CN103345714A - Technical transformation method and system of power communication device - Google Patents

Technical transformation method and system of power communication device Download PDF

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CN103345714A
CN103345714A CN2013102689353A CN201310268935A CN103345714A CN 103345714 A CN103345714 A CN 103345714A CN 2013102689353 A CN2013102689353 A CN 2013102689353A CN 201310268935 A CN201310268935 A CN 201310268935A CN 103345714 A CN103345714 A CN 103345714A
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data
communication device
power communication
electric power
scheme
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CN103345714B (en
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李�杰
梁炯光
萧琨
李卫军
黄达林
钟远强
林志东
张德
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Guangdong University of Technology
Electric Power Dispatch Control Center of Guangdong Power Grid Co Ltd
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Guangdong University of Technology
Electric Power Dispatch Control Center of Guangdong Power Grid Co Ltd
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Abstract

The invention provides a technical transformation method of a power communication device. The technical transformation method includes the steps of obtaining various influence factor data of the operation state of the power communication device, obtaining combining schemes by combining the influence factor data, updating the influence factor data contained in each combining scheme into influence factor data after technical transformation, obtaining combining schemes after the technical transformation, using a preset operation state calculation function to determine the state grade of the power communication device after the technical transformation is carried out on the influence factor data according to the influence factor data contained in each combining scheme after the technical transformation, selecting candidate schemes with the state grade of the power communication device after the technical transformation lager than or equal to the preset state grade from the combining schemes after technical transformation, and determining one combining scheme from the candidate schemes to carry out the technical transformation on the power communication device. The invention further provides a technical transformation system of the power communication device. Proceeding from the safety of the power communication device, the technical transformation method can rapidly determine the technical transformation scheme with the highest reliability.

Description

A kind of technical reformation method of electric power communication device and system
Technical field
The present invention relates to the electric power communication device technical field, particularly relate to a kind of technical reformation method of electric power communication device, and a kind of technological transformation system of electric power communication device.
Background technology
Along with the development of power industry, the process of power informatization is constantly accelerated, and interpenetrative trend is more and more obvious between power network and the power information net.Generating, transmission and disttrbution system in the high-stability requirement power network of electric system have very high automatization level, need the coordinated operation under efficient a, effective patterns of these systems, and the safe operation of power communication system is an indispensable ring wherein.Power telecom network is through for many years safety management, and situation of safety is steady, and safety index steadily improves.But along with the communication network scale is expanded rapidly, the corresponding increase of technical complexity objectively needs management innovation, the modern management system that needs foundation and modern power network and communication network thereof to adapt.At run duration, owing to reasons such as ageing equipment, environment deterioration, hidden trouble of equipment make that the running status of equipment component is undesirable, be unfavorable for the safe operation of system.It is the requisite measure of lifting means state, the operation of safeguards system safety and steady that these equipment are undergone technological transformation.From the angle of O﹠M, technological transformation need be taken all factors into consideration the risk of aspects such as device security, economy and social influence, under limited input, adopt scientific and reasonable technical reform scheme to carry out O﹠M work pointedly, thereby the promotion optimizing resource allocation is raised the efficiency, and reduces cost.Therefore, the optimization of technical reform scheme has urgent reality to need and practice significance.
At present, the selection of technical reform scheme is mainly according to practitioner's experience and subjective understanding, is to analyze qualitatively to the major part of considering of scheme, and the Expected Results of technical reform scheme and the relation of required investment are lacked quantitative evaluation.Therefore, the quality of technical reform scheme depends on practitioner's specialized capability to a great extent, has bigger randomness.
Summary of the invention
Based on this, the invention provides a kind of technical reformation method and system of electric power communication device, can determine the highest technology reforming scheme of reliability from the security of electric power communication device rapidly.
A kind of technical reformation method of electric power communication device comprises the steps:
Obtain the multiple influence factor data of the running status of electric power communication device;
Make up described influence factor data, obtain the multiple assembled scheme that comprises the different affecting factors data;
Be influence factor data after the technological transformation with the influence factor Data Update that comprises in every kind of assembled scheme, obtain improved every kind of assembled scheme;
According to the influence factor data that comprise in improved every kind of assembled scheme, after the default running status computing function of utilization determines that the influence factor data are transformed, the state grade of described electric power communication device;
From described improved every kind of assembled scheme, choose the state grade of improved described electric power communication device more than or equal to the candidate scheme of default state grade, determine that from described candidate scheme a kind of assembled scheme undergoes technological transformation to described electric power communication device.
