[0001] The invention relates to a wheel chair comprising a frame and two front wheels, which
can each be driven by an electric motor, and at least one castor present on the rear
side, which is provided with a pivot pin comprising a straight-ahead position, and
a control unit for the electric motors, which control unit comprises a control element,
by means of which the user can control the speed and the direction of the wheel chair,
which control element delivers a speed signal and a directional signal, whereby the
control unit controls the electric motors in dependence on the output signals of said
control element.
[0002] Such a wheel chair is described in the applicant's European patent application No.
9 520 638. The control unit operates in the usual manner, such that the speed signal
determines the rotational speed of the electric motors, whilst a directional signal
which indicates a deviation from the straight-ahead position effects a speed difference
between the two electric motors. In order to ensure a proper directional stability
in straight-ahead direction when moving at higher speeds, that is, speeds in excess
of approximately 6 km/h, this wheel chair is fitted with a mechanical facility which
exerts a rotary force on the pivot pin in the direction of the straight-ahead position
when the pivot pin pivots from the straight-ahead position.
[0003] The object of the invention is to provide a wheel chair of the above-mebtioned kind,
wherein the control unit for the electric motors that is already present is used advantageously
for ensuring a proper directional stability in straight-ahead direction.
[0004] In order to accomplish that objective the wheel chair according to the invention
is fitted with a position sensor, which delivers a rotational position signal in dependence
on the rotational position of the pivot pin of the castor, whereby control means are
provided, which deliver a compensated directional signal to the control unit, such
that the control unit controls the electric motors partially in dependence on the
rotational position signal.
[0005] In this manner a wheel chair is obtained wherein the usual control unit is used advantageously
by means of a simple electronic circuit for ensuring a proper directional stability
in straight-ahead direction.
[0006] The invention will be explained in more detail hereafter with reference to the drawing,
which shows an embodiment of the wheel chair according to the invention.
[0007] Fig. 1 is a side view of an embodiment of the wheel chair according to the invention.
[0008] Fig. 2 is a diagrammatic plan view of the frame of the wheel chair of Fig. 1.
[0009] Fig. 3 is a side view of the frame of Fig. 1.
[0010] Fig. 4 is a block diagram of the control means and the control unit of the wheel
chair of Fig. 1.
[0011] Fig. 1 shows a side view of a wheel chair which comprises a frame 1 as shown in Figs.
1 and 2 and two front wheels 2 and 3, which can each be driven by an electric motor
4 and 5 respectively. On the rear side frame 1 is supported by a centrally positioned
castor assembly 6, which comprises two closely spaced wheels 7. Castor assembly 6
is provided with a pivot pin 8, which is illustrated in the straight-ahead position
in the drawing. For a more detailed description of the construction of frame 1 and
the associated parts reference is made to the applicant's above-mentioned European
patent application No. 9 520 638.
[0012] As shown in Fig. 1, the wheel chair conventionally comprises a seat 9, an adjustable
back support 10, leg supports 11 and armrests 12. The inclination of seat 9 is adjustable,
as is described in more detail in the above-mentioned European patent application.
[0013] Electric motors 4 and 5 can be controlled by means of a control unit indicated at
13 in the diagram of Fig. 4, which control unit is known per se and need not be described
in more detail herein, therefore. The control of electric motors 4, 5, and thus of
the speed and the direction of the wheel chair, takes place by means of a control
element 14, in the form of a joystick in the present embodiment, which is supported
by one of the armrests 12, so that control element 14 is easy to operate for the user.
Joystick 14 can be pivoted in all directions from a neutral position, in a manner
which is known, whereby the direction in which the joystick is moved indicates the
desired direction of movement of the wheel chair, and whereby the amount of travel
of the joystick indicates the desired speed of the wheel chair. Joystick 14 delivers
two output signals thereby, a speed signal 15 and a directional signal 16. Control
unit 13 excites the electric motors 4 and 5 in dependence on these two signals. If
directional signal 16 indicates a direction deviating from the straight-ahead direction,
a speed difference between the two electric motors 4, 5 will be effected, such that
the wheel chair will move in the desired direction.
[0014] It has become apparent that the stability of the castor assembly 6 is unsatisfactory
at higher speeds, that is, speeds in excess of approximately 6 km/h, if no measures
are taken to ensure directional stability of the castor assembly 6 in straight-ahead
direction. The wheel chair described in the aforesaid European patent application
No. 9 520 638 is fitted with a mechanical facility for that purpose, by means of which
an excellent directional stability in straight-ahead direction is obtained.
