WO2015032297A1 - 一种大数据库创建及数据管理方法 - Google Patents

一种大数据库创建及数据管理方法 Download PDF

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Publication number
WO2015032297A1
WO2015032297A1 PCT/CN2014/085673 CN2014085673W WO2015032297A1 WO 2015032297 A1 WO2015032297 A1 WO 2015032297A1 CN 2014085673 W CN2014085673 W CN 2014085673W WO 2015032297 A1 WO2015032297 A1 WO 2015032297A1
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storage
array
sub
period
information
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PCT/CN2014/085673
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English (en)
French (fr)
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何云坤
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He Yunkun
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • G06F16/20Information retrieval; Database structures therefor; File system structures therefor of structured data, e.g. relational data
    • G06F16/24Querying
    • G06F16/245Query processing
    • G06F16/2458Special types of queries, e.g. statistical queries, fuzzy queries or distributed queries
    • G06F16/2471Distributed queries

Definitions

  • the present invention relates to the field of data processing technologies, and in particular, to a large database creation and data management method.
  • cloud computing and big data technology have a method of rapidly processing and applying massive data
  • the lack of value-efficiency as a criterion for "purification” technology makes the use of big data relatively low, and the organic correlation between data is not obtained.
  • Properly presented in accordance with the law of value can not provide users with insight and predictive ability to support.
  • the data presentation in each database is complicated, which is not conducive to user viewing.
  • the object of the present invention is to provide a large database creation and data management method, which is convenient for the user to perform value evaluation and balance evaluation quickly and accurately.
  • the present invention provides a large database creation and data management method, firstly establishing M sub-database storage modules, each sub-database storage module having a name storage unit for storing the sub-database storage module.
  • the M is a positive integer
  • data storage and data update in each sub-database storage module and data query and data display according to content stored in N sub-database storage modules in the M sub-database storage modules
  • the N is a positive integer not greater than M, and the specific steps are as follows:
  • the association with the beginning element forms a local state storage sub-array to store the beginning time of the beginning time, the name of the element at the beginning of the period, the environmental factors to be considered at the beginning of the period, the direct association coupling between the elements at the beginning of the period, and the coupling of the elements at the beginning of the period to form a local state;
  • the direct associative coupling mode between the storage sub-array and the end-of-element element is coupled to form a local state storage sub-array to store the end-time end point, the end-of-element element name, the environmental factors to be considered at the end of the period, and the direct correlation coupling between the end elements.
  • the end-of-stage element is coupled to form a local state;
  • Each of the sub-database storage modules further has an initial use value name storage sub-array, an initial currency meter name storage sub-array, a period-end value name storage sub-array, and a period-end currency meter name storage sub-array, an initial use value data storage sub-array, An initial currency metering data storage sub-array, a period-end use value data storage sub-array, and a period-end currency metering data storage sub-array, the opening period use value name storage sub-array, an opening currency metering name storage sub-array, a period-end value name storage sub-array, and
  • the term monetary measurement name storage sub-array is respectively used for storing the initial use value name, the opening currency measurement name, the ending use value name, and the ending monetary measurement name, wherein the storage address of the opening information storage array and the initial use value data storage sub-array respectively The storage address and the storage address of the opening currency metering data storage sub-array are in one-to-one correspondence,
  • Each of the sub-database storage modules further has an initial economic value summary name storage sub-array and an initial economic value summary data storage sub-array corresponding thereto, and a final economic value summary name storage sub-array and a one-to-one correspondence
  • the economic value data summary storage sub-array wherein the initial economic value summary name storage sub-array and the ending economic value summary name storage sub-array are respectively used for storing the initial economic value summary name and the ending economic value summary name, the initial economic value summary data.
  • the storage address of the storage sub-array corresponds to the storage address of the initial currency metering name storage sub-array;
  • the storage address of the period-end economic value summary data storage sub-array corresponds to the storage address of the period-end monetary measurement name storage sub-array;
  • Each of the sub-database storage modules further has a period payment information summary name storage sub-array and a one-to-one corresponding period payment information summary data storage sub-array, wherein the period payment information summary name storage sub-array is used for storing period payment information summary Name, the storage address of the storage unit of the payment information summary data storage sub-array corresponds to the storage address of the opening information storage array; the storage unit of the payment information summary data storage sub-array for each period is used to store the corresponding beginning of the period The payment information stored in the storage unit of all the period information content storage sub-arrays corresponding to the storage address of the information storage array storage unit is summarized;
  • Each of the sub-database storage modules further has a period information content storage sub-array, wherein the storage address of each storage unit of the period information content storage sub-array and only one storage address of the opening information storage array storage unit and a period end One-to-one correspondence of combinations of storage addresses of information storage array storage units;
  • Each of the sub-database storage modules further has a period production information summary name storage sub-array and a one-to-one corresponding period production information summary data storage sub-array, wherein the production information summary name storage sub-array is used for storage period production information summary a name, wherein the storage address of the production information summary data storage sub-array corresponds to the storage address of the storage unit of the period-end information storage array, and the storage unit of the production information summary data storage sub-array is used to store the corresponding period-end letter
  • the production information stored in the storage unit of the storage unit of the period information content storage sub-array corresponding to the storage address of the storage unit storage unit;
  • Each of the sub-database storage modules further has a total data storage sub-array, a storage address of the total-data storage sub-array and a storage address of the period production information summary storage sub-array and a storage address of the period payment information summary storage sub-array a combination of the storage address of the initial economic value data summary storage sub-array and the storage address of the final economic value data summary storage sub-array;
  • S12 The user separately uses the human-computer interaction interface to the initial use value data storage sub-array, the initial currency measurement data storage sub-array, the end-use use value data storage sub-array, the ending monetary measurement data storage sub-array, and the period information content storage sub-array. Enter the storage content and store it in the storage address;
  • the controller aggregates the contents stored in the initial currency metering data storage sub-array, and stores the summary content according to the correspondence between the storage address of the initial economic value summary data storage sub-array and the storage address of the initial currency metering name storage sub-array.
  • the initial economic value summary data storage sub-array in the storage unit
  • the controller summarizes the contents stored in the end of the monetary measurement data storage sub-array, and stores the summary data according to the correspondence between the storage address of the end-of-life economic value summary data storage sub-array and the storage address of the ending monetary measurement name storage sub-array.
  • the ending economic value is summarized in the storage unit of the data storage sub-array;
  • the controller aggregates the payment information stored in the storage address of the period information content storage sub-array corresponding to the storage address of each of the opening information storage array storage units, and summarizes the storage address and the beginning information of the storage unit of the data storage sub-array according to the period payment information. Corresponding relationship of storage addresses of the storage array, storing the summary data in a storage unit of the corresponding period payment information summary data storage sub-array;
  • the controller aggregates the production information stored in the storage address of the period information content storage sub-array corresponding to the storage address of each period-end information storage array storage unit, and stores the storage address of the sub-array and the period-end information storage array storage according to the period of production information. Corresponding relationship of the storage address of the unit, searching for a storage address of the period production information summary storage sub-array corresponding to the period-end information storage array storage unit, and storing the summary content in a storage address of the period production information summary storage sub-array;
  • the controller according to the correspondence between the storage address of the total data storage sub-array and the combination of the storage address of the period production information summary storage sub-array and the storage address of the period payment information summary storage sub-array, and the storage of the sub-array according to the total amount data storage
  • the correspondence between the address and the initial economic value data summary storage sub-array storage address and the end-of-life economic value data summary storage sub-array storage address, and the period production information corresponding to the storage address of one total data storage sub-array is collectively stored.
  • the initial economic value corresponding to the storage address of the one total data storage sub-array is subtracted from the content stored in the storage address of the end-of-life economic value data summary storage sub-array corresponding to the storage address of one total data storage sub-array
  • the data is aggregated and stored in the storage address of the sub-array, and the stored content in the storage address of the total period data storage sub-array is updated;
  • S3, data query when the controller receives the query request input through the human-computer interaction interface, the controller scans the categories stored in the name storage unit of the M sub-database storage modules, and selects N sub-database storage modules matched by the N categories.
  • the query request includes an opening time start point, a ending time end point, a module name, an element name, an environmental factor to be considered, a direct association coupling manner between elements, an element association coupling to form a local state, and a period information content storage area. Any group of storage information, initial economic value summary name and data, final economic value summary name and data, period payment information summary name and data, period production information summary name and data, period total data, and these query request information combination;
  • the controller passes the storage address of each storage unit of the information content storage sub-array of each sub-database storage module and the combination of the storage address of the initial information storage array storage unit and the end-of-time information storage array storage unit, and the initial information storage array Correspondence between the storage address and the storage address of the initial value storage sub-array and the storage address of the opening currency metering storage sub-array, and the storage address of the period-end information storage array and the storage address and ending currency metering storage of the end-use value storage sub-array Corresponding relationship of the storage address of the sub-array, searching for the storage content, the initial use value, the opening currency measurement, the ending usage value, the ending currency measurement, and the corresponding summary information of the period information content storage area corresponding to the query request;
  • the storage unit of the initial element name storage sub-array is the same as the storage unit of the period-end element name storage sub-array, and the storage unit of the initial environment storage sub-array
  • the number of storage units of the storage sub-array is the same, and the number of storage units of the storage sub-array is the same as the direct association coupling between the storage unit of the storage sub-array and the end-of-term element.
  • the storage elements of the initial element association coupling forming the local state storage sub-array are coupled with the end-of-element elements to form the same number of storage units of the local state storage sub-array.
  • the beginning element name corresponds to the term element name one by one
  • the opening environment name and the ending environment name correspond one-to-one
  • the direct relationship coupling between the opening element and the ending element is
  • the direct correlation coupling method has a one-to-one correspondence, and the initial element association coupling forms a partial correspondence between the local state and the end element coupling to form a local state.
  • the M sub-database storage modules include a job information storage module and an equalization information storage module, and the information stored by the job information storage module is provided by an operator, and the equalization information storage module The information stored in the information is derived from the information stored in the corresponding job information storage module of the equilibrium inspection object, and the total amount information in the information storage module is equalized by the controller.
  • the display method is:
  • the name of the element at the beginning of the period, the environmental factors to be considered at the beginning of the period, the direct coupling coupling between the elements at the beginning of the period, and the coupling of the system elements at the beginning of the period form a partial state and a summary name of the initial economic value.
  • the left side of the lower column of the starting point of the opening period shows the initial use value and the beginning currency measurement.
  • the name of the end-of-term element, the environmental factors to be considered at the end of the period, the direct-association coupling between the end-of-period elements, and the end-of-term system element association coupling to form the local state and the final economic value summary name are displayed.
  • the lower column of the right column of the end-of-term time-end item displays the end-use value and the ending currency measurement separately.
  • a storage area in which a row of the beginning time of the orthogonal table and an end of the end of the period end are orthogonally formed is a period information content storage area
  • the production information summary storage area for the period under the information content storage area
  • the payment information summary storage area is during the period
  • the period total data storage area is displayed at the lower right of the orthogonal table.
  • the present invention systemizes a large amount of fragmented information data, which is more suitable for streaming calculation and processing. Systematize, historically process and present.
  • the present invention is capable of providing quick acquisition, delivery, and feedback of job information, value information, and equalization information and their relationship effects. Analyze, judge, anticipate, design, and feedback in the process of operation in coordination and control.
  • Value information includes use value information, core value information, and economic value information. Core value is a part of the value of use.
  • the present invention generates a required equalization information storage module by using the content stored in the job information storage module, and collects the extracted information by using the job information storage module and the equalization information storage module link. Form a new valuable criterion and a balanced judgment of the fast extraction and application data processing mode. In this way, based on the existing cloud technology and big data processing model, a new processing mode is designed.
  • a measure of economic performance and social progress using elements, elemental attributes, and elements
  • FIG. 1 is a flow chart of a large database creation and data management method of the present invention
  • FIG. 2 is a diagram showing a method of displaying data in a preferred embodiment of the present invention.
