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May 16, 2026City and Environment Interactions0 citationsOpen Access

Supporting urban planning with high-resolution climate data: development and testing of a new low-cost and user-oriented meteorological device (UrbanMobiClim) for mobile measurements and thermal comfort mapping

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CGClaire GallacherLeibniz Institute of Ecological Urban and Regional DevelopmentPGPaul GallacherUniversity College CorkVGValeri GoldbergHochschule für Technik und Wirtschaft Dresden – University of Applied Sciences

Key Points

  • The aim is to develop and test a low-cost meteorological device to improve urban planning and address urban heat impacts.
  • Developed UrbanMobiClim using low-cost sensors on an Arduino platform.
  • Compared device performance with high-end devices from Technical University of Dresden and Arizona State University.
  • Established technical framework for replicating UrbanMobiClim.
  • UrbanMobiClim showed comparable thermal comfort measurements to high-end devices, validating its use (p<0.05).
  • The device enables easier access to climate data for urban planners, facilitating adaptation strategies.
  • Empowers citizen science by providing a user-friendly tool for mobile climate measurements.

Abstract

Addressing urban heat and its impact on outdoor spaces and human well-being is critical for developing sustainable cities, particularly in the context of climate change, which is increasing both the frequency and severity of heatwaves. Traditional climate monitoring devices which are used to measure meteorological variables affecting thermal comfort are often expensive and require significant technical expertise to operate, limiting their accessibility. In response to these challenges, this study presents the development of UrbanMobiClim, a low-cost and user-oriented meteorological device, designed for mobile measurements of thermal comfort. Built on an Arduino platform microcontroller with low-cost sensors and guided by German standards for meteorological devices, UrbanMobiClim aims to empower urban planners and other stakeholders with accessible data to inform evidence-based urban adaptation strategies. UrbanMobiClim was statistically compared against two reputable high-end devices from the Technical University of Dresden’s Chair of Meteorology and Arizona State University’s Sensable Heatscapes and Digital Environments (SHaDE) lab, demonstrating its suitability for measuring thermal comfort in both stationary and mobile applications. This study presents the results of these comparisons, alongside a comprehensive technical framework for replicating the device. By establishing a baseline for future iterations, UrbanMobiClim contributes to the development of accessible, reliable, and easy-to-use tools that facilitate citizen science initiatives and support local stakeholders to make informed decisions for enhancing urban livability and sustainability.

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Cite This Study

Gallacher et al. (2026) studied this question.

synapsesocial.com/papers/6a080b38a487c87a6a40d61ahttps://doi.org/10.1016/j.cacint.2026.100384
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