Wireless Power Transfer
Scope & Guideline
Connecting Ideas to Energy: The Journal of Wireless Power Transfer
Introduction
Aims and Scopes
- Wireless Power Transfer Systems:
The journal covers various architectures and designs of wireless power transfer (WPT) systems, including inductive and resonant coupling mechanisms. - Energy Efficiency and Optimization:
Research on optimizing the efficiency of energy transfer and storage systems is a core focus, employing advanced algorithms and modeling techniques. - Applications in Diverse Fields:
The journal explores applications of WPT in sectors such as biomedical engineering, smart grids, and robotics, highlighting interdisciplinary approaches. - Emerging Technologies and Techniques:
The journal encourages contributions on emerging technologies such as intelligent algorithms, machine learning, and IoT integrations in WPT systems. - Sustainability and Environmental Impact:
Recent papers indicate a growing interest in sustainable practices surrounding WPT, examining its environmental implications and contributions to energy conservation.
Trending and Emerging
- Sustainable Wireless Power Transfer:
There is an increasing focus on sustainable practices within wireless power transfer, with studies examining its role in promoting environmental health and energy efficiency. - Advanced Optimization Techniques:
The application of sophisticated optimization algorithms, such as whale optimization and reinforcement learning, is trending, indicating a shift towards more intelligent and adaptive WPT systems. - Integration with IoT and Smart Technologies:
Research exploring the integration of WPT systems with IoT technologies is emerging, emphasizing enhanced control and monitoring capabilities in energy systems. - Biomedical Applications:
The exploration of WPT systems for biomedical applications is gaining momentum, particularly in enhancing the efficiency of power transfer to medical implants. - Dynamic and Mobile WPT Solutions:
There is a growing interest in dynamic wireless power transfer solutions, particularly in robotics and autonomous systems, reflecting the need for mobile energy solutions.
Declining or Waning
- Traditional Energy Transfer Methods:
There has been a noticeable decrease in publications focusing on conventional energy transfer methods, as research shifts towards more innovative and efficient WPT technologies. - Basic Theoretical Models:
The emphasis on basic theoretical models without practical applications is waning, with a greater preference for studies that integrate practical implementations and real-world scenarios. - Static Applications:
Research on static applications of WPT systems is becoming less frequent, as there is increased interest in dynamic and mobile applications, particularly in robotics and transportation.
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