Fundamentals of Differential Beamforming (SpringerBriefs in Electrical and Computer Engineering)
暫譯: 差分波束形成的基本原理(電機與計算機工程系列)
Jacob Benesty
- 出版商: Springer
- 出版日期: 2016-05-06
- 售價: $2,420
- 貴賓價: 9.5 折 $2,299
- 語言: 英文
- 頁數: 132
- 裝訂: Paperback
- ISBN: 9811010455
- ISBN-13: 9789811010453
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商品描述
This book provides a systematic study of the fundamental theory and methods of beamforming with differential microphone arrays (DMAs), or differential beamforming in short. It begins with a brief overview of differential beamforming and some popularly used DMA beampatterns such as the dipole, cardioid, hypercardioid, and supercardioid, before providing essential background knowledge on orthogonal functions and orthogonal polynomials, which form the basis of differential beamforming.
From a physical perspective, a DMA of a given order is defined as an array that measures the differential acoustic pressure field of that order; such an array has a beampattern in the form of a polynomial whose degree is equal to the DMA order. Therefore, the fundamental and core problem of differential beamforming boils down to the design of beampatterns with orthogonal polynomials. But certain constraints also have to be considered so that the resulting beamformer does not seriously amplify the sensors’ self noise and the mismatches among sensors.
Accordingly, the book subsequently revisits several performance criteria, which can be used to evaluate the performance of the derived differential beamformers. Next, differential beamforming is placed in a framework of optimization and linear system solving, and it is shown how different beampatterns can be designed with the help of this optimization framework. The book then presents several approaches to the design of differential beamformers with the maximum DMA order, with the control of the white noise gain, and with the control of both the frequency invariance of the beampattern and the white noise gain. Lastly, it elucidates a joint optimization method that can be used to derive differential beamformers that not only deliver nearly frequency-invariant beampatterns, but are also robust to sensors’ self noise.
商品描述(中文翻譯)
本書系統性地研究了使用差分麥克風陣列(DMAs)的波束形成的基本理論和方法,簡稱為差分波束形成。書中首先簡要概述了差分波束形成及一些常用的DMA波束模式,如偶極子、心形、超心形和超超心形,然後提供了有關正交函數和正交多項式的基本背景知識,這些知識構成了差分波束形成的基礎。
從物理的角度來看,給定階數的DMA被定義為測量該階數的差分聲壓場的陣列;這樣的陣列具有多項式形式的波束模式,其階數等於DMA的階數。因此,差分波束形成的基本核心問題歸結為使用正交多項式設計波束模式。但還必須考慮某些限制,以確保所產生的波束形成器不會嚴重放大傳感器的自噪聲和傳感器之間的失配。
因此,本書隨後重新檢視了幾個性能標準,這些標準可用於評估所推導的差分波束形成器的性能。接下來,差分波束形成被置於優化和線性系統求解的框架中,並展示了如何利用這一優化框架設計不同的波束模式。然後,本書提出了幾種設計具有最大DMA階數的差分波束形成器的方法,並控制白噪聲增益,以及同時控制波束模式的頻率不變性和白噪聲增益。最後,書中闡明了一種聯合優化方法,可用於推導出不僅提供幾乎頻率不變的波束模式,還對傳感器的自噪聲具有魯棒性的差分波束形成器。