CN106709627A - Benchmark energy consumption management method and device thereof - Google Patents

Benchmark energy consumption management method and device thereof Download PDF

Info

Publication number
CN106709627A
CN106709627A CN201611027114.0A CN201611027114A CN106709627A CN 106709627 A CN106709627 A CN 106709627A CN 201611027114 A CN201611027114 A CN 201611027114A CN 106709627 A CN106709627 A CN 106709627A
Authority
CN
China
Prior art keywords
day
data
energy consumption
mark post
mark
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.)
Granted
Application number
CN201611027114.0A
Other languages
Chinese (zh)
Other versions
CN106709627B (en
Inventor
闫军威
陈城
喻凡
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.)
Guangzhou Is Far Smart Polytron Technologies Inc
Original Assignee
Guangzhou Is Far Smart Polytron Technologies Inc
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 Guangzhou Is Far Smart Polytron Technologies Inc filed Critical Guangzhou Is Far Smart Polytron Technologies Inc
Priority to CN201611027114.0A priority Critical patent/CN106709627B/en
Publication of CN106709627A publication Critical patent/CN106709627A/en
Application granted granted Critical
Publication of CN106709627B publication Critical patent/CN106709627B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q10/00Administration; Management
    • G06Q10/06Resources, workflows, human or project management; Enterprise or organisation planning; Enterprise or organisation modelling
    • G06Q10/063Operations research, analysis or management
    • G06Q10/0631Resource planning, allocation, distributing or scheduling for enterprises or organisations
    • G06Q10/06313Resource planning in a project environment
    • 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P90/00Enabling technologies with a potential contribution to greenhouse gas [GHG] emissions mitigation
    • Y02P90/80Management or planning
    • Y02P90/82Energy audits or management systems therefor

Landscapes

  • Business, Economics & Management (AREA)
  • Human Resources & Organizations (AREA)
  • Engineering & Computer Science (AREA)
  • Economics (AREA)
  • Strategic Management (AREA)
  • Entrepreneurship & Innovation (AREA)
  • Development Economics (AREA)
  • Quality & Reliability (AREA)
  • Biodiversity & Conservation Biology (AREA)
  • Game Theory and Decision Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Marketing (AREA)
  • Operations Research (AREA)
  • Educational Administration (AREA)
  • Tourism & Hospitality (AREA)
  • Physics & Mathematics (AREA)
  • General Business, Economics & Management (AREA)
  • General Physics & Mathematics (AREA)
  • Theoretical Computer Science (AREA)
  • Management, Administration, Business Operations System, And Electronic Commerce (AREA)

Abstract

The invention discloses a benchmark energy consumption management method and a benchmark energy consumption management device. The benchmark energy consumption management method comprises the steps of: acquiring hourly benchmark data corresponding to a date type of a benchmarking day; acquiring hourly weather data of every hour on the benchmarking day, and acquiring corrected hourly benchmark data according to the hourly weather data and the hourly benchmark data; acquiring an hourly proportion according to hourly energy consumption data of every hour on the benchmarking day, and the corrected hourly benchmark data; judging whether the hourly proportion is greater than an hourly proportion threshold value; and if so, indicating that the hourly proportion of the corresponding hour reaches a standard; otherwise, acquiring energy consumption equipment switching-on/off states in an energy consumption region, and turning off unreasonable energy consumption equipment according to preset switching-on/off benchmark data. The benchmark energy consumption management method and the benchmark energy consumption management device have the advantages of monitoring and managing various types of energy consumption through acquiring hourly, daily, monthly and yearly energy consumption data in each energy consumption region, improving energy utilization efficiency of various buildings, reducing the waste of energy, and achieving safe, economical, stable and reliable energy supply and demand.

