CN103279076A - Text language-based power supply control method and device - Google Patents

Text language-based power supply control method and device Download PDF

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Publication number
CN103279076A
CN103279076A CN2013101451901A CN201310145190A CN103279076A CN 103279076 A CN103279076 A CN 103279076A CN 2013101451901 A CN2013101451901 A CN 2013101451901A CN 201310145190 A CN201310145190 A CN 201310145190A CN 103279076 A CN103279076 A CN 103279076A
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communication event
input
power supply
information
text language
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CN103279076B (en
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任勇侠
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Guangdong Sheng Boer Photoelectric Technology Co ltd
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Shenzhen Smee Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
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    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P90/00Enabling technologies with a potential contribution to greenhouse gas [GHG] emissions mitigation
    • Y02P90/02Total factory control, e.g. smart factories, flexible manufacturing systems [FMS] or integrated manufacturing systems [IMS]

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Abstract

The invention discloses a text language-based power supply control method and a text language-based power supply control device. The method comprises the following steps of: acquiring a triggering signal generated by a customized trigger strategy or user input, and identifying at least one preset communication event identifier according to the triggering signal or the user input; and performing at least one processing corresponding to the communication event on a corresponding monitored power supply according to the triggering signal or the input and at least one communication event identifier. By the adoption of the method and the device, the transmission distance can be increased by communicating by adopting RS485; and during an implementation process, the connection of a plurality of monitored power supplies can be realized by only using a small amount of RS485 interfaces, so that less wires are connected; and therefore, the wiring is attractive, and the use experience of users is improved.

