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  <title>NOPR Community:</title>
  <link rel="alternate" href="http://nopr.niscpr.res.in/handle/123456789/66081" />
  <subtitle />
  <id>http://nopr.niscpr.res.in/handle/123456789/66081</id>
  <updated>2026-10-09T12:21:16Z</updated>
  <dc:date>2026-10-09T12:21:16Z</dc:date>
  <entry>
    <title>Metamaterial absorbers: Comparative analysis of fabrication techniques and emerging trends</title>
    <link rel="alternate" href="http://nopr.niscpr.res.in/handle/123456789/67524" />
    <author>
      <name>Thakur, Sahil</name>
    </author>
    <author>
      <name>Choudhury, Balamati</name>
    </author>
    <author>
      <name>Tyagi, Sachin</name>
    </author>
    <id>http://nopr.niscpr.res.in/handle/123456789/67524</id>
    <updated>2026-03-23T11:05:01Z</updated>
    <published>2025-12-01T00:00:00Z</published>
    <summary type="text">Title: Metamaterial absorbers: Comparative analysis of fabrication techniques and emerging trends
Authors: Thakur, Sahil; Choudhury, Balamati; Tyagi, Sachin
Abstract: The metamaterial absorbers have been artificially designed structures that have controlled and have manipulated&#xD;
electromagnetic waves across different frequency regimes, which have been important in stealth technology, EMI shielding,&#xD;
sensing, and energy harvesting. In particular, the efficiency and reliability of such absorbers have had a close dependence on&#xD;
fabrication methods used to fabricate these absorbers. This review has given an orderly exploration of some recent&#xD;
developments in the fabrication techniques of metamaterial absorbers, grouped into four major classes: Top Down, printingbased,&#xD;
mold-assisted, and laser-based approaches. Each technique has been qualitatively compared based on resolution,&#xD;
manufacturing cost, scalability, substrate compatibility, structural complexity, duration of fabrication, frequency suitability,&#xD;
and absorption efficiency. A general comparison has summarized the advantages and limitations of each technique.&#xD;
The review also has outlined emerging trends that could shape the next generation of high-performance metamaterial&#xD;
absorbers.
Page(s): 669-683</summary>
    <dc:date>2025-12-01T00:00:00Z</dc:date>
  </entry>
  <entry>
    <title>Design, simulation, and experimental validation of a corrugated morphing airfoil actuated by SMA-Spring mechanism</title>
    <link rel="alternate" href="http://nopr.niscpr.res.in/handle/123456789/67523" />
    <author>
      <name>Parmar, Kartikeya</name>
    </author>
    <author>
      <name>Anand Iyamperumal, Palani</name>
    </author>
    <author>
      <name>Ranganathan, Santhanam</name>
    </author>
    <id>http://nopr.niscpr.res.in/handle/123456789/67523</id>
    <updated>2026-03-23T11:03:13Z</updated>
    <published>2025-12-01T00:00:00Z</published>
    <summary type="text">Title: Design, simulation, and experimental validation of a corrugated morphing airfoil actuated by SMA-Spring mechanism
Authors: Parmar, Kartikeya; Anand Iyamperumal, Palani; Ranganathan, Santhanam
Abstract: This research paper has presented the design, numerical analysis, and experimental validation of a bio-inspired morphing&#xD;
airfoil actuated through shape memory alloy (SMA) wire and spring elements. To facilitate controlled deflection, a&#xD;
corrugated morphing section has been embedded within an eppler airfoil, which has been selected through comparative&#xD;
aerodynamic analysis against a standard NACA 0012 profile. Finite element simulations have been conducted using ANSYS&#xD;
software to investigate tip deflection performance across varying morphing region lengths and actuator placements. A&#xD;
lightweight, three-dimensionally printed prototype incorporating shape memory alloy components has been developed and&#xD;
has been thoroughly evaluated using direct electrical heating methods. Experimental findings have shown a 4 mm&#xD;
downward deflection for a 1 mm actuator wire contraction, which has closely matched the numerical simulation predictions.&#xD;
To demonstrate scalability, a full-span wing prototype has been assembled utilizing three independent, actuated airfoil&#xD;
segments. The successful actuation of this system has validated the feasibility of shape memory alloy-driven morphing as a&#xD;
viable, lightweight alternative to traditional servo-based mechanisms in micro air vehicles and low-speed unmanned aerial&#xD;
vehicles. Furthermore, this research has established a practical foundation for future work aimed at enabling&#xD;
bi-directional actuation for enhanced aerodynamic control and maneuverability.
