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Adaption of Ontologies in Business Process Management - Essay Example

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The paper "Adaption of Ontologies in Business Process Management " states that an ontology defines a typical jargon for research workers and other specialists who must reveal data in an area. It is an official distinctive explanation of ideas in a domain of dialogue…
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Adaption of Ontologies in Business Process Management
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Running Head: Business Process Management Adaption of ontologies in business process management of the of the Adaption of ontologies in business process management Introduction Business Process Management (BPM) is the field of garnering, modeling, enacting, and managing all routines going on in a setting describing the business in an incorporated way. A number of languages, frameworks, and equipment that cater to one or lots of the outlined elements can be found. Companies do not merely possess business methods, they also happen to be governed by stipulations. Not getting compliant to restrictions decreases the added-value company processes signify for the company, e.g. by means of non-optimal positioning with (i) Quality specifications, (ii) Business associate service contracts or (iii) Non-identified safety blunders. History An ontology defines a typical jargon for research workers and other specialists who must reveal data in an area. It is an official distinctive explanation of ideas in a domain of dialogue (Borst, 1997). At present, there is absolutely no specific strategy to develop an ontology. Nevertheless, there is certainly a couple of steps to ontology developed identified as follows: 1) Figure out the domain and realm of the ontology; 2) Think about reusing existing ontologies; 3) Enumerate essential terms in the ontology; 4) Define the lessons, i.e. the depiction of widespread terms accustomed to indicate what is common actually and the class hierarchy; 5) Define the attributes of the classes-slots (e.g. the class (principle), for example, the agitation term may have the slot (property) similar to stress level); 6) Define the aspects (values) of the slots (e.g. high/intermediate/down degree of agitation); 7) Produce cases that is to generate examples of classes in the hierarchy. (Clark, 1997) Semantic Business Process Management: The study section of Semantic Business Process Management (SBPM) (Hepp et al, 2005) gives the ideas and systems of the Semantic Web to BPM. Thus, it seeks to attain an increased amount of automation relating to the querying, treatment, and control of business processes and the utilization and growth and development of related process information. This needs a machine-accessible depiction of the terms employed in process details and inquiries. In the background of process modeling, this implies that the terms in procedure models are theoretically explained with ideas of an ontology. Making use of these semantic annotations an automatic arrangement of the control flow of process models is achievable as presented in Henneberger et al (2008). Effect of ontologies on Business process Modeling and Execution: The IT view of a Business Process Management relies upon a prescriptive, executable kind, focusing at a operating software program (driven by the service-oriented paradigm), the company view of a BP continues to be at an automatic stage, with versions separate from the root engineering. For its profound dynamics, a business model is extremely user friendly, simple to be examined and grasped by people, however simultaneously shows a bit of ambiguity, incompleteness, displaying frequently inner contradictions. The dichotomy between business and IT strategies that corresponds to a significant issue in business automation, continues to be resolved by the Model-Driven Architecture (MDA) strategy suggested by the OMG. The MDA strategy is setup in three primary stages, with a development of modelling routines that move from a company point of view (CIM: Computational Independent Modeling) to software model viewpoint (PIM: Platform Independent Modeling) and, lastly, gets to the execution viewpoint (PSM: Platform Specific Modeling.) (Henneberger, 2008) The MDA seems now as one of the most appropriate plans geared toward bridging the business community with the IT globe. With its advancing modeling structure, it deals with one vital issue resting in the various character of enterprise models and IT models. Nevertheless, MDA continues to be in an initial phase and at present it primarily corresponds to a basic recommendation structure with a minimum real consequence. In parallel, there are intense studies routines directed at creating particular techniques and equipment, effective at offering an even and logical advancement of versions from the company point of view to the specialized one. (Chung, 2003) To build up the image, one concept is to flow upstream the instance where official methods are presented. Nevertheless, it is rather difficult to enforce new, official languages to entrepreneurs. Consequently, the answer is to “inject” proper semantics in current business modelling strategies. In this manner, business people keep using their modelling techniques, acquiring