  • the present invention provides a large database creation and data management method, which needs to establish M sub-database storage modules, each sub-database storage module has a name storage unit for storing the name of the sub-database storage module, and the M is positive Integer, data storage and data update in each sub-database storage module, and data query and data display according to content stored in N sub-database storage modules in the M sub-database storage modules, where N is not greater than M A positive integer, the specific steps are as follows:
  • the association with the beginning element forms a local state storage sub-array to store the beginning time of the beginning time, the name of the element at the beginning of the period, the environmental factors to be considered at the beginning of the period, the direct association coupling between the elements at the beginning of the period, and the coupling of the elements at the beginning of the period to form a local state;
  • the end-of-term element are coupled to form a local state storage sub-array to store the end-time end point, the end-of-element element name, the environmental factors to be considered at the end of the period,
  • the direct association coupling between the end-of-term elements and the end-of-element element coupling form a local state;
  • Each of the sub-database storage modules also has an initial use value (element, direct association coupling between elements, environment, element-association coupling to form a local state for the specific role and meaning of the person) name storage sub-array, initial currency measurement name Storage sub-array, end-of-use value name storage sub-array and period-end currency metering name storage sub-array, opening use value data storage sub-array, opening currency metering data storage sub-array, end-of-use value data storage sub-array, and ending currency metering data storage sub-
  • the array, the initial use value name storage sub-array, the beginning currency meter name storage sub-array, the ending use value name storage sub-array, and the ending currency meter name storage sub-array are respectively used to store the initial use value name, the beginning currency measurement name, and the end of the period.
  • the storage address of the opening information storage array is in one-to-one correspondence with the storage address of the opening use value data storage sub-array and the storage address of the opening currency metering data storage sub-array, respectively End address stored in address storage information storing time around the end of the array are stored using the value of the data sub-array and ending addresses stored monetary metering data memory sub-arrays correspond;
  • Each of the sub-database storage modules further has an initial economic value summary name storage sub-array and an initial economic value summary data storage sub-array corresponding thereto, and a final economic value summary name storage sub-array and a one-to-one correspondence
  • the economic value data summary storage sub-array wherein the initial economic value summary name storage sub-array and the ending economic value summary name storage sub-array are respectively used for storing the initial economic value summary name and the ending economic value summary name, the initial economic value summary data.
  • the storage address of the storage sub-array corresponds to the storage address of the initial currency metering name storage sub-array;
  • the storage address of the period-end economic value summary data storage sub-array corresponds to the storage address of the period-end monetary measurement name storage sub-array;
  • Each of the sub-database storage modules further has a period payment information summary name storage sub-array and a one-to-one corresponding period payment information summary data storage sub-array, wherein the period payment information summary name storage sub-array is used for storing period payment information summary Name, the storage address of the storage unit of the payment information summary data storage sub-array corresponds to the storage address of the opening information storage array; the storage unit of the payment information summary data storage sub-array for each period is used to store the corresponding beginning of the period The payment information stored in the storage unit of all the period information content storage sub-arrays corresponding to the storage address of the information storage array storage unit is summarized;
  • Each of the sub-database storage modules further has a period information content storage sub-array, wherein the storage address of each storage unit of the period information content storage sub-array and only one storage address of the opening information storage array storage unit and a period end One-to-one correspondence of combinations of storage addresses of information storage array storage units;
  • Each of the sub-database storage modules further has a period production information summary name storage sub-array and a one-to-one corresponding period production information summary data storage sub-array, wherein the production information summary name storage sub-array is used for storage period production information summary a name, wherein the storage address of the production information summary data storage sub-array corresponds to the storage address of the period-end information storage array storage unit, and the storage unit of the production information summary data storage sub-array is used to store the corresponding period-end information All of the period information content storage sub-arrays corresponding to the storage address of the storage array storage unit a summary of the production information stored by the storage unit;
  • Each of the sub-database storage modules further has a total data storage sub-array, a storage address of the total-data storage sub-array and a storage address of the period production information summary storage sub-array and a storage address of the period payment information summary storage sub-array a combination of the storage address of the initial economic value data summary storage sub-array and the storage address of the final economic value data summary storage sub-array;
  • S12 The user separately uses the human-computer interaction interface to the initial use value data storage sub-array, the initial currency measurement data storage sub-array, the end-use use value data storage sub-array, the ending monetary measurement data storage sub-array, and the period information content storage sub-array. Enter the storage content and store it in the storage address;
  • the controller aggregates the contents stored in the initial currency metering data storage sub-array, and stores the summary content according to the correspondence between the storage address of the initial economic value summary data storage sub-array and the storage address of the initial currency metering name storage sub-array.
  • the initial economic value summary data storage sub-array in the storage unit
  • the controller summarizes the contents stored in the end of the monetary measurement data storage sub-array, and stores the summary data according to the correspondence between the storage address of the end-of-life economic value summary data storage sub-array and the storage address of the ending monetary measurement name storage sub-array.
  • the ending economic value is summarized in the storage unit of the data storage sub-array;
  • the controller aggregates the payment information stored in the storage address of the period information content storage sub-array corresponding to the storage address of each of the opening information storage array storage units, and summarizes the storage address and the beginning information of the storage unit of the data storage sub-array according to the period payment information. Corresponding relationship of storage addresses of the storage array, storing the summary data in a storage unit of the corresponding period payment information summary data storage sub-array;
  • the controller aggregates the production information stored in the storage address of the period information content storage sub-array corresponding to the storage address of each period-end information storage array storage unit, and stores the storage address of the sub-array and the period-end information storage array storage according to the period of production information. Corresponding relationship of the storage address of the unit, searching for a storage address of the period production information summary storage sub-array corresponding to the period-end information storage array storage unit, and storing the summary content in a storage address of the period production information summary storage sub-array;
  • the controller according to the correspondence between the storage address of the total data storage sub-array and the combination of the storage address of the period production information summary storage sub-array and the storage address of the period payment information summary storage sub-array, and the storage of the sub-array according to the total amount data storage
  • the correspondence between the address and the initial economic value data summary storage sub-array storage address and the end-of-life economic value data summary storage sub-array storage address, and the period production information corresponding to the storage address of one total data storage sub-array is collectively stored.
  • the initial economic value corresponding to the storage address of the one total data storage sub-array is subtracted from the content stored in the storage address of the end-of-life economic value data summary storage sub-array corresponding to the storage address of one total data storage sub-array
  • the data summarizes the contents stored in the storage address of the sub-array, and updates the stored content in the storage address of the total period data storage sub-array.
  • the name storage unit of each sub-database storage module is used to store the name of the sub-database storage module, and the name is used to display the category of the storage content of the sub-database storage module.
  • the name is "Enterprise Job Account", which is used to indicate that the stored job information is data related to the operation of the enterprise.
  • the number of sub-database storage modules can be determined according to the actual needs of the user, and the direct element association storage sub-array, the initial environment storage sub-array, the initial association coupling mode storage sub-array, and the beginning element
  • the number of storage units that are associated to form a local state storage sub-array, for the initial element name, the initial environment name, the direct association coupling mode between the opening elements, and the initial element association coupling to form a local state may also be performed according to different industries of the user. select.
  • an enterprise system account is to be formed, and an "enterprise job account" is stored in the name storage unit for prompting that the stored job information is data related to the operation of the enterprise.
  • the initial element name storage sub-array, the initial environment storage sub-array, the direct association coupling storage sub-array between the opening elements, and the initial element association coupling form the local state storage sub-array to store the opening element name and the beginning of the period respectively.
  • the direct correlation coupling mode between the environment name and the beginning element, and the initial element association coupling form a local state.
  • the specific initial element name may include, but is not limited to, an enterprise system main organization and enterprise assets and resources.
  • the specific enterprise system main organization may include, but is not limited to, a general meeting of shareholders, a board of directors, a board of supervisors, a chairman, a general manager, and a company.
  • the office, finance department, and at least one functional department, corporate assets and resources may include, but are not limited to, financial assets (currency, securities, bonds), tangible assets (fixed assets, raw materials, at least one tangible asset).
  • the element name may also include, but is not limited to, a subsystem name in the system, for example, various functional departments and business unit names in the system "enterprise”.
  • the environment name of the specific initial storage sub-array storage may be, but not limited to, the industrial environment, the social environment, and the natural environment.
  • the direct association coupling between specific opening elements may include, but is not limited to, corporate culture, institutions and technology, and at least one other intangible asset.
  • the specific initial elemental association coupling to form a local state may include, but is not limited to, an industry status, a comfort elegance indicator, and other at least one parameter that describes the local state.
  • the direct association coupling between the end-of-sequence elements stores the sub-array and the end-of-element element coupling to form the local state storage sub-array, respectively storing the end-of-element element name, the ending environment name, the direct-association coupling mode between the end-of-period elements, and the end-stage element association coupling to form a local status.
  • the storage unit of the initial element name storage sub-array is the same as the storage unit of the period-end element name storage sub-array, and the storage unit of the initial environment storage sub-array and the end-of-life environment storage sub-array
  • the number of storage units is the same, and the direct associative coupling mode between the initial elements of the storage element stores the direct association between the storage unit and the end element of the sub-array.
  • the number of storage units of the storage sub-array is the same, and the initial element is coupled and formed.
  • the memory cells of the local state storage sub-array are coupled to the end-of-life elements to form the same number of memory cells that form the local state storage sub-array.
  • the name of the element at the beginning of the period corresponds to the name of the element at the end of the period.
  • the name of the initial environment corresponds to the name of the period-end environment.
  • the direct association coupling between the elements at the beginning of the period and the direct coupling between the elements at the beginning of the period correspond one-to-one.
  • the local state is associated with the end of the element to form a one-to-one correspondence with the local state.
  • a storage combination of the storage address of each of the opening information storage array storage units and the storage address of a period-end information storage array storage unit forms a combination.
  • the summary value of the initial economic value stored in the initial economic value summary name storage sub-array may be determined according to actual needs, and may be, but not limited to, the initial equity asset, the beginning liabilities, the beginning owner's equity;
  • the summary value of the final economic value stored in the name storage sub-array can be determined according to actual needs, and can be, but is not limited to, the term entity equity asset, the ending liability, and the term owner equity.
  • the payment information summary name storage sub-array stores the period payment information summary name can be determined according to actual needs, including but not limited to use value payment, economic value payment, payment cost and inventory.
  • the production information summary name can be determined according to actual needs, including but not limited to use value output, production output, production cost, liability increment and production value added.
  • the corresponding name may be determined according to the actual generated total data, which may be, but not limited to, asset appreciation, debt increment, owner equity increment, total Payment, total output, equilibrium scale, total production value added, total payment cost, total production cost, economic value efficiency (total value added for total payment costs).
  • the functional attributes of elements and elements can be directly labeled with the element name, and the value of use is measured by its own unit of measure (base) plus quality standard or function or preference ordinal. Such as: steel, XX tons - XX standard.
  • the local state of the system, the way of coupling between elements, its use value is measured by the method of parameter name plus or minus, such as: health index - tenth, technical procedures - first place, system - first preference.
  • the economic value is measured in currency, and the error correction is determined based on the equilibrium state of the system.
  • the term monetary measurement data storage sub-array inputs the initial use value, the beginning currency measurement, the end-use value, and the ending currency measurement, and inputs into the storage address of the storage unit of the opening information storage array storage unit in each storage unit of the period information content storage area.
  • the controller aggregates the contents stored in the initial currency metering data storage sub-array, and stores the summary content according to the correspondence between the storage address of the initial economic value summary data storage sub-array and the storage address of the initial currency metering name storage sub-array.
  • the initial economic value is summarized in the storage unit of the data storage sub-array.
  • the controller summarizes the contents stored in the end of the monetary measurement data storage sub-array, and stores the summary data according to the correspondence between the storage address of the end-of-life economic value summary data storage sub-array and the storage address of the ending monetary measurement name storage sub-array.
  • the end-of-term economic value is summarized in the storage unit of the data storage sub-array.
  • the controller aggregates the payment information stored in the storage address of the period information content storage sub-array corresponding to the storage address of each of the opening information storage array storage units, and summarizes the storage address and the beginning information of the storage unit of the data storage sub-array according to the period payment information.
  • the correspondence between the storage addresses of the storage arrays is stored in the storage unit of the corresponding period payment information summary data storage sub-array.
