1. This article presents an innovative self-powered active vibration control system that can be used to control large-scale structures.
2. The topology, working mechanism, and power flow of the proposed system are discussed in detail.
3. The feasibility and effectiveness of the system were validated through analytical, numerical, and experimental investigations.
The article is generally reliable and trustworthy as it provides a detailed overview of the concept, modeling, and testing of a self-powered active vibration control system. The authors provide a comprehensive description of the topology, working mechanism, and power flow of the proposed system which is supported by analytical, numerical, and experimental investigations. Furthermore, the authors discuss potential applications for this technology in various engineering fields such as aerospace engineering, mechanical engineering, civil engineering etc., which further adds to its credibility.
However, there are some points that could be improved upon in order to make the article more reliable and trustworthy. For example, while the authors discuss potential applications for this technology in various engineering fields they do not provide any evidence or examples to support their claims. Additionally, while they discuss potential risks associated with this technology they do not provide any details on how these risks can be mitigated or avoided. Finally, while they discuss potential benefits of this technology they do not explore any counterarguments or alternative solutions that may be available for similar problems.