Handling machine comprising a removable control panel and corresponding machine control method

The handling machine addresses safety concerns during remote operation by using a processing unit with safety detection modules to manage operating modes based on control desk positioning and driver safety, thereby reducing accident risks.

FR3146670B1Active Publication Date: 2025-05-09MANITOU BF SA
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Patent Information

Application Number
FR2023002517
Authority / Receiving Office
FR · FR
Patent Type
Patents
Current Assignee / Owner
Filing Date
2023-03-17
Publication Date
2025-05-09
Estimated Expiration
2043-03-17

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Patent Text Reader

Abstract

The invention relates to a material handling machine comprising a control panel (12) removable from a receiving support (212) located in a driver's cab, and a processing unit configured to allow the machine to operate in a nominal mode (M1) when the presence of the operator in the seat (2021), the fastened state of the seatbelt (2022), and the position of the control panel in or on the receiving support are detected, and to limit the machine's operation to a degraded operating mode (M2) when the panel is removed from the receiving support (212), the absence of the operator in the seat, or the unfastened state of the seatbelt is detected. The invention also relates to a corresponding machine control method. Figure for the abstract: Fig. 1B
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Description

Title of the invention: Handling machine comprising a removable control panel and corresponding machine control method FIELD OF THE INVENTION

[0001] The present invention relates generally to handling machines and the control of the machine for its movement on the ground and / or the handling of loads or people.

[0002] Such a machine may in particular be produced in the form of a telescopic arm truck, a mechanical excavator, a bucket loader, a nacelle, a masted truck or another type of machine. PREVIOUS ART

[0003] Handling machines are known from the state of the art which comprise a removable control console allowing a driver to control these machines from inside the machine's control station or while remaining on the ground from outside the machine's control station.

[0004] It is however desirable to improve the safety of piloting such machines.

[0005] The aim of the present invention is to propose a new handling machine and a corresponding method making it possible to overcome all or part of the problems set out above. Summary of the invention

[0006] To this end, the invention relates to a load or person handling machine comprising: a rolling chassis; a ground movement system for the rolling chassis of the machine; a machine handling system carried by the chassis; characterized in that the machine comprises: a removable control panel which includes a control device for the ground movement system of the rolling chassis of the machine and a control device for the handling system of the machine; a cockpit carried by the chassis, the cockpit comprising: - a control panel receiving support configured to allow the control panel to be received in a removable manner; - a seat, and a driver presence sensor on the seat, such as a weight sensor in the seat; - a seat belt for the driver and a hooking and unhooking system belt hook; the machine also comprising a processing unit which includes: a driver presence detection module configured to detect the presence or absence of the driver on the seat from data provided by the driver presence sensor on the seat; a belt status detection module for detecting the attached or unattached status of the driver's belt; a control panel state detection module configured to detect the positioned or removed state of the removable control panel relative to the receiving support; a radio communication module configured to communicate with a radio communication module of the control panel; the processing unit also including a machine operation management module configured to: authorize the operation of the machine in a so-called nominal operating mode, when the presence of the driver on the seat, the attached state of the belt and the positioned state of the control panel in or on the receiving support are detected, the control panel being configured to, in said nominal mode, enable control of at least part of the ground movement system of the rolling chassis of the machine and of the handling system of the machine; and limit the operation of the machine to a mode of operation known as degraded mode, when at least one of the following conditions is met: - the control console is removed from the receiving support in the cockpit; - the absence of the driver on the cockpit seat is detected; - the driver's seat belt is unfastened; the degraded operating mode being an operating mode for which: - the maximum permitted value of at least one operating parameter of the machine is reduced compared to the maximum permitted value of said operating parameter of the machine in nominal mode; - and / or a machine function available in nominal mode is deactivated in degraded mode; the radio communication module of the control console being configured to communicate with the radio communication module of the processing unit to enable the control console to control the ground movement of the rolling chassis and / or the handling system when the control console is removed from the receiving support.

[0007] The limitation of performance or capacity of the machine when the user controls the machine with the control panel, but without said control panel being positioned in its receiving support of the control station, thus allows the user to control the machine from outside the control station of the machine while reducing the risk of accident.

[0008] In particular, when the handling system comprises a lifting arm, reducing the maximum ground travel speed of the machine, and / or the maximum acceleration, makes it possible to limit the instability of the machine and therefore the risk of the machine overturning to take into account the fact that a user located outside the control station of the machine can hardly judge or feel the effects of the control of the machine with respect to the instability of the machine or the fact that the control of the machine is more difficult for a user located outside the control station, as opposed to control of the machine by a user present in the control station.

[0009] The nominal operating mode is a mode for which the machine has maximum operating capacities (i.e. capacities corresponding to the maximum operating values ​​which may nevertheless be limited by safety parameters defined for example in charts, for example as a function of the weight of the load handled and / or the angle of the arm and / or the lateral inclination of the machine, etc.). In other words, in nominal mode, all of the machine's functions can be used up to their maximum value.

[0010] The machine may also include one or more of the following characteristics taken in any technically admissible combination.

[0011] According to one embodiment of the invention, in degraded mode, the processing unit is configured to limit the maximum value of the speed, or of the acceleration, of movement on the ground of the rolling chassis of the machine relative to the maximum value of the speed, or of the acceleration, authorized in nominal mode.

[0012] According to one embodiment of the invention, the handling system comprises a lifting arm that can be tilted relative to the chassis, between a low position and a high position, the lifting arm being provided with handling equipment, such as a work platform or a fork system, the lifting arm preferably being pivotally mounted at the rear of the machine, and in which, in degraded mode, the processing unit is configured to limit the maximum permitted value of the angular speed and / or angular acceleration of the lifting arm relative to the maximum permitted value of the angular speed and / or angular acceleration of the lifting arm in nominal mode.

