CN106329703B - Concentrate the quick switching-over control and control device of bypass type parallel UPS - Google Patents

Concentrate the quick switching-over control and control device of bypass type parallel UPS Download PDF

Info

Publication number
CN106329703B
CN106329703B CN201610707048.5A CN201610707048A CN106329703B CN 106329703 B CN106329703 B CN 106329703B CN 201610707048 A CN201610707048 A CN 201610707048A CN 106329703 B CN106329703 B CN 106329703B
Authority
CN
China
Prior art keywords
signal
module
output
ups
voltage
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN201610707048.5A
Other languages
Chinese (zh)
Other versions
CN106329703A (en
Inventor
赵启良
尹强
罗治军
刘天强
熊泽成
庞浩
于越
苟旭丹
李松涛
杨浩
蔡刚林
杜渐
黄成辰
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Become Capital Electricity Power Engineering Design Co Ltd
State Grid Corp of China SGCC
Xuji Group Co Ltd
Xuji Power Co Ltd
Economic and Technological Research Institute of State Grid Jiangsu Electric Power Co Ltd
Economic and Technological Research Institute of State Grid Sichuan Electric Power Co Ltd
Original Assignee
Become Capital Electricity Power Engineering Design Co Ltd
State Grid Corp of China SGCC
Xuji Group Co Ltd
Xuji Power Co Ltd
Economic and Technological Research Institute of State Grid Jiangsu Electric Power Co Ltd
Economic and Technological Research Institute of State Grid Sichuan Electric Power Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Become Capital Electricity Power Engineering Design Co Ltd, State Grid Corp of China SGCC, Xuji Group Co Ltd, Xuji Power Co Ltd, Economic and Technological Research Institute of State Grid Jiangsu Electric Power Co Ltd, Economic and Technological Research Institute of State Grid Sichuan Electric Power Co Ltd filed Critical Become Capital Electricity Power Engineering Design Co Ltd
Priority to CN201610707048.5A priority Critical patent/CN106329703B/en
Publication of CN106329703A publication Critical patent/CN106329703A/en
Application granted granted Critical
Publication of CN106329703B publication Critical patent/CN106329703B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J9/00Circuit arrangements for emergency or stand-by power supply, e.g. for emergency lighting
    • H02J9/04Circuit arrangements for emergency or stand-by power supply, e.g. for emergency lighting in which the distribution system is disconnected from the normal source and connected to a standby source
    • H02J9/06Circuit arrangements for emergency or stand-by power supply, e.g. for emergency lighting in which the distribution system is disconnected from the normal source and connected to a standby source with automatic change-over, e.g. UPS systems
    • H02J9/061Circuit arrangements for emergency or stand-by power supply, e.g. for emergency lighting in which the distribution system is disconnected from the normal source and connected to a standby source with automatic change-over, e.g. UPS systems for DC powered loads

Landscapes

  • Business, Economics & Management (AREA)
  • Emergency Management (AREA)
  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Inverter Devices (AREA)

Abstract

The present invention relates to the quick switching-over controls and control device of concentrating bypass type parallel UPS, the voltage of each UPS module is detected, test point in each UPS module at least there are two, respectively correspond to alternating current-direct current input terminal in UPS module or output end and interconnecting line;When voltage signal at least one test point is abnormal signal, then, the UPS module is abnormal;When whole UPS module exceptions, bypass output is switched to.Phenomena such as control mode can accurately, quickly judge switching action opportunity, significantly reduce and judge the time, avoid the occurrence of the short circuit of several milliseconds of UPS output and bypass output, avoid the damage of UPS device and bypass input switch trip.

