1. Field of the Invention
The present invention relates to a power supply system in which a power supply equipment and respective devices are connected to a power supply bus and, more particularly, a power supply system capable of dealing with a disconnection of the power supply bus.
2. Description of the Related Art
As the system for connecting field equipments such as a valve, a sensor, and the like provided to respective portions of the plant via the field bus, the field bus system based on the FOUNDATION field bus specification is known. This field bus is used as the communication bus to hold the communication between the field equipment and the upper system, or between the field equipments. Also, the power supply system for the field equipments is connected to the field bus, and the field bus functions as the power supply bus to supply a power-supply voltage to respective field equipments.
JP-A-05-218908 is referred to as a related art.
In the above system, a single power supply system is connected to respective field equipments via a common field bus. Therefore, the above system possesses the advantage that the leading of the power supply line can be reduced. However, when the field bus is cut off, the field equipments those are ahead of the cut portion run into their function halt situation and therefore an urgent recovery of the power supply system into its power supplying state is requested.
An object of the present invention is to provide a power supply system capable of dealing adequately with a disconnection of a power supply bus.
The invention provides a power supply system in which a power supply apparatus and respective equipments are connected to a common power supply bus, includes a disconnection detecting portion which detects a disconnection of the power supply bus; and a connecting portion which connects both ends of the power supply bus when the disconnection is detected by the disconnection detecting portion.
According to this power supply system, both ends of the power supply bus are connected as soon as the disconnection is detected. Therefore, the supply of the power supply voltage to all equipments that are connected to the power supply bus can be recovered promptly.
The invention also provides a power supply system in which a power supply apparatus and respective equipments are connected to a common power supply bus, includes a first power supplying portion connected to one end side of the power supply bus and connected to the equipments via the power supply bus; a second power supplying portion connected to other end side of the power supply bus and connected to the equipments via the power supply bus; a disconnection detecting portion which detects the disconnection of the power supply bus; and a controlling portion which causes the first power supplying portion and the second power supplying portion to function when the disconnection is detected by the disconnection detecting portion.
According to this power supply system, the first power supplying portion and the second power supplying portion are caused to operate when the disconnection is detected. Therefore, the supply of the power supply voltage to all the equipments that are connected to the power supply bus can be revived immediately.
In the power supply system, the disconnection detecting portion may detect the disconnection based on a voltage of the power supply bus.
In the power supply system, the disconnection detecting portion may include a signal outputting portion which outputs a detect signal to the power supply bus from the first power supplying portion, and a signal receiving portion which receives the detect signal, which propagates through the power supply bus, from the signal outputting portion, wherein the disconnection detecting portion may detect the disconnection based on a reception result in the signal receiving portion.
According to the power supply system of the present invention, when the disconnection is detected, both ends of the power supply bus are connected mutually. Therefore, a power supply for use in all equipments that are connected to the power supply bus can be promptly revived. Also, according to the power supply system of the present invention, when the disconnection is detected, the first power supplying portion and the second power supplying portion are caused to operate. Therefore, a power supply for use in all equipments that are connected to the power supply bus can be promptly revived.
In
In
Embodiments of the power supply system according to the present invention will be explained with reference to
As shown in
A power supply apparatus 20 is connected to the field bus 2 via a power supply line 22a and a power supply line 23a. The power supply apparatus 20 has a disconnection detecting portion 21 for detecting the disconnection of the field bus 2, a first power supply portion 22 for outputting a power supply voltage to the power supply line 22a, and a second power supply portion 23 for outputting a power supply voltage to the power supply line 23a. In this manner, the power supply apparatus 20 is connected to respective field equipments 1 via the field bus 2 and functions as the power supply apparatus common to all field equipments 1. The field bus 2 functions as the power supply bus common to all field equipments 1. A power supply voltage is applied to two conductive lines of the field bus 2.