Description

Mark post energy management method and its device
Technical field
The present invention relates to power management technique, more particularly to mark post energy management method and its device.
Background technology
With the fast development of social economy, all kinds of buildings such as factory, hospital, school, office building and hotel also gradually increase Many, most of buildings do not install energy classification metering separate meter at present, to all kinds of energy resources such as electricity, water, natural gas, cold Consumption statistics substantially by the mode of manual metering, major energy companies are relied on to the consumption statistic of energy resources and are periodically sent out The expense document for sending, it is impossible to grasp the existing available energy equipment Energy consumption of building in real time, the reasonability to energy for building is difficult to Make accurately judgement, it is impossible to which indexing management evaluation is carried out to building energy consumption.
The content of the invention
In order to overcome the deficiencies in the prior art, an object of the present invention is to provide mark post energy consumption management method, its energy Realize the monitoring and management to energy consumption data.
The second object of the present invention is to provide mark post managing power consumption device, and it can realize the monitoring and pipe to energy consumption data Reason.
An object of the present invention is realized using following technical scheme:
Mark post energy consumption management method, comprises the following specific steps that:
Obtain to mark day date type it is corresponding by when mark post data;
Obtain to mark day each hour by when weather data, according to by when weather data and by when mark post data acquisition To amendment by when mark post data;
According to mark day on the day of it is horal by when energy consumption data, and amendment by when mark post data acquisition by when ratio Example;
Judge by when ratio whether be more than by when proportion threshold value;If it is, this hour by when ratio it is up to standard;Otherwise obtain The energy consumption equipment on off state in energy consumption region is taken, irrational energy consumption equipment is closed according to preset switches mark post data.
Preferably, it is described by when mark post data acquisition before also comprise the following steps:
Several day-marks day are selected in any one date type;The corresponding day-mark data of each day-mark day are obtained respectively, Day-mark data include by when energy consumption data;
The most rational day-mark day of day-mark data is chosen from several day-marks day as corresponding with the date type Mark post day;
Chosen in mark post day a day-mark data most rational hour as by when mark post, obtain this by when mark post by When energy consumption data, should by when mark post by when energy consumption data be by when mark post data, and should by when mark post data storage extremely mark In bar database;
And according on the day of mark post day it is all by when energy consumption data obtain the energy consumption data day by day of the mark post day, this day by day can Consumption data are day by day mark post data, and by this day by day mark post data storage to mark post database.
Preferably, in each day-mark day, administrative staff are patrolled and examined energy consumption region;Administrative staff's manual-lock does not conform to Reason energy consumption equipment so that by when energy consumption data in energy waste data ratio reduction;Record unreasonable energy consumption equipment simultaneously Device data.
Preferably, mark post energy consumption management method also includes:
Obtain to mark day on the day of energy consumption data day by day, according to the same day it is all of amendment by when the amendment of mark post data acquisition by Day mark post data;
According to energy consumption data day by day and amendment mark post data acquisition ratio day by day day by day.
Preferably, mark post energy consumption management method also includes:
Obtain the energy consumption month by month data of that month to the mark moon, according to this month all of amendment day by day the amendment of mark post data acquisition by Month mark post data;
According to energy consumption month by month data and amendment mark post data acquisition ratio month by month month by month.
Preferably, mark post energy consumption management method also includes:
Obtain to mark year energy consumption year by year data then, according to all of amendment then month by month the amendment of mark post data acquisition by Year mark post data;
According to energy consumption year by year data and amendment mark post data acquisition ratio year by year year by year.
The second object of the present invention is realized using following technical scheme:
Mark post managing power consumption device, specifically includes:
Date type acquisition module, for obtain to mark day date type it is corresponding by when mark post data;
By when correcting module, for obtain to mark day each hour by when weather data, according to by when weather data With by when mark post data acquisition to amendment by when mark post data;
By when ratio module, for basis to mark day on the day of it is horal by when energy consumption data, and amendment by when Mark post data acquisition by when ratio;
By when judge module, for judge by when ratio whether be more than by when proportion threshold value;If it is, this hour by When ratio it is up to standard;Otherwise perform exceeded module;