Description

Concentrate the quick switching-over control and control device of bypass type parallel UPS
Technical field
The present invention relates to the quick switching-over controls and control device of concentrating bypass type parallel UPS.
Background technique
As shown in Figure 1, it is our concentration bypass type parallel UPS systems used in everyday.The core component of the ups system For two parts, UPS power pack and switching device.Wherein, UPS power pack has two-way power output selective, is logical all the way UPS device output AC energy is crossed, another way is by-pass line, and the by-pass line is for directly exporting AC energy.By-pass line Road is used to export electric energy as backup power source when UPS device normally can not export electric energy.Bypass is concentrated to refer to by-pass line It is directly connected to switching device, is two independent parts with UPS device.UPS device includes several UPS modules, all UPS Module shares two-way input, respectively exchange input and direct current input, for any one UPS module, UPS module tool There are two input terminals, are ac input end and direct-flow input end respectively, the output end of alternating current can be exported with one.It is all The output end of UPS module is all connected with an outlet line, and the outlet line connection switching apparatus, by-pass line is directly connected to this and cuts Which changing device, switching device select export according to logic judgment or according to actual needs.Therefore, pass through switching device Switching to can be realized the ups system be to export alternating current by UPS device, or by by-pass line export alternating current, to be negative Carry power supply.
Since UPS includes two input terminals: ac input end and direct-flow input end and one are for exporting alternating current Output end, then, the internal wiring of the UPS module is on the whole as shown in Fig. 2, alternating current and direct current pass through respective place respectively Intermediate connections road is connected to after reason, the interconnecting line is by exporting alternating current after corresponding processing circuit.It closes It is to carry out according to actual needs in the specific setting of process circuit, such as the setting of rectification, inversion either step-up/step-down circuit , it just no longer illustrates here.
Currently, being generally used the method for detection UPS output voltage in concentrating bypass type parallel UPS system to judge Whether system needs to carry out the switching of UPS output with bypass output.But since parallel UPS system output voltage is by multiple modules It is formed in parallel jointly, different UPS modules is in operation since the influence of internal circuit can will lead to system in different situations The voltage waveform when electric voltage exception of lower UPS device output or power down is different, it is difficult to accurately, quickly judge switching action opportunity, The switching time for causing UPS output to turn bypass output is unsatisfactory for national standard.Under the premise of judging herein, even if modification switching device Action logic and timing, although can satisfy switching time requirement, can inevitably result in several milliseconds UPS output Short circuit with bypass output causes so that system bypass input current great dash current occurs when switching action carries out Phenomena such as damage of UPS device and bypass input switch trip.
Summary of the invention
The object of the present invention is to provide a kind of quick switching-over controls for concentrating bypass type parallel UPS, pass to solve The switching mode of system is unable to satisfy the problem of switching time requirement.Present invention simultaneously provides a kind of concentration bypass type parallel UPSs Rapid switching control device.
To achieve the above object, the solution of the present invention includes a kind of bypass type parallel UPS being concentrated to be switched fast controlling party Method detects the voltage of each UPS module, at least two voltage detecting points is provided in each UPS module, one right Alternating current-direct current input terminal or the output end in UPS module are answered, another is on the intermediate connections road in corresponding UPS module;When When voltage signal at least one test point is abnormal signal, corresponding UPS module is abnormal;When whole UPS modules are abnormal When, control switching device switches to bypass output;
Wherein, when one of voltage detecting point is located at alternating current-direct current input terminal, which is used for while detecting The voltage signal of ac input end and direct-flow input end, when the voltage signal of ac input end and direct-flow input end is abnormal simultaneously When signal, the voltage signal at the alternating current-direct current input terminal test point is abnormal signal.
There are three voltage detecting point, first alternating current-direct current being arranged in corresponding UPS module is defeated for setting in each UPS module Enter end, second output end being arranged in corresponding UPS module, the intermediate connections in corresponding UPS module are arranged in third On the road.
A kind of rapid switching control device for concentrating bypass type parallel UPS,
Including logic judgment unit, the logic judgment unit has n group signal input part, and every group of signal input part is corresponding One UPS module has at least two signal input parts in every group of signal input part, and each signal input part has been correspondingly connected with voltage inspection Survey module, the voltage of the first voltage test point and second voltage test point that are respectively used to detect in corresponding UPS module, described the Alternating current-direct current input terminal or output end in corresponding UPS module is arranged in one voltage detecting point, and the second voltage test point is set It sets on the intermediate connections road in corresponding UPS module;If the setting of first voltage test point is in alternating current-direct current input terminal, corresponding Voltage detection module includes two voltage detection devices, is respectively used to the voltage of detection ac input end and direct-flow input end, when When the voltage signal of ac input end and direct-flow input end is abnormal signal simultaneously, corresponding voltage detection module output abnormality letter Number;Logic judgment unit carries out logic judgment, criterion according to the voltage signal that all voltage detection modules detect are as follows: for Any one UPS module, it is corresponding when the voltage signal that corresponding all voltage detection modules detect is normal signal UPS module it is normal;When at least one UPS module is normal, logic judgment unit output voltage normal logic signal, when all UPS module it is abnormal when, logic judgment unit output voltage abnormal logic signal;