  • the controller aggregates the storage production information in the period information content storage sub-array storage unit corresponding to the storage address of each period-end information storage array storage unit, and stores the storage address of the storage sub-array and the period-end information storage array storage according to the period production information
  • Corresponding relationship of the storage address of the unit searches for a storage address of the period production information summary storage area corresponding to the period-end information storage array storage unit, and summarizes the storage content in the storage area of the production information summary storage area during the period of the storage area.
  • the controller according to the correspondence between the storage address of the total data storage sub-array and the combination of the storage address of the period production information summary storage sub-array and the storage address of the period payment information summary storage sub-array, and the storage of the sub-array according to the total amount data storage
  • the correspondence between the address and the initial economic value data summary storage sub-array storage address and the end-of-life economic value data summary storage sub-array storage address, and the period production information corresponding to the storage address of one total data storage sub-array is collectively stored.
  • the initial economic value corresponding to the storage address of the one total data storage sub-array is subtracted from the content stored in the storage address of the end-of-life economic value data summary storage sub-array corresponding to the storage address of one total data storage sub-array
  • the data summarizes the contents stored in the storage address of the sub-array, and updates the stored content in the storage address of the total period data storage sub-array.
  • the name of the element at the beginning of the period, the environmental factors to be considered at the beginning of the period, the direct coupling coupling between the elements at the beginning of the period, and the coupling of the system elements at the beginning of the period form a partial state and a summary name of the initial economic value.
  • the left side of the lower column of the starting point of the opening period shows the initial use value and the beginning currency measurement.
  • the name of the end-of-term element, the environmental factors to be considered at the end of the period, the direct-association coupling between the end-of-period elements, and the end-of-term system element association coupling to form the local state and the final economic value summary name are displayed.
  • the lower column of the right column of the end-of-term time-end item displays the end-use value and the ending currency measurement separately.
  • a storage area in which a row of the beginning time of the orthogonal table and an end of the end of the period end are orthogonally formed is a period information content storage area
  • a period production information summary storage area Below the information content storage area is a period production information summary storage area; during the period of the information content storage area is a period payment information summary storage area;
  • the total data storage area is displayed at the bottom right of the orthogonal table.
  • the context of the association (system and its composition) is marked in the left column of the orthogonal table.
  • An environment (system and its composition) with direct associations is marked in the upper column of the orthogonal table.
  • the elements stored in the period content storage sub-array, the environment name, the association coupling method between the elements, and the local state are respectively added to the corresponding names at the beginning and end of the expiration.
  • System process In the right column of the orthogonal table, corresponding to all elements, environments, associations between elements in the period of expression and expression, use value payment corresponding to local system status, economic value payment, period economic cost (referred to as payment cost) and inventory .
  • the coupling and coupling of all system elements, environments and elements during and after the end of the period, the local state is the use value output of the process production target, the production output measured by the economic value, the production economy Cost (referred to as production cost), production value added, the increase in liabilities due to the difference between the realization of the rights and the realization of the payment.
  • the total system economic value at the beginning and end of the period that is, the system main equity assets, principal equity liabilities and owner's equity are placed at the end of the left and upper columns of the orthogonal table, respectively.
  • Process value-based payments and process use-value outputs can be structurally balanced. Asset appreciation, debt increase, owner's equity increment, The total payment, total output, equilibrium scale, total production value added, total payment cost, total production cost, and economic value efficiency are marked on the lower right of the orthogonal table. The total process output and the total process payment constitute the system equilibrium scale.
  • Product value added during the period is a source of economic growth.
  • changes in the principal equity assets and changes in the owner's equity expressed the increase in assets and the increase in owner's equity.
  • each of the working squares which are orthogonally associated by the element, environment, element-associated coupling mode and state parameters, are marked and expressed by any element, environment, element-associated coupling mode and state parameter payment operation, using the working time and the operation.
  • Job information is exemplified by instructions, job use values or economic value variables, job status parameters, and the like.
  • the element attribute may be replaced by the element use value measurement, and the association coupling mode or the system local state between the elements may be replaced by the intangible asset.
  • the element attribute may be replaced by the element use value measurement, and the association coupling mode or the system local state between the elements may be replaced by the intangible asset.
  • the M sub-database storage modules include a job information storage module and an equalization information storage module, and the information stored by the job information storage module is provided by an operator, and the equalization information storage module
  • the information stored in the internal storage area is derived from information stored in the storage module of the job information storage area.
  • the job information storage module collects the valuable efficiency evaluation of the owner of the integrated system entity and the original record information (including the law) working under certain legal system rules for any social system, any job entity and job object of any job information.
  • the formulation and revision of the system records the unique job information of anyone at any point in time, and builds the database using the basic methods and formats built by the large database.
  • the data information of the job information storage module is unique, historical and systematic.
  • Every social system can make its own job information storage module.
  • a system in which it is difficult to construct a job information storage module based on job information, and with the support of the cloud technology, the job-related associated data information can be used to generate a corresponding job information storage module, such as agriculture.
  • Any job information storage module can evaluate the value efficiency and the structural balance within the system.
  • the job value storage module can also evaluate the system value relationship with the support of cloud technology.
  • the job information storage module is split and integrated. With the support of the cloud technology, the path of splitting and integrating can be selected according to the need to further extract and understand the job data information, and another job information storage module is constructed based on the data information of some job information storage modules.
  • the job information storage module can be linked with any required data information to form a data storage and processing mode with valuable efficiency criteria.
  • the data information that is not the development of the movement of the human-centered system is processed in the social system job information storage module.
  • the job information storage module also allows any data information in the account that needs to be kept secret to be set as confidential content and set a secret level under the principle of the legal system.
  • the equalization information storage module is an association relationship between a certain element, environment and element, and a part of the system from a certain area (which can be large or small, domestic or international) or all the operation information storage modules in a certain industry. State parameters and system economic value are the objects of investigation, and the production and payment, supply and demand relationship, and environmental impact factors in all job information storage modules are extracted from the job information storage module, and the basic database is constructed.
  • the method is constructed as a balanced information storage module. Used to balance the evaluation of the parent system structure across the operating subsystem. At the time of extraction, the corresponding summary data of the object can also be extracted.
  • the equalization information storage module is split and integrated from the job information storage module. It can solve the equilibrium of the total amount of a certain system structure in any time, region or system, but finally balance the total amount of the national system and make the final judgment.
  • the national total equilibrium there are five basic balanced information storage modules, such as enterprise products, public products, labor, monetary finance, and system state guarantee. These include international financial and international trade data variables.
  • the operation information in an orthogonal square or a set of orthogonal squares of any process can be used as key information, such as scientific research and electricity.
  • Etc. and set the name and path of the database, such as job time, industry or region, group, etc., based on the job information storage module, through the split and integration under cloud technology support, generate some job information as The main job information module.
  • Individual job information including job time, job instructions, job use value or economic value variables, job status parameters, etc. According to the characteristics of the work, it can be performed, operation analysis, job expectation decision, design work, coordination and control work, etc.
  • the controller stores the data storage modules corresponding to the time defined at the beginning and end of each period independently, and the period is connected. Each period is independently updated, and can be integrated according to time and streamed. It is necessary to pay attention to the overall time consistency.
  • the controller when performing the data query, when the controller receives the query request input through the human-computer interaction interface, the controller scans the categories stored in the name storage unit of the M sub-database storage modules, and selects N sub-databases matched by the N categories.
  • the storage module performs a query, where the query request includes the query request including an initial time start point, a final time end point, a module name, an element name, an environmental factor to be considered, a direct association coupling manner between elements, and an element association coupling to form a local part Status, period information content storage area, any group of storage information, initial economic value summary name and data, end-of-term economic value summary name and data, period payment information summary name and data, period production information summary name and data, period total data Name and data, and a combination of these query request information;
  • the controller passes the storage address of each storage unit of the information content storage sub-array of each sub-database storage module and the combination of the storage address of the initial information storage array storage unit and the end-of-time information storage array storage unit, and the initial information storage array Correspondence between the storage address and the storage address of the initial value storage sub-array and the storage address of the opening currency metering storage sub-array, and the storage address of the period-end information storage array and the storage address and ending currency metering storage of the end-use value storage sub-array Corresponding relationship of the storage address of the sub-array, searching for the storage content, the initial use value, the opening currency measurement, the ending usage value, the ending currency measurement, and the corresponding summary information of the period information content storage area corresponding to the query request;
  • the invention can have the following applications:
  • the operation time, industry, and region are used to split the basic path, and the original job record is taken as the basic data source, and the job information storage modules integrated into any market structure system of industry, region, country, international, or need are separately split. All job information storage modules are integrated into one, and their sub-databases are linked with key information such as job time, system elements and status parameters, job information, and so on. Make all data in the social system a valuable and balanced, streamlined, calculated, and processed, historical, systematic database.
  • the system economic value evaluation is also fast and complete, the system total payment, total output, equilibrium scale, total payment cost, total production cost, changes in the main equity assets and owner's equity, etc., as long as the original record is completed, the job information storage
  • the module can be evaluated for economic value. From any social system to all social systems.
  • the core value of the system main body analyzes the synergy between the core value of the subject and the economic value of the system through its use value and its economic value effect in the system.
  • the progress of any social system can be evaluated in terms of the core value of the system's main body and the economic value and the state of its synergistic relationship.
  • the local state of the system, its use value relative to the subject is the psychological, emotional, spiritual and other effects of the situation, vision, art, beauty, fairness, warmth, happiness, security. This can include political, artistic, religious and other content, and its economic value is still judged by the marginal effect of intangible assets.
  • the evaluation of the value relationship of social systems with multiple value evaluations is integrated. Used for strategic and development path selection. Also used for consistency work time evaluation.
  • Equilibrium is the cause of value efficiency and the basis of value measurement. Therefore, equilibrium and value efficiency are important factors in behavior decision. Rapid equilibrium evaluation and regulation are necessary for human behavior decision-making.
  • the equilibrium information storage module generated by the job information storage module can be completed.
  • the structural equalization sub-database and the equilibrium analysis sub-database can be used separately according to the needs.
  • Equilibrium analysis can be performed on any system element, the associated coupling mode of the element, and the local state of the system. Equilibrium analysis can also be performed in the overall state of the system.
  • a targeted equilibrium assessment can be made.
  • the job information storage module is used to quickly perform centralized processing of job information. For example: electricity consumption. As long as the operation information of the electricity used in the system is concentrated, the scale and structure of the electricity consumption can be obtained, thereby performing corresponding production and supply regulation.
  • the job information in some important job information storage modules can be separately extracted from the job information storage module and the equalization information storage module, and integrated into a job information storage module for analyzing a certain information, such as analysis, scientific research, anticipation, Design, job coordination and control, subject organization, etc.
  • Consumer applications If you need to consume or research and consume a certain type of product, you can query the equilibrium information storage module of a certain area of the product at a certain time, then the production, demand, use value and economic value of all such products in the area at that time. Information such as (price) is displayed in the corresponding equalization information storage module. Consumers can, based on certain preferences, query for information about the supplier or consumer spending usage. Then search for suppliers, and previous consumer data. This can be done for any commodity, and the equalization information storage module can be generated by the information data in the job information storage module, and the time and time period can also be freely selected.
  • the collaborative control data of the equalization information storage module is searched. If you have your own opinions, expectations, and opinions and suggestions for collaboration and control for the balanced information storage module and the corresponding job information storage module of the corresponding supplier or consumer, you can use it in your own job information storage module. As an operation, comments and suggestions on analysis, anticipation, or coordination and control of the equalization information storage module or the job information storage module are published. Others use the integrated job information storage module to query and obtain reference in the form of job data information.
  • the historical production information storage module of the product is searched, and analysis, anticipation, redesign, coordination, and control improvement are performed in the database, or the expected simulation job information storage module and the equalization information storage module are established. Guarantee and improve operations.
  • Any manager in addition to filling out his own management operation records, directly inquires the operation information storage module of the managed system and the corresponding sub-database to observe the operation status, and simultaneously analyze, anticipate, design, coordinate and control the operation.
  • some corresponding management job information can be stored in the sub-database of the job information storage module, including information such as meeting discussion and resolution, system or other technical parameter standards, and reference to the corresponding sub-database.
  • the manager can use the job information storage module as the “sand plate” to analyze, anticipate, plan, design, issue job instructions, and be responsible for the results.