[0013] According to one embodiment of the invention, the handling system comprises a lifting arm which can be tilted relative to the chassis, between a low position and a high position, the lifting arm being provided with handling equipment, such as a work platform or a fork system, the lifting arm being telescopic and preferably pivotally mounted at the rear of the machine, and, in degraded mode, the processing unit is configured to limit the output speed and / or the maximum permitted output acceleration of the lifting arm relative to the output speed and / or the maximum permitted output acceleration of the lifting arm in nominal mode.

[0014] According to one embodiment of the invention, in the state positioned in or on the receiving support, the control console is pivotally mounted relative to or with the receiving support so as to form a steering control member by said pivoting mobility, such as a steering wheel, to allow the driver present in the cockpit of the machine to control a steering system of the wheels of the machine by pivoting the control console.

[0015] According to one embodiment of the invention, in the state positioned in or on the receiving support, the control console is mounted so as to pivot integrally with the receiving support which comprises a shaft, called the steering shaft, coupled to the wheel steering system so that the pivoting of the control console causes the steering shaft to pivot relative to the chassis.

[0016] According to one embodiment of the invention, the cockpit of the machine is devoid of an additional steering control member that can be used instead of the control console.

[0017] According to one embodiment of the invention, the control panel comprises a rechargeable battery and an electrical connection system connected to the battery, the electrical connection system of the control panel is configured to, in the positioned state of the control panel in or on the receiving support, be connected to an electrical connection system of the receiving support to allow recharging of the battery by an electrical power supply system of the machine.

[0018] According to one embodiment of the invention, the module for detecting the state of the control console is connected to the electrical connection system of the receiving support so as to detect the positioning of the control console in or on the receiving support when the electrical connection system of the control console is connected with the electrical connection system of the receiving support.

[0019] According to one embodiment of the invention, the electrical connection system of the control console is located on a lateral face and / or on a lower face, as opposed to an upper face of the control console which carries the control device of the ground movement system of the rolling chassis of the machine and the control device of the handling system of the machine, while the electrical connection system of the receiving support is located on a side face and / or on an upper face of the receiving support, so as to allow automatic connection of the electrical connection systems between them when the user places the control panel by gravity in the receiving support.

[0020] According to one embodiment of the invention, the machine comprises a locking system making it possible to lock the control panel to hold it in position in or on the receiving support, and to unlock the control panel relative to the receiving support to remove it.

[0021] According to one embodiment of the invention, the control device of the ground movement system of the rolling chassis of the machine is configured to allow the following to be controlled: - the speed and / or acceleration of the machine's rolling chassis on the ground; and - the direction of movement on the ground of the rolling chassis of the machine; and, - at least in degraded mode, the direction of the machine to allow a user to control the direction of movement on the ground of the rolling chassis of the machine from outside the cockpit.

[0022] According to one embodiment of the invention, the handling system comprising a lifting arm tiltable relative to the chassis, between a low position and a high position, the lifting arm being provided with handling equipment, such as a work platform or a fork system, mounted movable relative to the lifting arm, the lifting arm preferably being telescopic and preferably pivotally mounted at the rear of the machine, the control device of the handling system of the machine is configured to allow control of: the angle of inclination of the lifting arm relative to the rolling chassis and / or the movement of the equipment relative to the lifting arm.

[0023] The invention also relates to a method for controlling a load or person handling machine in accordance with any one of the preceding embodiments, the method comprising the following steps: the removable control console being positioned in or on the cockpit receiving support, the driver being seated on the cockpit seat and the driver's seat belt being attached: - detection of the positioned state of the removable control panel in or on the receiving support, - detection by the processing unit of the presence of a driver on the seat, - detection by the processing unit of the fastened state of the driver's seat belt, and - authorization by the processing unit of the operation of the machine in nominal mode; and, when the removable control console is removed from the cockpit receiving bracket, or the driver is not seated in the cockpit seat or the driver's seat belt is unhooked: - detection by the processing unit of the removed state of the removable control panel in relation to the receiving support, or of the absence of the driver on the cockpit seat or of the unhooked state of the driver's seat belt; and - limitation by the processing unit of the operation of the machine in degraded mode; the degraded operating mode being an operating mode for which: - the maximum authorized value of at least one operating parameter of the machine is reduced compared to the maximum authorized value of said operating parameter of the machine in nominal mode; - and / or a machine function available in nominal mode is deactivated in degraded mode. Brief description of the drawings

[0024] Other characteristics and advantages of the invention will emerge from the following description, which is purely illustrative and non-limiting and must be read in conjunction with the appended drawings, in which:

[0025] - [Fig.l] [Fig.l] is a schematic side view of a handling machine with lifting arm according to one embodiment, the handling machine comprising a control panel which is held by an operator outside the cockpit and which makes it possible to control the movement on the ground of the machine and / or the movement of the handling system of the machine;

[0026] - [Fig.lA] [Fig.lA] is a top view of a removable control panel according to one embodiment of the invention, the control panel comprising a device for controlling the movement on the ground of the machine and a device for controlling the movement of the handling system of the machine;

[0027] - [Fig.lB] [Fig.lB] is a schematic view of a processing unit of a handling machine according to one embodiment, the processing unit comprising a radio communication device and devices for determining different parameters or states of elements of the machine, the processing unit making it possible to control the machine according to different operating modes according to the data (parameters or state) determined;

[0028] - [Fig.2] [Fig.2] is a partial perspective view of a handling machine according to one embodiment of the invention, the user taking a seat in a cockpit to physically position the control console on or in a reception support (also called a docking station);

[0029] - [Fig.2A] [Fig.2A] is a partial perspective view from inside a control station of a handling machine according to an embodiment of the invention, such as the machine of [Fig.2], the user being seated and being able to turn, like a steering wheel, the removable control panel which is positioned in or on a receiving support, in order to steer the machine;

[0030] - [Fig.3] [Fig.3] is a schematic view of a removable control panel with the state mechanically coupled to a receiving support, according to a first embodiment of the invention, so that the pivoting of the console causes the receiving support to pivot, which is intended to be connected to the steering system of the machine, the receiving support preferably comprising a system for locking the control console relative to the receiving support;

