About markandrewpreston

Mark Preston's illustrious career in motorsports is a testament to his passion, innovation, and leadership. From his early beginnings in Australia, where he developed a love for cars while working on a farm, to his groundbreaking achievements in Formula 1 with Arrows Grand Prix and McLaren, Preston has consistently pushed the boundaries of engineering and technology. His entrepreneurial spirit led to the rapid establishment of the Super Aguri Formula 1 team, built from scratch in just 100 days. Transitioning to Formula E, Preston played a pivotal role in its inception, leading Team Aguri and DS TECHEETAH to multiple championships. Now, as the motorsport director at Lola Cars, he continues to drive innovation with a focus on sustainability, underscored by a new partnership with Yamaha for Formula E. Mark Preston's journey is a remarkable blend of technical expertise and visionary leadership, making him a significant figure in the evolution of motorsports.

Betting on Electric

I have re-posted my Blog article from Huffington Post here to add a few more comments after speaking at a few more events recently.  I was very interested in how many students at Oxford and Cambridge were interested in our vision for the future, what did we think would happen next, how will it effect their futures.

Thinking on it since, if I was leaving University in the next few years and wanted to work in an industry with longevity which was looking to change the world, then I would have to think long and hard.  Even if I look at some of the long term predictions for fossil fuel which have it dominating automotive for at least the next 20-30 years, at current graduate would only be in the middle of their careers by then, which means that what ever I bet on now should carry me a long way.  Which way would i bet on the future?

Betting on Electric by Mark Preston

When I was a student engineer I wanted to build my own road car. I planned out how much it would cost, where I would buy parts, what would I use as a donor vehicle, how would I manufacture the bodywork and most importantly: what engine would I use? I didn’t want to make just another kit car, it had to be scalable, and with my own engine. And that’s where I ran into trouble.

If you look at most low volume specialist cars today they have to use an engine from one of the top Original Equipment Manufacturers (OEMs): for example Lotus uses Toyota engines in their cars. This makes the Internal Combustion Engine an important part of an OEM’s differentiation in the market and a large barrier to entry for new would-be manufacturers. The sheer number of requirements for the development of a new internal combustion engine today is enormous: €500m would be a good round number to start with!

But what happens when the internal combustion engine is removed from the equation? Which is the case with an electric car. Electric motors have existed for over 100 years and they are in almost every common household device from a fridge to an air conditioner. The barrier to market entry is suddenly reduced considerably and allows a whole range of possibilities. The design of an electric vehicle, although complicated and complex, is not too dissimilar to designing a modern high end smartphone. It is still difficult, but not an insurmountable challenge. Many large companies would be very capable of designing and manufacturing an electric vehicle with the help of any number of large engineering companies that exist.

The innovation to drive the electric Powertrain development and concepts such as wireless charging will come from one of the newest motorsports in the world, the FIA Electric Vehicles Series: Formula E. Our team, Amlin Aguri, had its first race in Beijing this year and we believe that Formula E will help to revolutionise the technology required to drive development in the road going world.


Amlin Aguri in Beijing for the first FIA electric car race.

The change brought about by Foxconn’s investment in the market, and the advent of new competitive motorsport arenas, to push development will create new entrants and possibly the disruptive change in the automotive industry to the same level as other industries that are described in great detail in Clayton Christensen’s The Innovator’s Dilemma. The recent announcement by Foxconn is an interesting example of the future of the world’s largest manufacturers and it could be the start of more movements by Apple, Google and others into one of the oldest markets in the world: transportation. The Chinese government has stated in the past that strategically there is no reason for home grown car companies to develop ICEs; it would be better to leapfrog to full EV where the playing field is much more equal.

With the added innovations through driverless capabilities, like new driverless buses, maybe the new innovators will change the market as fast as smartphones did in the mobile market. Initially rapid change is unlikely because of the higher capital intensity of a car, compared to a phone, and the sheer number of vehicles that would have to be replaced throughout the world. But with 80 million vehicles being produced every year, it is not unfathomable that new competitors could make a dent in urban markets in the megacities of the world.

