CN101706917A - Method and system for restoring project cost - Google Patents

Method and system for restoring project cost Download PDF

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Publication number
CN101706917A
CN101706917A CN200910250744A CN200910250744A CN101706917A CN 101706917 A CN101706917 A CN 101706917A CN 200910250744 A CN200910250744 A CN 200910250744A CN 200910250744 A CN200910250744 A CN 200910250744A CN 101706917 A CN101706917 A CN 101706917A
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project
semi
cost
upstream node
coefficient
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林国仁
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Kingdee Software China Co Ltd
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Kingdee Software China Co Ltd
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Abstract

The embodiment of the invention relates to the field of cost restoration, and discloses a method and a system for restoring the project cost. The method for restoring the project cost comprises the following steps of: acquiring information on a semi-finished product of an upstream node, wherein the information on the semi-finished product at least comprises a mark and the cost of the semi-finished product; according to the mark of the semi-finished product, determining at least one project coefficient corresponding to the mark of the semi-finished product from a corresponding relation between the stored mark of the semi-finished product and at least one project coefficient, wherein the project coefficient is the ratio of the project cost to the cost of the semi-finished product; and calculating the product of at least one project coefficient and the cost of the semi-finished product respectively to obtain the cost of at least one project. The embodiment of the invention can also restore the cost of each project in the cost of the semi-finished product of the upstream node, and is favorable for a user to analyze the project cost in the cost of the semi-finished product of the upstream node.

Description

A kind of method of reducing of project cost and system
Technical field
The present invention relates to the cost restoration field, relate in particular to a kind of method of reducing and system of project cost.
Background technology
Cost of products is calculated the method for fractional steps and is comprised progressively the carry down method of fractional steps and the parallel method of fractional steps of carrying down.Wherein, the method of fractional steps of progressively carrying down requires each node (from upstream node to downstream node) to calculate separately semi-finished product cost respectively, the semi-finished product cost that last node calculates is the cost of products of completion, so the method for fractional steps of progressively carrying down is called " semi-finished product cost method " again.Wherein, the input cost that the parallel method of fractional steps of carrying down requires each node to calculate this node respectively should be charged to " share " of cost of products, " share " that each node should be charged to cost of products gathers at last, calculate the cost of products of completion, therefore, the parallel method of fractional steps of carrying down is called " not calculating the semi-finished product cost method " again.
In the method for fractional steps of progressively carrying down, the semi-finished product cost of upstream node can be carried in the semi-finished product cost of downstream node with half-finished transfer and go, and promptly semi-finished product cost shifts with the transfer of material object.Therefore, half cost of products of each node had both comprised the input cost of this node, also comprise upstream node carry down into semi-finished product cost.And in the parallel method of fractional steps of carrying down, the input cost of upper layer node is with not carrying in the semi-finished product cost of downstream node with half-finished transfer, the input cost of each node only is the cost that this section drops into when naming a person for a particular job the semi-manufacture of semi-manufacture processing cost node of upstream node, does not comprise half cost of products of upstream node.
In the method for fractional steps of progressively carrying down, the semi-finished product cost of upstream node is used as an integral body and carries down in some projects of downstream node, such as raw material cost, manufacturing expenses etc.Because the semi-finished product cost of upstream node also is made of several projects, therefore the semi-finished product cost of upstream node is done in some projects of the as a whole downstream node of carrying down, will certainly obscure the bona fide cost of each project in the semi-finished product cost of upstream node, be unfavorable for the project cost analysis of user upstream node.
Summary of the invention
The embodiment of the invention provides a kind of method of reducing and system of project cost, can reduce the cost of projects in the semi-finished product cost of upstream node.
For solving the problems of the technologies described above, the embodiment of the invention provides following technical scheme:
The embodiment of the invention provides a kind of method of reducing of project cost, comprising:
Obtain the semi-manufacture information of upstream node; Described semi-manufacture information comprises described half-finished sign and cost at least;
According to described half-finished sign, from the corresponding relation of described half-finished sign and at least one project coefficient of storage, determine described half-finished at least one corresponding project coefficient that identifies; Described project coefficient is the ratio that project cost accounts for described semi-finished product cost;
Calculate the product of described at least one project coefficient and described semi-finished product cost respectively, obtain the cost of described at least one project.