It further include control signal output unit, it is defeated that the output signal of the logic judgment unit inputs to the control signal Unit out, the control signal output unit are used for: when logic judgment unit output voltage normal logic signal, output makes to cut Changing device switches to the control signal of UPS device;When logic judgment unit output voltage abnormal logic signal, output makes to switch Device switches to the control signal of by-pass line.
There are three signal input part in every group of signal input part, it is correspondingly connected with there are three voltage detection module, first Voltage detection module is used to detect the voltage of the alternating current-direct current input terminal in corresponding UPS module, and second voltage detection module is for examining The voltage of the intermediate connections road in corresponding UPS module is surveyed, tertiary voltage detection module is for detecting in corresponding UPS module The voltage of output end.
When the voltage signal of the alternating current-direct current input terminal in the correspondence UPS module of first voltage detection module detection is normal letter Number when, export high level signal;When the electricity of the intermediate connections road in the correspondence UPS module of second voltage detection module detection When pressure signal is normal signal, high level signal is exported;Output in the correspondence UPS module of tertiary voltage detection module detection When the voltage signal at end is normal signal, high level signal is exported;Logic judgment unit output voltage normal logic signal be High level signal.
The logic judgment unit includes n logic judgment module, the corresponding one group of signal input of each logic judgment module End, when corresponding three voltage detection modules of logic judgment module export high level signal, logic judgment module output High level signal;The output end of n logic judgment module be all connected to one or input terminal, described or door output end is The output end of the logic judgment unit.
The logic judgment unit further include with the one-to-one optocoupler of logic judgment module, the logic judgment module Output end passes through described in corresponding optocoupler connection or the input terminal of door.
The control signal output unit includes that input signal gives module, drives given module and logic judgment and output Module, the input signal give module and drive given module output connection logic judgment and output module;
The driving signal for driving given module to be used for the switching of output driving switching device;
There are two control signal outputs for the logic judgment and output module tool, and first control signal output end is for defeated Switching device of sening as an envoy to switches to the control signal of UPS device, and second control signal output end switches switching device for exporting To the control signal of by-pass line.
Switching device is controllable silicon drive circuit, including two silicon-controlled, and first is silicon-controlled for switching to UPS device, Make UPS device by the first silicon-controlled output electric energy, second is silicon-controlled for switching to by-pass line, makes by-pass line by the Two silicon-controlled output electric energy;The first control signal output end is silicon-controlled for controlling connection first, the second control letter Number output end is silicon-controlled for controlling connection second;
It includes switch transistor T 6 that the input signal, which gives module, and the anode of switch transistor T 6 is connected to power supply, the control The control electrode of the input terminal connection switch pipe T6 of signal output unit;
The logic judgment and output module include optocoupler OP1 and optocoupler OP2, and the power supply passes through optocoupler OP1's Primary side connects the input terminal of the control signal output unit, and the cathode of switch transistor T 6 is grounded by the primary side of optocoupler OP2;It is given Power supply VCC pass through respectively optocoupler OP1 it is secondary while and optocoupler OP2 it is secondary while be grounded, the ungrounded end on the secondary side of optocoupler OP1 passes through non- An input terminal of door U2B connection NAND gate U3C, another for driving the given module output connection NAND gate U3C Input terminal, the output end of NAND gate U3C are the second control signal output end;The ungrounded end on the secondary side of optocoupler OP2 passes through The ungrounded end of an input terminal of NOT gate U2A connection NAND gate U3A, the secondary side of the optocoupler OP1 connects the NAND gate U3A Another input terminal, the output end of the NAND gate U3A passes through an input terminal of NOT gate U2D connection NAND gate U3B, described Given module output is driven to connect another input terminal of the NAND gate U3B, the output end of NAND gate U3B is first control Signal output end processed.
It is described to drive the square wave driving signal that given module output frequency is 1.2kHz.
In the quick switching-over control and device provided by the invention for concentrating bypass type parallel UPS, each UPS module In be provided at least two voltage detecting points, one of them is in alternating current-direct current input terminal or output end, another is in middle line On, two voltage detecting points are at least set, and are distributed in the different zones of UPS module, can accurately determine the operation of UPS module Situation, so, this detection mode can more accurately obtain the operating condition of corresponding UPS module, only when all electricity When pressing the voltage at test point normal, which is only normally.Also, logic judgment unit is according to all UPS moulds The voltage condition of block carries out logic judgment, when all UPS module exceptions, logic judgment unit output abnormality control letter Number, control signal output unit output control signal switches to the switching device of ups system power supply mode by UPS device Bypass output.So this control mode by detecting the voltage signals of the different zones of each UPS module, can be avoided and be System in varied situations the output voltage exception or power down of UPS device when the different situation of voltage waveform.And when all When judging that UPS module is abnormal, which just controls switching device and switches over, so, the control device can it is accurate, Quickly judge switching action opportunity, significantly reduce and judge the time, avoids the occurrence of several milliseconds of UPS output and bypass output Short circuit, the switching time for making UPS output turn bypass output meets national standard, and system bypass input current is being switched Phenomena such as movement is not in great dash current when carrying out, and avoids the damage of UPS device and bypass input switch trip.