Exceeded module, the energy consumption equipment on off state for obtaining energy consumption region is closed according to preset switches mark post data Irrational energy consumption equipment.
Preferably, mark post managing power consumption device also includes:
First acquisition module, for selecting several day-marks day in any one date type;Each day-mark is obtained respectively Day corresponding day-mark data, day-mark data include by when energy consumption data;
Day by day mark post determining module, makees for choosing the most rational day-mark day of day-mark data from several day-marks day Be corresponding with date type mark post day, and according to mark post day on the day of it is all by when energy consumption data obtain the mark post day by Day energy consumption data, this day by day energy consumption data be mark post data day by day, and by this day by day mark post data storage to mark post database;
By when mark post determining module, for choosing a day-mark data most rational hour in mark post day as by markers Bar, obtain this by when mark post by when energy consumption data, should by when mark post by when energy consumption data be by when mark post data, and should By when mark post data storage to mark post database in.
Preferably, mark post managing power consumption device also includes:
Day by day ratio judge module, for the energy consumption data day by day on the day of obtaining to mark day, according to the same day all of amendment By when mark post data acquisition amendment mark post data day by day;For according to energy consumption data day by day and amendment day by day mark post data acquisition by Day ratio.
Preferably, mark post managing power consumption device also includes:
Ratio judge module month by month, for obtaining the energy consumption month by month data of that month to the mark moon, according to of that month all of amendment Day by day mark post data acquisition amendment mark post data month by month;According to energy consumption month by month data and amendment, mark post data acquisition compares month by month month by month Example.
Preferably, mark post managing power consumption device also includes:
Ratio judge module year by year, for obtaining the energy consumption year by year data to mark year then, according to all of amendment then Mark post data acquisition amendment mark post data year by year month by month;According to energy consumption year by year data and amendment, mark post data acquisition compares year by year year by year Example.
Compared to existing technology, the beneficial effects of the present invention are:By obtain each energy consumption region by when, day by day, by All kinds of energy for building are carried out scientific and effective monitoring and management by the moon and energy consumption data year by year, improve the energy of all kinds of buildings Utilization ratio, reduces the waste of the energy, realizes safety economy, reliable and stable energy supply and demand.
Brief description of the drawings
Fig. 1 is the flow chart one of mark post energy management method of the invention;
Fig. 2 is the flowchart 2 of mark post energy management method of the invention.
Specific embodiment
Below, with reference to accompanying drawing and specific embodiment, the present invention is described further:
Mark post energy management system, including remote data server, energy consumption equipment managing device, data acquisition device, energy Consumption metering device and warning system.
Energy consumption measure device is used for the energy consumption data of the energy consumption equipment of outside all kinds of energy consumption types.
Data acquisition device is used to be gathered from energy consumption measure device the energy consumption data of all kinds of energy consumption equipments, and by energy consumption data It is transferred to remote data server;And for obtain energy consumption region by when weather data, and will by when weather data transmission To remote data server.
Energy consumption equipment managing device is used for the on off state of the energy consumption equipment for obtaining energy consumption region, and on off state is sent To remote data server;
Remote data server be used for receive the energy consumption data from data acquisition device, and user input number of regions According to being stored;It is additionally operable to close irrational energy consumption and set according to energy consumption data and the on off state control good equipment management device of energy It is standby.
Mark post energy management method, as shown in Figure 1 to Figure 2, is applied to the teledata clothes in mark post energy management system In business device, following steps are specifically included:
Step 101, select in any one date type several day-marks day;It is corresponding vertical that each day-mark day is obtained respectively Mark data;Date type includes that season type and man-hour type, working day type include common working day (the week), star Phase six, Sunday and long holidays;Each hour of day-mark data including energy consumption region by when energy consumption data, it is corresponding by when produce Data and by when weather data in one or more, by when weather data include the outdoor optical in outdoor temperature humidity and energy consumption region Illumination.
Any one date type can be:The long holidays on the Saturday in autumn, the working day of summer or spring etc.;For example, The Saturday in autumn chooses several day-marks day:First Saturday, the 3rd Saturday, the 7th Saturday and the tenth star Phase six;The day-mark data of each day-mark day are obtained respectively.
