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Test Number : 352-011
Test Name : Cisco Certified Design Expert Practical (CCDE)
Vendor Name : Cisco
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352-011 test Format | 352-011 Course Contents | 352-011 Course Outline | 352-011 test Syllabus | 352-011 test Objectives

The Cisco Certified Design Expert (CCDE) is for expert-level network design engineers, expert-level network leads of IT infrastructure teams, and expert-level network leads of architecture teams working in job roles that require them to translate business needs, budget, and operational constraints into the design of a converged solution. The CCDE curriculum prepares designers to develop design solutions at the infrastructure level for large customer networks. Network engineers holding an active CCDE certification are recognized for their expert-level knowledge and skills in network infrastructure design. The deep technical networking knowledge that a CCDE brings ensures that they are well qualified to address the most technically challenging network infrastructure design assignments.

Step One: CCDE Written Exam
The 2-hour, written qualification test covers network design in the areas of routing, tunneling, Quality of Service (QoS), management, cost, capacity, and security. You must pass the written test before you are eligible to schedule the CCDE practical exam.

Step Two: CCDE Practical Exam
The 8-hour Practical test tests your ability to perform design analysis, justify design requirements, and develop a design implementation based on best practices. Only candidates that have a passing score on the CCDE Written test may register for the CCDE Practical Exam.

Cisco CCDE Written test tests a candidate's combined knowledge of routing protocols, internetworking theory and design principles. It assesses a candidate's understanding of network design in the areas of routing, tunneling, Quality of Service, Management, Cost, Capacity, and Security. This test combines in-depth technical concepts with Network Design principles. Product-specific knowledge including version of code, implementation and operations specific concepts are not tested on the CCDE exam. The test is closed book and no outside reference materials are allowed.

An Evolving Technologies section is included in the Written test only. It will enable candidates to bridge their core technology expertise with knowledge of the evolving technologies that are being adopted at an accelerated pace, such as cloud, IoT, and network programmability.

It has been recalibrated and will consist of three subdomains and a total of five tasks for which the expected depth of knowledge will be focused on conceptual comprehension. The Evolving Technologies section will account for 10 percent of the total score while the remaining core technologies will account for 90 percent.

The following subjects are general guidelines for the content likely to be included on the exam. However, other related subjects may also appear on any specific delivery of the exam. In order to better reflect the contents of the test and for clarity purposes, the guidelines below may change at any time without notice.

