Javascript must be enabled to continue!
Conceptualizing Micromobility
View through CrossRef
While micromobility has seen a significant rise of interest across policy, industry and academia, a detailed conceptualisation of it has so far been missing from the scientific literature. This paper develops a multi-dimensional conceptualisation of micromobility, in conjunction with a new socio-technical definition. To do so, it reviews related concepts; it analyses how the term micromobility has been used; and it critically engages with existing definitions most frequently cited in this literature. Building on these insights, we develop a multi-dimensional conceptualization of micromobility. Our definition of micromobility covers a wide range of mobility options that can typically be manoeuvred by one human without motor assistance, at least for short distances, and that are ‘micro’ in terms of energy demand, environmental impact, and use of road space, relative to automobility. According to our conceptualisation, micromobility modes comprise fully human powered, partially motor assisted and fully powered options. They typically do not exceed 25 kilometres per hour (or 45 for faster ones) and weigh (often significantly) less than 350 kilogram, while often providing some (public) health benefits. Trip lengths are typically less than 15 kilometres and daily distance travelled less than 80 kilometres. This new definition has relevance for future transport and mobility scholarship, as well as policy and evaluation. Advantages of a new and widely accepted definition and conceptualisation of micromobility could include more robust design standards, legislation, as well as evaluation metrics and methods, all leading to greater understanding of, and attention paid to, this form of mobility. This paper highlights the important role that micromobilities could play in moving beyond automobility, to create more sustainable and just mobility futures.
Title: Conceptualizing Micromobility
Description:
While micromobility has seen a significant rise of interest across policy, industry and academia, a detailed conceptualisation of it has so far been missing from the scientific literature.
This paper develops a multi-dimensional conceptualisation of micromobility, in conjunction with a new socio-technical definition.
To do so, it reviews related concepts; it analyses how the term micromobility has been used; and it critically engages with existing definitions most frequently cited in this literature.
Building on these insights, we develop a multi-dimensional conceptualization of micromobility.
Our definition of micromobility covers a wide range of mobility options that can typically be manoeuvred by one human without motor assistance, at least for short distances, and that are ‘micro’ in terms of energy demand, environmental impact, and use of road space, relative to automobility.
According to our conceptualisation, micromobility modes comprise fully human powered, partially motor assisted and fully powered options.
They typically do not exceed 25 kilometres per hour (or 45 for faster ones) and weigh (often significantly) less than 350 kilogram, while often providing some (public) health benefits.
Trip lengths are typically less than 15 kilometres and daily distance travelled less than 80 kilometres.
This new definition has relevance for future transport and mobility scholarship, as well as policy and evaluation.
Advantages of a new and widely accepted definition and conceptualisation of micromobility could include more robust design standards, legislation, as well as evaluation metrics and methods, all leading to greater understanding of, and attention paid to, this form of mobility.
This paper highlights the important role that micromobilities could play in moving beyond automobility, to create more sustainable and just mobility futures.
Related Results
Micromobility, User Input, and Standardization
Micromobility, User Input, and Standardization
<div class="section abstract"><div class="htmlview paragraph">Micromobility is often discussed in the context of minimizing traffic congestion
and t...
A new method for evaluating the effectiveness of micro-mobility protective equipment
A new method for evaluating the effectiveness of micro-mobility protective equipment
Micromobility is one of the most important modes of transportation in urban environments and is widely used in modern cities. It refers to lightweight personal vehicles with a maxi...
Behavior of Micromobility User Towards Different Road Category
Behavior of Micromobility User Towards Different Road Category
The rise of micromobility solutions, particularly e-scooters and e-bikes, is reshaping urban mobility patterns in Malaysian cities. Despite their growing popularity, the behavioral...
EXPERIMENTAL ANALYSIS OF ELECTRIC SOOTER DYNAMICS
EXPERIMENTAL ANALYSIS OF ELECTRIC SOOTER DYNAMICS
In recent years, electric micromobility vehicles (e.g., electric scooters, unicycles, skateboards, onewheels, and segways) have gained significant popularity. From both traffic and...
Analyzing the Impacts of a Successful Diffusion of Shared E-Scooters and Other Micromobility Devices and Efficient Management Strategies for Successful Operations in Illinois
Analyzing the Impacts of a Successful Diffusion of Shared E-Scooters and Other Micromobility Devices and Efficient Management Strategies for Successful Operations in Illinois
Active transportation can play an important role in promoting more physically active and positive public health outcomes. While walking and biking provide significant physical heal...
Flexcork—Sustainable Helmet Designed for Electric Micromobility
Flexcork—Sustainable Helmet Designed for Electric Micromobility
Micromobility is a topic of growing interest, powered by the introduction of shared electric bicycles and, especially, e-scooters. This type of mobility has recently gained a lot o...
Clustering Micromobility Devices based on Speed and Comfort
Clustering Micromobility Devices based on Speed and Comfort
Pedestrians and micromobility devices are grouped into 4 clusters with increasing speed and decreasing comfort. The Clusters are assigned a Path User Comfort Equivalent (PUCE) fact...
Meta-analysis of Shared Micromobility Ridership Determinants
Meta-analysis of Shared Micromobility Ridership Determinants
Shared micromobility (SμM), i.e., shared e-scooters and (e-)bikes, offer moderate-speed, space-efficient, and carbon-light mobility, promoting environmental sustainability and heal...