In each day-mark day, administrative staff patrol and examine energy consumption region for 24 hours;Administrative staff's manual-lock is unreasonable Energy consumption equipment, and the device data of the energy consumption equipment is recorded, device data include device numbering, facility switching state and Use time etc.;So that by when energy consumption data in energy waste data ratio reduction.In day-mark day, several energy administrators Shuttle respectively with energy place in the building in energy consumption region, according to each with energy standard and actual demand, the energy consumption in the residing region of judgement Whether equipment needs to use, if energy consumption equipment is in idling conditions, in the case where natural lighting can meet visibility still Using illumination, nobody when office equipment, air-conditioning, illumination still open operation, water appliance, there is evaporating, emitting, dripping or leaking of liquid or gas etc. with waterpipe and show As administrative staff can certainly be about to energy consumption equipment closing, and quick treatment power consumption accident reduces energy resource consumption.Patrolled without dead angle by 24h Look into the energy consumption amount in energy consumption region is reduced to it is minimum, remote data base by energy consumption measure device gather obtain this 24h classification subitem subregion by when energy consumption be each energy consumption measure device energy supply region by when day-mark energy consumption.
Step 102, from several day-marks day according to the same day it is all of by when energy consumption data, weather data and by when give birth to The most rational day-mark day of data decimation is produced as mark post corresponding with the date type day, and according to the institute on the day of mark post day Have by when energy consumption data obtain the energy consumption data day by day of the mark post day, this day by day energy consumption data be mark post data day by day, and should Day by day in mark post data storage to mark post database;Specifically, choose mark post day need according to it is all of by when energy consumption data, day Destiny evidence and by when creation data consider because each hour by when energy consumption data and weather data and by when produce Data are also related.
Step 103, each hour in mark post day according on the day of by when energy consumption data, weather data and by when produce A data acquisition most rational hour as by when mark post, obtain this by when mark post by when energy consumption data, should by when mark post By when energy consumption data be by when mark post data, and should by when mark post data storage to mark post database in.
The data acquisition of mark post day by day according to mark post day mark post data and mark post data year by year month by month.
Respectively different date types select can getting mark post day different date types it is different by When mark post data.
Step 201, acquisition are needed to target to marking the date type of day, and are obtained and the date class from mark post database Type it is corresponding by when mark post data.
Step 202, obtain to mark day on the day of each hour by when weather data, according to by when weather data to by when Mark post data are modified, get amendment by when mark post data.By when weather data include that outdoor temperature humidity and outdoor optical shine Degree;Correct by when mark post packet include the different amendment of each hour by when mark post data.
Influenceed by factors such as real-time outdoor air humiture, illuminance, by when mark post data can change, can basis The situation of change of outdoor temperature humidity and outdoor illuminance, to by when mark post data be modified, its correction formula is A=b*C;Its Middle A for amendment by when mark post data, C be it is original by when mark post data, b is correction factor;
B=(1+u) * (1+n*w), wherein n are compared for the corresponding outdoor temperatures of C outdoor temperature corresponding with A, raise or The degree C value of the temperature of reduction;
U is different outdoor lower its mark post energy consumption variation coefficient of illuminance change;When the outdoor illuminance corresponding with C is more than Or during equal to illuminance standard level:
When the corresponding outdoor illuminance of A is more than or equal to illuminance standard level, u is u1;
When the corresponding outdoor illuminance of A is less than illuminance standard level, u is u2;
When the outdoor illuminance corresponding with C is less than illuminance standard level:
When the corresponding outdoor illuminance of A is more than or equal to illuminance standard level, u is u3;
When the corresponding outdoor illuminance of A is less than illuminance standard level, u is u4.Wherein, illuminance standard level is preset standard value, Meet standard value of the country for architecture indoor illumination.
W is lower its energy consumption variation coefficient of different outside humidities change;When the outside humidity corresponding with C is more than 70%:
When the corresponding outside humidities of A are more than 70%, w is w1;
When the corresponding outside humidities of A are 20%~70%, w is w2;
When the outside humidity corresponding with C is less than or equal to 70%:
When the corresponding outside humidities of A are more than 70%, w is w3;
When the corresponding outside humidities of A are 20%~70%, w is w4.
