![]() ![]() The inverter connects the battery with the electric motor.Electronic power flow management ensures that the vehicle runs efficiently. The electric control device connects the electric motor and the IC engine and automatically switches to the optimum drive, depending on which is the most efficient at that time.An internal combustion engine is especially efficient when it works at a constant speed at the optimum operating point. The internal combustion engine is the conventional drive system that gets its energy mainly from gasoline or, occasionally, diesel.As a generator, it converts the kinetic energy from braking into electric energy and feeds this energy back to the battery via the inverter. It has two functions: On the one hand, it drives the vehicle electrically in certain driving situations. The individual components of a hybrid driveĪs well as many other components, the following parts play an important role in a hybrid vehicle: Other important components of a hybrid drive system are an electronic control device that decides when to switch between the two drive systems, and an inverter that converts the direct current from the battery into alternating current and controls the electric motor. Consequently, a hybrid vehicle has at least two energy storage systems – a fuel tank and a battery – and at least two energy converters, the electric motor and the IC (internal combustion) engine. The power for hybrid vehicles comes, on the one hand, from fossil fuel and, on the other, from electrical energy. This means a 47 percent increase compared to 2019. ![]() While more than a million new hybrid vehicles were registered throughout the EU in 2019, this number already stood at more than 1.4 million by 2020, according to data service provider Jato Dynamic. ![]() The electric motor either supports or replaces the internal combustion engine – especially where it is inefficient – and, in certain situations, boosts performance.įor this reason – and due to various government promotion programs – sales figures for hybrid vehicles are increasing. The synthesis of both drive systems enables lower fuel consumption and emissions at acceptable additional purchase costs, dynamic drivability and a long range. And they need a large and hence more expensive battery. However, because of the battery, electric cars have a shorter range than cars with internal combustion engines. With electric motors, acceleration is also faster and more dynamic. A car with an electric motor does not produce local exhaust gases or noise, and it doesn’t use fossil fuels, provided the electricity comes from renewable sources.A considerable proportion of the energy from the fuel is wasted. But on the negative side, they consume fuel, cause emissions, and are noisy. Another advantage of vehicles with internal combustion engines is that they are still less expensive to purchase than electric cars. As batteries become more efficient, the range will increase. This is not because of the motor itself, but due to the energy storage unit: the battery. Currently, the main benefit of a car with a gasoline or diesel engine compared to an electric drive system is its range.The aim of a hybrid drive is to combine the advantages of both drive systems and balance out their disadvantages: Accordingly, a hybrid vehicle obtains its energy from two different sources and therefore has more than one drive system: generally, an electric motor and an internal combustion engine – usually with gasoline as fuel diesel is less common. The word “hybrid” has Greek roots and means “from two origins”. Many other countries have also defined strict limits. And by 2030, this target is to be reduced by a further 37.5%. From 2021, the EU fleet-wide average emission target for new cars will be 95 g CO 2 per kilometer. ![]() They may also be able to meet the increasingly more stringent limits for passenger cars as specified, for example, by the EU. This means that the vehicles can drive further than pure electric cars, and they consume less gasoline or diesel than vehicles running solely with an internal combustion engine. Hybrid vehicles offer a solution: They combine an electric drive system and an internal combustion engine. However, in many cases, pure electric cars are not able to keep up with conventional vehicles: They have a smaller driving range, batteries are expensive, which translates into higher vehicle prices, and, in many regions, the network of charging stations is inadequate. They are increasingly being replaced with electrified drive systems. Reliance on gasoline and diesel engines needs to be reduced so that fossil fuels can be replaced. That’s why mobility must become carbon neutral – not in the distant future, but as soon as possible. Climate change, increasing emission levels: According to a study by the Intergovernmental Panel on Climate Change, traffic is responsible for 24% of all CO 2 emissions worldwide. ![]()
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