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February 20, 2026Sustainability3 citationsOpen Access

Practice and Feasibility of Energy Harvesting Technologies in Civil Infrastructure: A Comparative Review

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MSMuhammad Rauf ShakerPEPurnachandra Rao EluriFAFrezer Ayele

Key Points

  • The paper aims to review and evaluate energy harvesting technologies applicable to civil infrastructure.
  • Conducted a comparative review of various energy harvesting systems used in infrastructure like roads and bridges.
  • Detailed descriptions of photovoltaic, piezoelectric, and thermoelectric devices, including operational principles and applications.
  • Examined economic feasibility studies to assess energy output and costs of different technologies.
  • Identified multiple energy harvesting applications, including powering sensors and improving infrastructure durability.
  • Provided a feasibility framework that incorporates performance metrics and cost analysis for effective implementation.

Abstract

Energy harvesting is an emerging approach that supports the generation of renewable and clean energy, while also augmenting the durability and stability of infrastructure. The paper aims to review applicable energy harvesting systems deployed in various types of infrastructure, including roads and bridges, for applications such as photovoltaic noise barriers, photovoltaic cells, piezoelectric devices, and thermoelectric units. The harvested energy can be utilized to generate electricity, power wireless sensors, melt ice, and provide heating or cooling, while also assisting in monitoring structural conditions. Each energy harvesting technology is described in detail, covering operational principles, application scenarios, prototype development, and key findings from the literature. Economic feasibility studies are also examined to allow for a comparative assessment of energy output, production costs, and cost-effectiveness. This review provides a comparative feasibility framework integrating energy performance, levelized cost of electricity, payback period, and technology readiness levels for infrastructure-based energy harvesting systems.

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Cite This Study

Shaker et al. (2026) studied this question.

synapsesocial.com/papers/6997fa6dad1d9b11b3453a06https://doi.org/10.3390/su18042055
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