Switching to EVs helps to alleviate the pollution problem in urban centres, though it doesn’t remove the congestion. As part of a recent study I carried out in Oxford, UK, which involved the University of Oxford, Oxford Brookes University and the County Council, we looked at the problems of capacity in a small city with only five main roads entering the city centre. The photo below illustrates that, by running higher density of people, in this case with buses or bicycles, the capacity of the arteries is increased.


Density of travel for the 70 people using cars, buses, bicycles and walking.

Therefore the trajectory of development in transportation will be driven by urbanisation, especially in megacities of the world which have the populations and hence the spending power to make real changes. The concept is well described in Frost and Sullivan’s Mega­Trends study. The resultant changes in the industry will move towards mobility becoming a service: i.e. mobility as a Service. At this point it is highly possible that vehicles become a set of “devices” on a network integrated by overall systems integrators: similar to the telecoms integrators such as Vodafone and Telefonica. These vehicle systems integrators will operate different devices on the network that could be provided by existing and incoming device manufacturers – such as Foxconn or Google.

Is the move by Foxconn technology group to invest heavily in electric vehicles in China just the start of something far larger? We at Amlin Aguri think so.

Mark Preston is the Team Principal of Formula E racing team: Amlin Aguri.

Mark will be speaking at “Eco Machines: Designing the Cars of the Future” hosted by Intelligence Squared and Shell at Saint Catharine’s College, Cambridge on October 21st 2014.

Oxford Consortium Wins TSB Integrated Transportation Call

Technology Strategy Board: Integrated Transport – In Field Solutions
Project: Oxford Transport Laboratory

Benefiting people and business

The benefits of creating smarter, connected cities are clear – increased economic growth and better visitor experience whilst reducing environmental impact. Funded by the Technology Strategy Board, Oxford is embarking on an ambitious project to improve the experience of visiting the City by creating open systems, processes and technologies that will benefit visitors, residents and  businesses alike.

Driven by Innovation

The most important aspect of this project will be the harmonisation of the data and technologies that currently exist but remain locked into the business and government systems. Our ability to provide this data for the use of all stakeholders will be of critical importance in ensuring the continued growth of Oxford as a commercial, educational and employment centre.

This project will propose ways for Oxford to increase its economic viability for every stakeholder in the city – an improvement in traffic management, parking, increased visitor numbers, increased retail spend by visitors and better communication around mobility within the ring road are key objectives.

We also have an important job to do – limiting the impact of the closure of the Westgate centre and car park. Redevelopment plans mean that in January 2015 Oxford centre will lose 800 of it’s existing 2,000 car parking spaces, placing additional burdens on all areas of the transport system. As a result there is considerable risk of reduced income to retailers and businesses.

This initial 3 month project will provide clear analysis and recommendations as to how Oxford should approach these challenges, in both the short and longer terms. Innovation with technology, data and smart processes will be at heart of our recommendations, and will provide a platform for the development of an open system to the benefit of all.

Mobility, Communication, Partnerships

We already have a significant amount of data showing the way that people move in and around Oxford, and we are putting in significant efforts to analyse this data. However this project will go further than simply looking at traffic and transportation solutions. We recognise that to be successful, Oxford must also engage with people and businesses.

The key partners that will form part of the Oxford study bring a wide and varied experience – chipset providers and other technology providers, companies that run public transport, retailers, University and Local Authorities. We will cover all aspects that a smart city should provide to its visitors and residents..

The start of the journey

We are still at the formative stages of the Oxford project, focusing on understanding the main challenges that the city faces, analysing the data we have around transport and the movement of people in and around the city and establishing relationships with key companies and organisations.

 

About the Technology Strategy Board

The Technology Strategy Board is the UK’s innovation agency.  Its goal is to accelerate economic growth by stimulating and supporting business-led innovation.  Sponsored by the Department for Business, Innovation and Skills (BIS), the Technology Strategy Board brings together business, research and the public sector, supporting and accelerating the development of innovative products and services to meet market needs, tackle major societal challenges and help build the future economy. For more information please visit www.innovateuk.org.