  • the equalization scale of the financial instruments is obtained, and the financial enterprise value information storage module can be obtained in the financial industry operation information storage module, and the analysis of the industrial environment can be performed, and the operation information storage can be performed in the same.
  • research marketing including the control of the scale of financial instruments supply.

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Abstract

一种大数据库创建及数据管理方法,首先建立M个子数据库存储模块,每一个子数据库存储模块具有名称存储单元,用于存储所述子数据库存储模块的名称,其中,M为正整数,在每一个子数据库存储模块内进行数据存储和数据更新,以及根据M个子数据库存储模块中的N个子数据库存储模块中存储的内容进行数据查询和数据显示,其中,N为不大于M的正整数。有利于使用者快速进行大数据处理、进行价值效率和均衡评判,从而进行选择决策和行为优化。

Description

一种大数据库创建及数据管理方法 技术领域
本发明涉及数据处理技术领域,具体涉及一种大数据库创建及数据管理方法。
背景技术
目前云计算和大数据技术虽然有快速处理和应用海量数据的方法,但是由于缺乏以价值效率为准则“提纯”技术,使得大数据的利用价值比较低,数据之间有机的相关性得不到恰当的符合价值规律的充分呈现,不能给使用者提供洞察力和预期决策能力的支持。另外,各个数据库内的数据呈现方式复杂,不利于使用者查看。
因此,需要寻求一种数据库创建及数据管理方法,实现社会成员偏好满足和各种价值指标整合的呈现,合理且能较快速地校正误差,用以实现对经济价值和社会进步的可靠的衡量,是一个非常有意义的课题。
发明内容
为了克服上述现有技术中存在的缺陷,本发明的目的是提供一种大数据库创建及数据管理方法,有利于使用者进行快速、准确地进行价值评判和均衡评判。
为了实现本发明的上述目的,本发明提供了一种大数据库创建及数据管理方法,首先建立M个子数据库存储模块,每一个子数据库存储模块具有名称存储单元,用于存储所述子数据库存储模块的名称,所述M为正整数,在每一个子数据库存储模块内进行数据存储和数据更新,以及根据M个子数据库存储模块中的N个子数据库存储模块中存储的内容进行数据查询和数据显示,所述N为不大于M的正整数,具体步骤如下:
S1,数据存储,
S11,在存储器的每一个子数据库存储模块内的期初信息存储阵列的期初时间点存储子阵列、期初元素名称存储子阵列、期初环境存储子阵列、期初元素之间的直接关联耦合方式存储子阵列和期初元素关联耦合形成局部状态存储子阵列中分别存储期初时间起点、期初元素名称、期初需要考虑的环境因素、期初元素之间的直接关联耦合方式和期初元素关联耦合形成局部状态;
在所述存储器的每一个子数据库存储模块内的期末信息存储阵列的期末时间点存储子阵列、期末元素名称存储子阵列、期末环境存储子阵列、期末元 素之间的直接关联耦合方式存储子阵列和期末元素关联耦合形成局部状态存储子阵列中分别存储期末时间终点、期末元素名称、期末需要考虑的环境因素、期末元素之间的直接关联耦合方式和期末元素关联耦合形成局部状态;
所述每一个子数据库存储模块还具有期初使用价值名称存储子阵列、期初货币计量名称存储子阵列、期末使用价值名称存储子阵列和期末货币计量名称存储子阵列、期初使用价值数据存储子阵列、期初货币计量数据存储子阵列、期末使用价值数据存储子阵列和期末货币计量数据存储子阵列,所述期初使用价值名称存储子阵列、期初货币计量名称存储子阵列、期末使用价值名称存储子阵列和期末货币计量名称存储子阵列分别用于存储期初使用价值名称、期初货币计量名称、期末使用价值名称和期末货币计量名称,所述期初信息存储阵列的存储地址分别与期初使用价值数据存储子阵列的存储地址和期初货币计量数据存储子阵列的存储地址一一对应,所述期末信息存储阵子阵列的存储地址分别与期末使用价值数据存储子阵列的存储地址和期末货币计量数据存储子阵列的存储地址一一对应;
所述每一个子数据库存储模块还具有期初经济价值汇总名称存储子阵列及与其一一对应的期初经济价值汇总数据存储子阵列、还具有期末经济价值汇总名称存储子阵列及与其一一对应的期末经济价值数据汇总存储子阵列,所述期初经济价值汇总名称存储子阵列和期末经济价值汇总名称存储子阵列分别用于存储期初经济价值汇总名称和期末经济价值汇总名称,所述期初经济价值汇总数据存储子阵列的存储地址与期初货币计量名称存储子阵列的存储地址一一对应;所述期末经济价值汇总数据存储子阵列的存储地址与期末货币计量名称存储子阵列的存储地址一一对应;
所述每一个子数据库存储模块还具有期间支付信息汇总名称存储子阵列及与其一一对应的期间支付信息汇总数据存储子阵列,所述期间支付信息汇总名称存储子阵列用于存储期间支付信息汇总名称,所述期间支付信息汇总数据存储子阵的存储单元的存储地址与期初信息存储阵列的存储地址一一对应;每一个期间支付信息汇总数据存储子阵列的存储单元用于存储其对应的期初信息存储阵列存储单元的存储地址所对应的所有期间信息内容存储子阵列的存储单元所存储的支付信息汇总;
所述每一个子数据库存储模块还具有期间信息内容存储子阵列,所述期间信息内容存储子阵列的每一个存储单元的存储地址与且仅与一个期初信息存储阵列存储单元的存储地址和一个期末信息存储阵列存储单元的存储地址的组合一一对应;
所述每一个子数据库存储模块还具有期间生产信息汇总名称存储子阵列及与其一一对应的期间生产信息汇总数据存储子阵列,所述期间生产信息汇总名称存储子阵列用于存储期间生产信息汇总名称,所述期间生产信息汇总数据存储子阵列的存储地址与期末信息存储阵列存储单元的存储地址一一对应,每一个期间生产信息汇总数据存储子阵列的存储单元用于存储其对应的期末信 息存储阵列存储单元的存储地址所对应的所有期间信息内容存储子阵列的存储单元所存储的生产信息汇总;
所述每一个子数据库存储模块还具有总量数据存储子阵列,所述总量数据存储子阵列的存储地址与期间生产信息汇总存储子阵列的存储地址和期间支付信息汇总存储子阵列的存储地址的组合,以及期初经济价值数据汇总存储子阵列的存储地址和期末经济价值数据汇总存储子阵列的存储地址的组合一一对应;
S12:用户通过人机交互界面分别向所述期初使用价值数据存储子阵列、期初货币计量数据存储子阵列、期末使用价值数据存储子阵列、期末货币计量数据存储子阵列和期间信息内容存储子阵列的存储地址内输入存储内容并存储;
S2,数据更新,
控制器将期初货币计量数据存储子阵列存储的内容汇总,根据期初经济价值汇总数据存储子阵列的存储地址与期初货币计量名称存储子阵列的存储地址的对应关系将所述汇总内容存储入相应的期初经济价值汇总数据存储子阵列的存储单元内,
控制器将期末货币计量数据存储子阵列存储的内容汇总,根据期末经济价值汇总数据存储子阵列的存储地址与期末货币计量名称存储子阵列的存储地址的对应关系,将所述汇总数据存储入相应的期末经济价值汇总数据存储子阵列的存储单元内;
控制器将每一个期初信息存储阵列存储单元的存储地址对应的期间信息内容存储子阵列的存储地址内存储的支付信息汇总,根据期间支付信息汇总数据存储子阵的存储单元的存储地址与期初信息存储阵列的存储地址的对应关系,将所述汇总数据存储入相应的期间支付信息汇总数据存储子阵的存储单元内;
控制器将每一个期末信息存储阵列存储单元的存储地址对应的期间信息内容存储子阵列的存储地址内存储的生产信息汇总,并根据期间生产信息汇总存储子阵列的存储地址与期末信息存储阵列存储单元的存储地址的对应关系查找与所述期末信息存储阵列存储单元对应的期间生产信息汇总存储子阵列的存储地址,将所述汇总内容存储入所述期间生产信息汇总存储子阵列的存储地址;
控制器根据总量数据存储子阵列的存储地址与期间生产信息汇总存储子阵列的存储地址和期间支付信息汇总存储子阵列的存储地址的组合的对应关系,以及根据总量数据存储子阵列的存储地址与期初经济价值数据汇总存储子阵列的存储地址和期末经济价值数据汇总存储子阵列的存储地址的组合的对应关系,将与一个总量数据存储子阵列的存储地址对应的期间生产信息汇总存储子阵列存储地址内存储的内容汇总,以及将所述的一个期间总量数据存储子阵列的存储地址对应的期间支付汇总存储子阵列的存储地址内存储的内容汇 总,更新所述的一个期间总量数据存储子阵列的存储地址内的存储内容;
将与一个总量数据存储子阵列的存储地址对应的期末经济价值数据汇总存储子阵列的存储地址内存储的内容减去与所述的一个总量数据存储子阵列的存储地址对应的期初经济价值数据汇总存储子阵列的存储地址内存储的内容,更新所述的一个期间总量数据存储子阵列的存储地址内的存储内容;
S3,数据查询:当控制器在接收到通过人机交互界面输入的查询请求时,控制器扫描M个子数据库存储模块的名称存储单元中存储的类别,选择N个类别匹配的N个子数据库存储模块进行查询,所述查询请求包括期初时间起点、期末时间终点、模块的名称、元素名称、需要考虑的环境因素、元素之间的直接关联耦合方式、元素关联耦合形成局部状态、期间信息内容存储区的任一组存储信息、期初经济价值汇总名称和数据、期末经济价值汇总名称和数据、期间支付信息汇总名称和数据,期间生产信息汇总名称和数据、期间总量数据,以及这些查询请求信息的组合;
控制器通过每一个子数据库存储模块的期间信息内容存储子阵列的每一个存储单元的存储地址与期初信息存储阵列存储单元的存储地址和期末信息存储阵列存储单元的组合对应关系,期初信息存储阵列的存储地址与期初使用价值存储子阵列的存储地址和期初货币计量存储子阵列的存储地址的对应关系,以及期末信息存储阵列的存储地址与期末使用价值存储子阵列的存储地址和期末货币计量存储子阵列的存储地址的对应关系查找与所述查询请求对应的期间信息内容存储区的存储内容、期初使用价值、期初货币计量、期末使用价值、期末货币计量以及相应的汇总信息;
S4,数据显示:所述控制器指令人机交互界面对查询内容进行显示。
在本发明的一种优选实施方式中,所述期初元素名称存储子阵列的存储单元与所述期末元素名称存储子阵列的存储单元的数量相同,所述期初环境存储子阵列的存储单元与所述期末环境存储子阵列的存储单元的数量相同,所述期初元素之间的直接关联耦合方式存储子阵列的存储单元与期末元素之间的直接关联耦合方式存储子阵列的存储单元的数量相同,所述期初元素关联耦合形成局部状态存储子阵列的存储单元与期末元素关联耦合形成局部状态存储子阵列的存储单元的数量相同。
在本发明的一种优选实施方式中,所述期初元素名称与期末元素名称一一对应,期初环境名称与期末环境名称一一对应,期初元素之间的直接关联耦合方式与期末元素之间的直接关联耦合方式一一对应,期初元素关联耦合形成局部状态与期末元素关联耦合形成局部状态一一对应。
在本发明的一种优选实施方式中,所述M个子数据库存储模块中包括作业信息存储模块和均衡信息存储模块,所述作业信息存储模块存储的信息由作业人员提供,所述均衡信息存储模块内存储的信息来源于均衡考察对象相应的作业信息存储模块里存储的信息,均衡信息存储模块内的总量信息,由控制器汇总。
