Skip to main content

The need for a higher voltage power net for vehicles

Electrification of the automobile is not limited to the electric vehicles (EVs). As a new report from Frost & Sullivan points out, conventional cars of today are partly electric in their own way, with most systems in the vehicle having electrical and electronic connections for better functionality. Certain high-end vehicles possess more than 90 electronic control units (ECUs) to control the various modules within the car, making the car both sophisticated and complicated. However, added functions such as el
June 27, 2012 Read time: 3 mins
RSSElectrification of the automobile is not limited to the electric vehicles (EVs). As a new report from Frost & Sullivan points out, conventional cars of today are partly electric in their own way, with most systems in the vehicle having electrical and electronic connections for better functionality. Certain high-end vehicles possess more than 90 electronic control units (ECUs) to control the various modules within the car, making the car both sophisticated and complicated.

However, added functions such as electric power steering (EPS), electronic braking systems (EBS), GPS-based navigation units, engine management systems etc. make the electrical and electronic (E/E) architecture of the car highly complicated. Future systems are expected to be all the more refined, warranting more ECUs and a much more robust E/E network.

“The car of today has to step-up from a simple 12 Volt on-board power supply to 42V or a proposed 48V power net, in order to support all new systems and applications for enhanced performance, thereby demanding a massive investment across the entire ecosystem,” says Frost & Sullivan industry analyst, Prana Tharthiharan Natarajan. “The benefits of reduced weight of wiring harnesses, more powerful motors for the various motorised applications and high-power ICs do substantiate that the automobile is poised to offer the end-consumer a better experience. But will the benefits also outweigh the costs, is the crucial question.”

Key German auto OEMs 1731 BMW, 2069 Daimler and 2125 Audi-1656 Porsche-994 Volkswagen released a joint statement in June 2011, stating that they are keen on introducing a 48V on-board power net as a supplementary power supply for high-power applications such as electric power steering (EPS), brake-by-wire (BBW) and heating, ventilation & air-conditioning (HVAC) systems. Not only is it technically and economically difficult to employ these applications with a standard 12V power net, but it is also increasingly difficult to draw the best performance characteristics with the lack of a high-voltage power net.

On the other hand, not all components and systems designed for the present 12V power-net can be used in the proposed 48V power net. Suppliers are actively working with OEMs in close coordination to develop 48V-specific solutions.

“We expect these innovations to be introduced for power-hungry applications such as EPS, EBS, climate control and electrically powered interior systems such as power-windows, and automatic door-closures,” explains Natarajan.

“The 48V power net is clearly expected to be a step towards creating smarter cars that better utilise the energy available in the vehicle,” believes Mr. Natarajan. “The efforts for introducing the 48V power net lies mainly with the German OEMs mentioned earlier. However, with the entire value chain trying to get ready for this paradigm shift, component manufacturers are holding talks with OEMs from other regions to ensure that the investment reaps sufficient returns to justify the enormous fiscal outlay involved. Sooner or later, many more OEMs are expected to join the bandwagon in implementing a supplementary 48V power net to support the existing 12V power net,” he concludes.

The future is clearly one of split-voltage and direct transition to 48V is not expected to happen in the next decade. The partial step-up to a higher voltage will pave the way for identifying the challenges in completely migrating to a 48V architecture.

For more information on companies in this article

Related Content

  • Sensor solutions cuts maintenance and emissions
    December 8, 2014
    The new raft of sensor technology can provide cost savings as well as additional functionality, as David Crawford discovers. Austria’s third-largest city, Linz, with a population of around 200,000, is recording substantial savings in its urban tram network within 18 months of introducing a new, high-technology approach to its public transport management. Tram, bus and trolleybus operator Linz Linien forms part of city utilities management company Linz AG, which has been carrying out a wide-ranging Smart Cit
  • Telematics standards need to evolve to keep up with technology
    July 30, 2012
    Scott Andrews and Scott McCormick take a look at how standards development for the telematics environment needs itself to evolve in order to stay abreast of technological advances. While the road has been somewhat arduous, telematics has evolved from a research activity to a resource for fleet operators, consumers and road management authorities.
  • European market for EV charging stations expected to grow
    May 31, 2013
    New analysis from Frost and Sullivan, Strategic Technology and Market Analysis of Electric Vehicle Charging Infrastructure in Europe, finds that the market for electric (EV) charging stations is expected to grow rapidly from 7,250 charging stations in 2012 to over 3.1 million by 2019 at a compound annual growth rate (CAGR) of 113.3 per cent over the period 2012-2019. France, Germany, Norway and the United Kingdom are expected to lead the market due to the high adoption rates of EVs in these countries.
  • Mobility, autonomous vehicles, connected cars and big data analytics ‘present growth opportunities in 2017’
    June 8, 2017
    New research by Frost & Sullivan indicates that e-mobility solutions, autonomous vehicle technology, and other digitisation advances are creating new and exciting opportunities in the automotive industry.