OmniAccess® Stellar: la plataforma WLAN para IoT y SmartCampus

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Presentation transcript:

OmniAccess® Stellar: la plataforma WLAN para IoT y SmartCampus Jorge Arasanz (jorge.arasanz@al-enterprise.com)

2.5/5G Ethernet Adoption Ports shipment for Fixed Ports Source: DellO’ro 5 yr Ethernet Switch Forecast , Jan 2016 2.5/5G counted as part of 10G by analysts. As per DellO’ro by 2020, more than 50% of overall 10G revenue will be from multi-gigabit in the campus By 2020, number of Enterprise class WLAN infrastructure users will exceed that of Campus users. Combined with 802.11ac wave2 adoption, this will drive a much faster adoption of multi gig on Ethernet switches Custom built switches for supporting WLAN APs Source: Dell O’ro 5 yr WLAN Forecast , Jan 2016

802.11ac wave 2 Adoption The enterprise/campus market has started a mini-upgrade cycle to 2.5/5.0 GE. 802.11ac Wave 2 shipments start ramping up in 2016 802.11ac AP shipments already surpassed the 802.11n shipments in 2015 although majority of these were 802.11ac wave 1 shipments Current PHY rates on 802.11ac wave 2 with 4x4 MU:MIMO are 1.6 Gbps. Shipment of Wave 2 Access points will exceed Wave 1 shipments by 2019. Source: Dell O’ro WLAN 5 year forecast, Jan 2016 Enterprise AP Shipment Volume Split Source: Dell O’ro WLAN 5 year forecast, Jan 2016

802.11 an endless evolution GHz/bps t 802.11ay (ad successor) 2019 5-2,4/10G 802.11ax (ac successor) 2018 60/6,7G 802.11ad (WiGig vs WirelessHD/UltraGig) 2012 5/3,4G 802.11ac-W2 2015 5/1,3G 802.11ac-W1 2013 5-2,4/150M 802.11n 2009 5-2,4/54M 802.11a 802.11g <1/347M 2003 802.11af 802.11ah - IoT WLAN 2014 2016 1999 t

Sometimes all what is known, have to be changed… “While it is never safe to affirm that the future of Physical Science has no marvels in store even more astonishing than those of the past, it seems probable that most of the grand underlying principles have been firmly established and that further advances are to be sought chiefly in the rigorous application of these principles to all the phenomena which come under our notice.” (1894) Albert Abraham Michelson Albert Abraham Michelson, the FIRST American to receive the Nobel Prize in Physics. In 1894, said in a conference, that “almost all physics principles have been discovered, but two small things that will be close in short term”. Those “two small things” were: Michelson-Morley experiment (1887)… Its own experiment about the movement of the Earth relative to aether, conducted to the MAX speed of light… that later conducted to General Relativity of Albert Einstein Black-body radiation (1890)… leaded to one of the most important revolutions in human history: The Quantum Theory and the Standard Model. That “two small things” CHANGED FOREVER OUR VIEW OF THE UNIVERSE… Evolution NEEDs Change, and sometimes change all wha have been known till now…

Changing the paradigm to avoid the meltdown 100s of APs at 2,5/5/10Gbps, impose 100/400Gbps interfaces at Central Traffic Points 100s of clients per AP (IoT), impose massive CPU power for Traffic Control at Central Traffic Points 100s of users per AP, impose costly CryptoModules at Central Traffic Points Central Traffic Points (Controllers) WILL BE ABLE TO SCALE NOT

OmniAccess® Stellar WLAN OmniVista 2500 Centralized & Integrated MANAGEMENT LAN & WLAN Unified Management L7 App Analytics (LAN & WLAN) WIPS GUEST Management Authentication Server BYOD Management ONE SINGLE POINT OF MANAGEMENT Cloud Ready (Enterprise or Cloud) Distributed Intelligence Distributed Control: AP coordination DRM: Distributed RF Management L2/L3 Roaming Distributed User profile Distributed Forwarding