24% 1.0 Layer 2 Control Plane
1.1 Describe fast convergence techniques and mechanisms
1.1.a Down detection
1.1.b Interface dampening
1.2 Describe loop detection and mitigation protocols
1.2 a Spanning tree types
1.2 b Spanning tree tuning techniques
1.3 Describe mechanisms that are available for creating loop-free topologies
1.3 a REP
1.3 b Multipath
1.3 c Switch clustering
1.3.d Flex links
1.3.e Loop detection and mitigation
1.4 Describe the effect of transport mechanisms and their interaction with routing protocols over different types of links
1.4.a Describe multicast routing concepts
1.5 Describe the impact of fault isolation and resiliency on network design
1.5.a Fault isolation
1.5.b Fate sharing
1.5.c Redundancy
1.5.d Virtualization
1.5.e Segmentation
33% 2.0 Layer 3 Control Plane
2.1 Describe route aggregation concepts and techniques
2.1.a Purpose of route aggregation
2.1.b When to leak routes / avoid suboptimal routing
2.1.c Determine aggregation location and techniques
2.2 Describe the theory and application of network topology layering
2.2.a Layers and their purposes in various environments
2.3 Describe the theory and application of network topology abstraction
2.3.a Purpose of link state topology summarization
2.3.b Use of link state topology summarization
2.4 Describe the impact of fault isolation and resiliency on network design or network reliability
2.4.a Fault isolation
2.4.b Fate sharing
2.4.c Redundancy
2.5 Describe metric-based traffic flow and modification
2.5.a Metrics to modify traffic flow
2.5.b Third-party next hop
2.6 Describe fast convergence techniques and mechanisms
2.6.a Protocol timers
2.6.b Loop-free alternates
2.7 Describe factors affecting convergence
2.7.a Recursion
2.7.b Microloops
2.7.c Transport
2.8 Describe unicast routing protocol operation (OSPF, EIGRP, ISIS, BGP, and RIP) in relation to network design
2.8.a Neighbour relationships
2.8.b Loop-free paths
2.8.c Flooding domains and stubs
2.8.d iBGP scalability
2.9 Analyze operational costs and complexity
2.9.a Routing policy
2.9.b Redistribution methods
2.10 Describe the interaction between routing protocols and topologies
2.11 Describe generic routing and addressing concepts
2.11.a Policy-based routing
2.11.b NAT
2.11.c Subnetting
2.11.d RIB-FIB relationships
2.12 Describe multicast routing concepts
2.12.a General multicast concepts
2.12.b Source specific
2.12.c MSDP / anycast
2.12.d PIM
2.12.e mVPN
2.13 Describe IPv6 concepts and operation
2.13.a General IPv6 concepts
2.13.b IPv6 security
2.13.c IPv6 transition techniques
15% 3.0 Network Virtualization
3.1 Describe Layer 2 and Layer 3 tunneling technologies
3.1.a Tunneling for security
3.1.b Tunneling for network extension
3.1.c Tunneling for resiliency
3.1.d Tunneling for protocol integration
3.1.e Tunneling for traffic optimization
3.2 Analyze the implementation of tunneling
3.2.a Tunneling technology selection
3.2.b Tunneling endpoint selection
3.2.c Tunneling parameter optimization of end-user applications
3.2.d Effects of tunneling on routing
3.2.e Routing protocol selection and tuning for tunnels
18% 4.0 Design Considerations
4.1 Analyze various QoS performance metrics
4.1.a Application requirements
4.1.b Performance metrics
4.2 Describe types of QoS techniques
4.2.a Classification and marking
4.2.b Shaping
4.2.c Policing
4.2.d Queuing
4.3 Identify QoS strategies based on customer requirements
4.3.a DiffServ
4.3.b IntServ
4.4 Identify network management requirements
4.5 Identify network application reporting requirements
4.6 Describe technologies, tools, and protocols used for network management
4.7 Describe the reference models and processes used in network management, such as FCAPS, ITIL, and TOGAF
4.8 Describe best practices for protecting network infrastructure
4.8.a Secure administrative access
4.8.b Control plane protection
4.9 Describe best practices for protecting network services
4.9.a Deep packet inspection
4.9.b Data plane protection
4.10 Describe tools and technologies for identity management
4.11 Describe tools and technologies for 802.11 wireless deployment
4.12 Describe tools and technologies for optical deployment
4.13 Describe tools and technologies for SAN fabric deployment
10% 5.0 Evolving Technologies v1.1
5.1 Cloud
5.1.a Compare and contrast public, private, hybrid, and multicloud design considerations
5.1.a (i) Infrastructure, platform, and software as a service (XaaS)
5.1.a (ii) Performance, scalability, and high availability
5.1.a (iii) Security implications, compliance, and policy
5.1.a (iv) Workload migration
5.1.b Describe cloud infrastructure and operations
5.1.b (i) Compute virtualization (containers and virtual machines)
5.1.b (ii) Connectivity (virtual switches, SD-WAN and SD-Access)
5.1.b (iii) Virtualization functions (NFVi, VNF, and L4/L5)
5.1.b (iv) Automation and orchestration tools (CloudCenter, DNA-center, and Kubernetes)
5.2 Network programmability (SDN)
5.2.a Describe architectural and operational considerations for a programmable network
5.2.a (i) Data models and structures (YANG, JSON and XML)
5.2.a (ii) Device programmability (gRPC, NETCONF and RESTCONF)
5.2.a (iii) Controller based network design (policy driven configuration and northbound/ southbound APIs)
5.2.a (iv) Configuration management tools (agent and agentless) and version control systems (Git and SVN)
5.3 Internet of things (IoT)
5.3.a Describe architectural framework and deployment considerations for IoT
5.3.a (i) IoT technology stack (IoT Network Hierarchy, data acquisition and flow)
5.3.a (ii) IoT standards and protocols (characteristics within IT and OT environment)
5.3.a (iii) IoT security (network segmentation, device profiling, and secure remote access)
5.3.a (iv) IoT edge and fog computing (data aggregation and edge intelligence)