The embodiment of the invention provides a kind of restoring system of project cost, comprising:
Acquisition module is used to obtain the semi-manufacture information of upstream node; Described semi-manufacture information comprises described half-finished sign and cost at least;
Determination module is used for according to described half-finished sign, determines described half-finished at least one corresponding project coefficient that identifies from the corresponding relation of described half-finished sign and at least one project coefficient of storage; Described project coefficient is the ratio that project cost accounts for described semi-finished product cost;
Computing module is used for calculating respectively the product of described at least one project coefficient and described semi-finished product cost, obtains the cost of described at least one project.
Compared with prior art, the embodiment of the invention can be after obtaining the semi-manufacture information of upstream node, obtain at least one corresponding project coefficient according to the semi-manufacture sign, and calculate the product of at least one project coefficient and semi-finished product cost respectively, thereby obtain the cost of each project in the semi-finished product cost of upstream node.What the embodiment of the invention can be reduced projects in the semi-finished product cost of upstream node really is cost, helps the user to the project cost analysis in the semi-finished product cost of upstream node.
Description of drawings
In order to be illustrated more clearly in the technical scheme in the embodiment of the invention, to do to introduce simply to the accompanying drawing of required use among the embodiment below, apparently, accompanying drawing in describing below only is some embodiments of the present invention, for those of ordinary skills, under the prerequisite of not paying creative work, can also obtain other accompanying drawing according to these accompanying drawings.
The process flow diagram of the method for reducing of a kind of project cost of providing in the embodiment of the invention is provided Fig. 1;
The process flow diagram of the method for reducing of the another kind of project cost that provides in the embodiment of the invention is provided Fig. 2;
The structural drawing of the restoring system of a kind of project cost of providing in the embodiment of the invention is provided Fig. 3;
The structural drawing of the restoring system of the another kind of project cost that provides in the embodiment of the invention is provided Fig. 4;
The structural drawing of the restoring system of the another kind of project cost that provides in the embodiment of the invention is provided Fig. 5;
The structural drawing of the restoring system of another project cost of providing in the embodiment of the invention is provided Fig. 6.
Embodiment
Below in conjunction with the accompanying drawing in the embodiment of the invention, the technical scheme in the embodiment of the invention is clearly and completely described, obviously, described embodiment only is the present invention's part embodiment, rather than whole embodiment.Based on the embodiment among the present invention, those of ordinary skills belong to the scope of protection of the invention not making the every other embodiment that is obtained under the creative work prerequisite.
Embodiment one:
See also Fig. 1, the process flow diagram of the method for reducing of a kind of project cost of providing in the embodiment of the invention is provided Fig. 1.The method of reducing of the project cost that the embodiment of the invention provides can reduce based on the cost of projects in the semi-finished product cost of the formula method of fractional steps of progressively carrying down.Related node can be understood as the controller on each production stage in the production run in present embodiment and the subsequent embodiment.As shown in Figure 1, this method can comprise:
101, obtain the semi-manufacture information of upstream node, this semi-manufacture information comprises above-mentioned half-finished sign and cost at least;
Wherein, each half-finished sign is different, is used to half-finished classification of representing that different nodes is produced. such as, the semi-manufacture of first node production can identify semi-manufacture and be designated " 1 "; The semi-manufacture of second node production can identify semi-manufacture and be designated " 2 "; The semi-manufacture of the 3rd node production can identify semi-manufacture and be designated " 3 " or the like, by that analogy; Perhaps, the semi-manufacture of first node production can identify semi-manufacture and be designated " A "; The semi-manufacture of second node production can identify semi-manufacture and be designated " B "; The semi-manufacture of the 3rd node production can identify semi-manufacture and be designated " C " or the like, by that analogy.
In the production environment of reality, the semi-manufacture information of upstream node can be stored in the upstream node, also can be stored in the local data base, shown in obtain upstream node in the step 101 semi-manufacture information can adopt in the following dual mode any one:
(1) receives the message of carrying semi-manufacture information that upstream node sends;
(2) from the message that receives, read semi-manufacture information.
