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Patent

Electric vehicle with variable efficiency regenerative braking depending upon battery charge state

TLDR
In this article, an electric vehicle is controlled to conform its operation to that of a conventional internal-combustion engine powered vehicle, where the charging of the batteries by the auxiliary source of electricity and from dynamic braking is ramped in magnitude when the batteries lie in a state of charge between partial charge and full charge, with the magnitude of the charging being related to the relative state of the battery.
Abstract
An electric vehicle is controlled to conform its operation to that of a conventional internal-combustion-engine powered vehicle. In some embodiments, the charging of the batteries by the auxiliary source of electricity and from dynamic braking is ramped in magnitude when the batteries lie in a state of charge between partial charge and full charge, with the magnitude of the charging being related to the relative state of charge of the battery. The deficiency between traction motor demand and the energy available from the auxiliary electrical source is provided from the batteries in an amount which depends upon the state of the batteries, so that the full amount of the deficiency is provided when the batteries are near full charge, and little or no energy is provided by the batteries when they are near a discharged condition. At charge states of the batteries between near-full-charge and near-full-discharge, the batteries supply an amount of energy which depends monotonically upon the charge state. Charging of the batteries from the auxiliary source is reduced during dynamic braking when the batteries are near full charge. Control of the amount of energy returned during dynamic braking may be performed by control of the transducing efficiency of the traction motor operated as a generator.

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References
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Hybrid electric vehicle

TL;DR: In this article, an improved hybrid electric vehicle includes an internal combustion engine and an electric motor, which provides torque to drive the vehicle directly through a controllable torque transfer unit.
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Generator controller and controlling method for hybrid vehicle

TL;DR: In this paper, a voltage V B of a battery (16) is compared with a predetermined value V max (100), and when the battery voltage is lower than the predetermined value, as a result of the comparison, a state of charge (SOC) of the battery is discriminated.
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Power source control apparatus for hybrid vehicles

TL;DR: In this paper, a power source control apparatus for parallel and series hybrid vehicles is presented, which determines a required torque of the generator-motor based on a parameter indicating an operational mode of the vehicle and interrupts fuel supply to the internal combustion engine in a cycle.
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Brake system in electric vehicle

TL;DR: In this paper, the regenerative braking force for the driving wheel exceeds a theoretic distribution characteristic of the braking forces for the follower and driving wheels at least during an initial braking.
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Fuel cell powered propulsion system

TL;DR: In this paper, a solid oxide fuel cell (SOFC) was combined with a turbine (104) driven by the exhaust gases of the fuel cell, and the turbine drove a generator whose power output supplemented the SOFC's power output to power the electric motor.