在本发明的一种优选实施方式中,显示方法为:
将子数据库存储模块名称项显示在正交表格的最左上一栏;
将期初时间起点显示在子数据库存储模块名称项的下一栏;
将期末时间终点显示在子数据库存储模块名称项的右一栏;
在期初时间起点项的下栏的左侧分别显示期初元素名称、期初需要考虑的环境因素、期初元素之间的直接关联耦合方式和期初系统元素关联耦合形成局部状态、期初经济价值汇总名称,在期初时间起点项的下栏的左侧分别并列显示期初使用价值和期初货币计量;
在期末时间终点项的右栏的上栏分别显示期末元素名称、期末需要考虑的环境因素、期末元素之间的直接关联耦合方式和期末系统元素关联耦合形成局部状态、期末经济价值汇总名称,在期末时间终点项的右栏的下栏分别并列显示期末使用价值和期末货币计量;
在期末经济价值汇总数据的下栏显示期间支付信息汇总名称;
正交表格的期初时间起点所处的一列和期末时间终点所处的一行正交形成的存储区域为期间信息内容存储区;
在期间信息内容存储区之下为期间生产信息汇总存储区;
在期间信息内容存储区之右为期间支付信息汇总存储区;
在正交表格的右下方显示期间总量数据存储区。
本发明的有益效果是:
1.本发明将大量的零碎的信息数据系统化,更适于流式计算和处理。进行系统化、历史化处理和呈现。
2.本发明能够提供作业信息、价值信息和均衡信息及其关系效应的快速获得、传递和反馈。作业过程中及时分析、评判、预期、设计、并反馈于作业协同与控制。价值信息包括使用价值信息、核心价值信息和经济价值信息。核心价值是使用价值中一个部分。
3.本发明用作业信息存储模块存储的内容生成所需要的均衡信息存储模块,用作业信息存储模块和均衡信息存储模块链接采集提取信息。形成一个新的有价值准则和均衡判断的快速提取和应用数据的处理模式。这样,就是在现有的云技术和大数据处理模式的基础上,设计了一个新的处理模式。
4.替代原有的分割的、零散的数据库,以其快速的价值信息和系统性的呈现方式,以及与其他数据之间的有机关联,从而替代现行的财务会计报表,国民经济统计报表。清晰地反映计算和呈现出社会系统各个使用价值(包括社会成员偏好和偏好结构的反映)与经济价值之间的关系、价值效率、价值关系。克服现有的经济价值的有较大缺陷的衡量和反映。
5.可以用于人的所有作业过程,包括作业记录、分析、预期决策、设计策划和作业协同与控制等等,所以可以以此为基础进行数据统计处理和应用软件的开发,可以进行能够较好应用大数据的新型管理软件的开发。
6.能够实现经济表现与社会进步的衡量,用元素、元素属性、元素之间 的关联耦合关系、系统局部状态的使用价值、核心价值、经济价值之间的关联关系,在数据库中实现社会成员偏好满足和各种价值指标的整合和换算,尤其以核心价值的使用价值和经济价值,以及其之间的协同关系,实现对经济表现和社会进步的衡量。如此既有现实的依据,又可以获得是可靠的价值效率和均衡状态的信息反馈,以此调节和优化行为。
7.能够充分呈现社会系统各主体组织的形成、运动、变化、发展及至解散的成因,以及主体人在自身组织方面,所做的现状刻画、分析、预期、设计和作为。
8.能够较充分呈现和应用社会系统与自然系统之间的直接关联关系数据。
本发明的附加方面和优点将在下面的描述中部分给出,部分将从下面的描述中变得明显,或通过本发明的实践了解到。
附图说明
本发明的上述和/或附加的方面和优点从结合下面附图对实施例的描述中将变得明显和容易理解,其中:
图1是本发明大数据库创建及数据管理方法的流程图;
图2是本发明一种优选实施方式中数据的显示方法。
具体实施方式
下面详细描述本发明的实施例,所述实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施例是示例性的,仅用于解释本发明,而不能理解为对本发明的限制。
本发明提供了一种大数据库创建及数据管理方法,需要建立M个子数据库存储模块,每一个子数据库存储模块具有名称存储单元,用于存储所述子数据库存储模块的名称,所述M为正整数,在每一个子数据库存储模块内进行数据存储和数据更新,以及根据M个子数据库存储模块中的N个子数据库存储模块中存储的内容进行数据查询和数据显示,所述N为不大于M的正整数,具体步骤如下:
S1,数据存储,
S11,在存储器的每一个子数据库存储模块内的期初信息存储阵列的期初时间点存储子阵列、期初元素名称存储子阵列、期初环境存储子阵列、期初元素之间的直接关联耦合方式存储子阵列和期初元素关联耦合形成局部状态存储子阵列中分别存储期初时间起点、期初元素名称、期初需要考虑的环境因素、期初元素之间的直接关联耦合方式和期初元素关联耦合形成局部状态;
在所述存储器的每一个子数据库存储模块内的期末信息存储阵列的期末时间点存储子阵列、期末元素名称存储子阵列、期末环境存储子阵列、期末元素之间的直接关联耦合方式存储子阵列和期末元素关联耦合形成局部状态存储子阵列中分别存储期末时间终点、期末元素名称、期末需要考虑的环境因素、 期末元素之间的直接关联耦合方式和期末元素关联耦合形成局部状态;
所述每一个子数据库存储模块还具有期初使用价值(元素、元素之间的直接关联耦合方式、环境、元素关联耦合形成局部状态对于人的具体作用和意义)名称存储子阵列、期初货币计量名称存储子阵列、期末使用价值名称存储子阵列和期末货币计量名称存储子阵列、期初使用价值数据存储子阵列、期初货币计量数据存储子阵列、期末使用价值数据存储子阵列和期末货币计量数据存储子阵列,所述期初使用价值名称存储子阵列、期初货币计量名称存储子阵列、期末使用价值名称存储子阵列和期末货币计量名称存储子阵列分别用于存储期初使用价值名称、期初货币计量名称、期末使用价值名称和期末货币计量名称,所述期初信息存储阵列的存储地址分别与期初使用价值数据存储子阵列的存储地址和期初货币计量数据存储子阵列的存储地址一一对应,所述期末信息存储阵子阵列的存储地址分别与期末使用价值数据存储子阵列的存储地址和期末货币计量数据存储子阵列的存储地址一一对应;
所述每一个子数据库存储模块还具有期初经济价值汇总名称存储子阵列及与其一一对应的期初经济价值汇总数据存储子阵列、还具有期末经济价值汇总名称存储子阵列及与其一一对应的期末经济价值数据汇总存储子阵列,所述期初经济价值汇总名称存储子阵列和期末经济价值汇总名称存储子阵列分别用于存储期初经济价值汇总名称和期末经济价值汇总名称,所述期初经济价值汇总数据存储子阵列的存储地址与期初货币计量名称存储子阵列的存储地址一一对应;所述期末经济价值汇总数据存储子阵列的存储地址与期末货币计量名称存储子阵列的存储地址一一对应;
所述每一个子数据库存储模块还具有期间支付信息汇总名称存储子阵列及与其一一对应的期间支付信息汇总数据存储子阵列,所述期间支付信息汇总名称存储子阵列用于存储期间支付信息汇总名称,所述期间支付信息汇总数据存储子阵的存储单元的存储地址与期初信息存储阵列的存储地址一一对应;每一个期间支付信息汇总数据存储子阵列的存储单元用于存储其对应的期初信息存储阵列存储单元的存储地址所对应的所有期间信息内容存储子阵列的存储单元所存储的支付信息汇总;
所述每一个子数据库存储模块还具有期间信息内容存储子阵列,所述期间信息内容存储子阵列的每一个存储单元的存储地址与且仅与一个期初信息存储阵列存储单元的存储地址和一个期末信息存储阵列存储单元的存储地址的组合一一对应;
所述每一个子数据库存储模块还具有期间生产信息汇总名称存储子阵列及与其一一对应的期间生产信息汇总数据存储子阵列,所述期间生产信息汇总名称存储子阵列用于存储期间生产信息汇总名称,所述期间生产信息汇总数据存储子阵列的存储地址与期末信息存储阵列存储单元的存储地址一一对应,每一个期间生产信息汇总数据存储子阵列的存储单元用于存储其对应的期末信息存储阵列存储单元的存储地址所对应的所有期间信息内容存储子阵列的存 储单元所存储的生产信息汇总;
所述每一个子数据库存储模块还具有总量数据存储子阵列,所述总量数据存储子阵列的存储地址与期间生产信息汇总存储子阵列的存储地址和期间支付信息汇总存储子阵列的存储地址的组合,以及期初经济价值数据汇总存储子阵列的存储地址和期末经济价值数据汇总存储子阵列的存储地址的组合一一对应;
S12:用户通过人机交互界面分别向所述期初使用价值数据存储子阵列、期初货币计量数据存储子阵列、期末使用价值数据存储子阵列、期末货币计量数据存储子阵列和期间信息内容存储子阵列的存储地址内输入存储内容并存储;
S2,数据更新,
控制器将期初货币计量数据存储子阵列存储的内容汇总,根据期初经济价值汇总数据存储子阵列的存储地址与期初货币计量名称存储子阵列的存储地址的对应关系将所述汇总内容存储入相应的期初经济价值汇总数据存储子阵列的存储单元内,
控制器将期末货币计量数据存储子阵列存储的内容汇总,根据期末经济价值汇总数据存储子阵列的存储地址与期末货币计量名称存储子阵列的存储地址的对应关系,将所述汇总数据存储入相应的期末经济价值汇总数据存储子阵列的存储单元内;
控制器将每一个期初信息存储阵列存储单元的存储地址对应的期间信息内容存储子阵列的存储地址内存储的支付信息汇总,根据期间支付信息汇总数据存储子阵的存储单元的存储地址与期初信息存储阵列的存储地址的对应关系,将所述汇总数据存储入相应的期间支付信息汇总数据存储子阵的存储单元内;
控制器将每一个期末信息存储阵列存储单元的存储地址对应的期间信息内容存储子阵列的存储地址内存储的生产信息汇总,并根据期间生产信息汇总存储子阵列的存储地址与期末信息存储阵列存储单元的存储地址的对应关系查找与所述期末信息存储阵列存储单元对应的期间生产信息汇总存储子阵列的存储地址,将所述汇总内容存储入所述期间生产信息汇总存储子阵列的存储地址;
控制器根据总量数据存储子阵列的存储地址与期间生产信息汇总存储子阵列的存储地址和期间支付信息汇总存储子阵列的存储地址的组合的对应关系,以及根据总量数据存储子阵列的存储地址与期初经济价值数据汇总存储子阵列的存储地址和期末经济价值数据汇总存储子阵列的存储地址的组合的对应关系,将与一个总量数据存储子阵列的存储地址对应的期间生产信息汇总存储子阵列存储地址内存储的内容汇总,以及将所述的一个期间总量数据存储子阵列的存储地址对应的期间支付汇总存储子阵列的存储地址内存储的内容汇总,更新所述的一个期间总量数据存储子阵列的存储地址内的存储内容。
将与一个总量数据存储子阵列的存储地址对应的期末经济价值数据汇总存储子阵列的存储地址内存储的内容减去与所述的一个总量数据存储子阵列的存储地址对应的期初经济价值数据汇总存储子阵列的存储地址内存储的内容,更新所述的一个期间总量数据存储子阵列的存储地址内的存储内容。
在本实施方式中,每一个子数据库存储模块的名称存储单元用于存储该子数据库存储模块的名称,该名称用于显示该子数据库存储模块存储内容的类别。例如,名称为“企业作业账户”,用于提示所存储的作业信息是企业运行相关的数据信息。
在本实施方式中,可以根据用户的实际需要决定创建子数据库存储模块的数量,以及期初元素名称存储子阵列、期初环境存储子阵列、期初元素之间的直接关联耦合方式存储子阵列、期初元素关联耦合形成局部状态存储子阵列的存储单元的数量,对于期初元素名称、期初环境名称、期初元素之间的直接关联耦合方式、期初元素关联耦合形成局部状态也可以根据使用者不同的行业自行进行选择。
在本发明的一个优选实施方式中,例如要形成企业系统账户,在名称存储单元中存储“企业作业账户”,用于提示所存储的作业信息是企业运行相关的数据信息。在期初信息存储阵列的期初元素名称存储子阵列、期初环境存储子阵列、期初元素之间的直接关联耦合方式存储子阵列、期初元素关联耦合形成局部状态存储子阵列中分别存储期初元素名称、期初环境名称、期初元素之间的直接关联耦合方式、期初元素关联耦合形成局部状态。
