Kongzhi yu Juece/Control and Decision (ISSN:1001-0920) is a monthly peer-reviewed scopus indexed journal originally founded in 1986. It is sponsored by the Ministry of Education, china and Northeastern University, china. Kongzhi yu Juece/Control and Decision (ISSN:1001-0920) has always adhered to the correct purpose of running the journal, and has been committed to gathering and disseminating excellent academic achievements, inspiring technological innovation, and promoting the development of disciplines in my country.Aiming at major national needs and international frontiers, this journal has published a large number of original and high-level research result. The journal was selected into the "China Science and Technology Journal Excellence Action Plan Project" in December 2019.In the future, it will strive to build an open innovation, collaborative integration.
One of the most common defects observed in prestressed hollow core concrete slabs is cracking. Large cracks can develop in concrete structures as a result of differential settlement of the support when installing the precast slab or overloading. It is necessary to rehabilitate or reinforce distressed elements in order to recover their structural capacity. The literature mentions a variety of methods for strengthening and rehabilitation the various structural components of prestressed hollow core concrete slabs. This study looks into the rehabilitation of a one-way prestressed hollow-core concr
In modern technological systems, embedded software assumes a vital role, necessitating unwavering quality and reliability. Traditional testing methods, hindered by efficiency and coverage challenges, have spurred the quest for more potent alternatives. This study delves into the domain of automated testing within embedded software development, unveiling its advantages, methodologies, and impact on software quality. Through an exhaustive review spanning functional, interface, UI, and performance tests, coupled with empirical validation through experimental unit testing employing automated tools
Differential-algebraic equations (DAEs) are constraint dynamical systems combining differential and algebraic relationships. They pose analytical and computational challenges but often arise when modeling engineering systems. This paper overviews discretization techniques which formulate DAEs into stable numerical representations amenable to solution approximation. Core backward Euler and implicit Runge-Kutta schemes are described, along with enhancement strategies like index reduction and adaptive stepping. Example case studies demonstrate applying such discretization to simulate electrical c
There is an always challenging to make decision by designer in determining a suitable product design visualization. Market Consumers evaluate products based on functionality as well as price, appearance, and the way they look. In the context of consumer products, the aim of this research is to explore the complex relationship between these four components. One of the main factors that influence a consumer's decision to purchase a product is how it looks. Products with attractive designs and appealing aesthetics have the potential to attract market attention, but for the product to meet custome
Due to the havoc cause to ecosystems, human lives, and property, wildfires are a major environmental concern on a worldwide scale. Using Unmanned Aerial Vehicles (UAVs) and satellite-based technologies are the two main approaches that are the subject of this paper's review of the research on wildfire detection strategies. UAV-based detection systems provide early wildfire identification and real-time monitoring by utilizing state-of-the-art technology like computer vision and deep learning. Numerous studies demonstrate the effectiveness of Unmanned Aerial Vehicles (UAVs) fitted with a range of