A kind of technological transformation system of electric power communication device comprises:
Acquisition module is for the multiple influence factor data of the running status of obtaining electric power communication device;
Composite module is used for the described influence factor data of combination, obtains the multiple assembled scheme that comprises the different affecting factors data;
Update module, being used for the influence factor Data Update that every kind of assembled scheme comprises is influence factor data after the technological transformation, obtains improved every kind of assembled scheme;
Computing module, for the influence factor data that comprise according to improved every kind of assembled scheme, after the default running status computing function of utilization determines that the influence factor data are transformed, the state grade of described electric power communication device;
Transform module, be used for choosing the state grade of improved described electric power communication device more than or equal to the candidate scheme of default state grade from described improved every kind of assembled scheme, determine that from described candidate scheme a kind of assembled scheme undergoes technological transformation to described electric power communication device.
The technical reformation method of above-mentioned electric power communication device and system, at first obtain the influence factor data of electric power communication device, make up multiple influence factor data and obtain the multiple technologies modification scheme, respectively every kind of technology reforming scheme is transformed the calculating of back running status, choosing wherein according to the change of running status from the multiple assembled scheme that is better than the preset state grade, a kind of assembled scheme undergoes technological transformation to electric power communication device; The present invention analyzes the various influence factor data to the electric power communication device running status, has determined the highest technology reforming scheme of reliability from the security of electric power communication device.
Description of drawings
Fig. 1 is the technical reformation method schematic flow sheet in one embodiment of electric power communication device of the present invention.
Fig. 2 is the technological transformation system structural representation in one embodiment of electric power communication device of the present invention.
Embodiment
Below in conjunction with embodiment and accompanying drawing the present invention is described in further detail, but embodiments of the present invention are not limited thereto.
As shown in Figure 1, the technical reformation method schematic flow sheet in one embodiment for power communication system of the present invention comprises:
S11, obtain the multiple influence factor data of the running status of electric power communication device;
The running status of electric power communication device is the integrated level of equipment operation present situation and O﹠M level, and may there be the hidden danger that causes the state deterioration in the relatively poor electric power communication device of running status, should monitor its ruuning situation, undergoes technological transformation in case of necessity;
In the present embodiment, described multiple influence factor comprises risk data, spare unit data, stopping production data, historical data;
Described risk data is R A=f R(r 1A, r 2A..., r 9A), wherein, R ABe the risk data of electric power communication device A, r 1Be tenure of use, r 2Be integrated circuit board redundancy, r 3Be power supply redundancy, r 4Be running environment, r 5Be historical failure, r 6Be family's defective, r 7Be webmaster coefficient, r 8Be alternate routing, r 9Be portfolio, f RBe preset function; The risk data of equipment can be by above-mentioned 9 function f that factor is variable RDetermine;
Described spare unit data are that electric power communication device has the spare unit data or do not have the spare unit data; The spare unit situation of equipment can be divided into spare unit, two kinds of grades of no spare unit, and note spare unit situation collection is S=[s 1, s 2];
Described stopping production data are electric power communication device stopping production data or are producing data; The stopping production situation of equipment can be divided into stopping production, produce two kinds of grades, and note stopping production situation collection is M=[m 1, m 2];
Described historical data is H A=f H(h 1A, h 2A..., h 5A), H wherein ABe the historical data of electric power communication device A, h 1Be completion information quality, h 2Check and accept quality, h for going into operation 3For examining situation, h surely 4Be equipment run book, h 5Be producer's service quality, f HBe preset function; The historical data of equipment can be by above-mentioned 5 function f that factor is variable HDetermine.