在本实施方式中,具体的期初元素名称可以包括但不限于企业系统主体组织和企业资产和资源,具体企业系统主体组织可以包括但不限于股东大会、董事会、监事会、董事长、总经理、公司办公室、财务部门、以及至少一个职能部门,企业资产和资源可以包括但不限于金融资产(货币、证券、债券)、有形资产(固定资产、原材料、至少一个有形资产)。在本发明的另外的优选实施方式中,元素名称还可以包括但不限于系统中的子系统名称,例如,系统“企业”中的各个职能部门和经营单位名称。
具体期初环境存储子阵列存储的环境名称可以为但不限于行业环境、社会环境和自然环境,具体行业环境可以包括但不限于主要竞争对手、行业地位、行业市场份额、进入壁垒、退出壁垒、至少一个行业客户群、至少一个行业供应商、行业企业数、行业金融资产、行业有形资产、行业无形资产、行业成长状态;社会环境可以包括但不限于公共部门、金融部门、事业部门、企业部门、居民家庭、区域经济增长;自然环境可以包括但不限于自然资源和生态环境。
具体的期初元素之间的直接关联耦合方式可以包括但不限于:企业文化、制度和技术以及其他至少一个无形资产。
具体的期初元素关联耦合形成局部状态可以包括但不限于行业地位、舒适高雅指标和其他至少一个说明局部状态的参数。
在期末信息存储阵列的期末元素名称存储子阵列、期末环境存储子阵列、 期末元素之间的直接关联耦合方式存储子阵列、期末元素关联耦合形成局部状态存储子阵列中分别存储期末元素名称、期末环境名称、期末元素之间的直接关联耦合方式、期末元素关联耦合形成局部状态。
在本实施方式中,期初元素名称存储子阵列的存储单元与所述期末元素名称存储子阵列的存储单元的数量相同,所述期初环境存储子阵列的存储单元与所述期末环境存储子阵列的存储单元的数量相同,所述期初元素之间的直接关联耦合方式存储子阵列的存储单元与期末元素之间的直接关联耦合方式存储子阵列的存储单元的数量相同,所述期初元素关联耦合形成局部状态存储子阵列的存储单元与期末元素关联耦合形成局部状态存储子阵列的存储单元的数量相同。
期初元素名称与期末元素名称一一对应,期初环境名称与期末环境名称一一对应,期初元素之间的直接关联耦合方式与期末元素之间的直接关联耦合方式一一对应,期初元素关联耦合形成局部状态与期末元素关联耦合形成局部状态一一对应。每一个期初信息存储阵列存储单元的存储地址和一个期末信息存储阵列存储单元的存储地址形成一个组合。
在本实施方式中,期初经济价值汇总名称存储子阵列存储的期初经济价值汇总名称可以根据实际需要进行确定,可以为但不限于期初主体权益资产、期初负债、期初所有者权益;期末经济价值汇总名称存储子阵列存储的期末经济价值汇总名称可以根据实际需要进行确定,可以为但不限于期末主体权益资产、期末负债、期末所有者权益。
期间支付信息汇总名称存储子阵列存储的期间支付信息汇总名称可以根据实际需要进行确定,包括但不限于使用价值支付、经济价值支付、支付成本和库存。
期间生产信息汇总名称存储子阵列存储的期间生产信息汇总名称可以根据实际需要进行确定,包括但不限于使用价值产出、生产产出、生产成本、负债增量和生产增值。
期间总量信息汇总数据存储子阵列存储的期间总量信息数据,对应的名称可以根据实际生成的总量数据进行确定,可以为但不限于资产增值、负债增量、所有者权益增量、总支付、总产出、均衡规模、生产增值总量、总支付成本、总生产成本、经济价值效率(总支付成本对应的生产增值总量)等。
在本实施方式中,将任一社会系统及其子系统中所有元素、环境名称、元素之间直接的关联耦合方式、系统局部状态对于人的作用和意义,分别用使用价值和经济价值(货币计量)两种价值进行度量,元素和元素的功能属性,可以直接用元素名称标记,其使用价值用其本身的计量单位(基数)加质量标准或功能或偏好序数的方法计量。如:钢材,XX吨-XX标准。系统局部状态,元素之间的关联耦合方式,其使用价值用参数名称大少加序数的办法计量,如:健康指数-第十位,技术规程-第一位,制度-第一偏好等。经济价值用货币计量,其误差校正用根据系统均衡状态来确定。
在该存储模块内还具有期间信息内容存储子阵列,在使用时,用户通过人机交互界面分别向期初使用价值数据存储子阵列、期初货币计量数据存储子阵列、期末使用价值数据存储子阵列、期末货币计量数据存储子阵列输入期初使用价值、期初货币计量、期末使用价值、期末货币计量,向期间信息内容存储区的每一个存储单元内输入与其期初信息存储阵列存储单元的存储地址内存储的内容和期末信息存储阵列存储单元的存储地址存储的内容对应的具体作业信息。
控制器将期初货币计量数据存储子阵列存储的内容汇总,根据期初经济价值汇总数据存储子阵列的存储地址与期初货币计量名称存储子阵列的存储地址的对应关系将所述汇总内容存储入相应的期初经济价值汇总数据存储子阵列的存储单元内。
控制器将期末货币计量数据存储子阵列存储的内容汇总,根据期末经济价值汇总数据存储子阵列的存储地址与期末货币计量名称存储子阵列的存储地址的对应关系,将所述汇总数据存储入相应的期末经济价值汇总数据存储子阵列的存储单元内。
控制器将每一个期初信息存储阵列存储单元的存储地址对应的期间信息内容存储子阵列的存储地址内存储的支付信息汇总,根据期间支付信息汇总数据存储子阵的存储单元的存储地址与期初信息存储阵列的存储地址的对应关系,将所述汇总数据存储入相应的期间支付信息汇总数据存储子阵的存储单元内。
当控制器将每一个期末信息存储阵列存储单元的存储地址对应的期间信息内容存储子阵列存储单元内的存储生产信息汇总,并根据期间生产信息汇总存储子阵列的存储地址与期末信息存储阵列存储单元的存储地址的对应关系查找与所述期末信息存储阵列存储单元对应的期间生产信息汇总存储区的存储地址,将所述存储内容汇总存储区所述期间生产信息汇总存储区的存储地址。
控制器根据总量数据存储子阵列的存储地址与期间生产信息汇总存储子阵列的存储地址和期间支付信息汇总存储子阵列的存储地址的组合的对应关系,以及根据总量数据存储子阵列的存储地址与期初经济价值数据汇总存储子阵列的存储地址和期末经济价值数据汇总存储子阵列的存储地址的组合的对应关系,将与一个总量数据存储子阵列的存储地址对应的期间生产信息汇总存储子阵列存储地址内存储的内容汇总,以及将所述的一个期间总量数据存储子阵列的存储地址对应的期间支付汇总存储子阵列的存储地址内存储的内容汇总,更新所述的一个期间总量数据存储子阵列的存储地址内的存储内容。
将与一个总量数据存储子阵列的存储地址对应的期末经济价值数据汇总存储子阵列的存储地址内存储的内容减去与所述的一个总量数据存储子阵列的存储地址对应的期初经济价值数据汇总存储子阵列的存储地址内存储的内容,更新所述的一个期间总量数据存储子阵列的存储地址内的存储内容。形成 的表格如图2所示,具体的显示方式为:
将子数据库存储模块名称项显示在正交表格的最左上一栏;
将期初时间起点显示在子数据库存储模块名称项的下一栏;
将期末时间终点显示在子数据库存储模块名称项的右一栏;
在期初时间起点项的下栏的左侧分别显示期初元素名称、期初需要考虑的环境因素、期初元素之间的直接关联耦合方式和期初系统元素关联耦合形成局部状态、期初经济价值汇总名称,在期初时间起点项的下栏的左侧分别并列显示期初使用价值和期初货币计量;
在期末时间终点项的右栏的上栏分别显示期末元素名称、期末需要考虑的环境因素、期末元素之间的直接关联耦合方式和期末系统元素关联耦合形成局部状态、期末经济价值汇总名称,在期末时间终点项的右栏的下栏分别并列显示期末使用价值和期末货币计量;
在期末经济价值汇总数据的下栏显示期间支付信息汇总名称;
正交表格的期初时间起点所处的一列和期末时间终点所处的一行正交形成的存储区域为期间信息内容存储区;
在期间信息内容存储区之下为期间生产信息汇总存储区;在期间信息内容存储区之右为期间支付信息汇总存储区;
在正交表格的右下方显示总量数据存储区。
在本实施方式中,将期初的元素、环境名称、元素之间直接的关联耦合方式、局部状态,期初经济价值汇总名称及其相对于系统主体人的使用价值和经济价值,包括与系统有直接关联关系的环境(系统及其构成),标记在正交表格的左栏。将任一系统某一时期的期末的元素、环境名称、元素之间的关联耦合方式、局部系统状态、期末经济价值汇总名称,及其相对于系统主体人的使用价值和经济价值,包括与系统有直接关联关系的环境(系统及其构成),标记在正交表格的上栏。将期间内容存储子阵列中存储作为中间体的元素、环境名称、元素之间的关联耦合方式、局部状态分别补充标记到期初期末对应各名称中。用期初期末元素、环境名称、元素之间的关联耦合方式、局部系统状态、及其相对于系统主体人的使用价值和经济价值的正交的直接的交联关系,表达和刻画系统所有期间的系统过程。在正交表格的右栏,分别对应标记和表达期间所有元素、环境、元素之间的关联耦合方式、局部系统状态对应的使用价值支付、经济价值支付、期间经济成本(简称支付成本)和库存。在正交表格的下栏,标记和表达期间和期末所有系统元素、环境、元素之间的关联耦合方式、局部状态为过程生产目标的使用价值产出、经济价值衡量的生产产出、生产经济成本(简称生产成本)、生产增值、因权责发生和收付实现之差所发生的负债增量。
将期初期末的系统经济价值总计,即系统主体权益资产、主体权益负债和所有者权益分别放在正交表格的左栏和上栏的末尾。过程使用价值支付与过程使用价值产出可以进行结构均衡分析。资产增值、负债增量、所有者权益增量、 总支付、总产出、均衡规模、生产增值总量、总支付成本、总生产成本、经济价值效率对应标记在正交表格的右下方。过程总产出与过程总支付,构成系统均衡规模。期间生产增值,是经济增长的来源。期初期末主体权益资产的变化、所有者权益的变化,都分别表达资产增值和所有者权益增量。系统生产成本与系统支付成本之间的关系,表达成本核算的内容。生产增值总量和成本之间的关系,表达经济价值效率。表格的每一行每一列,都有对应的性价比和技术经济效率的评价和判断。同时体现与环境系统的直接的关联关系。
期间每一个通过元素、环境、元素关联耦合方式和状态参数正交关联的作业方格,都标记和表达的任一元素、环境、元素关联耦合方式及状态参数的支付作业,用作业时间、作业指令、作业使用价值或经济价值变量、作业状态参数等刻画作业信息。
在本实施方式中,可以将元素属性用元素使用价值计量替代,元素之间的关联耦合方式或系统局部状态可以无形资产替代。这样的数据库在应用上更切合传统习惯。
按作业时间的唯一性,同一系统数据库间期期相连,环环相扣。而不同系统的作业信息存储模块之间,注意作业时间的一致性,方便于拆分和整合。加上所有社会系统数据库体现的时间一致性,则可实现流式计算和处理。
在本发明的一种优选实施方式中,所述M个子数据库存储模块中包括作业信息存储模块和均衡信息存储模块,所述作业信息存储模块存储的信息由作业人员提供,所述均衡信息存储模块内存储区的存储的信息来源于作业信息存储区的存储模块存储的信息。作业信息存储模块以任一社会系统、任一作业信息任一作业主体和作业对象为对象,采集整合系统主体所有人的有价值效率评价和在一定法律制度规则下工作的原始记录信息(包括法律制度的制定和修订),记录采集任一时点任何人的具有唯一性的作业信息,用大数据库构建的基本方法和格式,构建数据库。作业信息存储模块的数据信息具有唯一性、历史性和系统性。每一个社会系统都可以制作自己的作业信息存储模块。个别难以根据作业信息构建制作业信息存储模块的系统,可以在云技术的支持下,用作业相关关联数据信息,生成相应的作业信息存储模块,如农业。任一作业信息存储模块都可以进行价值效率和系统内结构均衡的评判。作业信息存储模块间,也可以在云技术的支持下进行系统价值关系的评判。