About Preston Motorsport

Preston Motorsport was formed in 2005 by Mark Preston who wanted to create a company which used motorsports DNA to support the wider industry to create real disruptive innovation.  Preston Motorsports first worked with the Super Aguri team when it supported the entry into Formula 1 team, competing in the World Championship from 2006 to 2008. Their new partnership will see Super Aguri Formula E team compete in the FIA Formula E Championship for low emission cars, racing on 10 tracks across the globe commencing in September 2014.

Preston said, “it became obvious to us a few years ago that the future of transportation was not going to centre around cars as it has done for the last few decades, there will be a disruptive shift in how we live, travel and interact with transportation devices.  We believe strongly that the future will be “Mobility as a Service”.  We began working on this project in after a trip to San Francisco looking at innovation and ideas surrounding the future of automotive and came up with this proposal for Oxford.  We have a great set of partners who we believe will deliver exciting new ideas that can be rolled out to the world.”

http://www.prestonracing.com

About Oxford County Council

Working on this TSB project has enabled the County Council as Transport Authority to  form a consortium with Businesses and the Universities creating opportunities for the Council to lead, influence, and gain funding for innovative transport solutions.  The County Council will provide access to a variety of real-time and historical datasets sourced from the private and public sector. Creating business opportunities and encouraging SME to grow in Oxfordshire and the South East by allowing developers and other stakeholders to use the data they need to build applications and services for the benefit of transport users and beyond. Oxfordshire County Council is designing an  Innovation Support Programme which will provide a web portal with information about local and national business support services, linking up growing services and provide support and funding to the innovators , investors and entrepreneurs involved in the county’s innovation eco-system.

About DBi (Elisa Interactive Ltd)

DBi is one of Europe’s leading data and marketing technology consultancies, and was recently acquired by Havas Media Group in an effort to increase their global footprint in the space. Our focus is on the optimising technology and data that drives business insights and growth, and enabling companies to become smarter.

The Oxford project gives us the opportunity to work with a city, rather than with brands, however the objective for us is the same – how to make Oxford smarter through the use of data and technology. We incredibly excited to be part of making this happen.

About Zeta Automotive

Zeta Automotive, formed 25 years ago is a highly innovative electronic development company. With several awards for innovative technology, Zeta is a Tier one supplier to the motor industry.  Arriva PLC recently acquired a majority stake in Zeta having approved one of its latest products for roll out across its fleet of buses.  Arriva is one of the largest transport services organisations in Europe.

About The University of Oxford

The Transport Studies Unit (TSU) (http://www.tsu.ox.ac.uk) is an interdisciplinary research centre based at University of Oxford. Over the past 40 years the TSU has established an international research reputation in the fields of transport policy analysis, mobility and travel behaviour research, and the development of new methodologies and tools. Particular emphasis is placed on understanding the social, economic, environmental and health implications of transport and mobility over both time and space. The TSU’s work ranges in geographic scale from the local to the global, and the full spectrum of quantitative and qualitative research techniques is deployed.

David Banister, Director and Professor of Transport Studies, said: “Transport is a topic that impacts on all of us and it substantially influences the way in which we see the world and interact with it. Transport is also of great importance to economic wellbeing and the social participation of individuals and communities, in particular in mixed-use, urban areas such as Oxford.”

The Energy & Power Group (EPG) in the Department of Engineering Science at the University of Oxford undertakes computational and experimental sustainable energy research with particular focus onsmart energy systems, energy storage, transport and electrical machines. It has a strong record of commercialising the research activity and has lead to three spin out companies.

Malcolm McCulloch, Head of the Energy and Power Group, said “This opportunity can enable the City of Oxford to pioneer an exciting integrated mobility system that improves the experience of travelling into the City and reduces the net carbon footprint.”

About Oxford Brookes University

The Department of Mechanical Engineering and Mathematical Sciences provides a range of professionally accredited mechanical, automotive, motorsport, mathematical and statistical programmes of study. Our focus is to provide world class, high quality teaching and applied research so as to give our students an excellent experience.

 

Super Aguri Formula E Tokyo Launch

Image

Launch photos for Super Aguri Formula E team in Tokyo.