[0031] - [Fig.3A] [Fig.3A] is a schematic view of a receiving support according to a second embodiment of the invention, configured to allow the reception of a removable control panel of a handling machine, the reception support preferably comprising a system for locking the control panel relative to the reception support, as well as the presence of control members for additional functions such as buttons;

[0032] - [Fig.4] [Fig.4] is a schematic view of a receiving support according to a third embodiment of the invention, configured to allow receiving a removable control panel of a handling machine, the receiving support being adapted to allow holding or detaching the control panel relative to the receiving support and allowing pivoting coupling of the control panel to the receiving support;

[0033] - [Fig.5] [Fig.5] is a schematic view of a locking / unlocking system rusting configured to allow the removable control panel to be kept attached (hooked) or detached (unhooked) relative to the receiving support in a handling machine according to one embodiment of the invention;

[0034] - [Fig.6] [Fig.6] is a schematic view of a rotary receiving support connected to the steering system of a handling machine according to one embodiment, and a removable control panel, the handling machine being configured to allow electrical recharging of a battery of the control panel in the electrically connected state of the control panel to the receiving support and to allow determining the electrically connected state or not of the removable control panel to the receiving support;

[0035] - [Fig.7] [Fig.7] is a flowchart comprising steps of a method of control of the machine according to one embodiment. DETAILED DESCRIPTION

[0036] A more detailed description of the invention is presented below with reference to the accompanying drawings, in which embodiments of the invention are shown. In the drawings, the size and relative sizes of the elements may be exaggerated for clarity. Like numerals refer to like elements throughout the drawings. However, the invention may be embodied in many different forms and should not be construed as being limited to the embodiments set forth herein.

[0037] A reference throughout the specification to "an embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment is included in at least one embodiment of the present invention. Thus, the occurrence of the phrase "in an embodiment" at various locations throughout the specification does not necessarily refer to the same embodiment. Furthermore, the particular features, structures, or characteristics may be combined in any suitable manner in one or more embodiments.

[0038] With reference to the figures, a handling machine 1 is proposed which comprises a rolling chassis 2 carrying a driver's station 202 (for example inside a cabin 20) and a load or person handling system 600 carried by the chassis 2, as for example illustrated in Figures 1 and 2.

[0039] The chassis 2 can be supported on the ground by means of a front axle 3 and a rear axle 4.

[0040] In [Fig.l], an example of a handling machine 1 with a handling arm has been shown. Alternatively, the handling machine may be a machine of another type, such as a masted forklift.

[0041] The handling machine 1 comprises a motorized system for moving the rolling chassis of the machine on the ground, also called a feed system. The feed system of the machine comprises, for example, an electric motor and / or an internal combustion engine, and a wheel transmission system. The machine also comprises a steering system 23 ([Fig.6]) which makes it possible to control the direction of at least a portion of the wheels of the machine to direct the movement of the machine.

[0042] The rolling chassis 2 carries a handling system 600 and an actuation system, such as a jack system, making it possible to move said handling system 600 relative to the chassis 2. The handling system 600 in [Fig.l] is a load handling system, but may be a person handling system.

[0043] As detailed below, the handling machine includes a processing unit 10 (also called a control unit), comprising for example a computer, which makes it possible to control the handling machine, and in particular to control the movement on the ground of the machine and the handling system, such as the position of the arm 6, via a human-machine interface. The human-machine interface comprises at least one control panel 12 as detailed below.

[0044] Handling system

[0045] The handling system 600 comprises handling equipment 14, such as a fork or bucket system or a work platform (basket), and a device 6 for driving movement, such as a lifting arm, at least for raising and lowering the load-carrying equipment 14. The handling system 600 may also comprise a system for moving the equipment 14 relative to the device 6 for driving the equipment 14 in raising and lowering.

[0046] According to one embodiment of the invention and as illustrated in [Fig.l], the handling system 600 comprises an arm 6, usually called a lifting arm, articulated to the rolling chassis 2 so as to be able to be moved between a so-called lowered position and a raised position. In the case of a masted forklift, the handling system comprises a mast equipped with a fork system mounted to slide along the mast.

[0047] The lifting arm 6 (or handling arm) is mounted on the chassis 2 and can be oriented around an axis of rotation 7. In particular, said axis of rotation 7 is horizontal when the rolling chassis 2 is resting on horizontal ground. According to a particular aspect, the arm 6 projects towards the front of the machine. According to one embodiment, the axis 7 is closer to the rear axle than to the front axle of the machine.

[0048] As explained below, the maximum authorized value of the angular speed or the angular acceleration of the arm relative to the chassis may depend on whether or not the control console is positioned in or on its receiving support in the cockpit 202.

[0049] The arm 6 is equipped with handling equipment which, in the example illustrated, comprises a load carrier 14, such as a fork or bucket system, articulated to the arm 6 by a connection 15 and configured to carry a payload 9. Alternatively, said handling equipment may be a work platform.

[0050] According to one embodiment of the invention, the arm 6 is of the telescopic type. The arm 6 thus comprises at least two deployable segments, for example using a deployment cylinder, not shown, arranged between the at least two segments. Alternatively, the arm may be a non-telescopic arm.

[0051] As explained below, the output speed or acceleration of the arm may be conditioned by the positioned or non-positioned state of the control console in or on its receiving support.

[0052] As illustrated in the example of [Fig.l], the device for actuating the arm 6 includes in particular a lifting actuator, for example a hydraulic cylinder 8, which makes it possible to move the arm 6 upwards and downwards around the horizontal axis 7. alternatively, the lifting actuator can be an electric cylinder.

[0053] The processing unit 10 can be configured to control the lifting actuator, for example via a hydraulic circuit (not shown), depending on the operator's request for a control device 2126 of the control console 12.