作业信息存储模块拆分整合。在云技术的支持下,可以根据进一步提取和了解作业数据信息的需要,选择确定拆分和整合的路径,在一些作业信息存储模块的数据信息的基础上,构建生成另一作业信息存储模块。作业信息存储模块,可以与任一所需要的数据信息链接,从而形成有价值效率准则的数据存储和处理模式。不是以人为主体的系统的运动变化发展的数据信息,在社会系统作业信息存储模块中处理。
作业信息存储模块还允许在法律制度原则下,将帐户中需要保密的任一数据信息,设定为保密内容,并设定密级。
均衡信息存储模块是从某一区域(可大可小,可国内或国际)或国家、某一行业中的所有作业信息存储模块中,以某一元素、环境、元素的关联耦合关系、系统局部状态参数、系统经济价值为考察对象,将其在所有作业信息存储模块中的生产和支付、或供给与需求关系,以及环境影响因素,从作业信息存储模块中提取出来,运用大数据库构建的基本方法,构建而成均衡信息存储模块。用于跨作业子系统的母系统结构均衡评判。在提取时,也可以把该对象相应的汇总数据提取出来。
均衡信息存储模块是从作业信息存储模块中拆分再整合而成。可以求解任一时间、区域或系统中某一系统结构总量均衡,但最终以国家系统总量均衡,做出最后的评判。在国家总量均衡中,主要有企业产品、公共产品、劳动力、货币金融、系统状态保障等五个基本均衡信息存储模块。其中包括国际金融和国际贸易数据变量。
另外,还可以根据作业主体观察、分析、预期决策、设计和作业的需要,将任一过程某一正交方格或一组正交方格中的作业信息作为关键信息,如科研、用电等,并设定数据库的名称和生成路径,如作业时间、行业或区域、群体等,在作业信息存储模块的基础上,通过云技术支持下的拆分和整合,生成以某个别作业信息为主的作业信息模块。个别作业信息,包括作业时间、作业指令、作业使用价值或经济价值变量、作业状态参数等。又可以根据作业特征,分别为执行操作、作业分析、作业预期决策、设计作业、协同与控制作业等。
控制器将每一个期初期末所界定的时间所对应的数据存储模块独立存储,期期相连,每期独立更新,可按时间整合,流式处理,需要注意整体时间一致。
S3,当进行数据查询时,控制器在接收到通过人机交互界面输入的查询请求时,控制器扫描M个子数据库存储模块的名称存储单元中存储的类别,选择N个类别匹配的N个子数据库存储模块进行查询,所述查询请求包括所述查询请求包括期初时间起点、期末时间终点、模块的名称、元素名称、需要考虑的环境因素、元素之间的直接关联耦合方式、元素关联耦合形成局部状态、期间信息内容存储区的任一组存储信息、期初经济价值汇总名称和数据、期末经济价值汇总名称和数据、期间支付信息汇总名称和数据,期间生产信息汇总名称和数据、期间总量数据名称和数据,以及这些查询请求信息的组合;
控制器通过每一个子数据库存储模块的期间信息内容存储子阵列的每一个存储单元的存储地址与期初信息存储阵列存储单元的存储地址和期末信息存储阵列存储单元的组合对应关系,期初信息存储阵列的存储地址与期初使用价值存储子阵列的存储地址和期初货币计量存储子阵列的存储地址的对应关系,以及期末信息存储阵列的存储地址与期末使用价值存储子阵列的存储地址和期末货币计量存储子阵列的存储地址的对应关系查找与所述查询请求对应的期间信息内容存储区的存储内容、期初使用价值、期初货币计量、期末使用价值、期末货币计量以及相应的汇总信息;
S4,数据显示:所述控制器指令人机交互界面对查询内容进行显示。
本发明可具有以下应用:
作业原始记录与社会系统大数据库的生成。所有工作者都根据自己的岗位职责和工作的实际情况,包括作业目的、作业条件、作业时间和作业过程信息等,以前述的数据库构建方式,或可以生成的作业库的方式,填写作业的原始记录,按作业单元、职能部门或单位、独立的系统整体的路径,拆分和整合为独立系统(任何独立核算单位)作业信息存储模块。
以作业时间、行业、区域为拆分整合基本路径,以作业原始记录为基本数据来源,分别拆分整合为行业、区域、国家、国际、或需要的任一市场结构系统的作业信息存储模块。将所有作业信息存储模块整合为一体,与其子数据库,以作业时间、系统元素和状态参数、作业信息等等为关键信息建立链接。使社会系统所有数据成为有价值和均衡评判的,流式记录、计算和处理的,有历史的、系统化的数据库。
快速清晰的价值评判。人的任何行为和组织管理,都需要快速清晰的价值评判,以反馈给行为决策。社会系统作业信息存储模块中,期初期末对每一种元素、元素属性、元素的关联耦合方式、系统状态,都有相应的相对于系统主体而言的使用价值和经济价值评价,而数据库中刻画期间过程的对应的每一列和每一行,都有系统价值效应和价值效率的评价,可以有使用价值,也可有经济价值效率评价,还可以交互评价。在分析、预期子数据库中,还可以进行多结论和多可能评判。
系统经济价值评价也快速和完整,系统整体总支付、总产出、均衡规模、总支付成本、总生产成本、主体权益资产和所有者权益的变化等等,只要原始记录完成,则作业信息存储模块即可以获得经济价值评价。从任一社会系统到所有社会系统。
系统主体核心价值,通过其使用价值和其在系统中的经济价值效应,分析主体核心价值与系统经济价值之间的协同关系。可以以系统主体核心价值和经济价值及其协同关系状态,评价任一社会系统,尤其是社会区域和国家系统的进步。
系统元素之间的关联耦合关系,其使用价值体现在制度、技术、道德文化方面。其经济价值效应,以无形资产的边际效应评判。
系统局部状态,其相对于主体人的使用价值是情景、愿景、艺术、美、公平、温暖、幸福、安全等心理、情感、精神等作用。由此可以将政治、艺术、宗教等内容包括进来,其经济价值仍然以无形资产的边际效应评判。
整合了多种价值评价的社会系统价值关系的评判。用以进行战略和发展路径选择。也用于一致性作业时间评判。
快速全面的均衡评判。均衡是价值效率的成因,也是价值度量的基础。因此,均衡和价值效率一样是行为决定的重要因素,快速的均衡评价和调控是人的行为决策所必要的,由作业信息存储模块快速生成的均衡信息存储模块可以完成。同时,可以根据需要分别运用的结构均衡子数据库、均衡分析子数据库、 均衡预期子数据库、设计均衡子数据库、均衡作业协同和控制的子数据库。可以对任一系统元素、元素的关联耦合方式和系统局部状态进行均衡分析。也可以以系统整体状态进行均衡分析。可以进行有针对性的均衡评判。
快速的作业信息集中分析和处理。运用作业信息存储模块,快速进行作业信息的集中处理。比如:用电量。只要将系统内用电的作业信息集中,即可以获得用电规模和结构,由此进行相应的生产供给调控。可以将一些重要的作业信息存储模块中的作业信息,单独从作业信息存储模块和均衡信息存储模块中提取出来,整合为对某一信息集中分析的作业信息存储模块,如分析、科研、预期、设计、作业协同与控制、主体组织等。
成为大数据的处理模式和云技术的升级方向。大数据库一个有价值准则的大数据的处理模式,又必须在云技术的支持下,才可以运用,同时,又是云技术的升级方向。将作业信息存储模块、均衡信息存储模块一起应用,则构成大数据的基本的处理模式。进行快速的价值评判、均衡评判、流式计算和数据存取。以数据库为基础可以进行新型的管理软件和数据处理软件的开发。开发系列新型的管理软件,设计制作而成人类行为的“仪表盘”。替代或链接现有的经济管理帐户和报表体系。包括财务会计帐户和报表、社会经济统计报表、国民经济帐户和报表。
本发明的应用示例。
根据消费、投资、生产、科研、学习、管理、生活的需要相应的使用。下面是一些应用示例。
消费应用。在需要消费或研究消费某一类产品,则可以查询该类产品的某时间某区域的均衡信息存储模块,则在该时段、该区域的所有该类产品的生产、需求、使用价值、经济价值(价格)等信息都在相应的均衡信息存储模块中,显示出来。而消费者却可以根据某些偏好,查询了解其中的供应商或消费者消费支付使用的情况。进而搜索供应商,和前期的消费者数据。任一商品都可以如此,均衡信息存储模块是可以由作业信息存储模块中的信息数据生成,时间和时间段也可以自由选择。如果希望有专门的分析可以供自己参考,则查询此作业信息存储模块中的分析数据,从其分析的数据中,获得相应的分析的信息。如果希望获得该产品未来均衡状态如何?则选择对应的未来某段时间,相应的预期的数据。设计数据一般是保密的,但经授权的部门可以查询。如果希望了解管理者或管理单位对此均衡的协同控制数据信息,则搜索该均衡信息存储模块的协同控制数据。如果有自己对于该均衡信息存储模块、以及相应供应商或消费者对应的作业信息存储模块,有自己的见解、预期以及对协同与控制的意见和建议,则可以在自己的作业信息存储模块中,作为一种作业,发表对对该均衡信息存储模块或作业信息存储模块的分析、预期,或协同与控制的意见和建议。别人则通过整合的作业信息存储模块,以作业数据信息的方式,查询获得参考。
投资。搜索对应投资产品项目的均衡信息存储模块,国家、区域、行业系 统作业信息存储模块,进而搜索相关企业的作业信息存储模块。按预期的作业信息存储模块和均衡信息存储模块,进行价值评判和均衡评判。
生产。搜索历史的该产品的生产作业信息存储模块,在其数据库中进行分析、预期、重新设计、协同和控制的改进,或建立预期模拟的作业信息存储模块和均衡信息存储模块。保障和改进作业。
科研。科研问题或项目一旦确立,或从作业信息存储模块或其子数据库中发现问题和课题,则将此问题和课题,对应搜索相应的作业信息存储模块或均衡信息存储模块及其子数据库,则可以展开科研。
学习。搜索学习内容和目标的所对应的文献资料的均衡信息存储模块或相应管理服务部门的作业信息存储模块,或教育产品的均衡信息存储模块或教育服务机构的作业信息存储模块。既可以确定需要什么样的服务,又可以查阅相关资料。还可以直接进入与学习内容有关的作业信息存储模块和均衡信息存储模块,参与分析、预期、模拟设计、模拟作业、提出作业协同与控制的意见和建议。
管理。任何管理者,除了填写自己的管理作业记录外,直接查询面对所管理系统的作业信息存储模块,以及相应的子数据库,进行作业状态的观察,同时进行分析、预期、设计、作业协调和控制的决策,可以将一些相应的管理作业信息存储于作业信息存储模块的子数据库中,包括会议讨论与决议等资料、制度或其他技术参数标准等信息,也可以参考相应的子数据库。管理者可以以作业信息存储模块为“沙盘”,进行分析、预期策划决策、设计、发出作业指令指挥作业,并对作业结果负责。
金融企业。在国家系统作业信息存储模块中,获得金融工具的均衡规模,可以在金融行业的作业信息存储模块中,获得各金融企业价值均衡信息存储模块,进行行业环境的分析,可以在自己的作业信息存储模块中,发现自己的运营状态,可以在金融结构信息数据库中,研究市场结构均衡,可以在金融业的某作业信息子数据库中,研究金融市场动态,可以在与客户群或其他行业的价值关系数据库中,研究营销,包括金融工具供给规模的控制。
生活娱乐。进行娱乐项目、产品、节目的均衡信息存储模块的搜索,获得相应的数据信息。
在本说明书的描述中,参考术语“一个实施例”、“一些实施例”、“示例”、“具体示例”、或“一些示例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或者特点包含于本发明的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述不一定指的是相同的实施例或示例。而且,描述的具体特征、结构、材料或者特点可以在任何的一个或多个实施例或示例中以合适的方式结合。
尽管已经示出和描述了本发明的实施例,本领域的普通技术人员可以理解:在不脱离本发明的原理和宗旨的情况下可以对这些实施例进行多种变化、修改、替换和变型,本发明的范围由权利要求及其等同物限定。

