BIT123 System Analysis For Implementation Management
Answer:
the actors are the Monitoring System, Grid, and the Plant. The Plant actor transfer power to the Grid actor. The Use Case of Mailing Service include the Use Case of Administrator, Technical Team and Data Server. The error log is the extended Use Case of the Mailing service that is handled by the Monitoring System. The Actor Monitoring System has taken actions on the Use Case of Smart Meter and the Error Log. The Error Use Case report is under the Actor of Monitoring System. Through System Disruption and Normal F
unction, the Smart Meter Use Case take action of Error and Normal Operations.
Storing Power
In the Use Case of the above diagram the actors are the Generation Unit and the Grid. The actor Generation Unit transfer power to the Use Case of Conversion Unit which is included in the Smart Meter. The Use Case of the Smart Meter monitors transferred power to the actor Grid. The Actor Grid transfer power further to multiple Use Case of Power Distributors which then further transfer the power to multiple Resident Units. Moreover, The Use Case of Smart Meter monitors power to the Use Case of the Battery which is the extending Use Case of Actor Generation Unit.
Purpose: The UML Activity diagram describing about the Report of the Error Log
Summary: The Smart Meter is the input parameter of the activity which is the initial action state. The Smart Meter checks for the errors, if it found no error the operation continuous and the plant again start functioning properly and the process continuous or else if the error is found then the report goes in the mailing process. Through the mailing process, the mail is further send to the Administrator, Technical Team and the Data Server. Finally, the Error Log is reported from all the three Activity.
Storing Power
Purpose: The UML Activity diagram describing about the Storing of the Power
Summary: The Power Generated is the input parameter of the activity which is the initial action state. The action flow to the activity where the power gets converted which is then transfer in the battery and in the grid. The power that is transfer to the battery is used for power generation and then again the Power is generated and the process goes on. On the other hand, the power that is transfer to the grid are trying to sell, if not sold it get stored in the grid or else if sold then the power is transferred to the Distributors and the process close with the complete storing and distributors.
Combined Set Of Business Objects Relevant To The Use Cases
The objects relevant to the use cases is the smart meter that monitors the whole process for errors and in case any is determined then it mails the error log and in the second case, it monitors for error in the process of transfer & storage. The list of attributes is as follows:
Use Case |
Trigger |
Assumption |
Precondition |
Post condition |
Mailing service |
Error Log |
Error in Operation |
Error report received |
Mail sent |
Smart Meter |
System Disruption |
Fault in System |
Normal Operation |
Send error notification |
Use Case |
Trigger |
Assumption |
Precondition |
Post condition |
Smart Meter |
Power transfer |
Power is transferred |
Power is generating |
Power stored |
Battery |
Power received |
Power can be stored |
Power receiving |
Supply power to generating unit |
Power distribution |
Power received from grid |
Power can be distributed |
Receiving power |
Distribute power |
The domain class model provides the classes of the system. This helps the developer to assume the classes of the system and form the data storage accordingly. The domain class model of the NPC system provides the classes of the system such as Home owners, power, report, installation and controller. The residential systems have been inherited from the home owners and the power class has to interfaces the battery and the inverter. The information is very important as this would provide the system with the information about the power storage facilities. The classes provide the information about the different aspect of the power storage and error logs.
Bibliography:
Amato, A., Martino, B. D., Scialdone, M., & Venticinque, S. (2016). Distributed architecture for agents?based energy negotiation in solar powered micro?grids. Concurrency and Computation: Practice and Experience, 28(4), 1275-1290.
Cengarle, M. V., Grönninger, H., & Rumpe, B. (2014). System model semantics of class diagrams. arXiv preprint arXiv:1409.6635.
Kabalci, Y., Kabalci, E., Canbaz, R., & Calpbinici, A. (2016). Design and implementation of a solar plant and irrigation system with remote monitoring and remote control infrastructures. Solar Energy, 139, 506-517.
Larson, B., English, D., & Purington, P. (2016). Microsoft SQL Server 2016 Reporting Services. McGraw-Hill Education.
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