[0054] The hydraulic circuit may comprise a hydraulic pressure source and a hydraulic distributor interposed between the hydraulic pressure source and a solenoid valve for controlling the hydraulic cylinder 8.

[0055] Alternatively, the handling machine may be fully electric.

[0056] Cockpit

[0057] The cockpit 202 comprises a seat 2021 and a seat belt system. The seat belt system comprises a seat belt 2022 and a belt closing and opening device whose state is detected by the device 704 of the processing unit.

[0058] The cockpit 202 may be located inside a cabin 20 having a door allowing an operator to enter the cockpit 202 of the cabin 20 to pilot the machine.

[0059] The pilot station 202 comprises a support 212 for receiving the control console 12.

[0060] The removable control console 12 allows a driver to control the movement on the ground of the machine from inside the control station 202 of the machine in the physically coupled state of the control console 12 to a receiving support 212 present in the control station 202, or from outside the machine in the removed state of the control console relative to the receiving support, while remaining on the ground, or even from a work platform of the machine when the machine is equipped with such a platform.

[0061] According to a particular aspect, the control of the ground movement of the machine includes the direction of movement, the direction of movement (forward / backward), and preferably the speed of movement (acceleration and braking). Preferably, the control console 12 also allows the control of the handling system 600 from inside the control station of the machine in the physically coupled state of the control console 12 to the receiving support present in the control station, or from outside the machine in the withdrawn state of the control console relative to the receiving support.

[0062] As detailed below, the removable control panel according to the invention is configured to improve the safety of the control of the handling machine compared to known solutions of the state of the art by limiting at least part of the capacities or functionalities of the machine when the control panel command 12 is removed from the receiving support 212 for use outside the cockpit 202.

[0063] Processing unit

[0064] As recalled above, the machine comprises a processing unit 10, such as a calculator.

[0065] The processing unit 10 comprises a module 702 for detecting the presence of the driver in the cockpit 202 of the machine and a module 704 for detecting the seat belt, i.e. the buckled or open state of the driver's seat belt. The processing unit 10 also comprises a module 706 for detecting the positioned state of the control panel 12 in or on the receiving support 212.

[0066] The detection of the fastened (active) state of the belt and the presence of the driver in the cockpit (for example via a weight sensor in the driver's seat), in combination with the detection of the positioned state of the control console 12 in or on the receiving support 212, makes it possible to determine that the driver is in a situation of piloting the machine from inside the cockpit 202 in safety conditions suitable for authorizing operation of the machine in nominal mode (detailed below).

[0067] The processing unit 10 also comprises a radio communication module 708 configured to communicate with a radio communication module 128 of the control panel 12, so as to enable the machine to be controlled with the control panel 12 by radio transmission when the latter is removed from the receiving support 212 of the machine and used by an operator, for example outside the control station of the machine, in degraded mode (detailed below).

[0068] Removable control panel

[0069] The control console 12 comprises a first device 2123 for controlling the movement of the machine on the ground (as illustrated more particularly in the example of [Fig. 1A]), and a second device 2126 for controlling the handling system 600, a radio communication device 128, and preferably a battery 129. The devices 2123 and 2126 are, for example, levers or joysticks.

[0070] In the case where the handling system 600 comprises a lifting arm 6 and equipment 14 movable relative to the arm 6, it can be provided that the second control system 2126 of the handling system 600 is configured to allow the lifting and lowering of the arm to be controlled, as well as the movement (for example the inclination) of the equipment relative to the arm.

[0071] According to a preferred embodiment of the invention and as illustrated in the example of [Fig.6], the control console 12 comprises an electrical connection system 124 connected to a battery 129 of the control console. The electrical connection system 124 of the control console 12 is configured so that, in the po located from the control panel 12 in or on the receiving support 212, be connected to the electrical connection system 2124 of the receiving support 212 to allow recharging of the battery 129 by an electrical power supply system 24 of the machine which preferably comprises a battery.

[0072] The engagement of the electrical connection system 124 and the electrical connection system 2124 can be carried out by cooperation of lateral faces of the console 12 and the support 212, and / or by cooperation of the lower face of the console 12 and the upper face of the support 212. Indeed, the electrical connection system 124 of the control console 12 can be located on a lateral face and / or on the lower face, as opposed to the upper face of the control console 12 which carries the control device 2123 of the ground movement system of the rolling chassis of the machine and the control device 2126 of the handling system 600 of the machine, while the electrical connection system 2124 of the receiving support 212 can be located on a lateral face and / or on the upper face of the receiving support 212.

[0073] The device 706 is connected to the electrical connection system 2124 of the receiving support 212 so as to detect the coupling of the control console 12 in or on the receiving support 212 when the electrical connection system 124 of the control console 12 is connected with the electrical connection system 2124 of the receiving support 212.

[0074] According to one embodiment, the machine is devoid of a redundant steering control member, that is to say an additional steering control member which would make it possible to replace the steering control function of the device 2123 for controlling the movement on the ground of the machine of the control panel in the state removed from the control panel relative to its receiving support, and therefore to steer the machine in the absence of the control panel. This makes it possible to avoid forgetting to take the control panel with you when the machine is delivered to a construction site. The removability of the control panel and the absence of redundancy of at least the steering control makes it possible to limit the risk of theft of the machine when the control panel is removed and stored in a secure location.

[0075] According to one embodiment, it can also be provided that the machine is devoid of a redundant handling system control member, that is to say an additional handling system control member which would make it possible to replace a handling control function of the device 2126 of the control panel in the state removed from the control panel relative to its receiving support, and therefore to control the handling system of the machine in the absence of the control panel. This makes it possible to limit the manufacturing costs of the machine.

[0076] It can be provided that none of the commands present on the control console are repeated in the cockpit itself or that only part of the commands are repeated, such as a speed or acceleration command, for example an accelerator pedal present in the cockpit corresponding to an acceleration function of the ground movement control device 2123 of the machine of the control console. Similarly, it can be provided that none, all or only some of the commands of the handling control device 2126 of the console are repeated in the cockpit 202 of the handling machine.