Administrative staff day-mark day by when patrol and examine, close it is unreasonable with can equipment, and by the equipment of unreasonable energy consumption equipment Data are stored in remote data server.Actually with can day, according to by when weather data, with can region actual conditions Automatic corrective data:1st, Real-Time Optical illumination and mark post by when illuminance be compared, determine illuminating lamp switch state;2、 Real-time outdoor temperature humidity and mark post by when outdoor temperature humidity be compared, determine that air-conditioning etc. (has with outdoor temperature humidity Parameters variation The equipment of relation) on off state;3rd, actual conditions, for factory:Actual production quantity opens quantity with production equipment It is relevant;For school, hotel etc.:Newly-increased active programs influence the on off state of relevant device;Deng.
Step 203, obtain to mark day on the day of it is horal by when energy consumption data, obtain this hour by when ratio, By when ratio=1- [(by when energy consumption data-amendment by when mark post data)/amendment by when mark post data];
Step 204, judge by when ratio whether be more than by when proportion threshold value;If it is, represent this hour by when ratio Example is up to standard;Otherwise perform step 205;
Step 205, the energy consumption equipment on off state for obtaining energy consumption region, close unreasonable according to preset switches mark post data Energy consumption equipment;Alarm signal is sent to warning system, to notify administrative staff;Preset switches mark post data include number of devices According to device data when administrative staff are patrolled and examined energy consumption region by recording.
Administrative staff patrol the energy consumption region, close irrational energy consumption equipment.
Step 206, obtain to mark day on the day of energy consumption data day by day, according to the same day it is all of amendment by when mark post data obtain Take amendment mark post data day by day;According to energy consumption data day by day and amendment mark post data acquisition ratio day by day day by day;Judgement is compared day by day Whether example judged result will be recorded day by day more than proportion threshold value day by day;Day by day ratio=1- [(energy consumption datas-repair day by day Just mark post data day by day)/amendment mark post data day by day].
Wherein correct the amendment of the twenty four hours that mark post data day by day are the same day by when mark post data be added and obtain.
Step 207, acquisition the energy consumption month by month data of that month to the mark moon, according to this month all of amendment, mark post data are obtained day by day Amendment mark post data month by month are taken, according to energy consumption month by month data and amendment mark post data acquisition ratio month by month month by month;Judgement is compared month by month Whether example judged result will be recorded month by month more than proportion threshold value month by month;Ratio=1- [(energy consumption month by month data-repair month by month Just mark post data month by month)/amendment mark post data month by month].
The addition of mark post data is obtained day by day by of that month dated amendment wherein to correct month by month mark post data.
The energy consumption year by year data of step 208, acquisition to mark year then, according to all of amendment then, mark post data are obtained month by month Amendment mark post data year by year are taken, according to energy consumption year by year data and amendment mark post data acquisition ratio year by year year by year;Judgement is compared year by year Whether example judged result will be recorded year by year more than proportion threshold value year by year;Ratio=1- [(energy consumption year by year data-repair year by year Just mark post data year by year)/amendment mark post data year by year].
According to by when ratio, day by day ratio, month by month ratio and ratio year by year, with propaganda board publicity, internet publicity, fund Various incentive policies such as reward, article reward are praised related operational management personnel and employee, improve employee's awareness of saving energy With energy-conservation enthusiasm.
The addition of mark post data is obtained month by month wherein to correct the amendment that mark post data year by year are 12 months then.
Mark post energy management method can be applied in various managing power consumptions in various energy consumption regions, and energy consumption region is included in work The energy consumption region in factory, hospital, school, office building or hotel, can continue to be divided into public affairs again according to actual energy consumption region application Common region, Administrative Area etc.;The energy consumption region of such as factory can be divided into according to production product type:Public domain, do Public region, living area, producing region I, producing region II, producing region III ...;The energy consumption region of hospital can be according to section Room different demarcation is:Public domain, Administrative Area, be in hospital region, medical area I, medical area II, medical area III ...; The energy consumption region of school can be divided into according to course types:Public domain, Administrative Area, living area, teaching region I, religion Learn region II, teaching region III ...;The energy consumption region of office building can be according to the different demarcation of job specification:Public area Domain, Administrative Area I, Administrative Area II, Administrative Area III ...;The energy consumption region in hotel can be according to house type different demarcation: Public domain, Administrative Area, cooking area, guest room region I, guest room region II, guest room region III.