Detailed description of the invention
Fig. 1 is ups system structural schematic diagram;
Fig. 2 is UPS module overall structure diagram;
Fig. 3 is the rapid switching control device overall structure diagram for concentrating bypass type parallel UPS;
Fig. 4 is the structural schematic diagram of UPS module one of which detailed construction;
Fig. 5 is the electrical block diagram of logic judgment module;
Fig. 6 is the structural schematic diagram of optocoupler OP26;
Fig. 7 is the composition division schematic diagram for controlling signal output unit;
Fig. 8 is the electrical block diagram for controlling signal output unit;
Fig. 9 is the circuit theory schematic diagram of switching device.
Specific embodiment
The present invention will be further described in detail with reference to the accompanying drawing.
The rapid switching control device provided by the invention for concentrating bypass type parallel UPS is suitable for UPS system shown in FIG. 1 System, since the system belongs to routine techniques, and has had been described in detail in background technology part, just no longer specific here Description.
As shown in figure 3, the rapid switching control device includes logic judgment unit, which believes with n group Number input terminal, every group of signal input part are corresponding with a UPS module in ups system, that is to say, that have in ups system The number of UPS module is identical as the group number for the signal input part that logic judgment unit has, and every group of signal input part is for inputting Data information in corresponding UPS module.
Every group of signal input part includes three signal input parts, these three signal input parts are correspondingly connected with that there are three voltages to examine Module is surveyed, so, there is 3n voltage detection module in the control device, as shown in figure 3, the corresponding electricity of first group of signal input part Press detection module be A1, B1 and C1, the corresponding voltage detection module of second group of signal input part be A2, B2 and C2 ... ..., n-th The corresponding voltage detection module of group signal input part is An, Bn and Cn.In addition, voltage detection module is existing voltage detector Part, for detecting DC voltage or alternating voltage.
Since each group of voltage detection module is all the same, below for first group.First group of voltage detection module is used for Detect the information of voltage in first UPS module in ups system.Wherein, voltage detection module A1 is for detecting in UPS module Alternating current-direct current input terminal voltage signal, voltage detection module B2 is used to detect the electricity of intermediate connections road in UPS module Signal is pressed, voltage detection module C1 is used to detect the voltage signal of the output end in UPS module.Due to the specific electricity of UPS module There are many roads, so, interconnecting line therein also can be different, such as: as shown in figure 4, providing a kind of tool of UPS module Body composition, interconnecting line is DC bus, correspondingly, by rectifying the setting with inversion, can also make intermediate connections Road is ac bus.Since the present embodiment by taking Fig. 4 as an example, then, the test point of voltage detection module A1 is X2, voltage detecting mould The test point of block B2 is X3, and the test point of voltage detection module C1 is X1.
In addition, due to the alternating current-direct current input terminal in UPS module be two input terminals, voltage detection module A1 come detect this two The voltage signal of a input terminal, then, voltage detection module A1 includes two voltage detection devices, detects the two inputs respectively The voltage signal at end.As long as there is the voltage signal of an input terminal to be normal signal in ac input end and direct-flow input end, The voltage signal of voltage detection module A1 detection is just normal signal, correspondingly, when the voltage signal of the two input terminals is When abnormal signal, the voltage signal of voltage detection module A1 detection is just abnormal signal.Voltage detection module A2 ..., An with A1 is identical.
The information of voltage that all voltage detection modules will test carries out logic judgment, is equivalent to, voltage detecting mould It is provided with voltage comparator in block, according to the virtual voltage detected compared with a reference value that voltage comparator is set, comes defeated Corresponding level signal out.In the present embodiment, a voltage normal range (NR) is set, if the actual voltage value detected is at this When in range, corresponding voltage detection module exports high level, i.e. the voltage normal signal of voltage detection module output is high electricity Ordinary mail number;Correspondingly, if the actual voltage value detected not in the range when, corresponding voltage detection module exports low electricity Flat, i.e. the electric voltage exception signal of voltage detection module output is low level signal.Therefore, all voltage detection modules are designing When, it is that set normal signal to high level effective, sets low level signal for abnormal signal.
For voltage detection module A1, since it detects two voltage signals, so, at least one voltage signal is worked as in setting When for normal signal, voltage detection module A1 exports high level, only when two voltage signals are abnormal signal, voltage inspection It surveys modules A 1 and exports low level.
All voltage detection modules export corresponding level signal according to corresponding voltage signal.Logic judgment unit root The level signal exported according to all voltage detection modules carries out logic judgment: for any one UPS module, when corresponding institute The voltage signal that detects of voltage detection module when being normal signal, corresponding UPS module is normal;When at least one When UPS module is normal, logic judgment unit output voltage normal logic signal, when all UPS modules are abnormal, logic is sentenced Disconnected unit output voltage abnormal logic signal.In the present embodiment, the voltage normal logic signal of logic judgment unit output is High level signal;The electric voltage exception logical signal of logic judgment unit output is low level signal.