[0077] In the state physically uncoupled from the support 212, and preferably in the state separated from the control station 202 of the machine, the control console 12 remains capable of communicating by wireless link with the processing unit 10 of the machine to allow a user to control the ground movement system (forward and direction, and preferably speed) of the machine with the first control device 2123 of the control console 12, and to control the handling system 600 with the second control device 2126 of the control console 12.

[0078] Preferably, the support 212 comprises a locking system 213 for the control console 12 on or in the support 212. The locking system can be activated and deactivated, to allow the control console 12 to be kept physically coupled to the support 212 and to be detached.

[0079] In particular, the locking system 213 may comprise a clip system for mechanically fixing the control console to the support. To ensure correct positioning at the time of clipping, keying devices may be fixed to the support to allow only one position of the control console 12 on or in the receiving support 212.

[0080] As illustrated for example in [Fig.3A], it can be provided that the receiving support 212 has a hollow location 2120 for receiving the control console. The receiving support can be provided with control members, such as buttons 2125, making it possible to control additional functions. The control members 2125 can take priority over equivalent control members of the control console when the control console is positioned in or on the receiving support, which makes it possible to improve the operating ergonomics.

[0081] As illustrated for example in [Fig.4], the support 212 may comprise an indexing system 2121 making it possible to define the position and orientation of the control console 12 relative to the support 212, in the coupled state of the control console 12 to the support 212.

[0082] Provision may be made for a location in the cockpit 202 to store the console when the machine is no longer in use. To prevent theft or vandalism, provision may be made for the control console to be lockable in position in or on the receiving support or in an anti-theft box provided in the driver's compartment (in particular in the cabin).

[0083] According to a particular aspect, the control panel also comprises additional elements, making it possible to control additional functions, such as: horn; lights; indicators; stabilizer; safety information; brake control; and / or camera.

[0084] Steering wheel

[0085] According to an advantageous embodiment, the control console can be used as a steering wheel when it is positioned in or on the receiving support 212 inside the cockpit 202. Preferably, in the state positioned in or on the receiving support 212, the control console is pivotally coupled to the receiving support rotatably mounted relative to the chassis and connected to the steering system 23 of the machine, as for example illustrated in [Fig.6].

[0086] Different technical means can be put in place to control the direction of the machine with the rotational movement of the control panel: - by mechanical connection: the control panel receiving support can be mechanically connected to a wheel steering component (e.g. steering column, orbitrol type pump system), or - by electronic connection: the control panel's receiving support can be electrically connected to an angle sensor which sends the angle information to a steering unit (e.g. orbitrol type pump system, electric cylinder) or to the processing unit.

[0087] The machine can thus be devoid of a conventional steering wheel permanently linked to the wheel steering system, thanks to the removable control panel which can be used as a steering wheel.

[0088] It may be provided that the processing unit 10 is configured to control the wheel steering system by controlling a gear ratio and / or a steering progressiveness adapted as a function of the position or speed or angular acceleration of the control console.

[0089] As detailed below, at least part of the performance or control capabilities of the ground movement and / or handling system of the machine is reduced when the control console is removed from the receiving support present in the cockpit to allow the user to control the machine outside the main cockpit, but with a reduced risk of accident.

[0090] According to one embodiment of the invention, the receiving support 212 of the control console 12 comprises a system for coupling the control console 12 in rotation with the support 212. In particular, the support 212 may be integral in rotation with a shaft 211, called the steering shaft, which is mounted to rotate relative to the chassis 2, and which forms part of the steering system of the machine or which is mechanically and / or electrically connected to the steering system of the machine.

[0091] According to this embodiment of the invention, the control panel 12 is configured with the support 212, such that in the state physically coupled to the support 212 (i.e. in the positioned state of the control panel 12 in or on the receiving support 212 with a mechanical coupling), the control panel 12 can be driven in rotation R12 by a user relative to the chassis 2 to form a steering control member of the machine.

[0092] Battery charging

[0093] As recalled above, it can be provided that the control console comprises a battery 129 which is rechargeable in the positioned state of the control console 12 in or on the receiving support 212.

[0094] Advantageously, the connection system is configured so that the connection of the control console 12 to the receiving support 212 is made simply by placing the control console in the support. This connection allows the following functions: - the battery of the control panel is recharged by connecting it to a power supply on the machine; - the position of the control panel in the receiving support 212 and therefore in the driving position 202) is detected thanks to the connection with the connector 2124 connected to the detection module 706 of the processing unit.

[0095] According to a particular aspect, once the two connectors 124, 2124 are connected together, the recharging of the battery 129 is effective without additional action on the part of the user. Furthermore, it can be provided that the connector 124 making it possible to detect the connection of the control panel 12 to the support 212 and the recharging of the battery of the control panel 12 does not require tightening or locking with the connector 2124.

[0096] The connector 2124 can be of the IP2X type.

[0097] Machine operating modes

[0098] The processing unit 10 comprises a module 100 for managing the operation of the machine which authorizes or regulates (parameters) the operation of the machine according to the data acquired by the modules 702, 704 or 706, i.e. according to the state of the seat belt, the state of the driver present or not in the cockpit and the state of the control console 12 positioned or not in or on its receiving support 212.

[0099] Thus, it can be provided that when the driver is present in the cockpit, the seat belt is fastened and the control console is physically (and preferably electrically) connected to the reception support then the module 100 activates the operation of the machine according to a mode Ml called nominal mode according to which the machine can be moved at a given maximum speed V2_max and / or a given maximum acceleration. It can also be provided that, in nominal mode, the handling arm can be raised with an angular speed (and / or acceleration) of a given maximum value VA6_max, and the arm, when it is telescopic, can be controlled to extend the telescopic part according to an output speed (and / or acceleration) of a given maximum value VT6_max.

