
C
HAPTER
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| Configuring the Switch
Simple Network Management Protocol
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IMPLE
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ETWORK
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ANAGEMENT
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ROTOCOL
Simple Network Management Protocol (SNMP) is a communication protocol
designed specifically for managing devices on a network. Equipment
commonly managed with SNMP includes switches, routers and host
computers. SNMP is typically used to configure these devices for proper
operation in a network environment, as well as to monitor them to evaluate
performance or detect potential problems.
Managed devices supporting SNMP contain software, which runs locally on
the device and is referred to as an agent. A defined set of variables, known
as managed objects, is maintained by the SNMP agent and used to manage
the device. These objects are defined in a Management Information Base
(MIB) that provides a standard presentation of the information controlled
by the agent. SNMP defines both the format of the MIB specifications and
the protocol used to access this information over the network.
The switch includes an onboard agent that supports SNMP versions 1, 2c,
and 3. This agent continuously monitors the status of the switch hardware,
as well as the traffic passing through its ports. A network management
station can access this information using software such as HP OpenView.
Access to the onboard agent from clients using SNMP v1 and v2c is
controlled by community strings. To communicate with the switch, the
management station must first submit a valid community string for
authentication.
Access to the switch using from clients using SNMPv3 provides additional
security features that cover message integrity, authentication, and
encryption; as well as controlling user access to specific areas of the MIB
tree.
The SNMPv3 security structure consists of security models, with each
model having it's own security levels. There are three security models
defined, SNMPv1, SNMPv2c, and SNMPv3. Users are assigned to “groups”
that are defined by a security model and specified security levels. Each
group also has a defined security access to set of MIB objects for reading
and writing, which are known as “views.” The switch has a default view (all
MIB objects) and default groups defined for security models v1 and v2c.
The following table shows the security models and levels available and the
system default settings.
Summary of Contents for ES4528V-38
Page 1: ...Management Guide www edge core com 28 Port Gigabit Ethernet Switch...
Page 2: ......
Page 4: ......
Page 6: ...ABOUT THIS GUIDE 6...
Page 22: ...FIGURES 22...
Page 26: ...SECTION Getting Started 26...
Page 46: ...CHAPTER 2 Initial Switch Configuration Managing System Files 46...
Page 48: ...SECTION Web Configuration 48...
Page 75: ...CHAPTER 4 Configuring the Switch Creating Trunk Groups 75 Figure 11 LACP Port Configuration...
Page 186: ...CHAPTER 6 Performing Basic Diagnostics Running Cable Diagnostics 186...
Page 192: ...CHAPTER 7 Performing System Maintenance Managing Configuration Files 192...
Page 242: ...CHAPTER 12 Port Commands 242...
Page 248: ...CHAPTER 13 Link Aggregation Commands 248...
Page 266: ...CHAPTER 15 RSTP Commands 266...
Page 276: ...CHAPTER 16 IEEE 802 1X Commands 276...
Page 286: ...CHAPTER 17 IGMP Commands 286...
Page 294: ...CHAPTER 18 LLDP Commands 294...
Page 300: ...CHAPTER 19 MAC Commands 300...
Page 310: ...CHAPTER 21 PVLAN Commands 310...
Page 322: ...CHAPTER 22 QoS Commands 322...
Page 356: ...CHAPTER 26 SNMP Commands 356...
Page 359: ...CHAPTER 27 HTTPS Commands 359 EXAMPLE HTTPS redirect enable HTTPS...
Page 360: ...CHAPTER 27 HTTPS Commands 360...
Page 366: ...CHAPTER 29 UPnP Commands 366...
Page 374: ...CHAPTER 31 Firmware Commands 374...
Page 376: ...SECTION Appendices 376...
Page 390: ...GLOSSARY 390...
Page 395: ......