Further, the logic judgment unit include n logic judgment module and one or, each logic judgment module Corresponding one group of signal input part, that is, correspond to a UPS module, that is to say, that it, should for any one logic judgment module The input terminal of module is the output end of three voltage detection modules of corresponding UPS module, when these three voltage detection modules are defeated Out when high level signal, logic judgment module exports high level.The output end of all logic judgment modules connects above-mentioned or door Input terminal, should or door output end be the logic judgment unit output end.That is, each logic judgment module is patrolled Volume relationship be with relationship.Therefore, logic judgment module can be logical AND gate circuit, be also possible to realize the tool of identical function Body circuit, Fig. 5 give a kind of specific circuit, wherein X1, X2 and X3 are three input signals, and X4 is output signal.Switch Pipe Q7 is connected when control terminal is high level, and switching tube Q10 is connected when control terminal is low level.By to the correlation in Fig. 5 The setting of the resistance value of resistance can make: when X1 high level signal, the voltage of the non-inverting input terminal of comparator U4A is less than anti- The voltage of phase input terminal, and then comparator U4A is made to export low level signal, it is high level in X2 and X3 that switching tube Q7, which is disconnected, Under conditions of signal, the control terminal of switching tube Q10 is high level, and switching tube Q10 is disconnected, and X4 is high level signal.As X1, X2 and When having at least one in X3 for low level signal, such as: when X1 is low level signal, the non-inverting input terminal of comparator U4A Voltage is greater than the voltage of inverting input terminal, and then comparator U4A is made to export high level, switching tube Q7 conducting, regardless of X2 and X3 is No is low level signal, is pulled low the control terminal of switching tube Q10 for low level, switching tube Q10 conducting, X4 is that low level is believed Number;For another example: when X1 is high level signal, the voltage of the non-inverting input terminal of comparator U4A is less than the voltage of inverting input terminal, And then comparator U4A is made to export low level, switching tube Q7 is disconnected, and when having at least one in X2 and X3 is low level signal, is opened The control terminal for closing pipe Q10 is pulled low as low level, and switching tube Q10 conducting, X4 is low level signal.
Control device further includes control signal output unit, and the output signal of logic judgment unit inputs to the control signal Output unit, when logic judgment unit output voltage normal logic signal, control signal output unit output control signal makes Switching device switches to UPS device, i.e., when at least one UPS module is normal, ups system is normal power supply, is filled by switching The movement set makes the line conduction between UPS module and load, disconnects the route between by-pass line and load, passes through UPS Module powers to the load;When logic judgment unit output voltage abnormal logic signal, control signal output unit output control Signal, so that switching device is switched to by-pass line, by the movement of switching device, makes side when that is, all UPS modules are abnormal Line conduction between route road and load disconnects the route between UPS module and load, supplies that ups system by UPS module Cutting shifts to by-pass line power supply, realizes the seamless interfacing of ups system, the uninterrupted power supply of proof load.
In addition, since switching device and UPS apparatus control portion point are by respective accessory power supply offer power supply, so that each UPS Control circuit between module and switching device is non-" altogether " system.It needs to be isolated using optocoupler.Each logic judgment mould Block is configured with an optocoupler OP26, and the signal of optocoupler processing is level signal, but since its output is used for switching control With being required to speed, be high speed photo coupling H11L1 used in this circuit.As shown in fig. 6, optocoupler output is that OC is exported, Therefore need to connect pull-up resistor in the 4th foot, guarantee that optocoupler output signal level is accurate with this.X4 signal is logic judgment module output Signal, X5 signal is the signal exported by optocoupler OP26.The output end of all optocoupler OP26 connects above-mentioned or door defeated Enter end, is somebody's turn to do or the output end of door is the output end X6 of logic judgment unit.According to the output characteristics of optocoupler it is found that when X4 is low When level signal, optocoupler primary side conducting, secondary side output is low level, i.e. X5 is low level;Correspondingly, when X4 is high level signal When, X5 is high level.
In the present embodiment, control signal output unit includes input signal given circuit, driving given circuit and logic Judgement and output circuit, input signal given circuit and driving given circuit output connection logic judgment and output circuit, such as Fig. 7 Shown, I region is input signal given circuit, and II region is driving given circuit, and III region is logic judgment and output circuit.
Circuit structure in Fig. 7 and Fig. 8 is identical, wherein Fig. 7 has further carried out region division to the circuit structure.
Given circuit is driven to be used for the driving signal of output driving switching device switching.In the present embodiment, switching device For controllable silicon drive circuit, including two silicon-controlled, as shown in figure 9, first is silicon-controlled for ups system to be switched to UPS dress Power supply is set, keeps UPS device silicon-controlled for ups system to be switched to by-pass line power supply by silicon-controlled output electric energy, second, By-pass line is set to pass through silicon-controlled output electric energy.Also, the two are silicon-controlled only in the drive of the square wave driving signal of 1.2kHz It could be connected under dynamic.But controllable silicon drive circuit is various informative, and the specific structure of switching device is also not of the invention Emphasis, so no longer illustrating herein.