Description

Power control method and device based on text language
Technical field
The present invention relates to the power management techniques field, in particular to a kind of power control method based on text language, Apparatus and system.
Background technology
At present, in technical fields such as factory automation, communication, new forms of energy, for monitoring power supply information in real time and control, need carry out real-time online or artificial setting to the power information of power supply, information of voltage, current information etc., in addition, also need information such as the real-time status to power supply, the relevant feedback of reporting to the police to gather in real time.
Based on this, generally include following three kinds of processing modes in the prior art:
First kind, monitored target power supply does not connect control line, and its relevant setting, control are by manually carrying out, and the collection of its feedback information is mainly leaned on and manually regularly carried out observed and recorded.
But therefore the relatively dispersion of the residing position distribution of common all kinds of power supplys adopts this type of manually-operated mode efficient lower, need expend more human resources; In addition, because the power supply price is often relatively more expensive, therefore adopt this method, also need to employ more professional to carry out the timing patrol record, this has increased the weight of human cost to a certain extent more; In addition, adopt the method for this side's manual inspection, the integrated level of its equipment room is very low.
Second kind, monitored target power supply adopts traditional PLC(Programmable Logic Controller, programmable logic controller (PLC)) IO(Input/Output, I/O) some wiring, usually, the control line that this type of power supply need connect comprises start signal and the alerting signal two-way of I/O type, and in addition, the analog quantity input and output comprise power, voltage and electric current three tunnel.
Yet adopt this method, it has following problem:
Therefore one wiring complexity under the more situation of wiring, just need design for cabling especially, have increased design cost on the one hand;
The two is because the analog quantity antijamming capability is poor, and signal increases with transmission range and decay obviously, during along with the increase of number of power sources, needs to increase the quantity of analog quantity input/output module and I/O module, causes the cost raising;
The warning message of three's power supply can not show at Surveillance center's end intuitively that needing wastes time and energy to on-the-spot affirmation failure message code.
The third, monitored target power supply installation bus card is such as PROFIBUS or DeviceNet are installed, but, this type of bus card is comparatively expensive, causes overall cost to increase easily, such as the expense of a PROFIBUS or DeviceNet card usually more than 2000 yuan; In addition, because this power supply need adopt specific bus card, so the extensibility of power supply is not good yet.
In addition, the disposal route of this type of installation bus card also has limitation to a certain degree, this is because not every power supply can the installation bus card, does not support the power supply of installation bus card then can not take this method to carry out the processing of power information for those.
Summary of the invention
In order to solve above-mentioned at least one technical matters that the existing power supply control method exists, the purpose of the embodiment of the invention is to provide a kind of power control method based on text language, Apparatus and system.
In order to reach purpose of the present invention, the present invention realizes by the following technical solutions:
A kind of power control method based on text language comprises:
Obtain by the trigger policy of customization the trigger pip that produces or user's input, and identify the communication event authenticator that at least one sets in advance accordingly;
The described trigger pip of foundation or input and at least one described communication event authenticator are carried out the processing of at least one corresponding communication event to corresponding monitored power supply.
Preferably, described communication event comprises that power settings, information obtains.
Alternatively, described power settings comprises startup setting, power setting, voltage setting, current settings, model selection setting; Described information is obtained and is comprised that state information acquisition, warning message obtain, power information is obtained, information of voltage obtains, current information obtains, model selection information is obtained.
Alternatively, input and at least one the described communication event authenticator according to described trigger pip or user comprises the step that corresponding monitored power supply carries out the processing of at least one corresponding communication event:
According to this at least one monitored power supply of input identification;
Generate corresponding at least one communication event steering order according to described communication event authenticator;
Send described communication event steering order to corresponding monitored power supply, to carry out the processing of respective communication event.
Preferably, carry out institute in steps before, also comprise:
At least one input/output interface that communicates to connect with corresponding monitored power supply of initialization, described input/output interface is the RS485 interface.
A kind of power control based on text language comprises:
Acquiring unit is used for obtaining the trigger pip that produced by the trigger policy of customization or user's input;
Recognition unit is used for identifying the communication event authenticator that at least one sets in advance according to described trigger pip or user's input;
Processing unit is used for according to described trigger pip or user's input and at least one described communication event authenticator is carried out at least one corresponding communication event to corresponding monitored power supply processing.
Preferably, described communication event comprises that power settings, information obtains.
