Dissertation > Excellent graduate degree dissertation topics show
Large dynamic broadband microwave receiver channel design
Author: ZuoHong
Tutor: BaoJingFu;ZouYongQuan
School: University of Electronic Science and Technology
Course: Electronics and Communication Engineering
Keywords: Wideband RF channel hardware-in-the-loop simulation dynamic range Gain fluctuation
CLC: TN911.5
Type: Master's thesis
Year: 2011
Downloads: 71
Quote: 0
Read: Download Dissertation
Abstract
|
In order to adapt to the development trends, microwave RF channel develops towards the common mode of wide band and great dynamic range: wide frequency band can satisfy the systems with different frequency and different transmission speed, great dynamic range can receive the strong and weak signals simultaneously, thus the wide band and great dynamic range become the basis of commonality of the microwave channel design. The main purpose of this paper is to introduce the design and engineering method of a wide band and dynamic range receiving channel.At first, this paper introduces the main performance specifications and their affect factors; reviews the design flow and method of microwave circuit for the following design; and then defines such main parameter as combined jamming, level gain allocation, noise figure, dynamic range of receiving channel etc. for the system application requirement analysis; and continues the circuit design and structural design; carefully simulates and calculates the realization of each parameters associated with the actual component specifications; then analyses and reviews the difficulties and critical technologies of the anti-jamming and high gain flatness requirements of the wideband channel as well as the maintenance the great dynamic range, and provides the usual engineering and resolving method; at last, this paper details the obtained specifications of the wide band receiving channel.As an important composition part of a certain type of high-performance wide band receiver, the channel achieved a maximum noise figure of 4.5dB, gain flatness not more than 4dB ,and dynamic range more than 55 dB in L~C frequency band。The development the project fulls in the domestic technological gap in related field, and lays the foundations for the development of follow-up products akin. Keywords: modification mechanism, non-reducible, core-shell structure, complex oxide dopants
|
Related Dissertations
- Stratification and energy optimization based on the brightness of high dynamic range image tone mapping technology research,TP391.41
- Endoscopic laser confocal fluorescence microscopy imaging technology adaptive,TP391.41
- Continuously adjustable temperature control precision large range of fiber optic delay line,TN929.11
- Research on Digital Video Enhacement Technique Based on Target,TP391.41
- Lunar Soft-landing Vision Navigation and Descending Sequential Imagery Match Research,TP391.41
- Ultra-high Frequency RFID Baseband Signal Processing and Phase Estimation,TN911.7
- Wide Dynamic Range CMOS Image Sensor with In-Pixel Double-Exposure and Synthesis,TP212
- High Dynamic Range Image Generated Based on Multi-Exposure Images,TP391.41
- VHF Frequency-hopping Radio Receiver Front-end Research and Implementation,TN924
- Technology on Design and Implementation of Pulsed Coherent Radar Digital Receiver,TN957.5
- Adaptive High Dynamic Range CCD Imaging System,TP391.41
- Multiple exposure based image enhancement algorithm,TP391.41
- High dynamic range image tone mapping algorithms and video enhancement technology,TP391.41
- Research on Demodulation Algorithm of PCM/FM with Large Dynamic Range Doppler Frequency Shift,TN911.72
- Chirped pulse amplification system SNR enhancement technology research,TN722
- Simulation of Enhanced Display Based on Visual Perception of Human Eye,TP391.41
- A large dynamic range logarithmic amplifier,TN722.58
- Asic Interface Circuit Design for High Dynamic Range of Closed-Loop Micro-Accelerometer,TH824.4
- Effects of Injection Stauntoniae on Evoked Discharge of Wide Dynamic Range Neurons in Spinal Dorsal Horn of Rats,R285.5
- Performance Analysis of RoF Analog-Photonic Link Using Phase Modulation-Coherent Detection,TN929.1
- Broadband large dynamic scalar network analyzer receiver design,TM935
CLC: > Industrial Technology > Radio electronics, telecommunications technology > Communicate > Communication theory > Channel equalization
© 2012 www.DissertationTopic.Net Mobile
|