PSpice for Analog Communications Engineering
暫譯: PSpice 在類比通信工程中的應用
Tobin
- 出版商: Morgan & Claypool
- 出版日期: 2007-05-06
- 售價: $1,930
- 貴賓價: 9.5 折 $1,834
- 語言: 英文
- 頁數: 160
- ISBN: 1598294318
- ISBN-13: 9781598294316
海外代購書籍(需單獨結帳)
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商品描述
Description
In PSpice for Analog Communications Engineering we simulate the difficult principles of analog modulation using the superb free simulation software Cadence Orcad PSpice V10.5. While use is made of analog behavioral model parts (ABM), we use actual circuitry in most of the simulation circuits. For example, we use the 4-quadrant multiplier IC AD633 as a modulator and import real speech as the modulating source and look at the trapezoidal method for measuring the modulation index. Modulation is the process of relocating signals to different parts of the radio frequency spectrum by modifying certain parameters of the carrier in accordance with the modulating/information signals. In amplitude modulation, the modulating source changes the carrier amplitude, but in frequency modulation it causes the carrier frequency to change (and in phase modulation it’s the carrier phase).
The digital equivalent of these modulation techniques are examined in PSpice for Digital communications Engineering where we examine QAM, FSK, PSK and variants. We examine a range of oscillators and plot Nyquist diagrams showing themarginal stability of these systems. The superhetrodyne principle, the backbone of modern receivers is simulated using discrete components followed by simulating complete AM and FM receivers. In this exercise we examine the problems ofmatching individual stages and the use of double-tuned RF circuits to accommodate the large FM signal bandwidth.
商品描述(中文翻譯)
**描述**
在《PSpice for Analog Communications Engineering》中,我們使用優秀的免費模擬軟體 Cadence Orcad PSpice V10.5 來模擬類比調變的困難原理。雖然使用了類比行為模型元件(ABM),但我們在大多數模擬電路中使用實際電路。例如,我們使用 4 象限乘法器 IC AD633 作為調變器,並導入真實語音作為調變源,並研究測量調變指數的梯形法。調變是通過根據調變/信息信號修改載波的某些參數,將信號重新定位到無線頻譜的不同部分的過程。在幅度調變中,調變源改變載波的幅度,而在頻率調變中,它導致載波頻率的變化(在相位調變中則是載波相位的變化)。
這些調變技術的數位等效在《PSpice for Digital Communications Engineering》中進行了檢查,我們研究了 QAM、FSK、PSK 及其變體。我們檢查了一系列振盪器並繪製了 Nyquist 圖,顯示這些系統的邊際穩定性。超外差原理,現代接收器的支柱,使用離散元件進行模擬,然後模擬完整的 AM 和 FM 接收器。在這個練習中,我們檢查了匹配各個階段的問題以及使用雙調諧 RF 電路來適應大型 FM 信號帶寬的情況。