102,, from the corresponding relation of above-mentioned half-finished sign and at least one project coefficient of storage, determine above-mentioned half-finished at least one corresponding project coefficient that identifies according to above-mentioned half-finished sign; Wherein, the project coefficient is the ratio that project cost accounts for above-mentioned semi-finished product cost;
Wherein, project is the classification of " expense ", is to the division of producing cost by economic use, is used to reflect the expenditure pattern of cost objective.In manual account, project is the most obvious subject of production cost section purpose.Common project comprises raw material expense, manufacturing expenses, wage or the like.
Wherein, the project coefficient is a scale-up factor, has reflected that the amount of money of unitem cost accounts for the ratio of total cost.
103, calculate the product of above-mentioned at least one project coefficient and above-mentioned semi-finished product cost respectively, obtain the cost of above-mentioned at least one project.
For instance, be the ratio that the amount of money of project accounts for total cost because the project coefficient represents, make product with half-finished cost that step 101 is obtained respectively so step 102 can be determined each project coefficient, can obtain the cost of each project.
Further, if at least one project coefficient that step 102 is determined, if existing some project coefficients to be merged by weighting by at least two sub-project coefficients constitutes, then the project cost method of reducing that provides of the embodiment of the invention can also calculate on the basis of cost of each project in above-mentioned steps 103, further comprises the steps:
Respectively with above-mentioned at least two sub-project coefficients make product by at least two sub-project coefficients by the project cost that weighting merges the project coefficient that constitutes with what calculate, obtain the cost of above-mentioned at least two sub-projects.
Further, the cost reversion method that the embodiment of the invention provides can be before above-mentioned steps 101, the shared ratio of each project cost in the semi-finished product cost of elder generation's calculating upstream node, wherein, the shared ratio of each project cost is as a project coefficient of the semi-finished product cost of upstream node; The corresponding relation of the semi-manufacture sign of each project coefficient of the semi-finished product cost of storage upstream node and upstream node.
The embodiment of the invention can be after obtaining the semi-manufacture information of upstream node, obtain at least one corresponding project coefficient according to the semi-manufacture sign, and calculate the product of at least one project coefficient and semi-finished product cost respectively, thereby obtain the cost of each project in the semi-finished product cost of upstream node.What the embodiment of the invention can be reduced projects in the semi-finished product cost of upstream node really is cost, helps the user to the project cost analysis in the semi-finished product cost of upstream node.
Embodiment two:
See also Fig. 2, the process flow diagram of the another kind of project cost method of reducing that provides in the embodiment of the invention is provided Fig. 2.The another kind of project cost method of reducing that the embodiment of the invention provides can reduce based on the semi-finished product cost of the formula method of fractional steps of progressively carrying down, and obtains the bona fide cost of projects.As shown in Figure 2, this method can comprise:
201, calculate the shared ratio of each project cost in the semi-finished product cost of upstream node, wherein, the shared ratio of each project cost is as a project coefficient of the semi-finished product cost of upstream node;
202, the corresponding relation of the semi-manufacture sign of each project coefficient of the semi-finished product cost of storage upstream node and upstream node;
203, obtain the semi-manufacture information of upstream node, this semi-manufacture information comprises above-mentioned half-finished sign and cost at least;
Wherein, each half-finished sign is different, is used to half-finished classification of representing that different nodes is produced.Such as, the semi-manufacture of first node production can identify semi-manufacture and be designated " 1 "; The semi-manufacture of second node production can identify semi-manufacture and be designated " 2 "; The semi-manufacture of the 3rd node production can identify semi-manufacture and be designated " 3 " or the like, by that analogy; Perhaps, the semi-manufacture of first node production can identify semi-manufacture and be designated " A "; The semi-manufacture of second node production can identify semi-manufacture and be designated " B "; The semi-manufacture of the 3rd node production can identify semi-manufacture and be designated " C " or the like, by that analogy.