[0015] In the wheel chair shown in the drawing a position sensor 17 is provided for ensuring
a proper directional stability in straight-ahead direction, which sensor delivers
a rotational position signal in dependence on the rotational position of pivot pin
8 of castor assembly 6. In the described embodiment position sensor 17 is a potentiometer,
which can be turned through 360°. It is also possible to use other types of position
sensors, however. The rotational position signal of position sensor 17 is preferably
supplied to a processing element 20 via a limiting element 18, whose operation will
be discussed in more detail hereafter, and a switch 19. Said processing element 20
also receives the directional signal from control element 14. Processing element 20
combines the two input signals into a compensated directional signal, which is supplied
to control unit 13. This means that when the rotational position signal of position
sensor 17 indicates that pivot pin 8 has pivoted from the straight-ahead position,
whilst the directional signal of operating element 14 indicates that the user wishes
to move straight ahead, processing element 20 will deliver a directional signal to
control unit 13 which causes control unit 13 to excite electric motors 4 and 5 unevenly,
such that pivot pin 8 will return to the straight-ahead position. In a simple embodiment
processing element 20 is to that end configured as an adding circuit, which adds the
negative rotational position signal to the directional signal. Said adding circuit
may for example comprise a differential amplifier.
[0016] Limiting element 18 limits the rotational position signal of position sensor 17 to
a small deviation from the value associated with the straight-ahead position, so that
the compensated directional signal that is supplied to control unit 13 is limited,
so that on the one hand an overly strong reaction of electric motors 4, 5 is avoided,
while on the other hand a desired change of direction effected by means of control
element 14 remains possible.
[0017] Since the compensated directional signal for ensuring directional stability in straight-ahead
direction is only required when moving ahead at a higher speed, the speed signal 15
of control element 14 is also supplied to a comparator 21, which compares the speed
signal with a reference value V
ref, which corresponds with a predetermined minimum speed in forward direction. When
said reference value is exceeded, comparator 21 will trip switch 19, so that the rotational
position signal of position sensor 17 is only supplied to processing element 20 at
a higher speed in forward direction.
[0018] Preferably an amplifier 22 is provided between position sensor 17 and limiting element
18, as a result of which even a small deviation from the straight-ahead position will
lead to adequate compensation.
[0019] From the foregoing it will be apparent that the control unit 13 for ensuring directional
stability in straight-ahead direction of the wheel chair, which control unit is already
available, is used in an advantageous manner in the above-described wheel chair. In
addition to that the safety of the wheel chair is improved by the fact that abrupt
changes of course at higher speeds are prevented.
[0020] Although the above-described wheel chair uses a centrally positioned castor assembly,
it is also possible, of course, to fit the wheel chair with two castor assemblies
or with single castors at the outer ends of the wheel chair. In that case a position
sensor may be placed on one of the pivot pins, or on both.
[0021] The invention is not limited to the above-described embodiment, which may be varied
in various ways within the scope of the invention.
1. A wheel chair comprising a frame (1) and two front wheels (2, 3), which can each be
driven by an electric motor (4, 5), and at least one centrally positioned castor (6,
7) present on the rear side, which is provided with a pivot pin (8) comprising a straight-ahead
position, and a control unit (13) for the electric motors, which control unit comprises
a control element (14), by means of which the user can control the speed and the direction
of the wheel chair, which control element delivers a speed signal (15) and a directional
signal (16), whereby the control unit controls the electric motors in dependence on
the output signals of said control element, characterized by a position sensor (17), which delivers a rotational position signal in dependence
on the rotational position of the pivot pin (8) of the castor (6, 7), wherein control
means (18-21) are provided, which deliver a compensated directional signal to the
control unit (13), such that the control unit controls the electric motors (4, 5)
partially in dependence on the rotational position signal.
2. A wheel chair according to claim 1, characterized in that said control means (18-21) comprise a processing element (20), which combines the
directional signal from the control element (14) with the rotational position signal
from the position sensor (17) into a compensated directional signal for the control
unit (13).
3. A wheel chair according to claim 2, characterized in that said position sensor (17) is connected to the processing element (20) via a switch
(19), wherein means (21) are provided which trip the switch if the speed signal from
the control element exceeds a threshold value, which threshold value preferably corresponds
with a minimum speed in forward direction.
4. A wheel chair according to claim 3, characterized in that said speed signal (15) is supplied to a comparator (21), whose output controls said
switch (19).
5. A wheel chair according to claim 2, 3 or 4, characterized in that said processing element (20) is an adding circuit, which adds the negative rotational
position signal to the directional signal (16).
6. A wheel chair according to any one of the preceding claims, characterized in that a limiting element (18) is provided, which limits the rotational position signal
to a predetermined rotation from the straight-ahead position of the pivot pin (8).
7. A wheel chair according to claim 6, characterized in that an amplifier (22) is provided between said position sensor (17) and said limiting
element (18).
8. A wheel chair according to any one of the preceding claims, characterized in that said position sensor (17) is a potentiometer, which can be turned through 360°.