[0100] Conversely, when the control panel 12 is removed from the receiving support 212 then the module 100 limits the operation of the machine to a mode M2 ​​called degraded mode according to which at least one operating parameter of the machine is degraded compared to the nominal mode M1. In particular, the maximum value that at least one given parameter can reach in degraded mode M2 ​​is reduced compared to the maximum value that this parameter can reach in nominal mode M1. The operation of the machine is also limited to the degraded mode M2 ​​when the belt is unfastened or when the absence of a driver on the seat is detected.

[0101] Degraded mode is triggered when at least one of the following three conditions is not met: - the control console is positioned in or on the receiving support in the cockpit; - the driver sits on the seat in the cockpit; - the driver's seat belt is unfastened (unhooked).

[0102] It can be provided that function M2 is prevented (and of course the nominal mode M1 also) if the control console is too far from the processing unit 10, for example when the power of the radio signal between the radio communication module 708 of the unit 10 and the radio communication module 128 of the console 12 is too low (i.e. lower than a threshold value).

[0103] According to a preferred embodiment of the invention, in degraded mode M2, at least the maximum authorized value of the speed or acceleration of movement on the ground of the machine is reduced compared to the nominal mode. It can thus be provided that, in degraded mode, the machine can be moved at a given maximum speed of value V'2_max lower than the value V2_max of the nominal mode and / or at a given maximum acceleration of value Accmax' lower than the value Accmax of the nominal mode.

[0104] It can also be provided that, in degraded mode, the handling arm can be raised with an angular speed (and / or acceleration) of a given maximum value V'A6_max lower than the value VA6_max of the nominal mode, and / or that the arm, when it is telescopic, can, in degraded mode, be extended with an output speed (and / or acceleration) V'T6_max which remains lower than the maximum value VT6_max of the nominal mode. According to a particular aspect, the maximum allowed value of the lifting angle and / or the maximum allowed value of the output length does not depend on the nominal or degraded mode activated.

[0105] For example, when the machine is equipped with such a work platform, the maximum travel speed or acceleration can be reduced when the operator uses the control panel outside the cockpit, i.e. either from the work platform or outside the machine itself.

[0106] It can thus be provided that the nominal mode authorizes operation without any particular restriction other than restrictions which would apply to the machine whatever its operating mode, such as restrictions resulting from the construction of the machine or from safety rules, for example relating to the detection of instability. In contrast to the nominal mode, the activation of the degraded mode results in one or more restrictions on the operation of the machine to take into account the fact that the control console is not positioned in the receiving support of the cockpit.

[0107] Mode M2 ​​thus allows the operation of the machine to be authorized while limiting one or more functions.

[0108] According to one embodiment of the invention, the processing unit 10 is configured to, when the connected state of the electrical connection system 124 of the control console 12 with the complementary connection system 2124 of the support 212 is detected (which means that the control console is positioned in the receiving support), authorize the control of at least the handling system 600 of the machine, and preferably also of the ground movement system of the machine, using the control console 12. Said authorization is preferably conditioned by one or more predefined conditions, such as the fastening of the seat belt and / or the detection of the presence of the driver in the cockpit.

[0109] The control of at least part of the handling system 600 of the machine, and preferably also of at least part of the ground movement system of the machine, using the control panel 12 can be authorized by the processing unit 10, even while the battery 129 of the control panel 12 is being recharged by the electrical power supply system 24 of the machine.

[0110] As recalled above, when the electrical connection system 124 of the control panel 12 is disconnected from the complementary connection system 2124 of the support 212, the processing unit 10 then activates the degraded operating mode. The control panel 12 is configured to communicate by wireless link with the processing unit 10 of the machine to allow a user to: - control the ground movement system (forward and direction and preferably speed) of the machine with the first control device 2123 of the control panel order 12, and - control the handling system 600 with the second control device 2126 of the control panel 12.

[0111] In this disconnected state of the electrical connection system 124 of the control console 12 relative to the complementary connection system 2124 of the support 212 (which reflects a state removed from the control console relative to its receiving support), the machine operates in degraded mode for which at least part of the controls of the ground movement system of the machine and of the handling system 600 are limited relative to the nominal mode.

[0112] The control panel 12 can thus be configured such that:

[0113] (i) in the state coupled to the receiving support 212, the battery 129 of the console ofcontrol 12 is recharged by the electrical power supply system 24 of the machine, and at least the handling system 600 of the machine is controllable with the second control device 2126 of the control console 12, and, preferably, the ground movement system of the machine is controllable with the first control device 2123 of the control console 12. Alternatively, it may be provided that at least part of the controls achievable with the first control device 2123 of the control console 12 is deactivated and that the ground movement device of the machine is controllable by a separate control system included in the cockpit, such as an accelerator pedal for controlling the acceleration or speed of the machine.The direction of the machine can then be controlled by using the control panel as a steering wheel as explained above when the control panel is pivotally mounted relative to the chassis in the coupled state to the receiving support.

[0114] (ii) in the uncoupled state relative to the support 212, for example in the state extended from the control station 202 of the machine, the control console 12 is capable of communicating by wireless link with the processing unit 10 of the machine to allow a user to: - control the ground movement system (forward and direction) of the machine with the first control device 2123 of the control panel 12, and - control the handling system 600 with the second control device 2126 of the control panel 12, at least part of the control of the ground movement system and of the handling system 600 being nevertheless degraded (preferably at least the maximum value of the speed and / or acceleration of ground movement of the machine) compared to the controls available in the positioned state of the control panel 12 in or on the receiving support 212.

[0115] Sensor system

[0116] The handling machine comprises a sensor system for providing signals to the processing unit of the machine. The sensor system may comprise all or some of the following sensors: - a lifting arm angle sensor 6; - a sensor of the position of the handling equipment 14, such as the angle of inclination of the tool holder or the tool; - a sensor for the extension length of the lifting arm 6, or for the retracted or extended state of the arm, when said arm is telescopic.