Page(s): 684-693</summary>
    <dc:date>2025-12-01T00:00:00Z</dc:date>
  </entry>
  <entry>
    <title>Experimental study for performance evaluation of in-filled materials in trench wave barriers for vibration screening</title>
    <link rel="alternate" href="http://nopr.niscpr.res.in/handle/123456789/67522" />
    <author>
      <name>Shashi Bhushan, Kumar</name>
    </author>
    <author>
      <name>Kumar Sahu, Anil</name>
    </author>
    <author>
      <name>Goel, Rajeev</name>
    </author>
    <id>http://nopr.niscpr.res.in/handle/123456789/67522</id>
    <updated>2026-03-23T11:01:22Z</updated>
    <published>2025-12-01T00:00:00Z</published>
    <summary type="text">Title: Experimental study for performance evaluation of in-filled materials in trench wave barriers for vibration screening
Authors: Shashi Bhushan, Kumar; Kumar Sahu, Anil; Goel, Rajeev
Abstract: Vibrations which have been caused by non-seismic factors as high-speed rails, highway traffic, construction activities,&#xD;
machine foundations, blasting, underground explosions, etc. have not been considered safe for human life and structures&#xD;
around. Vibrations which have been generated by these sources have caused of occupant discomfort, settlement and shaking&#xD;
of building foundations, structural and non-structural damages to adjacent buildings, malfunctioning of ultra-sensitive&#xD;
medical equipment, etc. Vibration screeners in form of open or in-filled trench wave barriers have been used to reduce the&#xD;
effects of vibrations. This paper has described an experimental study for evaluating the performance of in-filled materials in&#xD;
trench wave barriers in an elastic, homogeneous and isotropic half space. The in-filled materials used are as rice husk,&#xD;
crumbed tyre rubber and sawdust. Key properties of the in-filled materials are have also been determined by geo-technical&#xD;
characterization to ascertain its suitability in terms of properties of in-filled materials. The important factors such as material&#xD;
damping and boundary conditions of soil have also been included. The effectiveness of geometric dimensions of the trench&#xD;
wave barrier, shear wave velocity and location of source from the barrier have also been investigated. In this study, a&#xD;
dimensionless approach have been used, where the geometrical parameters have been normalized by one of the&#xD;
characteristics i.e. wavelength of Rayleigh oscillatory wave in elastic half-space. The influence of parameters related to&#xD;
vibration isolation has been discussed in detail. Recommendations have been provided for the optimal selection of the&#xD;
geometry of trench wave barriers.
Page(s): 694-711</summary>
    <dc:date>2025-12-01T00:00:00Z</dc:date>
  </entry>
  <entry>
    <title>Design and analysis of PV fed single-stage AC-DC bi-fold converter for onboard charging applications</title>
    <link rel="alternate" href="http://nopr.niscpr.res.in/handle/123456789/67521" />
    <author>
      <name>Bansal, Bhavya</name>
    </author>
    <author>
      <name>Joshi, Dheeraj</name>
    </author>
    <author>
      <name>Verma, Vishal</name>
    </author>
    <id>http://nopr.niscpr.res.in/handle/123456789/67521</id>
    <updated>2026-06-02T11:41:19Z</updated>
    <published>2025-12-01T00:00:00Z</published>
    <summary type="text">Title: Design and analysis of PV fed single-stage AC-DC bi-fold converter for onboard charging applications
Authors: Bansal, Bhavya; Joshi, Dheeraj; Verma, Vishal
Abstract: Traditional electric vehicle (EV) chargers typically employ a dual-stage configuration to achieve a significant step-down&#xD;
in voltage, which results in discontinuous input current and compromised efficiency. This paper has proposed a single-stage,&#xD;
single-phase high step-down bifold converter featuring synchronous rectification and ripple mitigation to address these&#xD;
challenges. By regulating the intermediate bus voltage (IBV) to provide only half of the output voltage, the converter ensures&#xD;
continuous input current with a near-unity power factor. A highly efficient 1.55KW prototype, converting from 230V AC&#xD;
and PV panel to 48V DC, has been developed, simulated and analyzed using MATLAB. The charger’s performance has been&#xD;
rigorously analyzed and harmonic compensator has been introduced to eliminate ripple components causing improvements in&#xD;
efficiency and reduction in THD along with operational stability.
Page(s): 712-726</summary>
    <dc:date>2025-12-01T00:00:00Z</dc:date>
  </entry>
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