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ETAP Real-Time employs an open and extremely flexible architecture that allows seamless communication with almost any data acquisition (DAQ) system, providing a hardware-independent platform.
Configurable in a virtual environment using VMWare technology reducing the need of number of physical servers.
System availability is crucial to the reliable operation of a power management system. In addition to hardware redundancy and failsafe software features, ETAP Real-Time offers redundant client-server setup. Two levels of system redundancy are offered:
Centralized redundant architecture employs an active server with multiple standby servers. Upon failure of the primary active server, a standby server is promoted to the active state allowing for a seamless fail-over scheme. Should the failed server recover, the newly promoted active server remains as the primary system server.
Distributed redundant architecture is similar to that of the centralized redundant scheme with the additional capability to independently manage multiple systems. This scheme supports communication loss as well as physical isolation of multiple sites resulting in islanded systems. In such cases, a standby server at each location will automatically be promoted to an active state and resume managing its local system independently. After reestablishing the connection between the multiple sites, the system is returned back to the normal state with one active server resuming the management of the multiple sites.
The control centers are the heart of the operation of transmission, distribution, and large industrial facilities. Immediate recovery of operations in case of disaster is imperative. ETAP Real-Time architecture provides a seems less integration of multiple control centers. They can be configured to run in hot-hot configuration as well as hot-standby configuration. Automatic synchronization and startup as well as complete operation functionality at secondary control centers is configured.
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