Alternatively, described power settings comprises startup setting, power setting, voltage setting, current settings, model selection setting; Described information is obtained and is comprised that state information acquisition, warning message obtain, power information is obtained, information of voltage obtains, current information obtains, model selection information is obtained.
Alternatively, described processing unit comprises:
First processing unit is used for identifying at least one monitored power supply according to described trigger pip or user's input;
Second processing unit is used for generating corresponding at least one communication event steering order according to described communication event authenticator;
The 3rd processing unit is used for sending described communication event steering order to corresponding monitored power supply, to carry out the processing of respective communication event.
Preferably, described power control based on text language also comprises:
Initialization unit is used at least one input/output interface that communicates to connect with corresponding monitored power supply of initialization, and described input/output interface is the RS485 interface.
Technical scheme by the invention described above as can be seen, adopt the present invention, by adopting RS485 to carry out communication, can increase transmission range, and in implementation procedure, only need just can realize connection to a plurality of monitored power supplys by a spot of RS485 interface, so its wiring is less, can make that thus cabling is comparatively attractive in appearance, improve user's experience; In addition, the system that the invention enables has higher integrated level.
Description of drawings
Fig. 1 is the power control method schematic flow sheet based on text language that the embodiment of the invention provides;
Fig. 2 is input and communication event authenticator according to the user that the embodiment of the invention provides carry out the processing of at least one corresponding communication event to corresponding monitored power supply steps flow chart synoptic diagram;
Fig. 3 is the power control structural representation based on text language that the embodiment of the invention provides.
The realization of the object of the invention, functional characteristics and excellent effect are described further below in conjunction with specific embodiment and accompanying drawing.
Embodiment
Below in conjunction with the drawings and specific embodiments technical scheme of the present invention is described in further detail, can be implemented so that those skilled in the art can better understand the present invention also, but illustrated embodiment is not as a limitation of the invention.
With reference to figure 1, the method flow synoptic diagram of a kind of power control method based on text language that it provides for the embodiment of the invention, it comprises the steps:
Step S10: obtain by the trigger policy of customization the trigger pip that produces or user's input, and identify the communication event authenticator that at least one sets in advance accordingly;
Step S20: corresponding monitored power supply is carried out the processing of at least one corresponding communication event according to this trigger pip or input and described communication event authenticator.
In the present embodiment, described communication event comprises that power settings and information obtains, but should be appreciated that described communication event also comprises all kinds of events that other those skilled in the art expect easily, and this paper does not enumerate one by one to this.
Particularly, in the present embodiment, for example described power settings comprises startup setting, power setting, voltage setting, current settings, model selection setting; Described information is obtained and is comprised that state information acquisition, warning message obtain, power information is obtained, information of voltage obtains, current information obtains, model selection information is obtained.
As can be seen, the described communication event authenticator that sets in advance is in order to put down in writing concrete communication event steering order and communication event and differentiates the carrier of regular mapping relations, described communication event differentiates that rule identifies character or the attribute of this communication event in order to the input according to various users, and character or the attribute according to this communication event finds corresponding communication event steering order then.
In the present embodiment, as shown in Figure 2, the described trigger pip of foundation or user's input and described communication event authenticator comprise the step that corresponding monitored power supply carries out the processing of at least one corresponding communication event:
Step S201: according to described trigger pip or at least one monitored power supply of input identification;
Step S202: generate corresponding at least one communication event steering order according to described communication event authenticator;
Step S203: send described communication event steering order to corresponding monitored power supply, to carry out the processing of respective communication event.
More specifically, in the present embodiment, before carrying out described step S10, also comprise:
Step S01: at least one input/output interface that communicates to connect with corresponding monitored power supply of initialization, described input/output interface is the RS485 interface.Should be appreciated that described RS485 interface can dock a plurality of monitored power supplys.
For example, in following the present invention's one detailed embodiment, adopt to finish and inspire confidence in the realization of PC system, implementation divides following four steps.
Step 1, serial ports initialization
1, selected RS485 mouth is set baud rate, check bit etc. according to power requirement.
2, serial ports initialization in the software, and the setting of transmitting-receiving buffer area
A. in Global Variable, state variable, definition hardware serial ports and hardware mapping buffer area:
VAR_GLOBAL;
PCcom:SerialLineControl;
// statement serial communication, input and output, the buffer zone variable //
pComIn?AT?%I*:pccomindata;
pComOut?AT?%Q*:pccomoutdata;
