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Markus Bohlin - One of the best experts on this subject based on the ideXlab platform.
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customer adapted maintenance plan camp a process for optimization of gas turbine maintenance
ASME Turbo Expo 2008 Gas Turbine Technical Congress and Exposition 9-13 June 2008 Berlin Germany, 2008Co-Authors: Mathias Warja, Pontus Slottner, Markus BohlinAbstract:Maintaining high levels of availability and reliability are essential objectives for many industries, especially those that are subject to high costs due to shutdowns of critical systems, e.g. gas turbines. To utilize these systems as effectively as possible, preventive maintenance must be optimized. Determining what is optimal is, however, a multi-variable task requiring detailed knowledge about the components in the system and their different damage mechanisms. These factors have always affected the condition of the gas turbine and maintenance actions, but only recently has it been possible to estimate and measure them correctly for individual components during operation. In the past, it was necessary to construct maintenance intervals from the most critical component (or components), requiring the highest maintenance frequency. An additional worst-case scenario margin was also necessary, taking into account factors such as possible load variation, differences in environment (affecting e.g. power turbine temperatures) and other sources of uncertainty. These uncertainties together have determined traditional maintenance planning, with maintenance packages each containing a set of maintenance activities for a set of components being predetermined and preplanned. With the new CAMP approach, the maintenance strategy is to reach a Retirement For Cause (RFC) strategy, where components are not replaced until a potential failure has been detected. This requires measurement techniques that can monitor how the gas turbine is operated, prognostics capabilities that foresee maintenance needs, and test methods that can determine the state of a component during maintenance events. One important part of CAMP is therefore a prognostic tool which tells us the condition, and therefore the maintenance needs, of individual components within the gas turbine. To handle this Information and efficiently make a preventive maintenance plan, software for gas turbine maintenance optimization has been developed. The software can not only calculate the most efficient point in time for a maintenance action, it can also adjust the maintenance plan to any customer’s specific demands. This paper describes the model, gathering and processing of Information, Risk Assessment performance and the result from an optimization which groups maintenance actions as a result of customer prioritized demands. It also describes the software layout and how it is used.Copyright © 2008 by ASME
Pavlo Skladannyi - One of the best experts on this subject based on the ideXlab platform.
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conducting a swot analysis of Information Risk Assessment as a means of formation of practical skills of students specialty 125 cyber security
Cybersecurity, 2020Co-Authors: Svitlana Shevchenko, Yuliia Zhdanovа, Svitlana Spasiteleva, Pavlo SkladannyiAbstract:This article examines the problem of implementing active teaching methods for students majoring in 125 Cybersecurity. The study of qualitative analysis of Information security Risks (IS) is presented on the example of studying the discipline "Risk Theory", namely the use of SWOT-analysis tools for Risk Assessment in the field of IS of small and medium business. General relevance and possibilities of using SWOT-analysis in the field of IS Risk to study the internal environment of the organization, its strengths and weaknesses with the definition of enterprise strategies in the external environment: confronting threats to secure Information (confidentiality, availability and integrity), and other its development. Based on scientific sources, the main research of the definition is analyzed: IS Risks, Risk analysis and their quality Assessment. The content and procedure of SWOT-analysis are described. Using forms of group work and active methods (trainings) in the educational process, the basic factors for SWOT-analysis of the virtual organization "Internet Provider" were created, methodical expert Assessments were conducted to identify the primary features of these factors, the analysis of the results was obtained.It is proved that the introduction of this technology in the educational process promotes the development of theoretical knowledge and the formation and development of practical skills of future specialists in Information and cyber security
Thomas Peltier - One of the best experts on this subject based on the ideXlab platform.
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Information security policies and procedures a practitioner s reference
1998Co-Authors: Thomas PeltierAbstract:Information SECURITY POLICIES AND PROCEDURES Introduction Corporate Policies Organizationwide (Tier 1) Policies Organizationwide Policy Document Legal Requirements Duty of Loyalty Duty of Care Other Laws and Regulations Business Requirements Where to Begin? Summary Why Manage This Process as a Project? Introduction First Things First: Identify the Sponsor Defining the Scope of Work Time Management Cost Management Planning for Quality Managing Human Resources Creating a Communications Plan Summary Planning and Preparation Introduction Objectives of Policies, Standards, and Procedures Employee Benefits Preparation Activities Core and Support Teams Focus Groups What to Look for in a Good Writer and Editor Development Responsibilities Other Considerations Key Factors in Establishing the Development Cost Reference Works Milestones Responsibilities Development Checklist Summary Developing Policies Policy Is the Cornerstone Why Implement Information Security Policy? Some Major Points for Establishing Policies What Is a Policy? Definitions Policy Key Elements Policy Format Additional Hints Pitfalls to Avoid Summary Asset Classification Policy Introduction Overview Why Classify Information? What Is Information Classification? Where to Begin? Resist the Urge to Add Categories What Constitutes Confidential Information? Employee Responsibilities Classification Examples Declassification or Reclassification of Information Records Management Policy Information Handling Standards Matrix Information Classification Methodology Authorization for Access Summary Developing Standards Introduction Overview Where Do Standards Belong? What Does a Standard Look Like? Where Do I Get the Standards? Sample Information Security Manual Summary Developing Procedures Introduction Overview Important Procedure Requirements Key Elements in Procedure Writing Procedure Checklist Getting Started Procedure Styles Procedure Development Review Observations Summary