Short answer

Future electric bus designs should be adaptable to evolving energy storage technologies, with a clear understanding of the R&D priorities to inform component selection and system integration.

Field
Resource Management
Source
Rosa P: A digital library for transportation research (United States Department of Transportation) (2010)
Method
Literature review and expert consultation
Evidence
Strong effect

Developing clear research and development roadmaps for rechargeable energy storage systems (RESS) is crucial for advancing electric bus technology towards greater efficiency and sustainability. This resource management research insight is drawn from a 2010 study published in Rosa P: A digital library for transportation research (United States Department of Transportation). Using Literature review and expert consultation, researchers explored how this design variable affects real-world outcomes. The key design takeaway: Future electric bus designs should be adaptable to evolving energy storage technologies, with a clear understanding of the R&D priorities to inform component selection and system integration.

Study
Resource ManagementHigh ImpactStrong effect

Battery Technology Roadmaps for Electric Transit Buses

Developing clear research and development roadmaps for rechargeable energy storage systems (RESS) is crucial for advancing electric bus technology towards greater efficiency and sustainability.

Rosa P: A digital library for transportation research (United States Department of Transportation) · 2010

01

Key Findings

  • 01There is a need for continued advancement in lithium-ion battery and ultracapacitor technologies for electric buses.
  • 02Identifying and prioritizing R&D needs is essential for the successful integration of next-generation electric drive buses.
  • 03Roadmaps are required to guide development from research to full commercial integration.
02

Application

Design takeaway

Future electric bus designs should be adaptable to evolving energy storage technologies, with a clear understanding of the R&D priorities to inform component selection and system integration.

How to apply

When developing new electric vehicle platforms, create a phased R&D plan for critical components like energy storage, outlining milestones and key research areas for near, mid, and long-term goals.

Project actions

  • 01When researching a new technology, consider how it might evolve over time and plan for future iterations.
  • 02Identify key stakeholders who will use or be affected by your design and seek their input on future needs.
03

Method & Evidence

AimWhat are the current needs and future research and development priorities for rechargeable energy storage systems in electric drive buses?
MethodLiterature review and expert consultation
ProcedureThe study involved reviewing technical literature on lithium-ion batteries and ultracapacitors, and gathering input from transit stakeholders and experts on current challenges, knowledge gaps, and R&D priorities for electric bus energy storage systems. Based on this, near-, mid-, and long-term R&D roadmaps were developed.
ContextElectric vehicle technology, specifically for public transportation (transit buses)

Variables

IVDevelopmental stage of RESS technologies (near, mid, long-term)
DVPriority R&D needs and proposed projects
CVType of vehicle (electric drive buses), stakeholder input, technical literature
04

Strengths & Limitations

Strengths

  • +Addresses a critical area for sustainable transportation.
  • +Combines literature review with expert and stakeholder input for a comprehensive view.

Limitations

The roadmaps are based on expert opinion and literature review, which can be subjective and may not predict all future technological advancements accurately.

Reliability & validity

The reliability of the findings depends on the quality and representativeness of the technical literature and the diversity of expert and stakeholder opinions gathered. Validity is supported by the systematic approach of literature review and structured input collection.

Think critically

How might the rapid pace of battery technology development in recent years impact the relevance of a roadmap created in 2010? What new factors would need to be considered today?

05

Design Principles

"Strategic technology roadmapping is essential for guiding innovation and ensuring the successful adoption of new technologies in complex systems."

This research highlights the importance of strategic planning in the evolution of electric vehicle components. By identifying knowledge gaps and priority needs, designers and engineers can focus development efforts on areas that will yield the most significant improvements in performance, cost, and environmental impact.

06

What This Means for Your Design

To make electric buses better, we need a plan that shows what research to do now, in a few years, and further in the future for their batteries and power systems.

How to use in your project

  • 1.Use the concept of roadmapping to justify the selection of specific technologies or features in your design project, explaining how they fit into a broader development strategy.
07

Add to My Project

08

Quick Cite

Paragraph starter

This research emphasizes the strategic importance of developing clear roadmaps for evolving technologies, such as rechargeable energy storage systems for electric buses. By identifying current needs and future R&D priorities, designers and engineers can ensure their projects contribute to a well-defined path towards innovation and market adoption, moving from initial research to full integration.

09

Source

Rosa P: A digital library for transportation research (United States Department of Transportation)

Assessment of needs and research roadmaps for rechargeable energy storage system (RESS) onboard electric drive buses

journal · 2010

View source

Questions About This Research

What does the research say about battery technology roadmaps for electric transit buses?
Future electric bus designs should be adaptable to evolving energy storage technologies, with a clear understanding of the R&D priorities to inform component selection and system integration. Evidence: Rosa P: A digital library for transportation research (United States Department of Transportation) (2010).
Why does "Battery Technology Roadmaps for Electric Transit Buses" matter for design?
This research highlights the importance of strategic planning in the evolution of electric vehicle components. By identifying knowledge gaps and priority needs, designers and engineers can focus development efforts on areas that will yield the most significant improvements in performance, cost, and environmental impact.
How can designers apply this research?
Future electric bus designs should be adaptable to evolving energy storage technologies, with a clear understanding of the R&D priorities to inform component selection and system integration.
What were the main findings?
There is a need for continued advancement in lithium-ion battery and ultracapacitor technologies for electric buses.. Identifying and prioritizing R&D needs is essential for the successful integration of next-generation electric drive buses.. Roadmaps are required to guide development from research to full commercial integration.
What research method was used?
Literature review and expert consultation.
How strong is the evidence?
Evidence strength is rated Strong effect, based on a 2010 journal from Rosa P: A digital library for transportation research (United States Department of Transportation).
What should I do differently in my next project?
When developing new electric vehicle platforms, create a phased R&D plan for critical components like energy storage, outlining milestones and key research areas for near, mid, and long-term goals.
What are the limitations?
The roadmaps were developed based on the state of technology and stakeholder input available in 2010, and may not fully reflect current advancements or future challenges.