Automated team selection and compliance checking in business processes

Author(s):  
Cristina Cabanillas ◽  
Manuel Resinas ◽  
Jan Mendling ◽  
Antonio Ruiz-Cortés
Author(s):  
Marwane El Kharbili ◽  
Elke Pulvermueller

Business process management (BPM) as a paradigm for enterprise planning and governance is nowadays a core discipline of information systems management. Growing up from the first process re-engineering initiatives in the 1980’s, BPM technologies now seek to span all of the organizational silos of enterprises, and also expand vertically from the strategy layers where visions and goals are defined to the lower data transaction layers. Ensuring the compliance of processes to the guidance and control provided to the business by regulations is an obligation to every enterprise. In this work, we motivate the need for automation in compliance management and propose the use of policies as a modeling concept for regulations. We introduce the CASE model for structuring regulatory compliance requirements as policies. Policies shall allow to model regulations at abstraction levels adequate to implementing platform independent mechanisms for policy verification. We describe the CASE model and explain how it can be used to structure and model policies extracted from regulations. This chapter also defines a policy modeling ontology that we propose as a language for formally modeling CASE policies. The basic CASE model and the corresponding policy modeling ontology support compliance of enterprise processes to regulations by enabling automation to compliance checking (verification). The utilization of the CASE method as well as the policy ontology is showcased using an example of resource access control in business processes.


Author(s):  
Stephan Haarmann ◽  
Adrian Holfter ◽  
Luise Pufahl ◽  
Mathias Weske

AbstractBusiness processes are often specified in descriptive or normative models. Both types of models should adhere to internal and external regulations, such as company guidelines or laws. Employing compliance checking techniques, it is possible to verify process models against rules. While traditionally compliance checking focuses on well-structured processes, we address case management scenarios. In case management, knowledge workers drive multi-variant and adaptive processes. Our contribution is based on the fragment-based case management approach, which splits a process into a set of fragments. The fragments are synchronized through shared data but can, otherwise, be dynamically instantiated and executed. We formalize case models using Petri nets. We demonstrate the formalization for design-time and run-time compliance checking and present a proof-of-concept implementation. The application of the implemented compliance checking approach to a use case exemplifies its effectiveness while designing a case model. The empirical evaluation on a set of case models for measuring the performance of the approach shows that rules can often be checked in less than a second.


2013 ◽  
Vol 87 ◽  
pp. 1-18 ◽  
Author(s):  
Ioan Alfred Letia ◽  
Adrian Groza

2013 ◽  
pp. 218-243
Author(s):  
Marwane El Kharbili ◽  
Elke Pulvermueller

Business process management (BPM) as a paradigm for enterprise planning and governance is nowadays a core discipline of information systems management. Growing up from the first process re-engineering initiatives in the 1980’s, BPM technologies now seek to span all of the organizational silos of enterprises, and also expand vertically from the strategy layers where visions and goals are defined to the lower data transaction layers. Ensuring the compliance of processes to the guidance and control provided to the business by regulations is an obligation to every enterprise. In this work, we motivate the need for automation in compliance management and propose the use of policies as a modeling concept for regulations. We introduce the CASE model for structuring regulatory compliance requirements as policies. Policies shall allow to model regulations at abstraction levels adequate to implementing platform independent mechanisms for policy verification. We describe the CASE model and explain how it can be used to structure and model policies extracted from regulations. This chapter also defines a policy modeling ontology that we propose as a language for formally modeling CASE policies. The basic CASE model and the corresponding policy modeling ontology support compliance of enterprise processes to regulations by enabling automation to compliance checking (verification). The utilization of the CASE method as well as the policy ontology is showcased using an example of resource access control in business processes.


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