Specifications | White Paper: EMC Virtual Infrastructure for Microsoft Applications enabled by Symmetrix VMAX and Micr\ osoft Hyper-V EMC Solutions Group |
Business section |

Specifications | White Paper: EMC Virtual Infrastructure for Microsoft Applications enabled by Symmetrix VMAX and Micr\ osoft Hyper-V EMC Solutions Group |
Business section |
Specifications | White Paper: EMC Virtual Infrastructure for Microsoft Applications enabled by Symmetrix VMAX and Micr\ osoft Hyper-V EMC Solutions Group |
Outline | Executive summary Business case Solution overview Consolidated applications storage design on EMC VMAX Overview Application environment highlights General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP FAST VP theory General design guidelines FAST VP Applications building block design on Symmetrix VMAX Backup and restore of Microsoft applications using Replication Manager Performance testing and validation results Conclusion Appendix References |
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Content | EMC Automated Performance Optimization for Microsoft Applications EMC VMAX, FAST VP, and Microsoft Hyper-V 68 Counter Target Test 1 results Test 2 results MSExchange Database\I/O Database Reads Average Latency <20 ms 9.50 ms 10.07 ms MSExchange Database\I/O Database Writes Average Latency <20 ms 2.77 ms 2.961 ms Avg MSExchangeIS\RPC Requests <70 0.987 1.298 Avg MSExchangeIS\RPC Averaged Latency <10 ms 1.94 2.267 Microsoft SQL Server The average SQL Server processed over 1,000 user requests per second over the duration of the 8-hour duration test. Microsoft’s acceptable user response times were comfortably met at all times. Note This 8-hour test was configured with realistic user values and user load concurrency counts. The aim of this test was not to run the SQL Server at maximum performance capacity, but to run the server at capacity with acceptable headroom for additional operations. The TPC-E-like user workload translated to the SQL Server CPU utilization of 70.9 percent on SQL01, 29 percent on SQL02, and two percent on SQL03, The activity level was very low, and memory and I/O subsystem suffered no pressure and had ample headroom. Average test response time stayed well within acceptable parameters. Throughout the duration of the 8-hour load tests, SQL Server performance remained stable. Due to checksum activity, some peaks and dips were recorded. Performance results and analysis Hyper-V and virtual machine performance results The Hyper-V and the virtual machine CPU utilization counters were analyzed. Figure 20 represents the CPU utilization on the SQL Server, and SharePoint server virtual machines during the daytime hours of the test. During this test, TPC-E and VSTS tests ran at a very heavy load for the eight hours. • The SQL Server virtual machines averaged approximately 27.5 percent CPU utilization with spikes up to 43.9 percent. |
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