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Titlebook: Digital Coherent Optical Systems; Architecture and Alg Darli Augusto de Arruda Mello,Fabio Aparecido Barb Textbook 2021 Springer Nature Swi

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書目名稱Digital Coherent Optical Systems
副標(biāo)題Architecture and Alg
編輯Darli Augusto de Arruda Mello,Fabio Aparecido Barb
視頻videohttp://file.papertrans.cn/280/279159/279159.mp4
概述Describes in detail the architecture of a digital coherent optical system and presents the main digital signal processing algorithms deployed in these systems.Includes brief introductions and context
叢書名稱Optical Networks
圖書封面Titlebook: Digital Coherent Optical Systems; Architecture and Alg Darli Augusto de Arruda Mello,Fabio Aparecido Barb Textbook 2021 Springer Nature Swi
描述.This textbook details the architecture of a digital coherent optical system and describes its main digital signal processing (DSP) algorithms. The authors first show how the combination of advanced modulation techniques, DSP and coherent detection has led to significant gains in capacity and ease of operation. The authors follow the path of the information from its generation in the transmitter, to propagation through the fiber and processing by the DSP algorithms in the receiver. The work summarizes academic results and presents them in a didactic way to students and practitioners working on the area of optical communications. A full suite of classroom materials is included for easy integration into a curriculum, containing theoretic and simulation problems, and off-the-shelf Matlab/Octave functions.. .
出版日期Textbook 2021
關(guān)鍵詞Optical communications; Coherent detection; Wavelength division multiplexing; Digital signal processing
版次1
doihttps://doi.org/10.1007/978-3-030-66541-8
isbn_softcover978-3-030-66543-2
isbn_ebook978-3-030-66541-8Series ISSN 1935-3839 Series E-ISSN 1935-3847
issn_series 1935-3839
copyrightSpringer Nature Switzerland AG 2021
The information of publication is updating

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The Receiver Front-End, Orthogonalization, and Deskew,put optical signal into digital electric signals. The second subsystem is the chain of digital signal processing (DSP) algorithms that recover information corrupted by the optical channel. This chapter begins with an overview of the complete digital coherent optical receiver. After that, it details
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Equalization, for linear effects using classical equalization techniques. This chapter covers the most common equalization techniques in digital coherent optical systems. We begin with chromatic dispersion (CD) compensation, carried out by means of static filters implemented in the frequency domain. We review th
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Clock Recovery, rate used to generate the signals at the transmitter. This difference in clock rates varies over time, owing to jitter processes that are intrinsic to oscillators. Such imperfections are compensated by clock recovery algorithms implemented in the receiver. In this chapter, we study several architec
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Performance Evaluation,bit error rate (BER) values below 10. are expected. Such low values are only achieved after advanced forward error correction (FEC) schemes. Until recently, optical communication systems were designed to achieve a certain pre-FEC BER (BER.), aiming at a post-FEC BER (BER.) below 10.. However, in mod
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https://doi.org/10.1007/978-981-15-2489-9laser. Then, we study the architecture of typical optical modulators used in systems with multilevel modulation and polarization multiplexing. Based on the structure of simple Mach–Zehnder modulators, we present architectures for in-phase and quadrature modulators and dual-polarization modulators.
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