By when energy consumption data include apply in various energy consumption types by when energy consumption data, energy consumption type include electric power, Water, natural gas or cold and hot amount etc.;Specifically, energy consumption type include light socket, air-conditioning, power, special electricity consumption, domestic water, Industrial water, hot-water boiler gas, heating boiler gas and gas for kitchen use etc..
The area data in energy consumption region is prestored in remote data server, area data is specifically included:Region area, area The data such as domain energy consumption equipment quantity, the energy consumption type of region energy consumption equipment;Be stored with remote data server it is multiple not on the same day The energy consumption data of the different energy consumption type in the different energy consumption regions of phase type, energy consumption data include by when energy consumption data, day by day Energy consumption data, energy consumption month by month data and energy consumption year by year data;Remote data server can be according to area data and energy consumption data Obtain the data that user needs, for example calculate the unit product/bed/room/area of all kinds of energy source types by when mark post energy Consumption, day by day mark post energy consumption and month by month mark post energy consumption.
Mark post energy managing device, specifically includes:
First acquisition module, for selecting several day-marks day in any one date type;Each day-mark is obtained respectively Day corresponding day-mark data;Date type includes that season type and man-hour type, working day type include common (Monday on working day To Friday), Saturday, Sunday and long holidays;Each hour of day-mark data including energy consumption region by when energy consumption data, correspondence By when creation data and by when weather data in one or more, by when weather data include outdoor temperature humidity and energy consumption area The outdoor illuminance in domain.
Day by day mark post determining module, for from several day-marks day according to the same day it is all of by when energy consumption data, day Destiny evidence and by when creation data choose a most rational day-mark day as mark post corresponding with the date type day, and according to On the day of mark post day it is all by when energy consumption data obtain the energy consumption data day by day of the mark post day, this day by day energy consumption data to mark day by day Bar data, and by this day by day mark post data storage to mark post database.
By when mark post determining module, for each hour in mark post day according on the day of by when energy consumption data, weather Data and by when creation data obtain most rational hour as by when mark post, obtain this by when mark post by when energy consumption number According to, should by when mark post by when energy consumption data be by when mark post data, and should by when mark post data storage to mark post database In.
Date type acquisition module, needs to target to marking the date type of day, and from mark post database for obtaining Obtain it is corresponding with the date type by when mark post data.
By when correcting module, for obtain to mark day on the day of each hour by when weather data, according to by when weather Data to by when mark post data be modified, get amendment by when mark post data.
By when ratio module, for obtain to mark day on the day of it is horal by when energy consumption data, obtain this hour By when ratio.
By when judge module, for judge by when ratio whether be more than by when proportion threshold value;If representing this hour By when ratio it is up to standard, otherwise perform exceeded module.
Exceeded module, the energy consumption equipment on off state for obtaining energy consumption region is closed according to preset switches mark post data Irrational energy consumption equipment;Alarm signal is sent to warning system, to notify administrative staff.
Day by day ratio judge module, for the energy consumption data day by day on the day of obtaining to mark day, according to the same day all of amendment By when mark post data acquisition amendment mark post data day by day;According to energy consumption data day by day and amendment, mark post data acquisition compares day by day day by day Example;Whether ratio is judged day by day more than proportion threshold value day by day, and judged result will be recorded day by day.
Ratio judge module month by month, for obtaining the energy consumption month by month data of that month to the mark moon, according to of that month all of amendment Day by day mark post data acquisition amendment mark post data month by month, according to energy consumption month by month data and amendment, mark post data acquisition compares month by month month by month Example;Whether ratio is judged month by month more than proportion threshold value month by month, and judged result will be recorded month by month.
Ratio judge module year by year, for obtaining the energy consumption year by year data to mark year then, according to all of amendment then Mark post data acquisition amendment mark post data year by year month by month, according to energy consumption year by year data and amendment, mark post data acquisition compares year by year year by year Example;Judge that whether ratio is more than proportion threshold value year by year year by year, and judged result will be recorded year by year.
It will be apparent to those skilled in the art that technical scheme that can be as described above and design, make other various It is corresponding to change and deformation, and all these change and deformation should all belong to the protection domain of the claims in the present invention Within.