In the present embodiment, the running status of described electric power communication device is C A=f (R A, S A, M A, H A), wherein, R ABe described risk data, S ABe described spare unit data, M ABe described stopping production data, H ABe described historical data, f is preset function, C AValue be 1,2 ..., N} represents the different brackets of equipment running status;
For example, the running status of electric power communication device A can be divided into normally, attention, unusual, serious four running statuses, the running status grade can be counted C A={ 1,2,3,4}, respectively corresponding normal, attention, unusual, serious 4 grades;
Normal condition indication equipment running status and maintenance levels are good, can normally move;
Attention state indication equipment running status and maintenance levels are good, have the slight hidden danger that causes the state deterioration, still can continue operation, should strengthen operating supervision;
Abnormality indication equipment running status and maintenance levels are medium, have the serious hidden danger that causes the state deterioration, should monitor operation, and the rectification of arrangement technology in good time;
Serious state representation equipment running status and maintenance levels are poor, have the serious hidden danger that causes the state deterioration, need the rectification of arrangement technology immediately.
S12, the described influence factor data of combination obtain the multiple assembled scheme that comprises the different affecting factors data;
Obtain various described influence factor data, each influence factor data is undergone technological transformation, the running status of electric power communication device is had different influences, and improvement expenses is also different; Therefore different described influence factor data capable of being combined obtain multiple assembled scheme, such as the scheme that only the spare unit data is undergone technological transformation, or other assembled schemes of the scheme that integrated circuit board redundancy, power supply redundancy in the risk data are undergone technological transformation etc.
S13, be influence factor data after the technological transformation with the influence factor Data Update that comprises in every kind of assembled scheme, obtain improved every kind of assembled scheme;
After obtaining assembled scheme, comprise the influence factor data of pending technological transformation in every kind of assembled scheme, these influence factor data are made amendment, be updated to the influence factor data after the technological transformation, determine the improvement expenses of every kind of assembled scheme.
S14, according to the influence factor data that comprise in improved every kind of assembled scheme, utilize default running status computing function to determine the state grade of described electric power communication device after the transformation of influence factor data;
The running status of electric power communication device obtains changing after the technological transformation, improved every kind of assembled scheme comprises the influence factor data after the various renewals, the running status computing function that influence factor data utilization in every kind of assembled scheme is default can be determined the state grade of corresponding described electric power communication device after the transformation of influence factor data.
For example:
Risk situation R to device A AIn factor r IA(i=1,2 ..., 9) the required expense c of technological transformation RiA(i=1,2 ..., 9), improved factor is r IAnew(i=1,2 ..., 9);
To spare unit situation S AThe expense that house of correction needs is c SA, improved is S Anew;
Be M to the stopping production situation AThe expense that house of correction needs is c MA, improved is M Anew;
To account of the history H AIn factor h IA(i=1,2 ..., 5) and the expense that needs of house of correction is c HiA, improved is h IAnew(i=1,2 ..., 5).
S15, from described improved every kind of assembled scheme, choose improved described electric power communication device state grade more than or equal to the candidate scheme of default state grade, determine that from described candidate scheme a kind of assembled scheme undergoes technological transformation to described electric power communication device;
The state value that makes equipment require to reach after technological transformation is C R, the corresponding technical reform scheme that then is better than the preset state grade in the above-mentioned new state grade of obtaining is candidate scheme; Can choose a scheme from candidate scheme electric power communication device is undergone technological transformation, then the running status of the electric power communication device after the technological transformation just can satisfy service requirement.
In a preferred embodiment, can determine the improvement expenses of every kind of assembled scheme, in every kind of described candidate scheme, with the risk data before transforming and the difference of improved risk data, obtain the judgment value of every kind of described candidate scheme divided by described improvement expenses, the candidate scheme of choosing the judgment value maximum undergoes technological transformation to described electric power communication device;
For example:
Assembled scheme 1: state is attention state after the technological transformation, and new value-at-risk is R A1, required expense is c A1
Assembled scheme 2: state is normal condition after the technological transformation, and new value-at-risk is R A2, required expense is c A2
If R A - R A 1 c A 1 > R A - R A 2 c A 2
Then the optimal technical scheme of device A is assembled scheme 1.
