• You can log in to your eeworld account to continue watching:
  • Local maximum potential test
  • Login
  • Duration:12 minutes and 56 seconds
  • Date:2017/10/09
  • Uploader:老白菜
Introduction
Stochastic signal processing is a core course for graduate students in electronics and communications engineering. This course mainly studies the basic theories of stochastic process foundation, parameter estimation, optimal filtering and signal detection. Stochastic process foundation mainly introduces the basic concepts of stochastic process and the linear process of stochastic process. System analysis, including definition and classification, statistical description, stationary random process and power spectrum, linear system analysis, commonly used time series models, matched filter theory, etc.; through the study of parameter estimation theory, master the general methods of parameter estimation and the basic principles of estimation and performance evaluation methods; through the study of optimal filtering theory, master the basic concepts of optimal filtering, master the basic theory of Kalman filtering, and be proficient in the derivation method of the Kalman filtering algorithm, the application of the algorithm, and the performance (simulation) evaluation method. Master the basic concepts and methods of nonlinear filtering (extended Kalman filtering method), be able to establish signal and observation models based on actual problems, establish corresponding algorithms, and use computers to analyze (simulate) algorithm performance. Signal detection includes two parts: the basic theory of hypothesis testing and signal detection in noise. Master the concepts and judgment criteria of hypothesis testing (including compound hypothesis testing), and be able to construct statistical models for hypothesis testing and select appropriate judgment criteria for practical problems. Analyze the performance of decisions. Be able to apply the mathematical theory of hypothesis testing to the problem of signal detection in noise, deduce the structure of the optimal receiver in Gaussian noise environment, and master the basic form of the optimal receiver in Gaussian noise, the performance analysis method of the receiver and the optimal Optimal signal design issues. Master the methods of signal detection in non-Gaussian noise.
Unfold ↓

You Might Like

Recommended Posts

plc application
Design a ladder diagram to drive the digital tube. Just like how the numbers displayed on the traffic light are driven?
danglingbo Embedded System
Goodbye 2019, hello 2020+ Busy days never change
[i=s]This post was last edited by led2015 on 2020-1-31 16:04[/i]2019 has passed in the blink of an eye. Sometimes I think that I am another year older. Looking back on my experiences and gains in the
led2015 Talking
What are the requirements of pneumatic instruments for compressed air quality?
Pneumatic instruments generally include pneumatic differential pressure transmitters, pneumatic regulators (base regulators, floats are liquid level regulators), electric/pneumatic converters, pneumat
yunrun Industrial Control Electronics
Passive Components
Passive Components
6294316 Test/Measurement
Yesterday, I was chatting with a buddy, he couldn't stand his supervisor
An old structural engineer couldn't stand the torture of his supervisor, who took special care of him and assigned him hard work for a long time. This supervisor often made things difficult for him. H
eeleader Talking about work
Receiver blocking test problem?
[table=98%] [tr][td]Questions about receiver blocking test? The blocking test requires the interference signal to be from 1MHz to 12.75GHz, with a step of 1MHz. Adding the reaction time, it may take a
gurou1 RF/Wirelessly

推荐文章

景嘉微联手国防科大组建技术研究中心 2017年06月06日
    eeworld网消息,景嘉微6月4日晚间发布公告,近日,公司与国防科学技术大学电子科学与工程学院签署了《湖南省智能探测工程技术研究中心联合组建协议书》,为实现双方各自的发展战略,充分发挥双方优势,实现合作共赢,经友好协商,双方愿意结成合作伙伴,进行各层次合作。   景嘉微表示,本次协议的签署,能够充分发挥双方的技术优势、资源优势、市场优势,推动双方在国家“创新创业”和...
国防科大:专注脑控机器人,“芝麻开门”也许不再是通话 2015年04月24日
电影《阿凡达》中,受伤的退役军人杰克靠意念远程控制其替身在潘多拉星球作战。在国防科技大学,也有这么一支研究大脑的创新团队,他们近期研发出脑控机器人,使科幻逐步走向现实。科研团队通过技术将人脑电波转换成指挥机器人的计算机指令,从而实现用人脑直接控制机器人运动。在不远的未来,人们只需要通过脑电波即可轻松打开家门、使用厨房电器……神话故事里的“芝麻开门”或许会成为人们家居生活中习以为...
国防科大利用电磁波实现高精度穿透成像 2014年06月16日
    一款新型高精度全息穿透成像探测仪,日前在国防科学技术大学研制成功。该探测仪能穿透非金属介质,探测内部微小隐蔽物体并对物体成像,分辨率达到2mm,可广泛应用于建筑、生物医学、反恐、安检等领域。     体积小,与一个普通的电饭煲相当,单人即可手持操作,是这款探测仪的突出特点。与同类设备如X光机和CT机相比,其体积、重量都大大缩小。由于采用电磁波完成探测工作,该设备没...
国防科大利用电磁波实现高精度穿透成像 2014年06月10日
墙内电线 穿透墙体效果     一款新型高精度全息穿透成像探测仪,日前在国防科学技术大学研制成功。该探测仪能穿透非金属介质,探测内部微小隐蔽物体并对物体成像,分辨率达到2mm,可广泛应用于建筑、生物医学、反恐、安检等领域。   体积小,与一个普通的电饭煲相当,单人即可手持操作,是这款探测仪的突出特点。与同类设备如X光机和CT机相比,其体积、重量都大大缩小。...

Recommended Content

Circuit

可能感兴趣器件

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

About Us Customer Service Contact Information Datasheet Sitemap LatestNews


Room 1530, 15th Floor, Building B, No.18 Zhongguancun Street, Haidian District, Beijing, Postal Code: 100190 China Telephone: 008610 8235 0740

Copyright © 2005-2024 EEWORLD.com.cn, Inc. All rights reserved 京B2-20211791 京ICP备10001474号-1 电信业务审批[2006]字第258号函 京公网安备 11010802033920号