It is good to be back in the forefront of motorsports with the Super Aguri team again.  We are very much looking forward to the challenges that Formula E is going to throw at us.  Being at the forefront of motorsports technology and developing the technology of the future is exciting.  We believe that there will be a disruptive change that comes in the automotive industry through all of the different technologies coming together to create Mobility as a Service.  Smart phones, urbanisation, congestion and pollution are but some of the drivers.

Formula E – Car Launch

Momentum is everything in motor racing and the unveiling of the new Formula E race car at the Frankfurt Motor Show shows this exciting series is beginning to gather some serious pace.

By all reports electric vehicles (EVs) have been all the rage at the event further indicating the motor industry’s preference to develop eco-friendly cars. You only have to look as far as BMW’s impressive i8 to see what impact EVs are going to have on the future.

From my standpoint, Formula E in particular will shape all kinds of major technological advances in the next five to 10 years – most of which will affect in someway how we as humans approach mobility in true megacities like London and Tokyo.

It’s only around the corner when every black cab you’ll see in London will be running electric or hybrid and the city (expect for screeching brakes on just about every bus, car and truck) will be quieter and almost pollution free.

While the first year of the Formula E series will see all 10 teams compete using the same Spark-Renault SRT-01E, I think we’ll really start to see benefits of the series once teams start developing their own cars.

Having a top driver in the first year might snatch the title, but what will count going forward is how teams devise solutions to out-develop each other in specific areas such as battery control, cooling efficiency, power optimization/management and my personal favorite (once 4WD is introduced) 4WD torque vectoring.

Critically, this can give teams the chance to monetize what they’ve created and translate that outside the garage. As we’ve seen at McLaren in recent years their focus has grown strongly on increasing the output of their premium sports cars which draw on the team’s F1 expertise and technology.

With the right minds focused on the drawing board there is a plethora of cutting-edge technologies and systems that can be developed in Formula E and translated to the everyday person living in a modern day metropolis.

Reducing anxiety range in electric road cars will most probably be one of the first problems solved through Formula E. Battery development will progress at a lightning speed and it won’t be long until this makes its way to the consumer.

Tesla’s 90-second battery change is also an interesting step forward. If Formula E can harness and translate this then the proposed ‘car change pitstop’ could quickly be a thing of the past as drivers pit over a battery plate and have a fresh cell loaded within 20 seconds – effectively replacing the petrol pump.

What is exciting is that this is all technology that can realistically filter down to the average eDriver – someone who relies on mobility and wants it to be in an eco-friendly and sustainable form.

Formula E will start us thinking about ‘mobility as a service’ which can help drive more efficient and sustainable transport. It will enable us to build new business models to ease the cost of EVs  for the average person and this is all done through racing the best part of motorsport!

The series will certainly be a spectacle and crucially it gets right to the heartbeat of cities like Rio de Janeiro, Buenos Aries, Los Angles and Rome with street circuits likely to attract thousands of onlookers.

“Designing a new BEV: all I can predict is that I will be wrong!”

I was talking to a Programme Manager for a future battery electric vehicle (BEV) and the only thing she knew for certain was whatever she designed would be wrong!  It’s difficult predicting the future and it seems that predicting the right way to go in the electrification of vehicles is an art not a science.

“If it is so difficult to predict the future, why are you interested in EV’s and Formula E when you have spent most of your career designing and racing Formula One cars?”, I was asked by one of my colleagues.

There are a couple of reasons.

If I take the advice of my programme manager friend and focus on what I believe is the most interesting future scenario then I have a very intresting picture in my mind.  Vision, or strategic intent is how it was described to us on our MBA; the kind of vision that Honda displayed when they enterred the US market with a step through motorcycle on its way to becoming a global automotive leader, is the only way to go!

Lets see if I can articulate my vision for the future of vehicles: or perhaps I should describe it as future mobility.

Start with the powertrain.

If you apply F1 thinking, then the most efficient controllable, nimble vehicle would be 4WD for traction and torque vectoring, powered by very small light responsive hub mounted electric motors (reverse torque and regenerating capability) with a high density power source, an efficient control system and a power unit that could convert from its storage medium to electricity fast and efficiently.