The present invention also provides a kind of technological transformation system of electric power communication device, as shown in Figure 2, comprising:
Acquisition module 21 is for the multiple influence factor data of the running status of obtaining electric power communication device;
The running status of electric power communication device is the integrated level of equipment operation present situation and O﹠M level, and may there be the hidden danger that causes the state deterioration in the relatively poor electric power communication device of running status, should monitor its ruuning situation, undergoes technological transformation in case of necessity;
In the present embodiment, described multiple influence factor comprises risk data, spare unit data, stopping production data, historical data;
Described risk data is R A=f R(r 1A, r 2A..., r 9A), wherein, R ABe the risk data of electric power communication device A, r 1Be tenure of use, r 2Be integrated circuit board redundancy, r 3Be power supply redundancy, r 4Be running environment, r 5Be historical failure, r 6Be family's defective, r 7Be webmaster coefficient, r 8Be alternate routing, r 9Be portfolio, f RBe preset function; The risk data of equipment can be by above-mentioned 9 function f that factor is variable RDetermine;
Described spare unit data are that electric power communication device has the spare unit data or do not have the spare unit data; The spare unit situation of equipment can be divided into spare unit, two kinds of grades of no spare unit, and note spare unit situation collection is S=[s 1, s 2];
Described stopping production data are electric power communication device stopping production data or are producing data; The stopping production situation of equipment can be divided into stopping production, produce two kinds of grades, and note stopping production situation collection is M=[m 1, m 2];
Described historical data is H A=f H(h 1A, h 2A..., h 5A), H wherein ABe the historical data of electric power communication device A, h 1Be completion information quality, h 2Check and accept quality, h for going into operation 3For examining situation, h surely 4Be equipment run book, h 5Be producer's service quality, f HBe preset function; The historical data of equipment can be by above-mentioned 5 function f that factor is variable HDetermine.
In the present embodiment, the running status of described electric power communication device A is C A=f (R A, S A, M A, H A), wherein, R ABe described risk data, S ABe described spare unit data, M ABe described stopping production data, H ABe described historical data, f is preset function, C AValue be 1,2 ..., N} represents the different brackets of equipment running status;
For example, the running status of electric power communication device can be divided into normally, attention, unusual, serious four running statuses, the running status grade can be counted C A={ 1,2,3,4}, respectively corresponding normal, attention, unusual, serious 4 grades;
Normal condition indication equipment running status and maintenance levels are good, can normally move;
Attention state indication equipment running status and maintenance levels are good, have the slight hidden danger that causes the state deterioration, still can continue operation, should strengthen operating supervision;
Abnormality indication equipment running status and maintenance levels are medium, have the serious hidden danger that causes the state deterioration, should monitor operation, and the rectification of arrangement technology in good time;
Serious state representation equipment running status and maintenance levels are poor, have the serious hidden danger that causes the state deterioration, need the rectification of arrangement technology immediately.
Composite module 22 is used for the described influence factor data of combination, obtains the multiple assembled scheme that comprises the different affecting factors data;
Obtain various described influence factor data, each influence factor data is undergone technological transformation, the running status of electric power communication device is had different influences, and improvement expenses is also different; Therefore different described influence factor data capable of being combined obtain multiple assembled scheme, such as the scheme that only the spare unit data is undergone technological transformation, or other assembled schemes of the scheme that integrated circuit board redundancy, power supply redundancy in the risk data are undergone technological transformation etc.
Update module 23, being used for the influence factor Data Update that every kind of assembled scheme comprises is influence factor data after the technological transformation, obtains improved every kind of assembled scheme;
After obtaining assembled scheme, comprise the influence factor data of pending technological transformation in every kind of assembled scheme, these influence factor data are made amendment, be updated to the influence factor data after the technological transformation, determine the improvement expenses of every kind of assembled scheme.
Computing module 24 is used for the influence factor data that comprise according to improved every kind of assembled scheme, utilizes default running status computing function to determine the state grade of described electric power communication device after the transformation of influence factor data;
The running status of electric power communication device obtains changing after the technological transformation, improved every kind of assembled scheme comprises the influence factor data after the various renewals, the running status computing function that influence factor data utilization in every kind of assembled scheme is default can be determined the state grade of corresponding described electric power communication device after the transformation of influence factor data.
For example:
Risk situation R to device A AIn factor r IA(i=1,2 ..., 9) the required expense c of technological transformation RiA(i=1,2 ..., 9), improved factor is r IAnew(i=1,2 ..., 9);
To spare unit situation S AThe expense that house of correction needs is c SA, improved is S Anew;
Be M to the stopping production situation AThe expense that house of correction needs is c MA, improved is M Anew;
To account of the history H AIn factor h IA(i=1,2 ..., 5) and the expense that needs of house of correction is c HiA, improved is h IAnew(i=1,2 ..., 5).