A method of detecting the disconnection of the field bus 2 in the disconnection detecting portion 21 of the power supply apparatus 20 is not particularly limited. For example, the disconnection can be detected based on a voltage of the power supply line 22a or the power supply line 23a. Also, for example, a detect signal whose amplitude is minute to such an extent that an operation of the system is not disturbed and whose frequency is high may be output from the first power supply portion 22 to the power supply line 22a to superpose on the power supply voltage, and then this detect signal may be detected in the second power supply portion 23. In this case, it can be decided that the disconnection occurs in the field bus 2 unless the detect signal is detected in the second power supply portion 23.
As shown in
Also, in the present embodiment, a disconnection detecting apparatus 8 for detecting the disconnection of the field bus 2 by comparing signals at both ends of the field bus 2 with each other, and switches 9 for connection both ends of the field bus 2 are provided. The disconnection detecting apparatus 8 always compares signal waveforms at both ends of the field bus 2 with each other. This disconnection detecting apparatus 8 decides that the field bus 2 is disconnected when a difference between the signal waveforms is detected, and then switches the switches 9. When the disconnection of the field bus 2 is detected by the disconnection detecting apparatus 8, the switches 9 cut off the terminating resistor 7 from both ends of the field bus 2 respectively, and then connect both ends of the field bus 2 mutually.
In addition, the terminating resistor is built in the terminal base 11. The terminal base 11 has a function of connecting the terminating resistor to the field bus 2 in close vicinity of the cut-off portions when the field bus 2 is cut off.
Next, an operation of the present embodiment will be explained hereunder.
As shown in
As shown in
Also, as shown
Thus, as shown
As shown
In a state in
As described above, in the present embodiment, when the disconnection of the field bus 2 is detected, both ends of the field bus 2 are connected by the switches 9. Therefore, the supply of the power supply voltage can be recovered promptly. Also, the disconnection detecting portion 21 detects the disconnection immediately after the disconnection is caused, and then both the first power supply portion 22 and the second power supply portion 23 function until the switching of the switches 9 is completed (
As shown in
As shown in
Also, in the normal operation, the interface module 3A is in its operation state and the interface module 3B is in its standby state. Thus, merely the interface module 3A is operating. In this event, both the interface module 3A and the interface module 3B send out segment information acquired at both ends of the field bus 2 respectively to an upper control station 5A at any time.
The control station 5A compares both segment information mutually, and decides that the disconnection is caused if these information are different.
As shown in
Also, the terminal base 11 located in vicinity of the cut portion detects the disconnection of the field bus 2 and then connects the terminating resistor 11a to the field bus 2.
When the field bus 2 is cut off, the control station 5A decides that the disconnection occurs, based on both segment information. When it is decided that the disconnection occurs, the control station 5A controls communication data on the field bus 2 via the interface module 3A and the interface module 3B. As a result, the control station 5A equates the information of two segments with each other and maintains the operation similar to the normal operation.
As described above, according to the present embodiment, the disconnection detecting portion 21 detects the disconnection immediately after the disconnection is caused, and then both the first power supply portion 22 and the second power supply portion 23 are caused to operate. Therefore, the power supply voltage can be supplied to all the field equipments 1 substantially continuously.
As the power supply apparatus 20 in respective embodiments, any power supply apparatus may be employed if the power supply apparatus is constructed such that the power supply voltage can be supplied to two separated segments independently. The first power supply portion 22 and the second power supply portion 23 may be provided as the integral power supply apparatus, or the first power supply portion 22 and the second power supply portion 23 may be provided separately. Also, the first power supplying portion 104A and the second power supplying portion 104B (
In above embodiments, an example (field bus) in which the power supply bus is used as both the power supply bus and the communication bus is exemplified. But the present invention is not limited to the case where such bus is used. The present invention can be applied to all the power supply systems that are constructed by connecting the equipments and the power supply apparatus via the power supply bus.
An applicable range of the present invention is not limited to the above embodiments. The present invention is not limited to the power supply system that supplies the power supply voltage to the field equipments, but the present invention can be applied universally to the power supply system for use in all equipments.
Number | Date | Country | Kind |
---|---|---|---|
2005-087451 | Mar 2005 | JP | national |
This application is based upon and claims the benefit of priority from the prior Japanese Patent Applications No. 2005-087451, filed on Mar. 25, 2005, the entire contents of which are incorporated herein by reference.