Claims (10)

1. mark post energy consumption management method, it is characterised in that comprise the following specific steps that:
Obtain to mark day date type it is corresponding by when mark post data;
Obtain each hour to marking day by when weather data, according to by when weather data and by when mark post data acquisition to repairing Just by when mark post data;
According to mark day on the day of it is horal by when energy consumption data, and amendment by when mark post data acquisition by when ratio;
Judge by when ratio whether be more than by when proportion threshold value;If it is, this hour by when ratio it is up to standard;Otherwise obtain energy The energy consumption equipment on off state in region is consumed, irrational energy consumption equipment is closed according to preset switches mark post data.
2. mark post energy consumption management method as claimed in claim 1, it is characterised in that it is described by when mark post data acquisition before Also comprise the following steps:
Several day-marks day are selected in any one date type;The corresponding day-mark data of each day-mark day, day-mark are obtained respectively Data include by when energy consumption data;
The most rational day-mark day of day-mark data is chosen from several day-marks day as mark post corresponding with the date type Day;
Chosen in mark post day a day-mark data most rational hour as by when mark post, obtain this by when mark post by when energy Consumption data, should by when mark post by when energy consumption data be by when mark post data, and should by when mark post data storage to mark post number According in storehouse;
According on the day of mark post day it is all by when energy consumption data obtain the energy consumption data day by day of the mark post day, the energy consumption data day by day It is mark post data day by day, and by this day by day mark post data storage to mark post database.
3. mark post energy consumption management method as claimed in claim 2, it is characterised in that in each day-mark day, administrative staff are to energy Consumption region is patrolled and examined;The unreasonable energy consumption equipment of administrative staff's manual-lock so that by when energy consumption data in energy waste data Ratio reduction;The device data of unreasonable energy consumption equipment is recorded simultaneously.
4. mark post energy consumption management method as claimed in claim 1, it is characterised in that also include:
Obtain to mark day on the day of energy consumption data day by day, according to the same day it is all of amendment by when mark post data acquisition amendment mark day by day Bar data;According to energy consumption data day by day and amendment mark post data acquisition ratio day by day day by day.
5. mark post energy consumption management method as claimed in claim 1, it is characterised in that also include:
The energy consumption month by month data of that month to the mark moon are obtained, the amendment of mark post data acquisition is marked month by month day by day according to this month all of amendment Bar data;According to energy consumption month by month data and amendment mark post data acquisition ratio month by month month by month.
6. mark post energy consumption management method as claimed in claim 1, it is characterised in that also include:
The energy consumption year by year data then to mark year are obtained, the amendment of mark post data acquisition is marked year by year month by month according to all of amendment then Bar data;According to energy consumption year by year data and amendment mark post data acquisition ratio year by year year by year.
7. mark post managing power consumption device, it is characterised in that including:
Date type acquisition module, for obtain to mark day date type it is corresponding by when mark post data;
By when correcting module, for obtain to mark day each hour by when weather data, according to by when weather data and by When mark post data acquisition to amendment by when mark post data;
By when ratio module, for basis to mark day on the day of it is horal by when energy consumption data, and amendment by when mark post Data acquisition by when ratio;
By when judge module, for judge by when ratio whether be more than by when proportion threshold value;If it is, this hour by when ratio Example is up to standard;Otherwise perform exceeded module;
Exceeded module, the energy consumption equipment on off state for obtaining energy consumption region is closed according to preset switches mark post data and not conformed to The energy consumption equipment of reason.
8. mark post managing power consumption device as claimed in claim 7, it is characterised in that also include:
First acquisition module, for selecting several day-marks day in any one date type;It is right that each day-mark day is obtained respectively The day-mark data answered, day-mark data include by when energy consumption data;
Day by day mark post determining module, for chosen from several day-marks day the most rational day-mark day of day-mark data as with The corresponding mark post of the date type day, and according to mark post day on the day of it is all by when energy consumption data obtain day by day for the mark post day Consumption data, this day by day energy consumption data be mark post data day by day, and by this day by day mark post data storage to mark post database;
By when mark post determining module, for chosen in mark post day a day-mark data most rational hour as by when mark post, Obtain this by when mark post by when energy consumption data, should by when mark post by when energy consumption data be by when mark post data, and should be by When mark post data storage to mark post database in.
9. mark post managing power consumption device as claimed in claim 7, it is characterised in that also include:
Day by day ratio judge module, for the energy consumption data day by day on the day of obtaining to mark day, according to the same day all of amendment by when Mark post data acquisition amendment mark post data day by day;For according to energy consumption data day by day and amendment, mark post data acquisition to compare day by day day by day Example.
10. mark post managing power consumption device as claimed in claim 7, it is characterised in that also include:
Ratio judge module month by month, for obtaining the energy consumption month by month data of that month to the mark moon, according to this month all of amendment day by day Mark post data acquisition amendment mark post data month by month;According to energy consumption month by month data and amendment mark post data acquisition ratio month by month month by month.
CN201611027114.0A 2016-11-21 2016-11-21 Method and device for managing energy consumption of marker post Active CN106709627B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201611027114.0A CN106709627B (en) 2016-11-21 2016-11-21 Method and device for managing energy consumption of marker post

