<?xml version="1.0" encoding="UTF-8"?><ns2:project xmlns:ns1="http://gtr.rcuk.ac.uk/gtr/api" xmlns:ns2="http://gtr.rcuk.ac.uk/gtr/api/project" xmlns:ns3="http://gtr.rcuk.ac.uk/gtr/api/fund" xmlns:ns4="http://gtr.rcuk.ac.uk/gtr/api/person" xmlns:ns5="http://gtr.rcuk.ac.uk/gtr/api/project/outcome" xmlns:ns6="http://gtr.rcuk.ac.uk/gtr/api/organisation" ns1:created="2026-08-26T13:36:10Z" ns1:href="http://gtr.ukri.org/gtr/api/projects/C2167633-66B5-4C54-8951-5B842287A11B" ns1:id="C2167633-66B5-4C54-8951-5B842287A11B"><ns1:links><ns1:link ns1:href="http://gtr.ukri.org/gtr/api/persons/A5A6C387-7771-42E3-A047-16EE241A0AC0" ns1:rel="PM_PER"/><ns1:link ns1:href="http://gtr.ukri.org/gtr/api/organisations/4223DF5F-1F9D-4B82-9291-F2582B81B1A2" ns1:rel="LEAD_ORG"/><ns1:link ns1:href="http://gtr.ukri.org/gtr/api/organisations/4223DF5F-1F9D-4B82-9291-F2582B81B1A2" ns1:rel="PARTICIPANT_ORG"/><ns1:link ns1:end="2014-01-31T00:00:00Z" ns1:href="http://gtr.ukri.org/gtr/api/funds/8542B8D3-56FC-4EB0-91E3-CB7FF90F6B18" ns1:rel="FUND" ns1:start="2012-04-30T23:00:00Z"/></ns1:links><ns2:identifiers><ns2:identifier ns2:type="RCUK">710017</ns2:identifier></ns2:identifiers><ns2:title>Novel Architecture for plug-in Hybrid Powertrains</ns2:title><ns2:status>Closed</ns2:status><ns2:grantCategory>GRD Proof of Concept</ns2:grantCategory><ns2:leadFunder>Innovate UK</ns2:leadFunder><ns2:abstractText>Current state-of-the-art series hybrid powertrains is to use the on-board generator (or fuel cell) as a range extender used to “charge the battery” usually at some pre-determined point of discharge thereby preventing full discharge of the battery/super-capacitor storage system. Modeling has shown this leads to oversized energy storage system components for a given criteria/performance. In the worst case, the current state-of-the-art provides a limp home facility also the state-of-discharge of the battery/super-capacitor can give varying vehicle performance depending on operational circumstances at the relevant time. That is the
operator can feel variance in electric vehicle performance from time-to-time.
A better architecture and management control is proposed. The Project is to realign the
genset, battery and super-capacitor in parallel onto the DC rail as a “multi-source” plug-in hybrid electric powertrain architecture with novel management control. The control technique, however, uses control algorithms based on rates-of-change of current and voltage rather than absolute values as is the case in most current systems and this technique is believed to be unique. Preliminary research/modeling shows that for a like-for-like overall performance the new system reduces genset size, battery and super-capacitor both electrically and dimensionally. Thereby reducing cost, weight and spatial requirements for all the key elements – a key strategic industry objective. Such saving will lead to lower costs and higher efficiency cars and other vehicles thus greatly assisting the low carbon economy.</ns2:abstractText></ns2:project>