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PSpice for Digital Communications Engineering
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
PSpice for Digital Communications Engineering/ by Paul Tobin.
作者:
Tobin, Paul.
面頁冊數:
XIII, 199 p.online resource. :
Contained By:
Springer Nature eBook
標題:
Computer Hardware. -
電子資源:
https://doi.org/10.1007/978-3-031-79758-3
ISBN:
9783031797583
PSpice for Digital Communications Engineering
Tobin, Paul.
PSpice for Digital Communications Engineering
[electronic resource] /by Paul Tobin. - 1st ed. 2007. - XIII, 199 p.online resource. - Synthesis Lectures on Digital Circuits & Systems,1932-3174. - Synthesis Lectures on Digital Circuits & Systems,.
Fourier Analysis, Signals, and Bandwidth -- Baseband Transmission Techniques -- Sampling and Pulse Code Modulation -- Passband Transmission Techniques -- Multilevel Signaling and Bandwidth Efficiency -- System Performance and Test Instruments -- Direct Sequence Spread Spectrum Systems.
PSpice for Digital Communications Engineering shows how to simulate digital communication systems and modulation methods using the very powerful Cadence Orcad PSpice version 10.5 suite of software programs. Fourier series and Fourier transform are applied to signals to set the ground work for the modulation techniques introduced in later chapters. Various baseband signals, including duo-binary baseband signaling, are generated and the spectra are examined to detail the unsuitability of these signals for accessing the public switched network. Pulse code modulation and time-division multiplexing circuits are examined and simulated where sampling and quantization noise topics are discussed. We construct a single-channel PCM system from transmission to receiver i.e. end-to-end, and import real speech signals to examine the problems associated with aliasing, sample and hold. Companding is addressed here and we look at the A and mu law characteristics for achieving better signal to quantization noise ratios. Several types of delta modulators are examined and also the concept of time divisionmultiplexing is considered. Multi-level signaling techniques such as QPSK andQAMare analyzed and simulated and 'home-made meters', such as scatter and eye meters, are used to assess the performance of these modulation systems in the presence of noise. The raised-cosine family of filters for shaping data before transmission is examined in depth where bandwidth efficiency and channel capacity is discussed. We plot several graphs in Probe to compare the efficiency of these systems. Direct spread spectrum is the last topic to be examined and simulated to show the advantages of spreading the signal over a wide bandwidth and giving good signal security at the same time.
ISBN: 9783031797583
Standard No.: 10.1007/978-3-031-79758-3doiSubjects--Topical Terms:
669779
Computer Hardware.
LC Class. No.: T1-995
Dewey Class. No.: 620
PSpice for Digital Communications Engineering
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PSpice for Digital Communications Engineering shows how to simulate digital communication systems and modulation methods using the very powerful Cadence Orcad PSpice version 10.5 suite of software programs. Fourier series and Fourier transform are applied to signals to set the ground work for the modulation techniques introduced in later chapters. Various baseband signals, including duo-binary baseband signaling, are generated and the spectra are examined to detail the unsuitability of these signals for accessing the public switched network. Pulse code modulation and time-division multiplexing circuits are examined and simulated where sampling and quantization noise topics are discussed. We construct a single-channel PCM system from transmission to receiver i.e. end-to-end, and import real speech signals to examine the problems associated with aliasing, sample and hold. Companding is addressed here and we look at the A and mu law characteristics for achieving better signal to quantization noise ratios. Several types of delta modulators are examined and also the concept of time divisionmultiplexing is considered. Multi-level signaling techniques such as QPSK andQAMare analyzed and simulated and 'home-made meters', such as scatter and eye meters, are used to assess the performance of these modulation systems in the presence of noise. The raised-cosine family of filters for shaping data before transmission is examined in depth where bandwidth efficiency and channel capacity is discussed. We plot several graphs in Probe to compare the efficiency of these systems. Direct spread spectrum is the last topic to be examined and simulated to show the advantages of spreading the signal over a wide bandwidth and giving good signal security at the same time.
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