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Ward-Leonard Speed Control

Ward leonard method of speed control is used because of:
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Answer & Explanation
Correct AnswerA. Fine speed control over whole range

Quick Explanation

A — Fine speed control over whole range. The Ward Leonard system provides smooth DC motor speed variation by adjusting the generator output voltage.

Formula / Key Relation

N ∝ (Va − IaRa)/Φ

Detailed Explanation

Correct answer: A — Fine speed control over whole range

How the Ward Leonard system controls speed

In the Ward Leonard system, a prime mover drives a DC generator, and the generator supplies the armature of the DC motor being controlled. Adjusting the generator field current changes its generated voltage. This provides a continuously adjustable armature voltage for the controlled motor.

N ∝ (Va − IaRa)/Φ

Here Va is motor armature voltage, IaRa is the armature resistance drop, and Φ is motor field flux. With approximately constant motor flux, increasing the generator output voltage increases motor speed. Reducing the voltage reduces speed smoothly, including operation at low speeds.

Below base speed, armature-voltage control normally gives a constant-torque operating region within current limits. Above base speed, weakening the motor field can extend the speed range, approximately at constant power. Reversing generator voltage reverses motor direction, and suitable arrangements also permit electrical braking.

The main benefit is therefore fine, smooth speed control over a wide range. The motor–generator set requires several machines, space and maintenance, and introduces additional conversion losses. Its historical appeal was controllability, particularly for duties such as hoists and rolling mills.

Quick Trick

Ward–Leonard’s headline advantage: stepless control.

Why Other Options Are Wrong

B is not the defining advantage. C is false because the equipment is costly. D is false because multiple rotating-machine conversions reduce overall efficiency compared with modern electronic drives.

Common Mistake

Choosing ‘high efficiency’ because the control is smooth. Smoothness and efficiency are different; the classic set has substantial conversion losses.

Exam Tip

Ward–Leonard = variable generator voltage applied to DC motor armature.

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