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Cisco releases portfolio of safety and safety solutions enhancements | 352-011 dumps collection and test Questions

Maximising effectiveness of thermal cameras for temperature screening

Thermal cameras can be used for rapid and secure preliminary temperature screening of group of workers, company and shoppers. Used the correct way, the cameras can assist avoid useless unfold of viruses like the novel coronavirus. all the way through the world pandemic, use of thermal cameras has improved, however they haven't at all times been used correctly, and for this reason, now not without problems. Hikvision’s temperature screening thermal products are at present assisting users in initial temperature screening throughout the world market. throughout 2020, demand elevated in most markets, and the company extremely recommends that Hikvision’s thermographic cameras be used based on native legal guidelines and regulations. limitations of the expertise include throughput and the have an impact on of ambient conditions. discover viruses and fever Hikvision releases a video that illustrates how skin temperature measurements are normalised within minutes Thermal cameras can not discover viruses and fever and may best be used as a first line of screening before using secondary measures to verify, says Stefan Li, Thermal Product Director at Hikvision. “We additionally consider it is crucial for businesses and authorities to use [thermal cameras] alongside a full programme of further fitness and security methods, which comprises handwashing, general disinfection of surfaces, donning shielding clothing corresponding to masks, and social distancing.” Hikvision has released a video that illustrates how epidermis temperature measurements are normalised inside minutes after somebody emerges from the cold. Mr. Li says the video demonstrates the accuracy of brow size beneath difficult instances when people come inner from a chilly out of doors environment. Temperature screening facilities “There had been some claims that measuring the brow temperature is not as correct as measuring the inner canthus, and they believe this video demonstrates the accuracy of brow size very well,” he says. “We also illustrate how the skin temperature will experience a technique of recuperation (warming up), no count number if it is measured via a thermal digicam or a thermometer.” Mr. Li provides that americans should still wait five minutes in such cases before starting a temperature size. “We hope that stakeholders who are panic in the design of temperature screening amenities and linked fitness and security techniques will know how essential it's to trust the skin temperature healing time, and that forehead size can supply accurate examine results,” says Mr. Li. Thermal imaging manufacturers The algorithm is in line with a large variety of check results to gain a value that tends to be dynamically balanced The temperature measurement principle of thermal imaging is to become aware of the heat radiation emitted through the human body. The detected warmth price often doesn't reflect the true internal physique temperature of an individual. in addition, the temperature varies among diverse components of the human, such because the forehead, ears, underarms, etc. A temperature compensation algorithm will also be used to adjust the measured skin temperature to align with the inner physique temperature. The algorithm is according to a huge number of verify outcomes to gain a worth that tends to be dynamically balanced. At latest, thermal imaging producers out there, and even forehead thermometer producers, have developed their personal algorithms to map the epidermis temperature measured with the aid of the digicam to the inside physique temperature, with a purpose to compensate the dermis temperature to the internal body temperature. Thermal cameras here's also why Hikvision recommends that the "specific body temperature" should still be checked with a secondary device for confirmation. The calibration work for a thermal digicam is accomplished in the production technique on the manufacturing facility, together with calibration of reference values and detection point and the like. at the equal time, the equipment parameters should still be adjusted before on-site use to ensure accurate temperature reads. Hikvision does not deny the accuracy of temperature dimension at the inner canthus but prefers brow temperature measurement and algorithms based on exact use eventualities, says Mr. Li. a large quantity of examine records and purposeful consequences suggests that the brow is a correct and easy-to-use temperature size enviornment, says the business. There are benefits and drawbacks of picking out different facial areas for temperature size. Default compensation temperature Two main strategies direct the size enviornment and the way compensation algorithms are applied: forehead enviornment + default brow compensation algorithm value upper half face (brow + canthus) + default internal canthus compensation algorithm cost. both methods deploy compensation algorithms, however the default compensation temperature of the inner canthus might be lower than the default compensation temperature of the brow, often talking. The purpose is that the temperature of the inner canthus of most individuals is