In the production environment of reality, the semi-manufacture information of upstream node can be stored in the upstream node, also can be stored in the local data base, shown in obtain upstream node in the step 101 semi-manufacture information can adopt in the following dual mode any one:
(1) receives the message of carrying semi-manufacture information that upstream node sends;
(2) from the message that receives, read semi-manufacture information.
204,, from the corresponding relation of above-mentioned half-finished sign and at least one project coefficient of storage, determine above-mentioned half-finished at least one corresponding project coefficient that identifies according to above-mentioned half-finished sign; Wherein, the project coefficient is the ratio that project cost accounts for above-mentioned semi-finished product cost;
Wherein, project is the classification of " expense ", is to the division of producing cost by economic use, is used to reflect the expenditure pattern of cost objective.In manual account, project is the most obvious subject of production cost section purpose.Common project comprises raw material expense, manufacturing expenses, wage or the like.
Wherein, the project coefficient is a scale-up factor, has reflected that the amount of money of unitem cost accounts for the ratio of total cost.
205, calculate the product of above-mentioned at least one project coefficient and above-mentioned semi-finished product cost respectively, obtain the cost of above-mentioned at least one project.
For instance, be the ratio that the amount of money of project accounts for total cost because the project coefficient represents, so each project coefficient that step 204 is determined can be made product with half-finished cost that step 203 is obtained respectively, can obtain the cost of each project.
Further, if at least one project coefficient that step 204 is determined, if existing some project coefficients to be merged by weighting by at least two sub-project coefficients constitutes, then the project cost method of reducing that provides of the embodiment of the invention can also calculate on the basis of cost of each project in above-mentioned steps 205, further comprises the steps:
Respectively with above-mentioned at least two sub-project coefficients make product by at least two sub-project coefficients by the project cost that weighting merges the project coefficient that constitutes with what calculate, obtain the cost of above-mentioned at least two sub-projects.
The another kind of project cost method of reducing that provides of embodiment is elaborated with way of example below for a better understanding of the present invention.
Suppose in production environment, to exist node 1 and node 2 based on the formula method of fractional steps of progressively carrying down; Wherein, when node 1 was produced semi-manufacture, semi-manufacture were designated " 1 ", and the cost of projects of the semi-finished product cost of node 1 is as shown in table 1 below:
Starting material A takes Starting material B takes Starting material C takes Manufacturing expenses Labor wage
??100 ??400 ??350 ??150 ??100
Table 1
Wherein, starting material A takes, as a project of the semi-finished product cost of node 1, promptly the semi-manufacture of node 1 have 4 projects respectively for starting material B expense, starting material C expense, manufacturing expenses and labor wage.
After node 1 was produced semi-manufacture, each project cost of semi-finished product cost that can computing node 1 and the proportionate relationship of semi-finished product cost were respectively as each project coefficient of the semi-finished product cost of node 1.
Among the embodiment, each project coefficient of the semi-finished product cost of node 1 can adopt the mode of configuration file to store, and is as shown in table 2:
Project The project coefficient
Starting material A takes ??0.1
Starting material B takes ??0.4
Starting material C takes ??0.35
Manufacturing expenses ??0.15
Labor wage ??0.1
Table 2
Carry out corresponding with half-finished sign of node 1 each project coefficient of the semi-finished product cost of node 1 and storage, as shown in table 3 below:
Figure G2009102507448D0000071
Table 3
After storing corresponding relation as shown in table 3, the semi-manufacture information of node 1 can be carried in the message, and be sent to node 2; Wherein, semi-manufacture information can include but not limited to semi-finished product cost and sign;
For node 2, can from the message that node 1 sends, read the semi-manufacture sign of node 1, and identify according to the semi-manufacture of node 1, from corresponding relation shown in Figure 3, determine project coefficient as shown in Figure 2; Wherein, 4 project coefficients have been comprised;
Then, 4 project coefficients determining are multiplied each other with the entrained semi-finished product cost of message that node 1 sends respectively, can obtain the cost of 4 projects as shown in Figure 1, thereby obtained the cost of projects of the semi-finished product cost of upstream node.