As shown in figure 8, driving given circuit includes U1 chip, U1 chip is power management chip UC3845, by the chip It is set as open loop mode of operation by E2, C1, R1, C2, makes the square wave driving signal of its 6 foot output frequency 1.2kHz always.
Input signal given circuit includes switch transistor T 6, and the anode of switch transistor T 6 is connected to power supply+5V, and control signal is defeated The control electrode of input terminal (being the output end X6 of logic judgment unit) the connection switch pipe T6 of unit out.
Logic judgment and output circuit include that optocoupler OP1 and optocoupler OP2, power supply+5V are connected by the primary side of optocoupler OP1 It connects at X6, the cathode of switch transistor T 6 is grounded by optocoupler OP2;Given power supply VCC passes through secondary side and the optocoupler of optocoupler OP1 respectively The secondary side of OP2 is grounded, and the ungrounded end on the secondary side of optocoupler OP1 passes through an input terminal of NOT gate U2B connection NAND gate U3C, U1 Another input terminal of the 6 feet output connection NAND gate U3C of chip, the output end of NAND gate U3C is second control signal output End exports X8 signal;The ungrounded end on the secondary side of optocoupler OP2 passes through an input terminal of NOT gate U2A connection NAND gate U3A, light Another input terminal of the ungrounded end connection NAND gate U3A on the secondary side of coupling OP1, the output end of NAND gate U3A pass through NOT gate U2D Connect an input terminal of NAND gate U3B, another input terminal of the 6 feet output connection NAND gate U3B of U1 chip, NAND gate The output end of U3B is first control signal output end, exports X7 signal.
In two control signal outputs in logic judgment and output circuit, first control signal output end is for controlling Connect first silicon-controlled, second control signal output end is silicon-controlled for controlling connection second.
When UPS device is working properly, X6 signal is high level, and optocoupler OP1 primary side is not turned on, so that the input of U2B is High level state, the output of U2B are low level state, and another input terminal input of U3C is square-wave signal, then, U3C is defeated Being out high level signal, is not square-wave signal, i.e. X8 is high level signal, so, it is unable to control the second controlled silicon conducting.And And T6 is connected, the conducting of optocoupler OP2 primary side, so that the input of U2A is low level state, the output of U2A is high level state, U3A Two input pins be high level, output be low level so that the output of U2D be high level, high level and square-wave signal By exporting square-wave signal after NAND gate, i.e. X7 signal is the square-wave signal that frequency is 1.2kHz, the first controlled silicon conducting, control Switching device processed switches to UPS device.
Therefore, when UPS is worked normally, X6 signal is high level, and X7 signal is the square wave of 1.2kHz, and X8 signal is high point Flat, i.e. control switches to the silicon-controlled open-minded of UPS device, and control switches to the silicon-controlled shutdown of bypass, and system is supplied by UPS device Electricity.
When UPS device operation irregularity, X6 signal is low level, optocoupler OP1 primary side conducting, so that the input of U2B is low Level state, the output of U2B are high level state, and another input terminal input of U3C is square-wave signal, then, U3C output For square-wave signal, i.e. X8 is the square-wave signal of 1.2kHz, so, the second controlled silicon conducting, switching device switches to by-pass line. At this point, T6 is not turned on, optocoupler OP2 primary side is not turned on, so that the input of U2A is high level state, the output of U2A is low level shape State, U3A output are high level, so that the output of U2D is low level, low level and square-wave signal by exporting height after NAND gate Level signal, i.e. X7 signal are high level signal, are unable to control the first controlled silicon conducting.
Therefore, when UPS exception, X6 signal is low level, and X7 signal is flat for high point, and X8 signal is the square wave of 1.2kHz, The silicon-controlled shutdown for switching to UPS device is controlled, control switches to the controlled silicon conducting of bypass, system bypass power supply.
In above-described embodiment, when the voltage signal of the corresponding position of voltage detection module detection is normal signal, output High level signal when abnormal, exports low level signal, and the logic judgment in the specific circuit in the present embodiment is also base In aforesaid way.Certainly, this is a kind of embodiment, and voltage detection module is believed according to the level exported the case where voltage It number defines and, then, as other embodiments, when the voltage signal of the corresponding position of voltage detection module detection When for normal signal, low level signal can also be exported, when abnormal, high level signal can also be exported, then supporting the logic The particular circuit configurations of mode also can correspondingly change.
In above-described embodiment, it is alternating current-direct current input terminal, medium line respectively that there are three voltage detecting points in each UPS module Road and output end, this is a kind of embodiment of optimization, and as other embodiments, the number of voltage detecting point is can be with Specifically it is arranged according to required precision, if required precision is higher, it is possible to more than three test point is set, such as As shown in figure 4, can also be provided at full-bridge inverting, at booster circuit, high-frequency inversion etc. on the basis of original three Voltage detecting point, logic criterion are identical as in above-described embodiment;In addition, the number of voltage detecting point, which needs to meet, must at least have 2 requirements, i.e., will at least be arranged two voltage detecting points in each UPS module, and one in alternating current-direct current input terminal or Output end, another is on middle line.
Specific embodiment is presented above, but the present invention is not limited to described embodiment.Base of the invention This thinking is above-mentioned basic scheme, so the invention is not limited to the specific electricity of each component part in the present embodiment Road.The change, modification, replacement and modification carried out without departing from the principles and spirit of the present invention to embodiment are still fallen Enter in protection scope of the present invention.