Claims (6)

  1. 一种大数据库创建及数据管理方法,其特征在于,建立M个子数据库存储模块,每一个子数据库存储模块具有名称存储单元,用于存储所述子数据库存储模块的名称,所述M为正整数,在每一个子数据库存储模块内进行数据存储和数据更新,以及根据M个子数据库存储模块中的N个子数据库存储模块中存储的内容进行数据查询和数据显示,所述N为不大于M的正整数,具体步骤如下:
    S1,数据存储,
    S11,在存储器的每一个子数据库存储模块内的期初信息存储阵列的期初时间点存储子阵列、期初元素名称存储子阵列、期初环境存储子阵列、期初元素之间的直接关联耦合方式存储子阵列和期初元素关联耦合形成局部状态存储子阵列中分别存储期初时间起点、期初元素名称、期初需要考虑的环境因素、期初元素之间的直接关联耦合方式和期初元素关联耦合形成局部状态;
    在所述存储器的每一个子数据库存储模块内的期末信息存储阵列的期末时间点存储子阵列、期末元素名称存储子阵列、期末环境存储子阵列、期末元素之间的直接关联耦合方式存储子阵列和期末元素关联耦合形成局部状态存储子阵列中分别存储期末时间终点、期末元素名称、期末需要考虑的环境因素、期末元素之间的直接关联耦合方式和期末元素关联耦合形成局部状态;
    所述每一个子数据库存储模块还具有期初使用价值名称存储子阵列、期初货币计量名称存储子阵列、期末使用价值名称存储子阵列和期末货币计量名称存储子阵列、期初使用价值数据存储子阵列、期初货币计量数据存储子阵列、期末使用价值数据存储子阵列和期末货币计量数据存储子阵列,所述期初使用价值名称存储子阵列、期初货币计量名称存储子阵列、期末使用价值名称存储子阵列和期末货币计量名称存储子阵列分别用于存储期初使用价值名称、期初货币计量名称、期末使用价值名称和期末货币计量名称,所述期初信息存储阵列的存储地址分别与期初使用价值数据存储子阵列的存储地址和期初货币计量数据存储子阵列的存储地址一一对应,所述期末信息存储阵子阵列的存储地址分别与期末使用价值数据存储子阵列的存储地址和期末货币计量数据存储子阵列的存储地址一一对应;
    所述每一个子数据库存储模块还具有期初经济价值汇总名称存储子阵列及与其一一对应的期初经济价值汇总数据存储子阵列、还具有期末经济价值汇总名称存储子阵列及与其一一对应的期末经济价值数据汇总存储子阵列,所述期初经济价值汇总名称存储子阵列和期末经济价值汇总名称存储子阵列分别用于存储期初经济价值汇总名称和期末经济价值汇总名称,所述期初经济价值汇总数据存储子阵列的存储地址与期初货币计量名称存储子阵列的存储地址 一一对应;所述期末经济价值汇总数据存储子阵列的存储地址与期末货币计量名称存储子阵列的存储地址一一对应;
    所述每一个子数据库存储模块还具有期间支付信息汇总名称存储子阵列及与其一一对应的期间支付信息汇总数据存储子阵列,所述期间支付信息汇总名称存储子阵列用于存储期间支付信息汇总名称,所述期间支付信息汇总数据存储子阵的存储单元的存储地址与期初信息存储阵列的存储地址一一对应;每一个期间支付信息汇总数据存储子阵列的存储单元用于存储其对应的期初信息存储阵列存储单元的存储地址所对应的所有期间信息内容存储子阵列的存储单元所存储的支付信息汇总;
    所述每一个子数据库存储模块还具有期间信息内容存储子阵列,所述期间信息内容存储子阵列的每一个存储单元的存储地址与且仅与一个期初信息存储阵列存储单元的存储地址和一个期末信息存储阵列存储单元的存储地址的组合一一对应;
    所述每一个子数据库存储模块还具有期间生产信息汇总名称存储子阵列及与其一一对应的期间生产信息汇总数据存储子阵列,所述期间生产信息汇总名称存储子阵列用于存储期间生产信息汇总名称,所述期间生产信息汇总数据存储子阵列的存储地址与期末信息存储阵列存储单元的存储地址一一对应,每一个期间生产信息汇总数据存储子阵列的存储单元用于存储其对应的期末信息存储阵列存储单元的存储地址所对应的所有期间信息内容存储子阵列的存储单元所存储的生产信息汇总;
    所述每一个子数据库存储模块还具有总量数据存储子阵列,所述总量数据存储子阵列的存储地址与期间生产信息汇总存储子阵列的存储地址和期间支付信息汇总存储子阵列的存储地址的组合,以及期初经济价值数据汇总存储子阵列的存储地址和期末经济价值数据汇总存储子阵列的存储地址的组合一一对应;
    S12:用户通过人机交互界面分别向所述期初使用价值数据存储子阵列、期初货币计量数据存储子阵列、期末使用价值数据存储子阵列、期末货币计量数据存储子阵列和期间信息内容存储子阵列的存储地址内输入存储内容并存储;
    S2,数据更新,
    控制器将期初货币计量数据存储子阵列存储的内容汇总,根据期初经济价值汇总数据存储子阵列的存储地址与期初货币计量名称存储子阵列的存储地址的对应关系将所述汇总内容存储入相应的期初经济价值汇总数据存储子阵列的存储单元内,
    控制器将期末货币计量数据存储子阵列存储的内容汇总,根据期末经济价值汇总数据存储子阵列的存储地址与期末货币计量名称存储子阵列的存储地址的对应关系,将所述汇总数据存储入相应的期末经济价值汇总数据存储子阵列的存储单元内;
    控制器将每一个期初信息存储阵列存储单元的存储地址对应的期间信息内容存储子阵列的存储地址内存储的支付信息汇总,根据期间支付信息汇总数据存储子阵的存储单元的存储地址与期初信息存储阵列的存储地址的对应关系,将所述汇总数据存储入相应的期间支付信息汇总数据存储子阵的存储单元内;
    控制器将每一个期末信息存储阵列存储单元的存储地址对应的期间信息内容存储子阵列的存储地址内存储的生产信息汇总,并根据期间生产信息汇总存储子阵列的存储地址与期末信息存储阵列存储单元的存储地址的对应关系查找与所述期末信息存储阵列存储单元对应的期间生产信息汇总存储子阵列的存储地址,将所述汇总内容存储入所述期间生产信息汇总存储子阵列的存储地址;
    控制器根据总量数据存储子阵列的存储地址与期间生产信息汇总存储子阵列的存储地址和期间支付信息汇总存储子阵列的存储地址的组合的对应关系,以及根据总量数据存储子阵列的存储地址与期初经济价值数据汇总存储子阵列的存储地址和期末经济价值数据汇总存储子阵列的存储地址的组合的对应关系,将与一个总量数据存储子阵列的存储地址对应的期间生产信息汇总存储子阵列存储地址内存储的内容汇总,将所述的一个期间总量数据存储子阵列的存储地址对应的期间支付汇总存储子阵列的存储地址内存储的内容汇总,更新所述的一个期间总量数据存储子阵列的存储地址内的存储内容;
    将与一个总量数据存储子阵列的存储地址对应的期末经济价值数据汇总存储子阵列的存储地址内存储的内容减去与所述的一个总量数据存储子阵列的存储地址对应的期初经济价值数据汇总存储子阵列的存储地址内存储的内容,更新所述的一个期间总量数据存储子阵列的存储地址内的存储内容;
    S3,数据查询:当控制器在接收到通过人机交互界面输入的查询请求时,控制器扫描M个子数据库存储模块的名称存储单元中存储的类别,选择N个类别匹配的N个子数据库存储模块进行查询,所述查询请求包括期初时间起点、期末时间终点、模块的名称、元素名称、需要考虑的环境因素、元素之间的直接关联耦合方式、元素关联耦合形成局部状态、期间信息内容存储区的任一组存储信息、期初经济价值汇总名称和数据、期末经济价值汇总名称和数据、期间支付信息汇总名称和数据,期间生产信息汇总名称和数据、期间总量数据,以及这些查询请求信息的组合;
    控制器通过每一个子数据库存储模块的期间信息内容存储子阵列的每一个存储单元的存储地址与期初信息存储阵列存储单元的存储地址和期末信息存储阵列存储单元的组合对应关系,期初信息存储阵列的存储地址与期初使用价值存储子阵列的存储地址和期初货币计量存储子阵列的存储地址的对应关系,以及期末信息存储阵列的存储地址与期末使用价值存储子阵列的存储地址和期末货币计量存储子阵列的存储地址的对应关系查找与所述查询请求对应的期间信息内容存储区的存储内容、期初使用价值、期初货币计量、期末使用 价值、期末货币计量以及相应的汇总信息;
    S4,数据显示:所述控制器指令人机交互界面对查询内容进行显示。
  2. 如权利要求1所述的大数据库创建及数据管理方法,其特征在于,所述期初元素名称存储子阵列的存储单元与所述期末元素名称存储子阵列的存储单元的数量相同,所述期初环境存储子阵列的存储单元与所述期末环境存储子阵列的存储单元的数量相同,所述期初元素之间的直接关联耦合方式存储子阵列的存储单元与期末元素之间的直接关联耦合方式存储子阵列的存储单元的数量相同,所述期初元素关联耦合形成局部状态存储子阵列的存储单元与期末元素关联耦合形成局部状态存储子阵列的存储单元的数量相同。
  3. 如权利要求1所述的大数据库创建及数据管理方法,其特征在于,所述期初元素名称与期末元素名称一一对应,期初环境名称与期末环境名称一一对应,期初元素之间的直接关联耦合方式与期末元素之间的直接关联耦合方式一一对应,期初元素关联耦合形成局部状态与期末元素关联耦合形成局部状态一一对应。
  4. 如权利要求1所述的大数据库创建及数据管理方法,其特征在于,所述M个子数据库存储模块中包括作业信息存储模块和均衡信息存储模块,所述作业信息存储模块存储的信息由作业人员提供,所述均衡信息存储模块内存储的信息来源于均衡考察对象相应的作业信息存储模块里存储的信息,均衡信息存储模块内的总量信息,由控制器汇总。
  5. 如权利要求1所述的大数据库创建及数据管理方法,其特征在于,所述显示方法为:
    将子数据库存储模块名称项显示在正交表格的最左上一栏;
    将期初时间起点显示在子数据库存储模块名称项的下一栏;
    将期末时间终点显示在子数据库存储模块名称项的右一栏;
    在期初时间起点项的下栏的左侧分别显示期初元素名称、期初需要考虑的环境因素、期初元素之间的直接关联耦合方式和期初系统元素关联耦合形成局部状态、期初经济价值汇总名称,在期初时间起点项的下栏的左侧分别并列显示期初使用价值和期初货币计量;
    在期末时间终点项的右栏的上栏分别显示期末元素名称、期末需要考虑的环境因素、期末元素之间的直接关联耦合方式和期末系统元素关联耦合形成局部状态、期末经济价值汇总名称,在期末时间终点项的右栏的下栏分别并列显示期末使用价值和期末货币计量;
    在期末经济价值汇总数据的下栏显示期间支付信息汇总名称;
    正交表格的期初时间起点所处的一列和期末时间终点所处的一行正交形成的存储区域为期间信息内容存储区;
    在期间信息内容存储区之下为期间生产信息汇总存储区;
    在期间信息内容存储区之右为期间支付信息汇总存储区;
    在正交表格的右下方显示期间总量数据存储区。
  6. 如权利要求1所述的大数据库创建及数据管理方法,其特征在于,所述步骤S4之后还具有如下步骤:
    S5,在云技术的支持下,根据进一步提取和了解作业数据信息的需要,选择确定拆分和整合的路径,在作业信息存储模块的数据信息的基础上,构建生成另一作业信息存储模块;
    从某一区域或国家、某一行业中的所有作业信息存储模块中,以某一元素、环境、元素的关联耦合关系、系统局部状态参数、系统经济价值为考察对象,将其在所有作业信息存储模块中的生产和支付、或供给与需求关系,以及环境影响因素,从作业信息存储模块中提取出来,运用权利要求1所述的大数据库创建的方法,构建而成均衡信息存储模块。
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