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2009-11-30

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2009-11-19
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Abstract:
Research Backgoround: A mobile ad hoc Network (MANET) is a mobile mesh network in which mobile wireless nodes are both hosts and routers so nodes can communicate without base stations. Because of this cooperative routing capability, a malicious node can forge routing information to paralyze a MANET or hijack valuable routes. Due to MANET's particular routing characteristics, defending routing attacks is challenging and critical in MANET. Current cryptographic authentication schemes and traditional intrusion detection systems cannot deal with these new routng attacks effectively.
My research work: I purpose a new practical intrusion prevention system for MANET to detect new routing attacks in MANETs. This intrusion prevention system consists of 1. A specification based intrusion detection model that defines normal behavior of the protected networks in order to detect new routing attacks in MANETs 2. A Distributed Evidence-driven Message Exchanging intrusion detection Model (DEMEM), which provides a practical distributed intrusion detection and message exchange framework. 3. A cooperative intrusion response model that correlates alarms and perform adpative attack isolation depending on response cost and attack damage. Then I will discuss my on-going research at NTPU CSIE: Intrusion Prevention for Vehicular Ad Hoc Network (VANET) After that, I will introduce my work experiences, including: 1. McAFee IntruShield development 2. UC Davis Security Lab Rsearch 3. IDS open issues during interview 4. Cisco IOS OSPF development at San Jose CA USA 5. Telcordia Taiwan Applied Research Lab for Vehicular network application platform 6. Teaching at NTPU CSIE
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2009-11-04

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2009-10-02

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Researches on Computer Security in France: A never complete summary with a focus on formal security policies
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2009-09-04
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TWISC±N©ó98¦~9¤ë4¤é(¬P´Á¤­)¡A°²¥x¬ì¤j°ê»Ú¤j¼Ó¤G¼ÓIB-202·|ij«Ç¡AÁ|¿ì¤@³õ°ê»Ú¾Ç³N«e¤Á¿®y¡AÁܽЪk°ê¾ÇªÌProf. Claude Kirchner¡A
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About Prof. Claude Kirchner
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2009-08-24

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Secret Sharing and Error Correction / Cover-Free Families and Their Applications in Network Security
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2009-08-05
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¨ä¤¤¤@¦ì¬O¨Ó¦Û·s¥[©Y«n¬v²z¤u¤j¾Ç (Nanyang Technological University) ªºProfessor LING San¡AÁ¿ÃD¬°¡uSecret Sharing and Error Correction¡v¡A
¥t¤@¦ì¬O¨Ó¦Û¿D¬wMacquarie Universityªº¤ý?¶¯±Ð±Â (Prof. Huaxiong Wang) ¡AÁ¿ÃD¬°¡uCover-Free Families and Their Applications in Network Security¡v¡A
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¡E About Prof. Huaxiong Wang
¡E About Prof. Huaxiong Wang
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2009-07-28

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2009-06-15

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2009-06-11

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2009-05-21

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2008-12-23

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Speaker:Professor Yuliang Zheng(University of North Carolina at Charlotte)
Topic:¡uCoded Modulation and the Arrival of Signcryption¡v
Abstract ¡GDigital communications strive to transmit data in a more efficient and reliable manner, while cryptography endeavors to offer both data confidentiality and integrity. In the 1970¡¦s and 1980¡¦s, researchers in digital communications successfully developed techniques for multi-level coded modulation that simultaneously allow the correction of transmission errors in the signals upon their arrival at the receiver. Reminiscent of coded modulation, signcryption is a cryptographic technique developed to ¡§hit two birds in one stone¡¨, namely to provide both data confidentiality and origin unforgeability with reduced overhead. In this article the author recounts his unique experience in witnessing the evolution and perfection of coded modulation techniques, and more important, how the experience inspired the author him to embark on the journey of searching for efficient techniques for combining public key encryption and digital signature; it also attempts to illuminate future directions for efficient, hybrid cryptographic techniques.
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2008-12-09

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2008-12-04

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2008-11-25

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2008-11-20

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Taiwan-Germany Information Technology Workshop 2008
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2008-11-20

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2008-12-18
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2008-11-18

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2008-10-27 10:30~12:00
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Speaker: Dr. Yi-Min Wang, Director at Microsoft Research,Redmond

Title: Automated Web Patrol with Strider HoneyMonkeys

Abstract: Strider HoneyMonkey is a funny name for a serious breed of new creatures that were born to protect the Web. The fundamental concept is that, if the first victim of any new web-based attack is always a HoneyMonkey, then we can make the Web safe for humans. Unlike traditional passive, server-side honeypots, HoneyMonkeys are client-side honeypots that actively patrol the Web by using vulnerable browser machines to attract attacks from malicious websites. Unlike traditional static search engine crawlers, HoneyMonkeys are dynamic crawlers that mimic human web surfers by actively interacting with suspect websites. Unlike traditional known-bad signature-based intrusion detectors, HoneyMonkeys detect exploits of both known and unknown vulnerabilities by monitoring website¡¦s redirection behavior and suspicious activities against local machine¡¦s persistent state. In this talk, I will give a brief history of how I invented HoneyMonkeys back in 2005, how they detected the first zero-day exploit, how they relate to the broader advertising and search-spam industries, and how they are now evolving into a full-blown cyber-intelligence system.
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2008-10-17

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Á¿ÃD: "Online Social Networks and Future Internet Design"
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ºK­n: In this talk, we will discuss the impact of Internet architecture design on network security. In the past few years, there have been many attempts to develop solutions to protect our networked system against large-scale attacks such as worm, DDoS, and spam. However, it seems to us (and more and more clearly) that most, if not all, of the proposed solutions are not likely to be effective, given the growth of attacks in numbers and depth. Therefore, the network community has been trying to understand the fundamental issues and the root cause for these large-scale network attacks. One possible idea, currently being actively developed at UC Davis, is called DSL (Davis Social Links). Under DSL, we integrate the concepts of P2P, social networks, and trust management into the network layer, while we remove the requirement of global network identity (e.g., IP addresses or even email addresses, for the context of spam). While we are still in a very early stage regarding DSL, we will go through a few examples of DSL as well as technical considerations.
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2008-09-16

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2008-07-04

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2008-06-15

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2008-05-20

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2008-05-02

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2008-03-31

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2008-02-13

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2008-01-08

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2008-01-07

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2007-11-06

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2007-10-31

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2007-09-20

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2007-08-16

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2007-08-13

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2007-07-13

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2007-06-11

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2007-02-13
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