Purpose -The purpose of this paper is to propose meta-synthetic ideas and knowledge asset management approaches to build a comprehensive strategic framework for Beijing City in China. Design/methodology/approach -Methods include a review of relevant literature in both English and Chinese, case studies of different types of support frameworks in the UK, the USA, Singapore and Hong Kong, formulation of a meta-synthetic support framework for Beijing City, and justification of its application to policy development by various studies. Three stages of meta-synthetic support frameworks are proposed. Findings -The suggested meta-synthetic support frameworks are highly appropriate for the optimisation of, and innovation in, management and services systems of government information resources. The proposed knowledge asset management approaches offer significant practical value in improving the competence and capabilities of service-oriented government, providing a set of solutions to identified, urgent problems, including a joint administration system for creating value, a release and distribution management system for sharing and protecting value, and a licensing and authorisation management system for adding value. Research limitations/implications -This paper focuses on the formulation of a theoretical support framework for the reuse of government information resources and the justification of its effectiveness to guide policy development at strategic level. Case studies of its application at operational level are ongoing and will be discussed in future papers. Practical implications -The suggested meta-synthetic support frameworks support the efficiency, effectiveness and economy of intelligent traffic administration, good governance of value-added services based on government information resources, and intellectual activity around city travel and traffic. The study has wide implications for the improvement of service-oriented government performance, public satisfaction and the image of government. Originality/value -The paper presents the adaptation of meta-synthetic ideas and knowledge asset management approaches to collaboration, optimisation, innovation and compliance management issues in the reuse of government information resources. The advantages of different types of support systems and frameworks are integrated as a coherent whole for a strategic framework of legal, regulatory and standards support to China and Beijing.
This paper aims to disclose the evolutionary mechanism of banks' green credit and construction and demolition waste (CDW) recycling enterprises' green technology innovation behavior during the operation period of CDW recycling public–private partnership projects with absorptive capacity theory. The conclusions are as follows. First, the government subsidy coefficient has a positive effect on the evolution of banks to participate in green credit. Second, absorptive capacity and the level of collaboration have a positive effect on the evolution of CDW recycling enterprises to collaborative innovation. Third, CDW recycling enterprises' green technology innovation behavior interacts with banks' green credit participation strategy.
With the rapid development of the times, the application of the Internet of Things also develops rapidly, resulting in a linear increase in the data generated by the application. Nowadays, people’s needs for the forms and types of data are becoming more and more diversified, and the demand for the analysis and processing of Internet of Things data is only increasing. In order to meet the demand for data analysis of the Internet of Things, this article mainly introduces the design and implementation of the data analysis and processing software of the Internet of Things based on virtual reality. Realistic data analysis algorithms are applied to the data analysis function modules of the Internet of Things data analysis and processing software, and then the design of the data collection, data capture, and data analysis and processing functions of the Internet of Things data analysis and processing system is improved. Finally. The realization of the data analysis and processing software of the Internet of Things is carried out through different environments for and various aspects of software testing. The test results show that the realization rate of the software function is as high as 90%, and the data loss rate is reduced to 5%.
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