I saw the benefits of torque vectoring in relation to my work in vehicle dynamics: traction control, launch control and active differentials when I was Head of R&D at Arrows Grand Prix and later as Technical Director at Super Aguri F1 Team.  The amount of control that can be afforded the driver using torque vectoring to its ultimate capability is astounding and I hope that the Formula E vehicles that we can develop over the coming years of competition will deliver on this promise: I certainly look forward to driving one!

What should the energy storage system of the future be?  The long term solution seems to be hydrogen because of its energy density capability plus the fact that the hydrogen can be created using alternative forms of energy and burned cleanly at the place of use.  Storage and distribution are holding this back, but I am sure it will come at some point in the future.

But in the meantime, one idea is to use fossil fuels in the most efficient way possible.  A combination of battery storage and ICE’s as a range extender seems to me to be the best short term solution.  In fact for the highest efficiency system, why not take a small super efficient high revving engine, like a Honda generator, that can be packaged in a very small space?

Imagine a high efficiency, high volume manufactured power unit based on a standard generator.

So in summary, the powertrain is made up of a combination of batteries, high efficiency ICE running on fossil fuels in the short term and hydrogen created with alternative energies in the longer term, powering 4WD in wheel electric motors with torque vectoring and regeneration capabilities: hopefully the future of Formula E!

The next post will look ideas around connected vehicles and the total mobility package of the future and how this ties together to create future mobility solutions.

Formtech E1 – Lightweight Concepts for Future EV’s – Future Car Body 2012 Bad Neuheim

I presented Formtech’s lightweight concept at the recent Future Car Body last week in Bad Neuheim in Germany.  An interesting event looking at lightweight concepts of the future.

Formtech E1 – Lightweight Concepts for Future EV’s at the Automotive Circle Future Car Body event in Bad Neuheim Germany n 2012

The presentation looked at concepts that were developed during the creation of the Formtech E1 EV research concept vehicle.  We approached the development from the ground up looking at the issues surrounding design and manufacturing of composite structures drawing on previous work.  Our previous work into the substitution of composites in Formula One was used to drive our thinking in substitution in the automotive industry.

Formtech launches the E1 research concept EV

Formtech created a vision of EV when they launched the E1 atFrankfurt’s IAA Motorshow in September.  The research study provides the base for a number of concepts in lightweighting technology using composites, high-end materials and machining.

Formtech’s EV started out as a concept for the companies CEO Franz Hilmer, “I wanted to develop a car that would provide me with a second vehicle that I can use to commute to work, but be stylish and provide the basis to exploit the technologies that Formtech is developing in lightweight materials, high-end precision manufacturing and other technologies.”

Designers: Satoshi Nakamura, Tomas Beres, and Rafael Gross, were given the brief to develop a number of concepts, “The chosen concept of the E1 came from the idea that a secondary car; where the customer already owns a vehicle, and considering an eco-friendly alternative especially designed for short commute, with the capacity to carry 4 passengers, should be simple and take full advantage of the electric drive train. The limited top speed and range will create a lighter, more efficient vehicle, perfect for a second car. The design features a short overhang at both ends to create maximum capacity within the given wheelbase dimension. The side surface wraps around to the front and rear end, creating a sense of security and strength to the overall form. “, said Nakamura.

“The future of EV’s will be based around a number of game changing technologies”, says Mark Preston, ex-F1 designer, “I forsee a change in the way EV’s are perceived with lightweight carbon composites and vehicle dynamics technology such as torque vectoring driving exciting new areas of customer interest.  We created the research study in order to create a platform from which Formtech can develop these new technologies and provide solutions for all areas of EV development”.

The Formtech E1 forms the basis of further development studies by Formtech into the exciting new area of EV’s.  Further studies will be released from Formtech that follow up on the beginnings created with the E1.  “Formtech is committed to working towards the future and welcomes discussions with interested companies and investors from the green sector“, says Hilmer.