The embodiment of the invention can be after obtaining the semi-manufacture information of upstream node, obtain at least one corresponding project coefficient according to the semi-manufacture sign, and calculate the product of at least one project coefficient and semi-finished product cost respectively, thereby obtain the cost of each project in the semi-finished product cost of upstream node.What the embodiment of the invention can be reduced projects in the semi-finished product cost of upstream node really is cost, helps the user to the project cost analysis in the semi-finished product cost of upstream node.
See also Fig. 3, the structural drawing of a kind of cost restoration system that provides in the embodiment of the invention is provided Fig. 3.As shown in Figure 3, this system can comprise:
Acquisition module 301 is used to obtain the semi-manufacture information of upstream node, and this semi-manufacture information comprises above-mentioned half-finished sign and cost at least;
Determination module 302 is used for half-finished sign of obtaining according to acquisition module 301, determines above-mentioned half-finished at least one corresponding project coefficient that identifies from the corresponding relation of above-mentioned half-finished sign of storage and at least one project coefficient; Wherein, the project coefficient is the ratio that project cost accounts for above-mentioned semi-finished product cost;
Computing module 303 is used for calculating respectively the product of above-mentioned at least one project coefficient and above-mentioned semi-finished product cost, obtains the cost of above-mentioned at least one project.
Further, if at least one project coefficient that determination module 302 is determined, existing some project coefficients to be merged by weighting by at least two sub-project coefficients constitutes, then computing module 303 can also be made product with at least two above-mentioned sub-project coefficients by at least two sub-project coefficients respectively by the project cost that weighting merges the project coefficient that constitutes with what calculate, obtains the cost of at least two above-mentioned sub-projects.
See also Fig. 4, the structural drawing of the another kind of project cost restoring system that provides in the embodiment of the invention is provided Fig. 4.Project cost restoring system shown in Figure 4 is to have increased with lower module on the basis of project cost restoring system shown in Figure 3:
Computing module 304 is used for calculating the shared ratio of each project cost of semi-finished product cost of upstream node, and wherein, the shared ratio of each project cost is as a project coefficient of the semi-finished product cost of upstream node;
Memory module 305 is used to store the corresponding relation of the semi-manufacture sign of each the project coefficient of semi-finished product cost of upstream node and upstream node.
At this moment, half-finished sign that determination module 302 specifically can obtain according to acquisition module 301 is determined above-mentioned half-finished at least one corresponding project coefficient that identifies from the corresponding relation of above-mentioned half-finished sign of memory module 305 storages and at least one project coefficient.
See also Fig. 5, the structural drawing of another project cost restoring system of providing in the embodiment of the invention is provided Fig. 5.As shown in Figure 5, the acquisition module 301 of this system can comprise reception submodule 3011 and reading submodule 3012, wherein,
Receive submodule 3011, be used to receive the message of carrying semi-manufacture information that upstream node sends;
Reading submodule 3012 is used for reading semi-manufacture information from the message that receives submodule 3011 receptions.
See also Fig. 6, the structural drawing of another project cost restoring system of providing in the embodiment of the invention is provided Fig. 6.As shown in Figure 6, the acquisition module 301 of this system can comprise second reading submodule 3013, wherein,
Second reading submodule 3013 is used for reading from local data base the semi-manufacture information of upstream node.
The project cost restoring system that the embodiment of the invention provides can be after obtaining the semi-manufacture information of upstream node, obtain at least one corresponding project coefficient according to the semi-manufacture sign, and calculate the product of at least one project coefficient and semi-finished product cost respectively, thereby obtain the cost of each project in the semi-finished product cost of upstream node. what the embodiment of the invention can be reduced projects in the semi-finished product cost of upstream node really is cost, helps the user to the project cost analysis in the semi-finished product cost of upstream node.
One of ordinary skill in the art will appreciate that: all or part of step that realizes said method embodiment can be finished by the relevant hardware of programmed instruction, aforesaid program can be stored in the computer read/write memory medium, this program is carried out the step that comprises said method embodiment when carrying out; And aforesaid storage medium comprises: various media that can be program code stored such as ROM (read-only memory), random access device, magnetic disc or CD.