OmniAccess® Stellar Access Points Lineup AP1101 802.11ac: Wave 1 2 radios 2x2:2SS 1.2 Gbps throughput No BLE 1 GE port 128 client devices per AP 10 W (802.3af PoE or DC) Operating Temp: 0°C to 45°C AP1221/AP1222 802.11ac Wave 2 2 radios 2×2:2 @ 2.4GHz, 4x4:4 @ 5GHz 2.2+ Gbps throughput Optional USB BLE radio dongle 1 GE Port 512 client devices per AP <24W (802.3at 2pair PoE or DC) Operating Temp: 0°C to 45°C AP1231/AP1232 802.11ac Wave 2 3 radios 4×4:4 @ 2.4GHz, dual 4x4:4 @ 5GHz 4.2+ Gbps throughput Integrated BLE radio 1xGbE + 1x2.5GbE network interfaces 768 client devices per AP 36W (802.3at 4pair or DC) Operating Temp: 0°C to 40°C AP1251 802.11ac Wave 2 2 radios 2×2:2 @ 2.4GHz, 2x2:2 @ 5GHz 1.2 Gbps throughput No BLE 2xGbE network interfaces 512 client devices per AP <12W (802.3af PoE) Operating temperature : -40 to 65°C

ADDING Application visibility & enforcement over the air! Business critical Other business apps + personal apps Non-compliant apps L7 Apps UNIFIED Analytics for LAN and WLAN Our unified access strategy also includes network services to help manage the applications. Our latest application analytics capability provides the network with the intelligence to recognize the applications traversing the network and also control them via a set of predefined policies. With this capability, IT can prioritize business critical applications and reserves bandwidth to make sure they can be delivered with the quality necessary. It is also possible to prevent harmful or non-compliant applications from being utilized and also create a space for employees to explore new applications and also use personal apps, harmonizing the coexistence of both business and personal applications. The granular level of application visibility is achieved with out high end switches that use DPI techniques to identify applications and enforce policies at wire rate right at the edge of the network. As many applications go through the process of webification, networks without analytics will see all the traffic as HTTP. It all look alike and will be treated in the same way. However with application analytics it is possible to identify each application encapsulated under an HTTP interface and therefore apply different prioritization and QOS to critical applications like Salesforce, SAP, Rainbow and IP telephony against some personal apps like Facebook, YouTube etc.

UNP: Continuos IoT secured networks in LAN and WLAN. OS6860E OV2500 UNP - Universal Network Profile OS6900

OV2500 UPAM – Unified Policy Authentication Manager Guest Access, BYOD, IT Owned Enterprise: External Radius (Eduroam), Local DB, External AD/LDAP Wired/Wireless Authentication Access Guest Management Account Creation, Notification (SMS, Email, WEB) Self-Registration, Employee Sponsor Basic/ Premium Servicing Login using: Uname/Passwd, Access-Code, Social Account UPAM BYOD Session & Device Control Device Fingerprinting (OS, Type, etc.) Portal Customizable Pages: Guest Access/ BYOD Success Redirect URL

DRM – Over the Air Only for RF & Stellar Neighbor Discovery: IP address, Name, OV2500 AP-Group-2 AP-5 AP-2 AP-8 AP-6 AP-1 AP-7 AP-Group-3 AP-4 AP-3 AP-9 AP-Group-1 AP-1 Coverage

Dynamic Load Balance – Client LOAD Sharing Device Clients AP1 10 AP2 8 AP3 15 Device Clients AP1 10 AP2 8 AP3 15 New Client 1 Broadcast Join Request 1 Broadcast Join Request 2 Reply to Client AP 1 Broadcast Join Request Every AP learns the neighboring information through Neighbor Management Protocol When a new client appears, Each AP will set up a timer based on its connecting clients When the timer ends, AP will respond to the new client The new client is guided to connect to the lightest loaded AP Device Clients AP1 10 AP2 8 AP3 15

Client Roaming Network OmniVista Access Role Profile Vlan Mapping - AP GROUP 1: Employee = 2001 - AP GROUP 2: Employee = 2002 VLAN 2001 VLAN 2002 AP GROUP 1 AP GROUP 2 Client MAC Client MAC Client MAC Initial Association WLAN Service/SSID: Employee Access Role Profile: Employee Vlan mapping : 2001 2nd L2 Roam WLAN Service/SSID: Employee Access Role Profile: Employee Vlan mapping : 2001 L3 Roaming! Employee vlan = 2002 1st L2 Roam WLAN Service/SSID: Employee Access Role Profile: Employee Vlan mapping : 2001 DEL DEL DEL CTX CTX Context CTX CTX Context CTX CTX CTX CTX CTX Context Client Context clean up

Key Takeaways A single platform to manage Access Network, on premises or Cloud A single platform to manage all Authentication needs (Employees, Guest, CP, …) Distributed Control and Forwarding. Centralized Management.

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