[0117] The modules 702, 704, 706 can be considered as forming or being associated with sensors which make it possible to detect respectively the presence of the driver on the seat of the cockpit, the closed or open state of the seat belt, the physically coupled state of the control console 12 in or on its receiving support.

[0118] The sensor system may of course comprise other sensors for measuring different parameters of the machine, for example a tilt sensor (longitudinal and / or lateral) of the machine, and / or a sensor for determining the mass of a load carried by the handling system. As recalled above, the sensor system is connected to the processing unit to enable values ​​of different parameters of the handling machine to be determined.

[0119] Method of controlling the machine with the control panel

[0120] The handling machine presented above makes it possible to implement a method for managing the operating mode of the machine, an example of which is described below in connection with [Fig.7] in the case of a trolley with a telescopic lifting arm where the operator can control the machine from inside or outside the trolley's control station. Of course, the method can be applied to other types of machine as mentioned above.

[0121] The user enters the cockpit 20 of the machine and positions the control panel 12 in or on its receiving support 212 (step 710). When positioning the control panel 12 in or on the receiving support 212, the connector 124 cooperates with the connector 2124 so that the module 706 of the processing unit 10 detects the positioned state of the control panel 12 in or on the receiving support 212 (step 720).

[0122] The module 702 of the processing unit 10 detects that the user is sitting on the seat 2021 (step 730). The user fastens the seat belt, which the module 704 detects in step 740.

[0123] It is understood that the order of the detection steps may be different from that presented.

[0124] The data detected by the modules 702, 704, 706 are acquired by the module of management 100 which activates the nominal operating mode ML In this mode Ml, the machine operates normally, in particular with a ground speed of maximum authorized value V2_max and / or maximum authorized acceleration AccMax.

[0125] In the case where the removable control console 12 is removed (step 750) from the receiving support 212 of the cockpit 202: the removed state of the removable control console 12 relative to the receiving support 212 is detected by the module 706 (step 760) and the management module 100 of the processing unit 10 limits the operation of the machine to the degraded mode M2 ​​(step 770). The radio communication module 128 of the control console 12 then communicates with the radio communication module 708 of the processing unit 10 to transmit the commands of the control device 2123 and of the control device 2126 of the control console to the processing unit 10 in order to be able to control the ground movement of the machine and / or the handling system.

[0126] The functions and steps described may be implemented in the form of a computer program or via hardware components (e.g., programmable gate arrays). In particular, the functions and steps performed by the processing unit or modules may be performed by instruction sets or computer modules implemented in a processor or controller or may be performed by dedicated electronic components or components of the programmable logic circuit type (or FPGA, which is the acronym for field-programmable gate array, which literally corresponds to in-situ programmable gate array) or of the application-specific integrated circuit type (or ASIC, which is the acronym for application-specific integrated circuit, which literally corresponds to application-specific integrated circuit). It is also possible to combine computer parts and electronic parts.

[0127] The processing unit is thus an electronic and / or computer unit. When it is specified that said unit is configured to carry out a given operation, this means that the unit comprises computer instructions and the corresponding execution means which make it possible to carry out said operation and / or that the unit comprises corresponding electronic components.

[0128] The invention is not limited to the embodiments illustrated in the drawings.

[0129] Furthermore, the term "comprising" does not exclude other elements or steps. Furthermore, features or steps that have been described with reference to one of the embodiments set forth above may also be used in combination with other features or steps of other embodiments set forth above.

Claims

Claims

1. Load or person handling machine comprising: a rolling chassis (2); a ground movement system for the rolling chassis of the machine; a handling system (600) of the machine carried by the chassis (2); characterized in that the machine comprises: a removable control panel (12) which comprises a control device (2123) for the ground movement system of the rolling chassis of the machine and a control device (2126) for the handling system (600) of the machine; a cockpit (202) carried by the chassis (2), the cockpit (202) comprising: - a receiving support (212) for the control console configured to allow the control console (12) to be received in a removable manner; - a seat (2021), and a driver presence sensor on the seat, such as a weight sensor in the seat; - a seat belt (2022) for the driver and a belt attachment and release system; the machine also comprising a processing unit (10) which comprises a driver presence detection module (702) configured to detect the presence or absence of the driver on the seat from the data provided by the driver presence sensor on the seat; a belt state detection module (704) for detecting the attached or unattached state of the driver's belt; a control panel state detection module (706) configured to detect the positioned or removed state of the removable control panel (12) relative to the receiving support (212); a radio communication module (708) configured to communicate with a radio communication module (128) of the control panel (12); the processing unit (10) also comprising a module (100) for managing the operation of the machine configured to: authorize the operation of the machine in an operating mode called nominal mode (Ml), when the presence of the driver on the seat (2021), the fastened state of the belt (2022) and the po- located on the control console (12) in or on the receiving support (212) are detected, the control console (12) being configured to, in said nominal mode (M1), allow at least part of the ground movement system of the rolling chassis of the machine and of the handling system (600) of the machine to be controlled; and limit the operation of the machine to an operating mode called degraded mode (M2), when at least one of the following conditions is met: - the control console is removed from the receiving support in the cockpit; - the absence of the driver on the cockpit seat is detected; - the driver's seat belt is unhooked;the degraded operating mode being an operating mode for which: - the maximum authorized value of at least one operating parameter of the machine is reduced compared to the maximum authorized value of said operating parameter of the machine in nominal mode; - and / or a function of the machine available in nominal mode is deactivated in degraded mode; the radio communication module (128) of the control panel (12) being configured to communicate with the radio communication module (708) of the processing unit (10) to allow the control panel (12) to control the ground movement of the rolling chassis and / or the handling system when the control panel (12) is removed from the receiving support (212);and in that, in the state positioned in or on the receiving support (212), the control console (12) is pivotally mounted (R12) relative to or with the receiving support (212) so as to form a steering control member by said pivoting mobility, such as a steering wheel, to enable the driver present in the cockpit (202) of the machine to control a steering system (23) of the wheels of the machine by pivoting (R 12) of the control console (12).;

2. Machine according to claim 1, in which, in degraded mode (M2), the processing unit (10) is configured to limit the maximum value of the speed (V2_max'), or of the acceleration, of movement on the ground of the rolling chassis of the machine in relation to the maximum value of speed (V2_max), or acceleration, authorized in nominal mode (Ml).