greater than their forehead, so the temperature compensation is comparatively low (i.e., nearer to the genuine temperature inner the body.) higher face area Hikvision found that choosing the upper face enviornment plus the default compensation cost for the inner canthus resulted in situations when the calculated temperature is lower than the genuine temperature. For the Hikvision solution, the brow is a comparatively evident and straightforward-to-seize area on a whole face Mr. Li explains: “The intent is that once the digital camera cannot catch the position of the inner canthus (for instance, when someone is running, or the face isn't dealing with the camera), the digicam will instantly capture the temperature of the brow. Then the outcomes that appears is the sum of the forehead temperature plus the default compensation temperature of the internal canthus, which is lower than the specific temperature of the grownup being measured. for this reason, errors are liable to occur.” Thermal imaging items however for the Hikvision answer, the brow is a relatively evident and simple-to-seize area on a complete face. additionally, the default brow compensation temperature is according to rigorous checking out and can also correctly mimic the exact temperature of the person being measured, says Mr. Li. After many check comparisons, seeing that that the results of brow temperature measurement are incredibly more strong, and to be able to evade the false effects from internal canthus temperature dimension, Hikvision selected the forehead temperature measurement approach. “We seem forward to bringing thermal imaging products from a niche market the place there is a comparatively high-conclusion trade utility to a mass market and serving greater clients,” says Mr. Li. Facial recognition terminals additional software parameters can maximise effectiveness of thermal cameras for measuring body temperature: Positioning and peak - All cameras must be established as it should be to avoid lack of accuracy and performance. The setting up height of each and every camera need to be adjusted in accordance with camera decision and focal length, and solid installing is needed to steer clear of mistakes brought about by shaking. guaranteeing a ‘one-course course’ - The detection enviornment have to make certain that cameras capture the entire faces of all those passing by or stopping, and barriers may still be prevented in the container of view, akin to glass doorways that block the digicam. enough delivery-up and utilization - A waiting time of greater than 90 minutes is required for preheating, after the preliminary beginning-up. before conducting a thermal scan, people should take delivery of three to 5 minutes to enable their body temperature to stabilise. When Hikvision MinMoe facial recognition terminals are used, individuals need to stand at a hard and fast distance, pass one after the other, make a short cease, and face the camera without delay. Hikvision cameras help effective group screening, however one-by means of-one screening is cautioned for extra correct outcomes, says Mr. Li. Unstable environmental situation An unstable environmental situation can also affect the accuracy of thermal digicam techniques Environmental elements can impact the accuracy of thermal cameras, and the thought of using a black body is to deliver the camera with a reference factor that has a solid temperature. The black body is heated to a particular temperature and helps the thermal digicam to understand how plenty error is caused by way of environmental components in the room, and how the camera should still calibrate itself in genuine time to increase its accuracy. A black physique can aid raise the temperature measurement accuracy, and essentially the most regular growth is from ±0.5 levels to ±0.3 degrees. besides the fact that children, it additionally increases the charge of the installing. In some markets, purchasers may require black bodies with the intention to agree to regulatory accuracy necessities. An unstable environmental condition can also affect the accuracy of thermal digicam programs for measuring temperature. medical temperature measurement hence, Hikvision suggests that the ambient circumstances should be met for installing and use. first of all, users should still steer clear of installation gadgets in scorching or changeable environments. All cameras require indoor environments with calm air, constant temperature and no direct sunlight. installation should still also be avoided in semi-open areas that may be liable to changes in ambient conditions, akin to doorways, and there should still be adequate stable, seen gentle. All contraptions may still be put in to evade backlighting, hot temperature aims, and reflections within the box of view as far as possible. “We often see the false impression that thermal cameras can exchange scientific temperature measurement device, which is not the case,” says Mr. Li. fast preliminary screening “Temperature screening thermographic cameras are designed for the detection of epidermis-floor temperatures, and the measurement should be performed to achieve quick preliminary screening in public areas. it's in reality essential that precise core physique temperatures are measured due to this fact with scientific size devices.”

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