Cisco Systems IPS4510K9 manual Example, rules1, Command, for example sig1, 19-6

Models: IPS4510K9

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Chapter 19 Configuring the ASA 5585-X IPS SSP

Creating Virtual Sensors for the ASA 5585-X IPS SSP

 

 

 

Step 3

Add a virtual sensor.

 

 

 

 

sensor(config-ana)# virtual-sensor vs1

 

 

 

 

sensor(config-ana-vir)#

 

 

 

Step 4

Add a description for this virtual sensor.

 

 

 

 

sensor(config-ana-vir)#description virtual sensor 1

 

 

 

Step 5

Assign an anomaly detection policy and operational mode to this virtual sensor if you have enabled

 

 

 

 

anomaly detection. If you do not want to use the default anomaly detection policy, ad0, you must create

 

 

 

 

a new one using the service anomaly-detectionname command, for example, ad1.

 

 

 

 

sensor(config-ana-vir)# anomaly-detection

 

 

 

 

sensor(config-ana-vir-ano)# anomaly-detection-name ad0

 

 

 

 

sensor(config-ana-vir-ano)# operational-mode learn

 

 

 

Step 6

Assign an event action rules policy to this virtual sensor. If you do not want to use the default event action

 

 

 

 

rules policy, rules0, you must create a new one using the service event-action-rulesname command, for

 

 

 

 

example, rules1

 

 

 

 

sensor(config-ana-vir-ano)# exit

 

 

 

 

sensor(config-ana-vir)#event-action-rules rules0

 

 

 

Step 7

Assign a signature definition policy to this virtual sensor. If you do not want to use the default signature

 

 

 

 

definition policy, sig0, you must create a new one using the service signature-definitionname

 

 

 

 

command, for example sig1.

 

 

 

 

sensor(config-ana-vir)#signature-definition sig0

 

 

 

Step 8

Assign the interface to one virtual sensor. By default the sensing interface is already assigned to the

 

 

 

 

default virtual sensor, vs0. You must remove it from the default virtual sensor to assign it to another

 

 

 

 

virtual sensor that you create.

 

 

 

 

sensor(config-ana-vir)#physical-interface PortChannel0/0

 

 

 

Step 9

Verify the virtual sensor settings.

 

 

 

 

sensor(config-ana-vir)# show settings

 

 

 

 

name: vs1

 

 

 

 

-----------------------------------------------

 

 

 

 

 

description: virtual sensor 1 default:

 

 

 

 

signature-definition: sig1 default: sig0

 

 

 

 

event-action-rules: rules1 default: rules0

 

 

 

 

anomaly-detection

 

 

 

 

-----------------------------------------------

 

 

 

 

 

anomaly-detection-name: ad1 default: ad0

 

 

 

 

operational-mode: learn default: detect

 

 

 

 

-----------------------------------------------

 

 

 

 

 

physical-interface (min: 0, max: 999999999, current: 2)

 

 

 

 

-----------------------------------------------

 

 

 

 

 

name: PortChannel0/0

 

 

 

 

subinterface-number: 0 <defaulted>

 

 

 

 

-----------------------------------------------

 

 

 

 

 

-----------------------------------------------

 

 

 

 

 

logical-interface (min: 0, max: 999999999, current: 0)

 

 

 

 

-----------------------------------------------

 

 

 

 

 

-----------------------------------------------

 

 

 

 

 

-----------------------------------------------

 

 

 

 

 

sensor(config-ana-vir)#

 

 

 

Step 10

Exit analysis engine mode.

 

 

 

 

sensor(config-ana-vir)# exit

 

 

 

Cisco Intrusion Prevention System Sensor CLI Configuration Guide for IPS 7.2

 

 

 

 

19-6

 

 

OL-29168-01

 

 

 

 

 

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Cisco Systems IPS4510K9 manual Example, rules1, Command, for example sig1, Virtual sensor that you create, 19-6

IPS4510K9 specifications

Cisco Systems has long been a leading player in network security, and its IPS (Intrusion Prevention System) series is a testament to its commitment to safeguarding digital environments. Among its notable offerings are the IPS4510K9 and IPS4520K9 models, both designed to provide advanced threat protection for mid-sized to large enterprise networks.

The Cisco IPS4510K9 and IPS4520K9 are distinguished by their cutting-edge features that help organizations defend against a myriad of cyber threats. These systems utilize a multi-layered approach to security, integrating intrusion prevention, advanced malware protection, and comprehensive visibility across the network.

One of the primary characteristics of the IPS4510K9 is its high performance. It boasts a throughput of up to 1 Gbps, making it suitable for environments that demand rapid data processing and real-time responses to threats. The IPS4520K9, on the other hand, enhances that capability with improved throughput of up to 2 Gbps, accommodating larger enterprises with heavier network traffic. These models are equipped with powerful processors that support complex signature matching and can intelligently distinguish between legitimate traffic and potential threats.

In addition to performance, both models are designed with scalability in mind. They can be easily integrated into existing Cisco infrastructures. This facilitates a seamless enhancement of security without causing significant interruptions to ongoing operations. Moreover, they offer flexible deployment options, allowing organizations to operate them inline or out of band depending on their specific needs.

The Cisco IPS4510K9 and IPS4520K9 leverage advanced detection technologies, utilizing a variety of signature types and heuristic analysis to detect known and unknown threats effectively. They are equipped with real-time alerting and reporting capabilities, giving security teams immediate visibility into potential breaches and enabling them to respond swiftly.

Furthermore, both models support a range of management options through the Cisco Security Manager, allowing for centralized administration, streamlined policy management, and enhanced monitoring capabilities. Automated updates ensure the systems remain current with the latest threat intelligence, vital for staying ahead of evolving cyber threats.

In summary, the Cisco Systems IPS4510K9 and IPS4520K9 represent powerful solutions for organizations seeking robust intrusion prevention capabilities. With their high performance, scalability, and advanced detection technologies, these systems are essential tools in the ever-changing landscape of cybersecurity, providing enterprises with the peace of mind needed to operate securely in today's digital world.