The interesting bit here is the development of the turbochargers. This is an area that has been slow to change over the years, due to the small amount of turbocharged vehicles available new[1]. Most turbos are used in heavy machinery (garbage trucks, big rigs, etc.), a slowly changing industry. They do not face the same regulations as regular autos.
Seems they are doing away with the wastegate and replacing it with an electric motor. Using the energy of the engine exhaust to generate electricity. This energy is normally lost or wasted on a typical turbocharged or naturally aspirated engine. The interesting part is that wastegates are simple flow valves that control how much exhaust gasses go through the turbo's turbine. Doing away with the wastegate means that they will be limiting the amount of airflow that goes into the engine in some other way. I doubt that they are using all of the boost that the turbo creates, because it would be a risky proposition to do so. Changes in ambient temperature would greatly impact the fuel delivery system. Not to mention it would increase the possibility of the fuel pre-igniting inside the combustion chamber.
There have been developments in the turbocharger industry, most have been in the way of better materials and turbine/compressor blade designs. I know that Garret (a manufacturer of turbos) has developed a turbocharger with a built-in electric motor. The motor is used to eliminate lag by spinning the turbocharger to a pre-defined RPM. Turbo lag is simply the period of time that it takes a turbocharger to spin up to the speed and start producing boost (back pressure inside the engine). By having an electric motor spin the turbo to a given setting, turbo lag is eliminated, and fuel economy is improved. How may fuel economy be improved? In many vehicles, turbo lag is fought against through the fuel maps (the amount of fuel deliver at a given RPM point). In cases, more fuel is fed to the engine to increase the expansion of the exhaust gases. An exhaust gas that has more unburned fuel in itself will burn most of that excess in the high temperature area between the engine block and the turbocharger. This expansion greatly increases the turbo speed. Though this comes at a cost of higher exhaust emissions, and lower fuel economy.
There have been developments into a new type of turbocharging system. Where the turbo unit is driven by by a hydraulic pump, rather than the engine exhaust. In this system, the turbo speed would rise by increasing the pump speed. For some reason this never reached production. But it could have revolutionized the industry. In a way, having an electric motor in place of the wastegate might turn out to provide the same benefits this system would have provided to passenger autos. Being able to re-capture energy lost in the exhaust system would be a win in terms of efficency.
[1] In the USA market. There are plenty of turbocharged diesel autos in the rest of the world. They are not common in the USA, though.