3. Machine (1) according to claim 1 or 2, wherein the handling system (600) comprises a lifting arm (6) tiltable relative to the chassis (2), between a low position and a high position, the lifting arm (6) being provided with handling equipment (14), such as a work platform or a fork system, the lifting arm (6) preferably being pivotally mounted at the rear of the machine, and wherein, in degraded mode (M2), the processing unit (10) is configured to limit the maximum permitted value of the angular speed and / or angular acceleration (V'A6_max) of the lifting arm (6) relative to the maximum value of the angular speed (VA6_max) and / or angular acceleration of the lifting arm (6) permitted in nominal mode (M1).

4. Machine (1) according to any one of the preceding claims, wherein the handling system (600) comprises a lifting arm (6) tiltable relative to the chassis, between a low position and a high position, the lifting arm (6) being provided with handling equipment (14), such as a work platform or a fork system, the lifting arm being telescopic and preferably pivotally mounted at the rear of the machine, and wherein, in degraded mode (M2), the processing unit (10) is configured to limit the output speed (V'T6_max) and / or the maximum authorized output acceleration of the lifting arm (6) relative to the output speed (VT6_max) and / or the maximum authorized output acceleration of the lifting arm (6) in nominal mode (M1).

5. Machine (1) according to any one of the preceding claims, in which in the state positioned in or on the receiving support (212), the control console (12) is mounted pivotally integral with the receiving support (212) which comprises a shaft (211), called the steering shaft, coupled to the steering system (23) of the wheels so that the pivoting of the control console (12) causes the steering shaft (211) to pivot relative to the chassis (2).

6. Machine (1) according to any one of the preceding claims, in which the control station (202) of the machine is devoid of an additional steering control member usable in place of the control console (12).

7. Machine according to any one of the preceding claims, in which the control panel (12) comprises a rechargeable battery (129) and an electrical connection system (124) connected to the battery (129), the electrical connection system (124) of the control panel (12) is configured to, in the positioned state of the control panel (12) in or on the receiving support (212), be connected to an electrical connection system (2124) of the receiving support (212) to allow recharging of the battery (129) by an electrical power supply system (24) of the machine.

8. Machine according to claim 7, in which the module (706) for detecting the state of the control panel is connected to the electrical connection system (2124) of the receiving support (212) so as to detect the positioning of the control panel (12) in or on the receiving support (212) when the electrical connection system (124) of the control panel (12) is connected with the electrical connection system (2124) of the receiving support (212).

9. Machine according to any one of the preceding claims, in which the electrical connection system (124) of the control panel (12) is located on a lateral face and / or on a lower face, as opposed to an upper face of the control panel (12) which carries the control device (2123) of the ground movement system of the rolling chassis of the machine and the control device (2126) of the handling system (600) of the machine, while the electrical connection system (2124) of the receiving support (212) is located on a lateral face and / or on an upper face of the receiving support (212), so as to allow automatic connection of the electrical connection systems (124, 2124) between them when the user places the control panel (12) by gravity in the receiving support (212).

10. A machine according to any preceding claim, wherein the machine comprises a locking system (213) for locking the control panel (12) to hold it in position in or on the receiving support (212), and for unlocking the control panel (12) relative to the receiving support (212) to remove it.

11. Machine according to any one of the preceding claims, in which the control device (2123) of the movement system on the ground of the rolling chassis of the machine is configured to allow the control of: - the speed and / or acceleration of the machine's rolling chassis on the ground; and - the direction of movement on the ground of the rolling chassis of the machine; and, - at least in degraded mode, the direction of the machine to allow a user to control the direction of movement on the ground of the rolling chassis of the machine from outside the cockpit.

12. Machine according to any one of the preceding claims, in which the handling system (600) comprises a lifting arm (6) tiltable relative to the chassis (2), between a low position and a high position, the lifting arm (6) being provided with handling equipment (14), such as a work platform or a fork system, mounted movable relative to the lifting arm (6), the lifting arm (6) preferably being telescopic and preferably pivotally mounted at the rear of the machine, the control device (2126) of the handling system (600) of the machine is configured to allow control of: the angle of inclination of the lifting arm (6) relative to the rolling chassis (2) and / or the movement of the equipment (14) relative to the lifting arm (6).

13. A method of controlling a load or person handling machine according to any one of the preceding claims, the method comprising the following steps: the removable control console (12) being positioned (710) in or on the receiving support (212) of the cockpit (202), the driver being seated on the seat of the cockpit and the driver's seat belt being attached: - detection (720) of the positioned state of the removable control panel (12) in or on the receiving support (212), - detection (730) by the processing unit (10) of the presence of a driver on the seat (2021), - detection (740) by the processing unit (10) of the fastened state of the driver's seat belt (2022), and - authorization by the processing unit (10) of the operation of the machine in nominal mode (Ml); and, when the removable control console (12) is removed (750) from the receiving support (212) of the cockpit (202), or when the driver is not sitting in the cockpit seat or the driver's seat belt is unfastened: - detection (760) by the processing unit (10) of the removed state of the control panel (12) removable from the receiving support (212), or of the absence of the driver on the cockpit seat or of the unhooked state of the driver's seat belt; and - limitation (770) by the processing unit (10) of the operation of the machine in degraded mode (M2); the degraded operating mode (M2) being an operating mode for which: - the maximum permitted value of at least one operating parameter of the machine is reduced compared to the maximum permitted value of said operating parameter of the machine in nominal mode (Ml); - and / or a machine function available in nominal mode (Ml) is deactivated in degraded mode (M2).