in parallel an official assistance to these kinds of well-known alternatives. Semantic annotations take help of ontologies. Nevertheless, present semantic systems are extremely fitted to model static setups, e.g., the data section of a business model. The semantic enhancement of the behavioral part continues to be an open research concern, regardless of present stimulating outcomes. (Brockmans, 2006) In the literature, a number of languages for BP are actually suggested. These kinds of languages can be sketchily accumulated in three substantial categories. • Descriptive languages: They have been developed within the company tradition, but they deficit in a methodical formalization essential to be prepared by an insinuation engine. In this cluster it is clear that diagrammatic languages, for example EPC, IDEF UML-Activity Diagram, and BPMN. Additionally UML-Activity Diagram may also be presented here, even though initially introduced for other reasons. The BP described with these languages are primarily developed for inter-human conversation and are not instantly executable by a computer system. • Procedural languages: These are completely executable by a pc but are not instinctive as much as necessary for being employed by human beings, and deficiency of a declarative semantics, essential to be prepared by a logic engine. Example of these types of languages are BPEL and XPDL. (Henneberger, 2008) • Professional languages: They are influenced by definite mathematical fundamentals, but are challenging to be recognized and are typically not approved by entrepreneurs. In this set we come across languages for example PSL, Pi-Calculus, and Petri-Nets. Lastly, there are the ontology-based procedure languages, for example OWL-S, WSDL-S, WISMO, and Meteor-S. This category of languages possess a broader range, targeting at modeling semantically abundant procedures in an ontological background, and have been considered not right away linked with the corporate environment. (Clark, 1997) Research into surfacing Web Service architectures is more and more placing business process management as a primary component to the development of next generation web applications. The use of business process engines and business process themes allow application designers and business professionals a key focus for system functionality without the requirement to concentrate on the broader technical architectures. The use of Web Services to produce loosely coupled business processes relies on orchestration to get the desired application functionality. Typically, this is performed by the coupling together of stable services in a static workflow. However in dynamic environments the services are often non static and often change state and characteristics. Or the environment can be unstable and as a result the workflow has to adapt dynamically to changing execution conditions. (Berardi, 2006) Emerging Web Service environments are increasingly embracing mobile devices, personal data and embedded low level functions. These service types stretch the current limits of BPM. The emerging needs of these computing environments place complex demands on the business process. In a typical business process, application change can be managed by adding loops to the process or switching between templates. In more dynamic environments, services have to be renegotiated and workflows altered during execution. (Hepp, 2007) Switching the process model on run-time (e.g. placing a loop or a fork) is a typical research aspect (without major implications on real-world BPM systems). While run-time adaptation of business processes based on dynamically transforming settings and resources. In a business environment, transformations are an ever recurring phenomenon. For example, agility of the market, new client demands, or organizational reshaping (e.g. because of mergers, acquisitions or outsourcing) impact the manner of carrying out business and hence, always influence the layout of business processes. Adaptability to transformations and rate of innovation are a pre-condition for business process management. Hence, a business process management approach ought to be able to cater to these variations in the model as and whenever they take place. (Brockmans, 2006) Service oriented architectures in relation to BPM: These days, a lot of companies are specializing in the way to build up BPM to be able to boost efficiency, decrease expense, and look for dependable affiliation so as to keep up in the rigorous e-Business marketplace. There are various capabilities and fads in the present BPM; routine activities are programmed by computer systems for greater pace and trustworthiness; business procedures and services are prolonged across various institutions; business processes require the agility to be in a position to instantly adjust to customers’ requirements and market situations, such as including new clients, associates, or vendors utilized in procedures; and business features are desired to be quickly shareable at a little granularity amount. Business conjunction is growing in arranging, designing, production, and service. This type of partnership, referred to as “collaborative business,” put together business procedures between associates through spreading information and solutions electronically. The blend of business process management and