Creating a Table of Contents Introduction Document Layout Document Framework Preparing a Draft Table of Contents Sections to Consider Summary Understanding How to Sell Policies, Standards, and Procedures Introduction Believe in What You Are Doing Return on Investment for Security Functions Effective Communication Keeping Management Interested in Security Why Policies, Standards, and Procedures Are Needed The Need for Controls Where to Begin? Summary Appendix 1A Typical Tier 1 Policies Introduction Tier 1 Policies Employee Standards of Conduct Conflict of Interest Employment Practices Records Management Corporate Communications Electronic Communications Internet Security Internet Usage and Responsibility Statement Employee Discipline General Security Business Continuity Planning Information Protection Information Classification Appendix 1B Typical Tier 2 Policies Introduction Electronic Communications Internet Security Internet Usage and Responsibility Statement Computer and Network Management Anti-Virus Policy Computer and Network Management Personnel Security Systems Development and Maintenance Policy Application Access Control Policy Data and Software Exchange Policy Network Access Control Network Management Policy Information Systems' Operations Policy Physical and Environmental Security User Access Policy Employment Agreement Appendix 1C Sample Standards Manual Introduction The Company Information Security Standards Manual Table of Contents Preface Corporate Information Security Policy Responsibilities Standards Appendix 1D Sample Information Security Manual The Company Information Security Policy Manual General What Are We Protecting? User Responsibilities Access Control Policy Penalty for Security Violation Security Incident Handling Procedures Virus and Worm Incidents Malicious Hacker Incidents Information SECURITY REFERENCE GUIDE Introduction to Information Security Definition of Information What is Information Security? Why Do We Need To Protect Information? What Information Should Be Protected? Fundamentals of Information Security Introduction Information Availability (Business Continuity) Information Integrity Information Confidentiality Employee Responsibilities Introduction Owner Custodian User Information Classification Introduction Classification Process Reclassification Information Handling Introduction Information Labeling Information Use and Duplication Information Storage Information Disposal Tools of Information Security Introduction Access Authorization Access Control Backup and Recovery Awareness Information Processing General Right to Review Desktop Processing Training Physical Security Proprietary Software - Controls and Security Software Code of Ethics Computer Virus Security Office Automation Information Security Program Administration Introduction Corporate Information Systems Steering Committee Corporate Information Security Program Organization Information Security Program Baseline Organization Information Security Program Introduction Pre-Program Development Program Development Phase Program Implementation Phase Program Maintenance Phase Appendix 2A Information Handling Procedures Matrix Glossary Information Identification Worksheet Information Risk Assessment Worksheet Summary and Controls Worksheet Risk Assessment: Self-Assessment Questionnaire
Kevin M Bong - One of the best experts on this subject based on the ideXlab platform.
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conducting an electronic Information Risk Assessment for gramm leach bliley act compliance
2003Co-Authors: Kevin M BongAbstract:To obtain compliance with the new Gramm-Leach-Bliley privacy regulations, financial institutions need to identify vulnerabilities in electronic systems, assess likelihood and impact of threats, and assess sufficiency of controls to mitigate those Risks. In response to these new regulations, I developed a process for conducting an electronic Risk Assessment in accordance with GLBA, and used it to conduct a Risk Assessment for Johnson Financial Group. The process involves listing each technology and vendor service and ca...
Mathias Warja - One of the best experts on this subject based on the ideXlab platform.
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customer adapted maintenance plan camp a process for optimization of gas turbine maintenance
ASME Turbo Expo 2008 Gas Turbine Technical Congress and Exposition 9-13 June 2008 Berlin Germany, 2008Co-Authors: Mathias Warja, Pontus Slottner, Markus BohlinAbstract:Maintaining high levels of availability and reliability are essential objectives for many industries, especially those that are subject to high costs due to shutdowns of critical systems, e.g. gas turbines. To utilize these systems as effectively as possible, preventive maintenance must be optimized. Determining what is optimal is, however, a multi-variable task requiring detailed knowledge about the components in the system and their different damage mechanisms. These factors have always affected the condition of the gas turbine and maintenance actions, but only recently has it been possible to estimate and measure them correctly for individual components during operation. In the past, it was necessary to construct maintenance intervals from the most critical component (or components), requiring the highest maintenance frequency. An additional worst-case scenario margin was also necessary, taking into account factors such as possible load variation, differences in environment (affecting e.g. power turbine temperatures) and other sources of uncertainty. These uncertainties together have determined traditional maintenance planning, with maintenance packages each containing a set of maintenance activities for a set of components being predetermined and preplanned. With the new CAMP approach, the maintenance strategy is to reach a Retirement For Cause (RFC) strategy, where components are not replaced until a potential failure has been detected. This requires measurement techniques that can monitor how the gas turbine is operated, prognostics capabilities that foresee maintenance needs, and test methods that can determine the state of a component during maintenance events. One important part of CAMP is therefore a prognostic tool which tells us the condition, and therefore the maintenance needs, of individual components within the gas turbine. To handle this Information and efficiently make a preventive maintenance plan, software for gas turbine maintenance optimization has been developed. The software can not only calculate the most efficient point in time for a maintenance action, it can also adjust the maintenance plan to any customer’s specific demands. This paper describes the model, gathering and processing of Information, Risk Assessment performance and the result from an optimization which groups maintenance actions as a result of customer prioritized demands. It also describes the software layout and how it is used.Copyright © 2008 by ASME