Cisco Expo 2011 Virtualizace v prostředí s přenosem hlasu a videa COL2/L2 Jiří Rott Cisco Systems s r.o. - jirott@cisco.com Petr Vejmělek - AutoCont CZ a.s. - petr.vejmelek@autocont.cz Cisco Expo 2011 Cisco and/or its affiliates. All rights reserved. 1
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Desktop Virtualization (Cisco VXI concept) Display Protocol Clients UC in Desktop Virtualization Environment Cisco Client Solution Collaboration Server Virtualization (UC on UCS) Partner practical experience Conclusions 3
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Separate the physical endpoint from the logical desktop Host the logical desktop in a data center Allow endpoints to access the logical desktop over the network Endpoints may include a variety of device types; end user continues where he/she last left off Virtualized desktop hosted in DC 5
In principle, the business case is compelling. Desktop virtualization helps companies: Improved manageability Streamlined deployment Increased flexibility Connection Broker Improved data protection Better resource utilization Reduced costs Hypervisor 6
Cisco VXI = Desktop Virtualization + End-to-End Architecture Rich Media and Collaboration Security Application Acceleration POE / Energy Wise Cisco VXI Data Center Virtualization Virtual Workspace Collaboration Borderless Networks 7
Virtualized Data Center Cisco Collaboration MS Applications Office Microsoft OS Desktop Virtualization Software Virtualization-Aware Borderless Network CDN Branch Virtualized Collaborative Workspace Cisco Clients WAAS Nexus Hypervisor Virtual Unified CM ISR WAAS Si Access Switching w/poe Cius Business Tablets Cisco Virtualization Experience Clients Virtual Quad Thin Client Ecosystem ACE 8
2010 Cisco and/or its affiliates. All rights reserved. 9
Thick client devices refer to standard PC or Laptops running a standard OS, but have similar software as the thin client, installed as an application Thick client devices allow users to work offline and are often the choice of the Road Warrior user 10
Thin client devices usually contain more local capabilities and often have a customizable local embedded operating system (usually Linux or Windows) This class of endpoint provides greater flexibility They are generally customized by the system administrators and then locked down Thin clients are typically used by power users who need access not only to browsers, email clients and office automation tools, but also additional features such as streaming audio and video 11
Zero clients are the simplest devices They have embedded operating systems that are not exposed to the user Zero clients have reduced local capabilities and depend heavily on the resources available within the virtual desktop This class of devices is typically slated toward the task worker since it provides no enhancements for media streaming Because there is no exposed OS, there is no virus infection, making them a very secure endpoint 12
Traditional Modernized Revolutionize Centralized provisioning, management and security for users and applications Virtual Apps Virtual Apps Virtual Apps Apps Apps Virtual Apps HVD HVD HVD WinXP WinXP Thick Client Zero Client Thin Client Mobile Client Virtualized Platforms 13
ICA/HDX Citrix Proprietary Supports many advanced features 32 virtual channels TCP transport If the latency is greater than 30ms, Flash content is rendered on the server Encryption and compression on by default PCoIP/Teradici RDP VMware software and hardware Highly efficient Adaptive - compensates latency and bandwidth variations Supports 4 monitors and resolution up to 2560 x 1600 128-bit AES (On by default) UDP Transport Most Security servers support TCP only Protocol by Microsoft Citrix/VMware VDI deployment support TCP transport and AES support 14
2010 Cisco and/or its affiliates. All rights reserved. 15
Quality of user experience Rich media streaming, voice/video, remote access often less than optimal Performance: Voice/Video cannot be prioritized by QoS Jitter: Voice traffic must go round trip Bandwidth: Each new copy streamed for each additional DV client = branch WAN bandwidth overruns Display Protocol Virtualized Virtualization Aware Collaboration Workplace Network Virtualized Data Center Current display protocols are opaque to network services The key to applying services is to separate the flows 16
Video Source Video processed on HVD causing bandwidth and server compute overload Branch Office End-users see pixelization as media is rendered from the data center Branch Router E1 Increasing bandwidth might not help Data Center Campus End-users experience no pixelization on LAN 17
Branch Office Video Source Branch Router E1 Routing Protocol Data Center Protocols in the virtual desktop environment appear monochrome to QoS Lack of flow differentiation prevents prioritization within a display protocol stream Video Display Protocol Video stream competes with other flows in class (e.g.: CIFS, SAMBA or NFS, ) 18
Hairpin Effect causing undesirable results Data Center Virtual Desktop Signalling (SIP) CUCM Signalling (SIP) Display Protocol Media Flow WAN Thin Client Monolithic data flows Voice/Video in the display protocol Media flow goes all the way back to data center and back Heavy processing on virtual desktop in data center Bandwidth explosion Display protocol and possible endpoint become unstable Virtual Desktop Media Flow Display Protocol Thin Client 19