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201611027114.0A CN106709627B (en) 2016-11-21 2016-11-21 Method and device for managing energy consumption of marker post

Publications (2)

Publication Number Publication Date
CN106709627A true CN106709627A (en) 2017-05-24
CN106709627B CN106709627B (en) 2020-07-07

Family

ID=58941246

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201611027114.0A Active CN106709627B (en) 2016-11-21 2016-11-21 Method and device for managing energy consumption of marker post

Country Status (1)

Country Link
CN (1) CN106709627B (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109586285A (en) * 2018-12-06 2019-04-05 成都载信智能科技有限公司 Energy consumption mark post value calculating method, energy consumption management method and energy consumption management system
CN110222983A (en) * 2019-06-07 2019-09-10 广州远正智能科技股份有限公司 A kind of energy consumption supervisory systems and method

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20060161450A1 (en) * 2005-01-18 2006-07-20 Mc Energy, Inc. Method and system for tracking and budgeting energy usage
CN102156463A (en) * 2011-03-25 2011-08-17 浙江汉爵科技有限公司 Planning management control system for construction energy
CN202093557U (en) * 2011-05-04 2011-12-28 深圳市拓远节能科技有限公司 Energy source management system
US20120166003A1 (en) * 2010-12-23 2012-06-28 James Eric Taylor System for Evaluating, Measuring and Verifying Power Consumption Based on Price-Point Control
CN103092158A (en) * 2012-12-31 2013-05-08 深圳先进技术研究院 Large building energy consumption real-time monitoring system based on wireless sensor network
CN104199961A (en) * 2014-09-19 2014-12-10 北京建筑技术发展有限责任公司 Data mining based public building energy consumption monitoring platform data processing method

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20060161450A1 (en) * 2005-01-18 2006-07-20 Mc Energy, Inc. Method and system for tracking and budgeting energy usage
US20120166003A1 (en) * 2010-12-23 2012-06-28 James Eric Taylor System for Evaluating, Measuring and Verifying Power Consumption Based on Price-Point Control
CN102156463A (en) * 2011-03-25 2011-08-17 浙江汉爵科技有限公司 Planning management control system for construction energy
CN202093557U (en) * 2011-05-04 2011-12-28 深圳市拓远节能科技有限公司 Energy source management system
CN103092158A (en) * 2012-12-31 2013-05-08 深圳先进技术研究院 Large building energy consumption real-time monitoring system based on wireless sensor network
CN104199961A (en) * 2014-09-19 2014-12-10 北京建筑技术发展有限责任公司 Data mining based public building energy consumption monitoring platform data processing method

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109586285A (en) * 2018-12-06 2019-04-05 成都载信智能科技有限公司 Energy consumption mark post value calculating method, energy consumption management method and energy consumption management system
CN110222983A (en) * 2019-06-07 2019-09-10 广州远正智能科技股份有限公司 A kind of energy consumption supervisory systems and method
CN110222983B (en) * 2019-06-07 2021-04-16 广州远正智能科技股份有限公司 Energy consumption supervision system and method

Also Published As

Publication number Publication date
CN106709627B (en) 2020-07-07

Similar Documents

Publication Publication Date Title
Alahmad et al. A comparative study of three feedback devices for residential real-time energy monitoring
Benetti et al. Electric load management approaches for peak load reduction: A systematic literature review and state of the art
Son et al. Home energy management system based on power line communication
CN103048967B (en) A kind of building resources consumes monitoring management system
US20090307178A1 (en) Utility monitoring systems and methods of use
CN102143635A (en) Intelligent lighting internet-of-things system
Bakos et al. Technical feasibility and economic viability of a grid-connected PV installation for low cost electricity production
Sachs et al. Field evaluation of programmable Thermostats
JP4661062B2 (en) Schedule transmission device, device operation setting device, schedule distribution method, device operation setting method
CN106709627A (en) Benchmark energy consumption management method and device thereof
CN108475257A (en) It handles far distance instrument and reads data to analyze consumption pattern
Denholm et al. Using utility load data to estimate demand for space cooling and potential for shiftable loads
McRae Residential electricity consumption and adaptation to climate change by Colombian households
CN202145689U (en) Intelligent illumination Internet of Things system
KR100979409B1 (en) Method of configuring performance evaluation for energy saving
Vine et al. An evaluation of residential CFL hours-of-use methodologies and estimates: Recommendations for evaluators and program managers
Franco et al. Analysis and clustering of natural gas consumption data for thermal energy use forecasting
Whaley et al. The impact of home energy feedback displays and load management devices in a low energy housing development
Machete et al. The association between energy saving and guest comfort in selected guesthouses in Mpumalanga Province, South Africa
Lewis Turning Energy Information Into $$$$
Atawneh et al. Energy Management Analyzes of The Korean Building at Palestine Polytechnic University
Schrade et al. European Climate Initiative (EUKI) Municipal energy planning and energy ma-nagement experience in Germany
Yen et al. Residential Water Heating Demand Side Management (DSM)-South Africa
Sonetti et al. Trimmed Weapons for Energy Data Analysis in Universities’ Living Labs: Current Gaps and Improvement Proposals
Pawar Development of Advanced Smart Energy Management Framework Integrated with Optimization Techniques and Prediction Models for Demand Side Consumers Based on IoT Platform

Legal Events

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