service-oriented architecture is going to assist IT specialists and business clients. A service-oriented architecture can never be helpful without a business process management system. BPM is a primary component of the service-oriented development of applications (SODA). It is commonly used to put together new programs, simply because SOA and BPM function hand-in-hand in this scenario as genuine associates. Every business process is modeled as a collection of specific processing steps. These steps are usually used as solutions within the business. BPM works well for developing process versions; process automation, in the type of invoking solutions. SOA reveals services, and BPM, which needs process stream accomplishment, uses services. SOA opens a huge stock of services for BPM to "bond together" into an extensive flow. No matter whether this is composite or not, this circulation deals with crucial business processes. Automate procedures across business services: Procedures that must carry out across functions tend to be hampered by deficiencies in interoperability of root systems. SOA services do away with these kinds of troubles by provisioning regular interfaces to automate procedures. Automate modern procedures with better speed: With a technologically advanced SOA that reveals business features as services, cutting edge processes can be immediately executed by simply cabling process steps to the right services. (Hepp, 2007) Alter processes instantly as a reaction to business requirements: With carelessly combined SOA solutions, re-wiring a procedure step from one program to another can be carried out with a bare minimum of influence to the remainder of the process and can actually assist to examine the possibility of suggested adjustments. Stay away from expensive business mistakes: Businesses may reduce hazards through the use of verified SOA services to put into practice business procedures which are strong and less at risk of mistakes. (Berardi, 2006) Concentrate on enhancing business processes—not integrating systems: SOA services abstract away the intricacy of root systems, making it possible for BPM to concentrate exclusively on enhancing procedures. Line up IT savings with business requirements: With an SOA, it is uncomplicated to prioritize constructing services required for crucial business procedures and to setup service-level KPIs. That optimizes not just the orientation with business requirements but additionally the return on IT ventures. Adjust running business procedures dynamically: With an SOA, it is easy to setup a level of mediation to dynamically complement the procedure step to the appropriate service and enforce any specific SLA depending on the background. Acquire further distinctness into your enterprise: Enacting business processes on an SOA basis signifies the business services are implemented as business deals run through the method. By putting probes on these types of business services to gather service functionality and other metrics, businesses can achieve real-time awareness into their company that otherwise could be difficult to attain. Take on cloud-based services quicker: If anyone is willing to instantly innovate their processes by including a Software as a Service (SaaS) program or a professional Application Program Interface (API) from a cloud service provider? With the suitable SOA system available, both internal and external solutions are utilized the similar way at the process-step stage. Provide business processes by means of mobile devices: With an SOA, businesses are able to introduce required features through a mediation surface between mobile functions and internal systems. This process can help maintain the credibility of internal systems and offers an effective way to enforce additional level of service demands. References Berardi, D.; De Giacomo, G.; Mecella, M.; Calvanese, D.(2006): Automatic Web Service Composition: Service-Tailored vs. Client-Tailored Approaches. In: AISC2006. Brockmans, S.; Ehrig, M.; Koschmider, A.; Oberweis, A.; Studer, R. (2006): Semantic Alignment of Business Processes. In: ICEIS 2006. pp. 191-196 HENNEBERGER, M., HEINRICH, B., LAUTENBACHER, F. and BAUER, B. (2008): Semantic-based planning of process models. In Proceedings of Multikonferenz Wirtschaftsinformatik (MKWI). HEPP, M., LEYMANN, F., DOMINGUE, J., WAHLER, A. and FENSEL, D. (2005): Semantic business process management: A vision towards using semantic web services for business process management. In Proceedings of IEEE ICEBE, Beijing,China, 535–540. HEPP, M. and ROMAN, D. (2007): An ontology framework for semantic business process management. In Proceedings of Wirtschaftsinformatik, Karlsruhe, Germany. KOLIADIS, G. and GHOSE, A. (2007): Verifying semantic business process models in inter-operation. In Proceedings of IEEE SCC 2007, Salt Lake City, Utah, USA; July, 913. Chung, R. L., Rainer, R.K., Lewis, B.R. (2003). The impact of Information Technology Infrastructure Flexibility on strategic alignment and applications implementation. Communications of the Association for Information Systems, 11. Clark, C.E., Cavanaugh, N.C., Brown, C.V., Sambamurthy, V. (1997). Building Change-Readiness Capabilities in the IS Organization: Insights from the Bell Atlantic Experience, MIS Quarterly, 21(4), 425-455. Read More
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