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Approximation of Lowdin orthogonalization to a spectrally efficient orthogonal overlapping PPM design for UWB impulse radio

机译:Lowdin正交化到UWB脉冲无线电的频谱有效正交重叠PPM设计的近似

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In this paper we consider the design of spectrally efficient time-limited pulses for ultra-wideband (UWB) systems using an overlapping pulse position modulation scheme. For this we investigate an orthogonalization method, which was developed in 1950 by Lowdin [1,2). Our objective is to obtain a set of N orthogonal (Lowdin) pulses, which remain time-limited and spectrally efficient for UWB systems, from a set of N equidistant translates of a time-limited optimal spectral designed UWB pulse. We derive an approximate Lowdin orthogonalization (ALO) by using circulant approximations for the Gram matrix to obtain a practical filter implementation as a tapped-delay-line [7]. We show that the centered ALO and Lowdin pulses converge pointwise to the same square-root Nyquist pulse as N tends to infinity. The set of translates of the square-root Nyquist pulse forms an orthonormal basis for the shift-invariant-space generated by the initial spectral optimal pulse. The ALO transformation provides a closed-form approximation of the Lowdin transformation, which can be implemented in an analog fashion without the need of analog to digital conversions. Furthermore, we investigate the interplay between the optimization and the orthogonalization procedure by using methods from the theory of shift-invariant-spaces. Finally we relate our results to wavelet and frame theory.
机译:在本文中,我们考虑使用重叠脉冲位置调制方案为超宽带(UWB)系统设计频谱有效的限时脉冲。为此,我们研究了正交算法,该算法由Lowdin [1,2]在1950年开发。我们的目标是从一组限时最佳频谱设计的UWB脉冲的N个等距平移中获得一组N个正交(Lowdin)脉冲,这些脉冲对UWB系统保持时间限制并在频谱上有效。我们通过对Gram矩阵使用循环近似来得出近似Lowdin正交化(ALO),以获得作为抽头延迟线的实用滤波器实现[7]。我们显示,随着N趋于无穷大,居中的ALO和Lowdin脉冲逐点收敛到相同的平方根奈奎斯特脉冲。平方根奈奎斯特脉冲的平移集为初始频谱最佳脉冲生成的平移不变空间形成了正交基础。 ALO转换提供了Lowdin转换的近似形式,可以以模拟方式实现,而无需模数转换。此外,我们使用位移不变空间理论研究了优化和正交化过程之间的相互作用。最后,我们将结果与小波和框架理论联系起来。

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