Claims (8)

1. a kind of rapid switching control device for concentrating bypass type parallel UPS, which is characterized in that
Including logic judgment unit, the logic judgment unit has n group signal input part, and every group of signal input part is one corresponding UPS module has at least two signal input parts in every group of signal input part, and each signal input part has been correspondingly connected with voltage detecting mould Block, the voltage of the first voltage test point and second voltage test point that are respectively used to detect in corresponding UPS module, first electricity Alternating current-direct current input terminal or output end in corresponding UPS module is arranged in pressure test point, and the second voltage test point setting exists Intermediate connections road in corresponding UPS module;If first voltage test point is arranged in alternating current-direct current input terminal, corresponding voltage Detection module includes two voltage detection devices, is respectively used to the voltage of detection ac input end and direct-flow input end, works as exchange When the voltage signal of input terminal and direct-flow input end is abnormal signal simultaneously, corresponding voltage detection module output abnormality signal; Logic judgment unit carries out logic judgment, criterion according to the voltage signal that all voltage detection modules detect are as follows: for appointing It anticipates a UPS module, it is corresponding when the voltage signal that corresponding all voltage detection modules detect is normal signal UPS module is normal;When at least one UPS module is normal, logic judgment unit output voltage normal logic signal, when all When UPS module is abnormal, logic judgment unit output voltage abnormal logic signal;
It further include control signal output unit, it is single that the output signal of the logic judgment unit inputs to the control signal output Member, the control signal output unit are used for: when logic judgment unit output voltage normal logic signal, output fills switching Set the control signal for switching to UPS device;When logic judgment unit output voltage abnormal logic signal, output makes switching device Switch to the control signal of by-pass line.
2. the rapid switching control device according to claim 1 for concentrating bypass type parallel UPS, which is characterized in that
There are three signal input part in every group of signal input part, it is correspondingly connected with that there are three voltage detection module, first voltages Detection module is used to detect the voltage of the alternating current-direct current input terminal in corresponding UPS module, and second voltage detection module is for detection pair The voltage of the intermediate connections road in UPS module is answered, tertiary voltage detection module is used to detect the output in corresponding UPS module The voltage at end.
3. the rapid switching control device according to claim 2 for concentrating bypass type parallel UPS, which is characterized in that
When the voltage signal of the alternating current-direct current input terminal in the correspondence UPS module of first voltage detection module detection is normal signal When, export high level signal;When the voltage of the intermediate connections road in the correspondence UPS module of second voltage detection module detection When signal is normal signal, high level signal is exported;Output end in the correspondence UPS module of tertiary voltage detection module detection Voltage signal be normal signal when, export high level signal;The voltage normal logic signal of logic judgment unit output is height Level signal.
4. the rapid switching control device according to claim 3 for concentrating bypass type parallel UPS, which is characterized in that
The logic judgment unit includes n logic judgment module, the corresponding one group of signal input part of each logic judgment module, when When corresponding three voltage detection modules of logic judgment module export high level signal, which exports high level Signal;The output end of n logic judgment module be all connected to one or input terminal, described or door output end be the logic The output end of judging unit.
5. the rapid switching control device according to claim 4 for concentrating bypass type parallel UPS, which is characterized in that
The logic judgment unit further includes and the one-to-one optocoupler of logic judgment module, the output of the logic judgment module End connects described or door input terminal by corresponding optocoupler.
6. the rapid switching control device according to claim 3 for concentrating bypass type parallel UPS, which is characterized in that
The control signal output unit includes that input signal gives module, drives given module and logic judgment and output mould Block, the input signal give module and drive given module output connection logic judgment and output module;
The driving signal for driving given module to be used for the switching of output driving switching device;
There are two control signal output, first control signal output end makes for exporting for the logic judgment and output module tool Switching device switches to the control signal of UPS device, and second control signal output end makes switching device switch to side for exporting The control signal on route road.
7. the rapid switching control device according to claim 6 for concentrating bypass type parallel UPS, which is characterized in that
Switching device is controllable silicon drive circuit, including two silicon-controlled, and first is silicon-controlled for switching to UPS device, makes UPS Device is silicon-controlled for switching to by-pass line by the first silicon-controlled output electric energy, second, makes by-pass line can by second It controls silicon and exports electric energy;The first control signal output end is silicon-controlled for controlling connection first, and the second control signal is defeated Outlet is silicon-controlled for controlling connection second;
It includes switch transistor T 6 that the input signal, which gives module, and the anode of switch transistor T 6 is connected to power supply, the control signal The control electrode of the input terminal connection switch pipe T6 of output unit;
The logic judgment and output module include optocoupler OP1 and optocoupler OP2, and the power supply passes through the primary side of optocoupler OP1 The input terminal of the control signal output unit is connected, the cathode of switch transistor T 6 is grounded by the primary side of optocoupler OP2;Given power supply VCC pass through respectively optocoupler OP1 it is secondary while and optocoupler OP2 it is secondary while be grounded, the ungrounded end on the secondary side of optocoupler OP1 passes through NOT gate An input terminal of U2B connection NAND gate U3C, another of the driving given module output connection NAND gate U3C are defeated Enter end, the output end of NAND gate U3C is the second control signal output end;The ungrounded end on the secondary side of optocoupler OP2 passes through non- An input terminal of door U2A connection NAND gate U3A, the ungrounded end on the secondary side of the optocoupler OP1 connects the NAND gate U3A's Another input terminal, the output end of the NAND gate U3A pass through an input terminal of NOT gate U2D connection NAND gate U3B, the drive Dynamic given module output connects another input terminal of the NAND gate U3B, and the output end of NAND gate U3B is first control Signal output end.
8. the rapid switching control device according to claim 7 for concentrating bypass type parallel UPS, which is characterized in that
It is described to drive the square wave driving signal that given module output frequency is 1.2kHz.
CN201610707048.5A 2016-08-23 2016-08-23 Concentrate the quick switching-over control and control device of bypass type parallel UPS Active CN106329703B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201610707048.5A CN106329703B (en) 2016-08-23 2016-08-23 Concentrate the quick switching-over control and control device of bypass type parallel UPS

