Based on data, Indonesia ranks second in the list of the highest number of deaths due to natural disasters in the Asia-Pacific. Over the past 20 years, various natural disasters in this country have also caused economic losses of at least US$ 22.5 billion. This data means that disasters in various sizes and scales can occur and affect business. Disaster threats can occur in various forms, such as earthquakes, tsunamis, and floods. The threat of disasters will certainly disrupt and can have a fatal impact on the sustainability of business supported by information technology, the Ministry of Women's Empowerment and Child Protection (KPPPA) as a case study has an interest in this matter. One of the infrastructures that become an essential asset as the performance support capacity of the KPPPA is an information system and technology. System tools and Information technology are business process support tools at the KPPPA so that businesses have sustainability and can run well. Disasters that occur will undoubtedly have a fundamental impact that can damage the system and technology in the organization so that it will positively affect the course of business processes. For this reason, integrated planning is needed to handle the disaster so that business processes can continue to run as they should. One of the integrated plans is designing an Information Technology and Communication Disaster Recovery Plan (IT-DRP). This study discusses the NIST framework implementation as one of the IT-DRP models which have been applied in KPPPA.
Vocational High School (SMK) is established to prepare productive and competitive labor. Each SMK has the vision to be the best school that provides the best service to the stakeholders in generating the smart and competitive Indonesian people. The achievement of the mission would be succeeded by building an integrated information system at school. Currently, many SMKs do not have an information system development plan that suits the core business aspect as the primary drivers, such as the organizational issues, human resources, environment, information technology, and application development aspects. Therefore, the design of enterprise architecture model is needed to generate data architecture, application architecture, technology architecture, and direction of the implementation plan for the school. In this study, the authors designed the enterprise architecture for SMK that can build the achievement of school goals. The method used is Enterprise Architecture Planning (EAP). With the design of enterprise architecture, the development of information systems in SMK would have an appropriate and effective direction for achieving the goals.
The development of system model using the traditional System Development Life Cycle often faces big problems. One of the biggest problems is determining the process model. The existing requirements analysis method is not good enough in producing process model. There are many invalid process models, although they have gone through a series of observations on users. To deal with this, a 'soft' or human-centered method is therefore required. Problems are seen and determined from the point of view of the people involved in the problems. One method that can be used to solve problems is the Design Thinking approach. Design Thinking is the process of creating new ideas and innovative approaches that can solve user problems. This paper proposes the use of an alternative Design Thinking approach in conducting a requirements analysis on the development of Trash Bank system with an interactive qualitative approach. The approach taken is to integrate the concept of Design Thinking in the requirements analysis stage. Through collaboration model the Design Thinking to Requirements analysis, the resulting process model is more valid because the process of exploring the requirements becomes deeper, which is based on user experience. The exploration of user experience from Collaboration model will become the basis for process modeling. According to the approach taken, a more humane and more explored prototype of the system flow is obtained from the human attitude that is involved in the process.
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