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混合动力车2
Hybrid Transit Bus with Optimized Energy Requirements
Alan Ponsford, Director, Newbus Technology Ltd
Mike Kellaway, Director, Newbus Technology Ltd
Abstract
The target of this Newbus Technology study was to configure an optimum specification for a low energy,
40 foot hybrid transit bus. To facilitate this, a baseline hybrid design was used to identify the primary
loss mechanisms, together with their relative importance, when in operation during actual intensive city
duty. This used an ADVISOR model operated though real world, logged drive cycles. The second stage
was to investigate the design sensitivity of these various loss mechanisms, in terms of each sub-system,
when calculated against changes in vehicle fuel consumption and overall system efficiency. By running
the simulations, and varying the individual sub-system losses across a range, the overall sensitivity could
be calculated. The third technical section was then to adjust the generic sub-system performances to
practical, near future solutions. This optimized bus was then simulated over both real duty cycles and
also idealized simplified drive cycles. The summarized findings outline the significant improvements
achieved. These showed a 55% increase in fuel mileage using the latest hybrid powertrain technology.
When combined with advanced vehicle engineering, this increase was 113% over the baseline hybrid.
The commercial considerations outline an overall approach for a commercially viable, low energy hybrid
bus product suitable for US operation.
Keywords: Bus, hybrid, heavy duty, optimization
1. Introduction
This study set out to deliver a rigorous evaluation of hybrid transit bus design optimisations. The
underlying premise was that current and future changes in energy and powertrain costs will be design
drivers for changes in transit bus design. The most viable solutions will require changes to the ove
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