IPsec DH Group
This specifies the Diffie-Hellman group to use for IPsec
communication. The available DH groups are discussed
below in the section titled Diffie-Hellman Groups.
IPsec Encryption
The encryption algorithm that will be used on the protected
IPsec traffic.
This is not needed when AH is used, or when ESP is used
without encryption.
The algorithms supported by D-Link Firewall VPNs are:
•
AES
•
Blowfish
•
Twofish
•
Cast128
•
3DES
•
DES
IPsec Authentication
This specifies the authentication algorithm used on the
protected traffic.
This is not used when ESP is used without authentication,
although it is not recommended to use ESP without
authentication.
The algorithms supported by D-Link Firewall VPNs are:
•
SHA1
•
MD5
IPsec Lifetime
This is the lifetime of the VPN connection. It is specified in
both time (seconds) and data amount (kilobytes). Whenever
either of these values is exceeded, a re-key will be initiated,
providing new IPsec encryption and authentication session
keys. If the VPN connection has not been used during the last
re-key period, the connection will be terminated, and
re-opened from scratch when the connection is needed again.
This value must be set lower than the IKE lifetime.
Diffie-Hellman Groups
Diffie-Hellman (DH) is a cryptographic protocol that allows two parties that have no prior
knowledge of each other to establish a shared secret key over an insecure communications channel
through a series of plain text exchanges. Even though the exchanges between the parties might be
monitored by a third party, Diffie-Hellman makes it extremely difficult for the third party to
determine what the agreed shared secret key is and to decrypt data that is encrypted using the key.
Diffie-Hellman is used to establish the shared secret keys for IKE, IPsec and PFS.
The Diffie-Hellman group indicates the degree of security used for DH exchanges. The higher the
group number, the greater the security but also the processing overhead. The DH groups supported
by NetDefendOS are as follows:
•
DH group 1 (768-bit)
9.3.2. Internet Key Exchange (IKE)
Chapter 9. VPN
337
Содержание 800 - DFL 800 - Security Appliance
Страница 24: ...1 3 NetDefendOS State Engine Packet Flow Chapter 1 NetDefendOS Overview 24 ...
Страница 69: ...2 6 4 Restore to Factory Defaults Chapter 2 Management and Maintenance 69 ...
Страница 121: ...3 9 DNS Chapter 3 Fundamentals 121 ...
Страница 166: ...interfaces without an overriding IGMP Setting Default 1 000 4 6 4 Advanced IGMP Settings Chapter 4 Routing 166 ...
Страница 181: ...4 7 5 Advanced Settings for Transparent Mode Chapter 4 Routing 181 ...
Страница 192: ...5 5 IP Pools Chapter 5 DHCP Services 192 ...
Страница 282: ...6 7 Blacklisting Hosts and Networks Chapter 6 Security Mechanisms 282 ...
Страница 300: ...mechanism 7 3 7 SAT and FwdFast Rules Chapter 7 Address Translation 300 ...
Страница 301: ...7 3 7 SAT and FwdFast Rules Chapter 7 Address Translation 301 ...
Страница 303: ... Changed on a regular basis such as every three months 8 1 Overview Chapter 8 User Authentication 303 ...
Страница 318: ...8 3 Customizing HTML Pages Chapter 8 User Authentication 318 ...
Страница 322: ...ALG 9 1 5 The TLS Alternative for VPN Chapter 9 VPN 322 ...
Страница 377: ...Management Interface Failure with VPN Chapter 9 VPN 377 ...
Страница 408: ...10 4 6 SLB_SAT Rules Chapter 10 Traffic Management 408 ...
Страница 419: ...11 5 HA Advanced Settings Chapter 11 High Availability 419 ...
Страница 426: ...12 3 5 Limitations Chapter 12 ZoneDefense 426 ...
Страница 449: ...13 9 Miscellaneous Settings Chapter 13 Advanced Settings 449 ...