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184
Statistical Study of Unusual DNS Query Traffic
"... Abstract — We statistically investigated on the unusual big DNS resolution traffic toward the top domain DNS server from a university local campus network in April 11th, 2006. The following results are obtained: (1) In April 11th, the DNS query traffic includes a lot of fully qualified domain names ..."
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(FQDNs) of several specific web sites as name resolution keywords. (2) Also, the DNS query traffic includes a plenty of source IP addresses of PC clients. Usually, we can observe the source IP addresses of E-mail and/or Web servers in the usual DNS query traffic, mainly. From this point, it can
Threats of Unusual DNS Query Traffic from NIS Clients
"... Abstract We statistically investigated on unusual DNS query traffic from the several Linux PC servers employing network information system (NIS) as their authentication in the campus network of a university. The following re-sults are obtained: (1) The DNS query traffic includes specific keywords of ..."
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of database servers in which one database is as a NIS server and the others are its NIS clients. (2) The DNS query traffic takes place when the NIS server crashes because recent NIS is carried out with libwrap that performs the name resolution. This name resolution is usually achieved with referring to a /etc
Statistical Study of Unusual DNS Query Traffic
"... We statistically investigated on the unusual big DNS resolution traffic toward the top domain DNS server from a university local campus network in April 11th, 2006. The following results are obtained: (1) In April 11th, the DNS query traffic includes a lot of fully qualified domain names (FQDNs) of ..."
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Cited by 1 (0 self)
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We statistically investigated on the unusual big DNS resolution traffic toward the top domain DNS server from a university local campus network in April 11th, 2006. The following results are obtained: (1) In April 11th, the DNS query traffic includes a lot of fully qualified domain names (FQDNs
Analysis of IPv6 Based DNS Query Traffic
"... Abstract: We investigated statistically on the IPv6 source IP address-based DNS query traffic a university campus network through January 1st to December 31st, 2005. The results are summarized, as follows: (1) Several security incidents in the IPv6-based DNS query traffic can be observed in or synch ..."
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Abstract: We investigated statistically on the IPv6 source IP address-based DNS query traffic a university campus network through January 1st to December 31st, 2005. The results are summarized, as follows: (1) Several security incidents in the IPv6-based DNS query traffic can be observed
Entropy Study on MX Resource Record-Based DNS Query Packet Traffic
"... in the MX resource record (RR) type DNS query packet traffic between the top domain DNS server and the DNS clients in a university through January 1st, 2004 to July 31st, 2007. The interesting results are summarized, as follows: (1) The source IP addresses- and query keywords-based entropies change ..."
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in the MX resource record (RR) type DNS query packet traffic between the top domain DNS server and the DNS clients in a university through January 1st, 2004 to July 31st, 2007. The interesting results are summarized, as follows: (1) The source IP addresses- and query keywords-based entropies change
Status of this Memo Negative Caching of DNS Queries (DNS NCACHE)
, 1034
"... This document specifies an Internet standards track protocol for the Internet community, and requests discussion and suggestions for improvements. Please refer to the current edition of the "Internet Official Protocol Standards " (STD 1) for the standardization state and status of this pro ..."
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] or domain name. Negative caching is useful as it reduces the response time for negative answers. It also reduces the number of messages that have to be sent between resolvers and name servers hence overall network traffic. A large proportion of DNS traffic on the Internet could be eliminated if all
Boost DNS Privacy, Reliability, and Efficiency with opDNS Safe Query Elimination
"... fortify the Domain Name System as the central information hub behind the Internet. Largely hidden from the end user, an increasing number of protocol and trust decisions are contingent on DNS. Neglect or attacks on DNS have much more impact today than ever, now endangering security far beyond denial ..."
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denial of service. Opportunistic Persistent DNS (opDNS) addresses these problems by abandoning pessimistic caching and eliminating unnecessary traffic. Today’s DNS infrastructure relies on the hosts forgetting and refreshing DNS records in relatively short time. In conjunction with TLS, opDNS greatly
DNS Noise: Measuring the Pervasiveness of Disposable Domains in Modern DNS Traffic
"... Abstract—In this paper, we present an analysis of a new class of domain names: disposable domains. We observe that popular web applications, along with other Internet services, systematically use this new class of domain names. Disposable domains are likely generated automatically, characterized by ..."
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by a “one-time use ” pattern, and appear to be used as a way of “sig-naling ” via DNS queries. To shed light on the pervasiveness of disposable domains, we study 24 days of live DNS traffic span-ning a year observed at a large Internet Service Provider. We find that disposable domains increased from 23
Querying Distributed RDF Data Sources with SPARQL
- In Proceedings of the 5th European Semantic Web Conference (ESWC2008
, 2008
"... Abstract. Integrated access to multiple distributed and autonomous RDF data sources is a key challenge for many semantic web applications. As a reaction to this challenge, SPARQL, the W3C Recommendation for an RDF query language, supports querying of multiple RDF graphs. However, the current standar ..."
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Cited by 132 (0 self)
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standard does not provide transparent query federation, which makes query formulation hard and lengthy. Furthermore, current implementations of SPARQL load all RDF graphs mentioned in a query to the local machine. This usually incurs a large overhead in network traffic, and sometimes is simply impossible
Detecting and Preventing the Malicious System based on DNS Analysis
"... Abstract- Attackers, usually busy to launch malicious threat to damage the compromised host. Botnet’s are newly developed technology by attackers and its duty to increase the traffic in DNS service to launch attacks. Due to increased traffic in DNS, botmaster’s create a new channel between server an ..."
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Abstract- Attackers, usually busy to launch malicious threat to damage the compromised host. Botnet’s are newly developed technology by attackers and its duty to increase the traffic in DNS service to launch attacks. Due to increased traffic in DNS, botmaster’s create a new channel between server
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