-SPEC, MATRIX, and COMPLEX are shown in Fig. 7.
F matrix in this paper is a WIDE matrix N c × N f where the rows are picked from an FFT matrix and complex transposed (Hermitian).
Finally, applications to mono-coupled and bi-coupled structures are illustrated, aiming at comparing the proposed method with the transfer matrix and complex wave vector approaches.
Complex I releases superoxide (O2−) to matrix, and complex III can release O2− to both sides of the inner mitochondrial membrane.
The superscripts T, H, −1, and ∗ refer to matrix transposition, Hermitian transposition, matrix inversion, and complex conjugation, respectively.
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