TxBuffer,RxBuffer:combuffer;
END_VAR
B. input code in the program, the initialization serial ports:
PCcom(
Mode:=SERIALLINEMODE_PC_COM_PORT?,
pComIn:=ADR(pComIn)?,
pComOut:=ADR(pComOut)?,
SizeComIn:=SIZEOF(pcomin)?,
// definition serial ports type in backdrop procedure, output output data address, size of data //
TxBuffer:=TxBuffer?,
RxBuffer:=RxBuffer?,
Error=>?,
ErrorID=>);
Wherein, above-mentioned functions piece input/output variable explanation:
Input:
Mode: the serial ports type of use.
PComIn: serial communication input variable pointer.
PComOut: serial communication is failed the output variable pointer.
SizeComIn: the byte length of input variable.
TxBuffer: send the buffer zone definition.
RxBuffer: receive the buffer zone definition.
Output:
Error: rub-out signal output.
ErrorID: mistake number information output.
C. instruction buffer memory variable is received and dispatched in definition, prepares the customization receiving and dispatching mechanism:
PSendDataArr1:ARRAY[1..8] OF BYTE:; // information sending area;
PReceiveDataArr1:ARRAY[1..10] OF BYTE; // information region of acceptance.
Step 2, many communication instructions of research power supply are formulated communication mechanism.
1. transmission-receiving function function instantiation call definition:
SendData_001:?SendData;
ReceiveData_001:?ReceiveData;
2. customization transmitting-receiving communication:
Transmission SendData_001 (
pSendData:=ADR(pSendDataArr1)?,
Length:=?9,
TXbuffer:=Txbuffer?,
Busy=>?,
Error=>?);
Reception ReceiveData_001 (
pPrefix:=?,
LenPrefix:=?,
pSuffix:=?,
LenSuffix:=?,
pReceiveData:=ADR(pReceiveDataArr1)?,
SizeReceiveData:=SIZEOF(pReceiveDataArr1)?,
Timeout:=T#50ms?,
Reset:=?,
RXbuffer:=RXbuffer?,
DataReceived=>?,
busy=>?,
Error=>?,
RxTimeout=>?,
LenReceiveData=>?);
3. the instruction that power supply is set comprises:
Five kinds of startups, power, voltage, electric current, model selection.
The instruction of obtaining feedback information from power supply comprises:
Six kinds of states, warning message, power, voltage, electric current, model selection.
Step 3, allotment different instruction obtain effective information.
When carrying out communication with power supply, because the instruction that sends is many, therefore, when sending instruction, need set the user the setting of power supply instruction and to send this instruction again after input is finished, in force, set instruction and need to confirm to start successful information for starting; In non-set condition following time, need poll power supply feedack, in the present embodiment, block for preventing communication, can customize the delay process code.
Definition timer: timer1:TON; Can be set interval time to timer.
Utilize timer, insert receiving and sending messages of different station numbers automatically.
IF?timer1.Q?THEN
FOR i:=1 TO MaxNum DO pReceiveDataArr1[i] :=0; // empty the reception buffer area
END_FOR
………………
IF?pSendDataArr1[1]>?MaxNum?THEN?pSendDataArr1[1]:=1;
ELSE?pSendDataArr1[1]:=pSendDataArr1[1]+1;END_IF;
END_IF。
Extract effective information from reception information, need extract character information with the present embodiment is example, just need be with pReceiveDataArr1[i] in handle.When deposit data, need deposit respectively the data of each power supply.
Step 4, scheme debugging and examination.
After having finished above step, before debugging, also need program is connected with Hardware I/O map section, thereby finish the whole operation process.
Debug results by this specific embodiments can draw: under the situation that does not influence communication quality, a RS485 mouth can carry 10 power supplys simultaneously and finish desirable setting and gather feedback information, though the quantity of its band slave station is not as good as bus, but from controlling effect and cost control comprehensively relatively down, it still has certain advantage.
With reference to figure 3, it is a kind of power control 500 based on text language that the embodiment of the invention provides, and this device 500 comprises:
Acquiring unit 20 is used for obtaining the trigger pip that produced by the trigger policy of customization or user's input;
Recognition unit 30 is used for identifying the communication event authenticator that at least one sets in advance according to trigger pip or user's input;
Processing unit 40 is used for the processing of corresponding monitored power supply 10 being carried out at least one corresponding communication event according to trigger pip or user's input and at least one described communication event authenticator.
Preferably, described communication event comprises that power settings, information obtains.
Particularly, described power settings comprises startup setting, power setting, voltage setting, current settings, model selection setting; Described information is obtained and is comprised that state information acquisition, warning message obtain, power information is obtained, information of voltage obtains, current information obtains, model selection information is obtained.
In the present embodiment, described processing unit comprises:
First processing unit 401 is used for identifying at least one monitored power supply 10 according to described trigger pip or user's input;
Second processing unit 402 is used for generating corresponding at least one communication event steering order according to described communication event authenticator;
The 3rd processing unit 403 is used for sending described communication event steering order to corresponding monitored power supply 10, to carry out the processing of respective communication event.
More preferably, in the present embodiment, described power control 500 based on text language also comprises:
Initialization unit 60 is used at least one input/output interface that communicates to connect with corresponding monitored power supply of initialization, and described input/output interface is the RS485 interface.
The above only is the preferred embodiments of the present invention; be not so limit claim of the present invention; every equivalent structure or equivalent flow process conversion that utilizes instructions of the present invention and accompanying drawing content to do; or directly or indirectly be used in other relevant technical fields, all in like manner be included in the scope of patent protection of the present invention.