Supported setup for Cisco VXI Phase Two Data Center Virtual Desktop Signalling (CTI) CUCM Signalling (CTI) Display Protocol UC Signalling WAN Zero Client Media Flow Zero Client Unified Communications using desk phone control which allows RTP (UC media voice/video ) to flow outside the display protocol Signaling of CUPC back to CUCM is still inside the display protocol QoS can be used on media Path is optimized Virtual Desktop UC Signalling Display Protocol Location Awareness and Emegency, Codex selection, CAC, SRST Reference, Time Zone, Dial-Plan 20
Data Center VM-User 1 Desktop Virtualization Protocol Future Solution User interacts with soft client on virtual desktop in data center Signalling (SIP) CUCM Signalling (SIP) Media Flow VXI Cloud Signalling (SIP) Signalling (SIP) Thin Client VXC Communicator Media Flow VDI communicator provides local client-to-client streaming of video / voice Benefits Bandwidth reduction Reduced processing in data center, increase in VM blade density High quality voice and video VM-User 2 Media Flow Desktop Virtualization Protocol Thin Client VXC Communicator Network handling real-time data (QOS, CAC) Eliminates hairpinning of media through data center 21
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UC suite (Cisco TelePresence, Cisco Quad, Cisco Show and Share, Cisco WebEx, Presence etc.) 802.11a/b/g/n Wi-Fi for On/Off Campus Mobility 3G/4G data services Seamless transition wired to wireless Battery 8 hours normal usage Docking station at desk 23
High-definition 720p video Cisco TelePresence Interoperability Dual Independent Displays Keyboard & Mouse (USB, Bluetooth) Wired connection with PoE Virtual Desktop Video Out HDMI/Display Port USB/BT Cisco Cius Keyboard/ Mouse 24
Introducing the Cisco VXC 2100 and 2200 Support for PCoIP and ICA/RDP display protocols Cisco VXC 2100 is a compact device that integrates with the Cisco Unified IP Phone 8900 and 9900 Cisco VXC 2200 is a standalone unit Both units support PoE (Power over Ethernet) Cisco VXC 2200 Cisco VXC 2100 25
2010 Cisco and/or its affiliates. All rights reserved. 26
Deployments have been based on single application MCS servers Virtualization allows multiple Virtual Machines to access common HW resources Solution capacity and deployment models do not change Building blocks change from physical servers with CPU/MEM/HDD to VMs The number of required servers remains the same, but the HW will vary Quicker deployment, backup 27
MCS 7816/25/28 UCS 5108 Chassis Virtual UC Apps MCS 7835/45 UCS C210/C200 Hypervisor UCS B200 with CNA FEX UCS 2100 Fabric Extender UCS 6100XP Fabric Interconnect Switch 10/100/1GbE 10GbE FC Catalyst PSTN/ PTT LAN Nexus SAN FC MDS Management: - UCS Manager - CIMC for UCS - vsphere/vcenter Rest of Intranet Storage Array (for UC Apps) 28
Blade Form Factor Rack-Mount Form Factor Processor & Memory Intensive Computing; Mission Critical RAS UCS B440 M1 Blade UCS B230 M1 Blade UCS C460 M1 Intel Nehalem EX 4 Socket, High Memory Intel Nehalem EX 2 Socket, High Memory Memory Intensive Computing UCS B250 M2 Blade UCS B250 M1 Blade UCS C250 M2 UCS C250 M1 M2 = Intel Westmere EP 2 Socket, High Memory UCS B200 M2 Blade UCS C210 M2 M2 = Intel Westmere EP M1 = Intel Nehalem 2 Socket General Purpose Computing UCS C200 M2 M2 = Intel Westmere EP 2 Socket 29
2010 Cisco and/or its affiliates. All rights reserved. 30
Reflektuje dlouhodobé zkušenosti ze vztahu se zákazníky Kdo to je a co dělá? (typické požadavky zákazníků - výňatek) - může vykonávat svěřené úkoly = vše je dostupné a bez výpadků - může pracovat odkudkoliv = naplňuje pojem mobilita uživatele - komunikuje efektivními prostředky = využívá systémy sjednocené komunikace Jakou k tomu potřebuje infrastrukturu? (trendy směřující k naplnění požadavků - výňatek) - virtuální řešení není pro každého, ale pomůže v dosažení strategických cílů - vysoce dostupnou, jasně pojmenovaným katalogem služeb a garancí SLA - moderní, centrálně řízenou bezdrátovou síť, jako základ mobility uživatele 31
Reflektuje potřebu sjednocené komunikace a trend ve využití business tabletů ( Cisco CIUS ) Jednotné a univerzálně využitelné prostředí pro různá mobilní zařízení Přístupová platforma pro zobrazení a práci s daty MOTTO : Mnoho firem ví, kolik nákladů je stojí výpadek serverových systémů nebo datových úložišť, investují do jejich vysoké dostupnosti a možnosti rychlé obnovy dat, velmi často však zapomínají na to, co stojí mezi daty a jejich zobrazením na koncových stanicích... komunikační infrastrukturu! 32
V Implentace HA Adresářové služby Call Manager DC -Lokalita A Presence Server DC -Lokalita B WWW V Kontaktní centrum WWW Wireless kontroler 33
Implentace HA WWW V WWW V DC -Lokalita A DC -Lokalita B 34
Konsolidace HW prostředků menší spotřeba el. energie, menší prostoru v racku ( housing ) méně HW maintenance Zvýšení dostupnosti a garance SLA HA implementace rychlejší zálohování a obnova, Efekt při více platformním nasazení Různé VM ( Cisco, MS ) 35
Virtualization is a trend (Desktop, Network, DC) Desktop virtualization - Potential impact in user experience - Active participation of UC from day 1 New compact integrated desktop clients Cisco VXI - End to End solution - Addressing the User Experience challenges - UC virtualization in DC reality - Efficient solution - Quicker deployment 36
Desktop Virtualization http://www.cisco.com/go/vxi Cisco Clients http://www.cisco.com/go/cius http://www.cisco.com/go/vxc UC on UCS http://www.cisco.com/go/uc-virtualized 37
Twitter www.twitter.com/ciscocz Talk2Cisco www.talk2cisco.cz/dotazy SMS 732 488 666 Zveme Vás na Ptali jste se v sále TAURUS, 17:45 18:30 38
COL2 Prosíme, ohodnoťte tuto přednášku. 39