Developers: | Drive Electro (NIIKEU) |
Date of the premiere of the system: | 2017 |
Branches: | Transport |
Content |
2017
13 trolleybuses in Tula
On February 28, 2017 the Drive Electro company announced results of operation of 13 trolleybuses during the winter period: the run in a standalone mode (without contact network) each machine exceeded 38 thousand km.
Technical implementation of the trolleybus allows it, moving under contact network, to charge accumulators and to pass without contact network up to 15 km in those parts of the city where it is absent.
According to the statement of Tulgorelektrotrans company, operation of trolleybuses on batteries is conducted the third winter in hard frosts.
We watch closely how there takes place operation of trolleybuses as it not only the first similar experience in the world, but also very perspective view of transport for the country leading by the number of the electric transport. Sergei Ivanov, CEO of Drive Electro |
For February 28, 2017 in Tula 13 similar trolleybuses are operated.
Trolz in St. Petersburg
In St. Petersburg started at the beginning of 2017 test operation of the Trolza trolleybus with batteries of the autonomous course from Drive Electro company. Tests of the innovation equipment take place in different districts of the city as in day, and at night to estimate operation of the machine in different temperature conditions. It is planned also that further during trial operation the trolleybus will ply on route No. 7 (from ost. "Stakhanovtsev Street" to ost. "Krasnogo Kursanta Street"). Route extent in forward direction is 11.5 km, in the return –11.37 km.
The uniqueness of the trolleybus with the increased autonomous course consists in use of Drive Electro batteries of so-called "second generation" – on the basis of lities-titanatnykh of accumulators, – more than 15 km allowing to overcome as the electrobus in any weather from-45 to +40 °C.
The CEO of Drive Electro Sergei Ivanov explained: "The feature of the device of the trolleybus with the system of the autonomous course allows it, moving under contact network, to charge accumulators and to pass then in those parts of the city where it was not carried out. It is very relevant for new areas and the developing cities". Thanks to the trolleybus with a large supply of the autonomous course it is possible not only to prolong routes of eco-friendly public transport to those areas where there is no infrastructure of GET, but also in many cases to avoid traffic standstill. To such trolleybuses neither accidents, nor break or frosting of lines, failure of substations are terrible. It can easily lower current collector bars, overcome a part of a route independently, and then to be loaded quickly from contact network. The Russia's first route of the trolleybus with the autonomous course was open in September, 2014 in Tula. Today in the city the third winter in a row 13 machines connecting new areas to the downtown are used. The run of each of them exceeded 37500 km in a standalone mode. Today it is the longest operating experience of the similar vehicle as in Russia, and abroad.
Thanks to the trolleybus with a large supply of the autonomous course it is possible not only to prolong routes of eco-friendly public transport to those areas where there is no infrastructure of GET, but also in many cases to avoid traffic standstill. To such trolleybuses neither accidents, nor break or frosting of lines, failure of substations are terrible. It can easily lower current collector bars, overcome a part of a route independently, and then to be loaded quickly from contact network.
The Russia's first route of the trolleybus with the autonomous course was open in September, 2014 in Tula. Today in the city the third winter in a row 13 machines connecting new areas to the downtown are used. The run of each of them exceeded 37500 km in a standalone mode. Today it is the longest operating experience of the similar vehicle as in Russia, and abroad.
Electric vehicles
- System of operational and technology management of the distribution electric networks
- Revolta Engineering
- Drive Electro
- Drive Electro KAMAZ Electrobus
- Trolza
- Polytech Solar Electric vehicle
- Modulo Electrobus
- Tesla Model, Tesla Semi Truck- Tesla Motors
- Polestar - Volvo Cars Group
- Toyota Electric vehicles
- Audi e-tron (electric vehicle)
- Honda Electric cars
- Ford Electric vehicles Ford Transit Custom PHEV
- Volkswagen Electric vehicles Volkswagen Moia
- Continental
- Bosch e-axle
- EVlink Wallbox of Electrogas station
- Nissan Leaf Nissan Yandex. Car Concept
- Siemens eHighway Electric vehicles
- Catalyst E2 (electrobus)
- Dyson
- Roborace Robocar
- Mercedes-Benz Concept IAA
- Enevate
- Aston Martin RapidE Electric vehicle
- Jaguar I-Pace (electric vehicle)
- Porsche Taycan electric vehicle
- Enverge (electrocrossover)
- Manta5 Hydrofoiler XE-1 (water electrobicycle)
- Systems of accumulation (storage) of energy (SNE)
- Lity-titanatnye accumulators
- Li-ion
- Lithium-air accumulator (lithium-air, Li-air)
- Lithium-pol cells
- Li-ion cells, LIA (market of Russia)
- Electrical accumulator
- Accumulators with solid electrolyte
- Solid-state accumulators
- Starter accumulators (market of Russia)
- Portable accumulators (world market)