Transform module 25, be used for choosing the state grade of improved described electric power communication device more than or equal to the candidate scheme of default state grade from described improved every kind of assembled scheme, determine that from described candidate scheme a kind of assembled scheme undergoes technological transformation to described electric power communication device.
The state value that makes equipment require to reach after technological transformation is C R, the corresponding technical reform scheme that then is better than the preset state grade in the above-mentioned new state grade of obtaining is candidate scheme; Can choose a scheme from candidate scheme electric power communication device is undergone technological transformation, then the running status of the electric power communication device after the technological transformation just can satisfy service requirement.
In a preferred embodiment, described transformation module 25 also can be used for determining the improvement expenses of every kind of assembled scheme, in every kind of described candidate scheme, with the risk data before transforming and the difference of improved risk data, obtain the judgment value of every kind of described candidate scheme divided by described improvement expenses, the candidate scheme of choosing the judgment value maximum undergoes technological transformation to described electric power communication device;
For example:
Assembled scheme 1: state is attention state after the technological transformation, and new value-at-risk is R A1, required expense is c A1
Assembled scheme 2: state is normal condition after the technological transformation, and new value-at-risk is R A2, required expense is c A2
If R A - R A 1 c A 1 > R A - R A 2 c A 2
Then the optimal technical scheme of device A is assembled scheme 1.
The technical reformation method of electric power communication device of the present invention and system, at first obtain the influence factor data of electric power communication device, make up multiple influence factor data and obtain the multiple technologies modification scheme, respectively every kind of technology reforming scheme is transformed the calculating of back running status, choosing wherein according to the change of running status from the multiple assembled scheme that is better than the preset state grade, a kind of assembled scheme undergoes technological transformation to electric power communication device; The present invention analyzes the various influence factor data to the electric power communication device running status, has determined the highest technology reforming scheme of reliability from the security of electric power communication device.
The above embodiment has only expressed several embodiment of the present invention, and it describes comparatively concrete and detailed, but can not therefore be interpreted as the restriction to claim of the present invention.Should be pointed out that for the person of ordinary skill of the art without departing from the inventive concept of the premise, can also make some distortion and improvement, these all belong to protection scope of the present invention.Therefore, the protection domain of patent of the present invention should be as the criterion with claims.

Claims (8)

1. the technical reformation method of an electric power communication device is characterized in that, comprises the steps:
Obtain the multiple influence factor data of the running status of electric power communication device;
Make up described influence factor data, obtain the multiple assembled scheme that comprises the different affecting factors data;
Be influence factor data after the technological transformation with the influence factor Data Update that comprises in every kind of assembled scheme, obtain improved every kind of assembled scheme;
According to the influence factor data that comprise in improved every kind of assembled scheme, after the default running status computing function of utilization determines that the influence factor data are transformed, the state grade of described electric power communication device;
From described improved every kind of assembled scheme, choose the state grade of improved described electric power communication device more than or equal to the candidate scheme of default state grade, determine that from described candidate scheme a kind of assembled scheme undergoes technological transformation to described electric power communication device.
2. the technical reformation method of electric power communication device according to claim 1 is characterized in that,
Described multiple influence factor comprises risk data, spare unit data, stopping production data, historical data;
Described risk data is R A=f R(r 1A, r 2A..., r 9A), wherein, R ABe the risk data of electric power communication device A, r 1Be tenure of use, r 2Be integrated circuit board redundancy, r 3Be power supply redundancy, r 4Be running environment, r 5Be historical failure, r 6Be family's defective, r 7Be webmaster coefficient, r 8Be alternate routing, r 9Be portfolio, f RBe preset function;
Described spare unit data are that electric power communication device has the spare unit data or do not have the spare unit data;
Described stopping production data are electric power communication device stopping production data or are producing data;
Described historical data is H A=f H(h 1A, h 2A..., h 5A), H wherein ABe the historical data of electric power communication device A, h 1Be completion information quality, h 2Check and accept quality, h for going into operation 3For examining situation, h surely 4Be equipment run book, h 5Be producer's service quality, f HBe preset function.
3. the technical reformation method of electric power communication device according to claim 2 is characterized in that,
The running status of described electric power communication device is C A=f (R A, S A, M A, H A), wherein, R ABe described risk data, S ABe described spare unit data, M ABe described stopping production data, H ABe described historical data, f is preset function, C AValue be 1,2 ..., N}.