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201610707048.5A CN106329703B (en) 2016-08-23 2016-08-23 Concentrate the quick switching-over control and control device of bypass type parallel UPS

Publications (2)

Publication Number Publication Date
CN106329703A CN106329703A (en) 2017-01-11
CN106329703B true CN106329703B (en) 2019-01-22

Family

ID=57741881

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201610707048.5A Active CN106329703B (en) 2016-08-23 2016-08-23 Concentrate the quick switching-over control and control device of bypass type parallel UPS

Country Status (1)

Country Link
CN (1) CN106329703B (en)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110134167A (en) * 2019-05-08 2019-08-16 北京安泰志诚科技发展有限公司 Regulator and pressure regulation method
CN112018868B (en) * 2020-07-31 2022-10-21 科华数据股份有限公司 UPS bypass drive unit and UPS bypass drive system

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201126981Y (en) * 2007-11-30 2008-10-01 上海市电力公司 UPS system for transformer substation of 220kV voltage class and above
CN101394097A (en) * 2007-09-21 2009-03-25 台达电子工业股份有限公司 Uninterrupted power supply system and control method thereof
CN103701192A (en) * 2012-09-27 2014-04-02 力博特公司 Modularized uninterruptible power supply (UPS) system and power supply method thereof
CN105356588A (en) * 2015-11-04 2016-02-24 漳州科华技术有限责任公司 Control method for switching UPS output mode

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP4669860B2 (en) * 2007-07-06 2011-04-13 三菱電機株式会社 Uninterruptible power system

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101394097A (en) * 2007-09-21 2009-03-25 台达电子工业股份有限公司 Uninterrupted power supply system and control method thereof
CN201126981Y (en) * 2007-11-30 2008-10-01 上海市电力公司 UPS system for transformer substation of 220kV voltage class and above
CN103701192A (en) * 2012-09-27 2014-04-02 力博特公司 Modularized uninterruptible power supply (UPS) system and power supply method thereof
CN105356588A (en) * 2015-11-04 2016-02-24 漳州科华技术有限责任公司 Control method for switching UPS output mode

Also Published As

Publication number Publication date
CN106329703A (en) 2017-01-11

Similar Documents

Publication Publication Date Title
US10505437B2 (en) Power converting device and ground impedance value detecting method
US10503126B2 (en) Access control method for parallel direct current power supplies and device thereof
US20150188487A1 (en) Failure detection device, failure detection system, and failure detection method
CN104732947B (en) Driving chip, driving board and method for testing same, and display device
CN104471417A (en) Equipment and method for diagnosing faults of battery cell balancing circuit
JP6481571B2 (en) Inspection apparatus and inspection method
CN204575756U (en) Capacitor faults indicating circuit, multiple capacitor faults indicator circuit and system
CN207853453U (en) Backup battery circuit, motor driver and electric vehicle
CN106329703B (en) Concentrate the quick switching-over control and control device of bypass type parallel UPS
CN104335440A (en) Determining a string configuration in a multistring-inverter
CN109318722A (en) The motor driven systems of electric car
CN107422153A (en) A kind of switch matrix and its self checking method
CN103944420B (en) Power system and its control method
CN207408507U (en) power module test system
CN102820699B (en) Intelligent digital static switch
EP3282578A1 (en) Method and device for testing photovoltaic generation system
CN208188289U (en) A kind of test macro of circuit power consumption
CN103427478B (en) A kind of power supply crossfeed system
CN108693429B (en) Fault detection method, device and control device for discharge thyristor
CN112366805B (en) Uninterruptible power supply parallel control equipment, uninterruptible power supply parallel control method and inverter power supply system
CN205283240U (en) Main and secondary power automatic switch -over circuit of boats and ships
CN105518965A (en) Photovoltaic grid connection control method and photovoltaic grid connection system
CN207842686U (en) A kind of double stake separated chargers of a rectifier cabinet
CN107070187A (en) A kind of H bridges change of current module drive circuit and modularization multi-level converter
JP2016171671A (en) Inspection method and inspection apparatus for photovoltaic power generation system

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
GR01 Patent grant
GR01 Patent grant