Claims (10)

1. the power control method based on text language is characterized in that, comprising:
Obtain by the trigger policy of customization the trigger pip that produces or user's input, and identify the communication event authenticator that at least one sets in advance accordingly;
The described trigger pip of foundation or input and at least one described communication event authenticator are carried out the processing of at least one corresponding communication event to corresponding monitored power supply.
2. the power control method based on text language as claimed in claim 1 is characterized in that, described communication event comprises that power settings, information obtains.
3. the power control method based on text language as claimed in claim 2 is characterized in that, described power settings comprises startup setting, power setting, voltage setting, current settings, model selection setting; Described information is obtained and is comprised that state information acquisition, warning message obtain, power information is obtained, information of voltage obtains, current information obtains, model selection information is obtained.
4. the power control method based on text language as claimed in claim 1 or 2, it is characterized in that the described trigger pip of foundation or user's input and at least one described communication event authenticator comprise the step that corresponding monitored power supply carries out the processing of at least one corresponding communication event:
According to described trigger pip or at least one monitored power supply of input identification;
Generate corresponding at least one communication event steering order according to described communication event authenticator;
Send described communication event steering order to corresponding monitored power supply, to carry out the processing of respective communication event.
5. the power control method based on text language as claimed in claim 1 is characterized in that, carry out institute in steps before, also comprise:
At least one input/output interface that communicates to connect with corresponding monitored power supply of initialization, described input/output interface is the RS485 interface.
6. the power control based on text language is characterized in that, comprising:
Acquiring unit is used for obtaining the trigger pip that produced by the trigger policy of customization or user's input;
Recognition unit is used for identifying the communication event authenticator that at least one sets in advance according to described trigger pip or user's input;
Processing unit is used for according to described trigger pip or user's input and at least one described communication event authenticator is carried out at least one corresponding communication event to corresponding monitored power supply processing.
7. the power control based on text language as claimed in claim 6 is characterized in that, described communication event comprises that power settings, information obtains.
8. the power control based on text language as claimed in claim 7 is characterized in that, described power settings comprises startup setting, power setting, voltage setting, current settings, model selection setting; Described information is obtained and is comprised that state information acquisition, warning message obtain, power information is obtained, information of voltage obtains, current information obtains, model selection information is obtained.
9. as claim 6 or 7 described power controls based on text language, it is characterized in that described processing unit comprises:
First processing unit is used for identifying at least one monitored power supply according to described trigger pip or user's input;
Second processing unit is used for generating corresponding at least one communication event steering order according to described communication event authenticator;
The 3rd processing unit is used for sending described communication event steering order to corresponding monitored power supply, to carry out the processing of respective communication event.
10. the power control based on text language as claimed in claim 6 is characterized in that, also comprises:
Initialization unit is used at least one input/output interface that communicates to connect with corresponding monitored power supply of initialization, and described input/output interface is the RS485 interface.
CN201310145190.1A 2013-04-24 2013-04-24 Based on power control method and the device of text language Active CN103279076B (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2017193705A1 (en) * 2016-05-10 2017-11-16 中兴通讯股份有限公司 Method and apparatus for monitoring communication power supply device, and storage medium

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201478881U (en) * 2009-09-16 2010-05-19 中国电子科技集团公司第三十八研究所 Power controller based on SOPC
CN102170134A (en) * 2011-05-05 2011-08-31 许继集团有限公司 Microgrid synchronization and off-grid control method and seamless switching method
CN102280937A (en) * 2011-07-29 2011-12-14 深圳市科陆电子科技股份有限公司 Distributed energy monitoring system and method
CN102393653A (en) * 2011-10-21 2012-03-28 深圳市通宝莱科技有限公司 Power manager
CN102890554A (en) * 2011-07-22 2013-01-23 鸿富锦精密工业(深圳)有限公司 Power supply management system and method

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201478881U (en) * 2009-09-16 2010-05-19 中国电子科技集团公司第三十八研究所 Power controller based on SOPC
CN102170134A (en) * 2011-05-05 2011-08-31 许继集团有限公司 Microgrid synchronization and off-grid control method and seamless switching method
CN102890554A (en) * 2011-07-22 2013-01-23 鸿富锦精密工业(深圳)有限公司 Power supply management system and method
CN102280937A (en) * 2011-07-29 2011-12-14 深圳市科陆电子科技股份有限公司 Distributed energy monitoring system and method
CN102393653A (en) * 2011-10-21 2012-03-28 深圳市通宝莱科技有限公司 Power manager

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2017193705A1 (en) * 2016-05-10 2017-11-16 中兴通讯股份有限公司 Method and apparatus for monitoring communication power supply device, and storage medium
CN107360049A (en) * 2016-05-10 2017-11-17 中兴通讯股份有限公司 A kind of method and device that background monitoring is carried out to Communication Power Equipment

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