4. the technical reformation method of electric power communication device according to claim 2 is characterized in that, describedly determines that from described candidate scheme a kind of scheme to the step that described electric power communication device undergoes technological transformation is:
Determine the improvement expenses of every kind of assembled scheme, in every kind of described candidate scheme, with the risk data before transforming and the difference of improved risk data, obtain the judgment value of every kind of described candidate scheme divided by described improvement expenses, the candidate scheme of choosing the judgment value maximum undergoes technological transformation to described electric power communication device.
5. the technological transformation system of an electric power communication device is characterized in that, comprising:
Acquisition module is for the multiple influence factor data of the running status of obtaining electric power communication device;
Composite module is used for the described influence factor data of combination, obtains the multiple assembled scheme that comprises the different affecting factors data;
Update module, being used for the influence factor Data Update that every kind of assembled scheme comprises is influence factor data after the technological transformation, obtains improved every kind of assembled scheme;
Computing module, for the influence factor data that comprise according to improved every kind of assembled scheme, after the default running status computing function of utilization determines that the influence factor data are transformed, the state grade of described electric power communication device;
Transform module, be used for choosing the state grade of improved described electric power communication device more than or equal to the candidate scheme of default state grade from described improved every kind of assembled scheme, determine that from described candidate scheme a kind of assembled scheme undergoes technological transformation to described electric power communication device.
6. the technological transformation system of electric power communication device according to claim 5 is characterized in that,
Described multiple influence factor comprises risk data, spare unit data, stopping production data, historical data;
Described risk data is R A=f R(r 1A, r 2A..., r 9A), wherein, R ABe the risk data of electric power communication device A, r 1Be tenure of use, r 2Be integrated circuit board redundancy, r 3Be power supply redundancy, r 4Be running environment, r 5Be historical failure, r 6Be family's defective, r 7Be webmaster coefficient, r 8Be alternate routing, r 9Be portfolio, f RBe preset function;
Described spare unit data are that electric power communication device has the spare unit data or do not have the spare unit data;
Described stopping production data are electric power communication device stopping production data or are producing data;
Described historical data is H A=f H(h 1A, h 2A..., h 5A), H wherein ABe the historical data of electric power communication device A, h 1Be completion information quality, h 2Check and accept quality, h for going into operation 3For examining situation, h surely 4Be equipment run book, h 5Be producer's service quality, f HBe preset function.
7. the technological transformation system of electric power communication device according to claim 6 is characterized in that,
The running status of described electric power communication device is C A=f (R A, S A, M A, H A), wherein, R ABe described risk data, S ABe described spare unit data, M ABe described stopping production data, H ABe described historical data, f is preset function, C AValue be 1,2 ..., N}.
8. the technological transformation system of electric power communication device according to claim 6, it is characterized in that, described transformation module also is used for determining the improvement expenses of every kind of assembled scheme, in every kind of described candidate scheme, with the risk data before transforming and the difference of improved risk data, obtain the judgment value of every kind of described candidate scheme divided by described improvement expenses, the candidate scheme of choosing the judgment value maximum undergoes technological transformation to described electric power communication device.
CN201310268935.3A 2013-06-28 2013-06-28 The technical reformation method of a kind of electric power communication device and system Active CN103345714B (en)

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CN101859409A (en) * 2010-05-25 2010-10-13 广西电网公司电力科学研究院 Power transmission and transformation equipment state overhauling system based on risk evaluation
CN102081765A (en) * 2011-01-19 2011-06-01 西安交通大学 Systematic control method for repair based on condition of electricity transmission equipment
CN102509018A (en) * 2011-11-11 2012-06-20 山东电力研究院 System and method for evaluating importance of power system facilities

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20050091916A (en) * 2004-03-11 2005-09-16 한국전력공사 Off line state evalution system and method for large scale power system
CN101859409A (en) * 2010-05-25 2010-10-13 广西电网公司电力科学研究院 Power transmission and transformation equipment state overhauling system based on risk evaluation
CN102081765A (en) * 2011-01-19 2011-06-01 西安交通大学 Systematic control method for repair based on condition of electricity transmission equipment
CN102509018A (en) * 2011-11-11 2012-06-20 山东电力研究院 System and method for evaluating importance of power system facilities

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