Megacities and EV’s

I recently looked into what it would take to own a Nissan Leaf or Chevy Volt/Ampera in a city.  I live in the centre of Oxford in the UK and have a membership of a car sharing organisation (Commonwheels) which has a number of cars just nearby.  I have done a lot of research into EV’s as part of my involvement in Oxford YASA Motors spinout of Oxford University and an ongoing involvement in composites through Formtech which are quite relevant to weight saving in this sector.

Many of the market predictions on EV uptake reference Megacities and the likihood of a change in usage habits driving growth in the market.  However, it is quite difficult for me to own an EV.

I test drove the Nissan Leaf and much to my surprise, it was, just like a normal car!  I think I was mostly surprised that I should be surprised.  It had plenty of power off the line, had good build quality, did everything a normal car does and had plenty of extra electronic gadgets that go with EV such as SatNav with predicted ranges and other handy tools for managing range aniexty.

The big problem is charging an EV at home when you have a terrace house in the inner city!  There are currently no schemes for on street charging in Megacities.  Plenty of solutions for people with big houses, garages and off street parking, but not what I would call the areas that may drive EV growth.

As always, new innovations come from solving problems and this looks like the next peice of the puzzle that needs to be solved before I could look at EV in the centre of a city.

Randomness and Excitement – Part II

As a follow on to my blog last year where I discussed how randomness drives excitement in F1, the first few races of 2011 certainly provided some interesting racing with KERs, DRS and Pirelli providing a set of variables that the teams have not yet completely mastered.

However as I was watching the German GP recently I noticed how the number of different tyre strategies is starting to narrow.

It is inevitable that the engineers will eventually remove some of the biggest unknowns in tyre prediction.  It was interesting to hear Mark Webber comment that Sebastian had mastered the tyres more quickly than he had.  As the teams simulators start to match the reality of the track, drivers like Mark will be able to experiment back at base to coach themselves to make the best use of the tyres.  At this point the number of variables will again narrow reducing randomness in strategy.

In fact the German GP gave a few more ideas about how the teams might be combining the simulators with drivers and strategy software.  The first hint came when Alonso said over the radio that Webbers tyres were starting to drop off and requested an update of the strategy to reflect this change.  This shows that the teams models are starting to get quite accurate but they still need an empirical “trigger” or tipping point where the driver helps to recognise a change in the tyres that the engineers can use to re-correlate their models real-time.  Once this correlation has been done the strategies can be updated with more accurate information for predicting forward.

The cold track temperatures at the German GP seemed to favour the McLarens and they were able to predict the change point of the tyres for last stint to perfection.  If the tyre performance curve can be mapped accurately there should not be any benefit from what people are calling the “undercut” as this performance anomaly should be accounted for accurately in any strategy software: leading to no advantage or randomness.  Lets see how their models fair in the hotter temperatures in Hungary.

The DRS works in combination with the randomness generated by the tyres.  Theoretically if the fastest car leads from the front there should be no need for DRS.  But, as the tyres provide unpredictable performance variations on each car and with each driver the DRS allows cars to pass each other should one team/driver be lucky enough to find themselves with a different performance envelope in the race in comparison to qualifying.

Again, as the tyres become more understood the randomness of the race vs qualifying performances will become less and DRS will become less of an exciting tool.

Hopefully the tyres change at a faster rate than the teams can match with their understanding!

Visit to Autodromo do Algarve

I had a visit to the Autodromo do Algarve, Portugal, in between Christmas and New Year to say hello to Paulo Pinheiro and the team and see what new things the circuit has introduced since I was here for the A1GP race earlier in 2010.

Although I have know the team at the Autodromo since before they started building, I hadn’t had a chance to do a few laps: I got a chance this week.

If you haven’t ever experienced the circuit, you should.  With many blind corners and rises, it’s quite a fun track to get to know.  I only had a few laps in a BMW 5 Series GTR and I was hooked.  OK, I am a long way from being flat onto the main straight and also completely dedicated through some of the blind corners, but I could have easily been convinced to stay all night and keep perfecting it!  Maybe next time…

Check out more pictures of the track at their website: http://autodromoalgarve.com.pt/index.php?lang=english