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Configuration language

The repository supports generation for a modified configuration. If an application is removed, the same identifiers are used in the ubbconfig file for the remaining applica- tions.

The REPOSITORY statement is optional. If this statement is not specified, no memory is used in the generation.

Example REPOSITORY ( "repository" )

START_VALUE

The START_VALUE statement defines the first generation number that is used in the gen- eration of identifiers in statements for the ubbconfig file. This results in unique reproduc- tions of the OsId and LayerId pair in these identifiers. By specifying different start values, different subsystems that can be combined can be generated.

The START_VALUE statement is optional. If this statement is not specified, generation of the identifiers starts with the value 1.

If a repository exists, it is used to ascertain the generation numbers, i.e. the START_VALUE statement is ignored.

Example START_VALUE ( 240800312 )

SYSTEM

The SYSTEM keyword must always be the first keyword in the description. The current description is enclosed in braces, i.e. SYSTEM {...}.

The flag DEBUG can be specified as an option: SYSTEM(DEBUG){...}. Scripts for Win- dowsNT, for example, will then be generated with ECHO ON.

TA_APPLICATION

The TA_APPLICATION statement describes a transaction-monitored application on the cur- rent host (HOST). It comprises the following components:

TP application name (LETTER, max. 30 characters)

OsId of the application (NUMBER, 1 ... 32767)

LayerId of the application (NUMBER, 1 ... 32767)

User-friendly name of the application (LETTER)

Customizing statements (MAX and OPENINFO) are permitted after the TA_APPLICATION description of a server.

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Siemens V 4.0 manual 163

V 4.0 specifications

Siemens V 4.0 is an advanced digital platform designed to enhance operational efficiency and streamline processes in various industries. It embodies the principles of Industry 4.0, leveraging cutting-edge technologies to create a more connected, intelligent, and automated manufacturing environment. This platform integrates data-driven insights and advanced analytics to facilitate informed decision-making and improve productivity.

One of the main features of Siemens V 4.0 is its ability to provide end-to-end visibility across the manufacturing value chain. By connecting machines, production lines, and supply chains through the Internet of Things (IoT), Siemens V 4.0 enables real-time monitoring and control. This connectivity allows companies to identify bottlenecks, reduce downtime, and enhance overall operational performance.

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Additionally, Siemens V 4.0 supports advanced simulation and digital twin technology. Through the creation of virtual models of physical assets, manufacturers can simulate different scenarios, identify risks, and optimize design processes before implementation. This capability accelerates innovation while minimizing waste and resource consumption.

Another important characteristic of Siemens V 4.0 is its scalability. The platform can be tailored to meet the unique needs of various industries, from automotive to pharmaceuticals. This flexibility ensures that companies of all sizes can leverage its capabilities, driving global competitiveness.

In conclusion, Siemens V 4.0 is revolutionizing the manufacturing landscape through its comprehensive suite of features, including IoT connectivity, AI-driven insights, automation, and digital twin technology. By adopting this platform, businesses can transition toward more efficient and sustainable operations, ultimately preparing them for the future of industrial production.