More than the method for reducing and the system of a kind of project cost that the embodiment of the invention provided is described in detail, used specific case herein principle of the present invention and embodiment are set forth, the explanation of above embodiment just is used for helping to understand method of the present invention and core concept thereof; Simultaneously, for one of ordinary skill in the art, according to thought of the present invention, the part that all can change in specific embodiments and applications to sum up can get, and this description should not be construed as limitation of the present invention.

Claims (10)

1. the method for reducing of a project cost is characterized in that, comprising:
Obtain the semi-manufacture information of upstream node; Described semi-manufacture information comprises described half-finished sign and cost at least;
According to described half-finished sign, from the corresponding relation of described half-finished sign and at least one project coefficient of storage, determine described half-finished at least one corresponding project coefficient that identifies; Described project coefficient is the ratio that project cost accounts for described semi-finished product cost;
Calculate the product of described at least one project coefficient and described semi-finished product cost respectively, obtain the cost of described at least one project.
2. method of reducing according to claim 1 is characterized in that, is obtaining the semi-manufacture information of upstream node, also comprises:
Calculate the shared ratio of each project cost in the semi-finished product cost of upstream node, the shared ratio of described each project cost is as a project coefficient of the semi-finished product cost of upstream node;
The corresponding relation of the semi-manufacture sign of each project coefficient of the semi-finished product cost of storage upstream node and upstream node.
3. method of reducing according to claim 1 is characterized in that, the described semi-manufacture information of obtaining upstream node comprises:
Receive the message of carrying semi-manufacture information that upstream node sends;
From described message, read described semi-manufacture information.
4. method of reducing according to claim 1 is characterized in that, the described semi-manufacture information of obtaining upstream node comprises:
From local data base, read the semi-manufacture information of described upstream node.
5. according to each described method of reducing of claim 1 to 4, it is characterized in that constitute if any one project coefficient is merged by weighting by at least two sub-project coefficients, then described method also comprises:
Respectively with described at least two sub-project coefficients make product by at least two sub-project coefficients by the project cost that weighting merges the project coefficient that constitutes with what calculate, obtain the cost of described at least two sub-projects.
6. the restoring system of a project cost is characterized in that, comprising:
Acquisition module is used to obtain the semi-manufacture information of upstream node; Described semi-manufacture information comprises described half-finished sign and cost at least;
Determination module is used for according to described half-finished sign, determines described half-finished at least one corresponding project coefficient that identifies from the corresponding relation of described half-finished sign and at least one project coefficient of storage; Described project coefficient is the ratio that project cost accounts for described semi-finished product cost;
Computing module is used for calculating respectively the product of described at least one project coefficient and described semi-finished product cost, obtains the cost of described at least one project.
7. restoring system according to claim 6 is characterized in that, also comprises:
Computing module is used for calculating the shared ratio of each project cost of semi-finished product cost of upstream node, and the shared ratio of described each project cost is as a project coefficient of the semi-finished product cost of upstream node;
Memory module is used to store the corresponding relation of the semi-manufacture sign of each the project coefficient of semi-finished product cost of upstream node and upstream node;
Described determination module specifically is used for according to described half-finished sign, determines described half-finished at least one corresponding project coefficient that identifies from the corresponding relation of described half-finished sign of described memory module storage and at least one project coefficient.
8. restoring system according to claim 6 is characterized in that, described acquisition module comprises:
Receive submodule, be used to receive the message of carrying semi-manufacture information that upstream node sends;
Reading submodule is used for reading described semi-manufacture information from described message.
9. restoring system according to claim 6 is characterized in that, described acquisition module comprises:
Second reading submodule is used for reading from local data base the semi-manufacture information of described upstream node.
10. according to each described restoring system of claim 6 to 9, it is characterized in that, if being merged by weighting by at least two sub-project coefficients, any one project coefficient constitutes, then described computing module also is used for respectively with described at least two sub-project coefficients making product by at least two sub-project coefficients by the project cost that weighting merges the project coefficient that constitutes with what calculate, obtains the cost of described at least two sub-projects.
CN200910250744A 2009-12-10 2009-12-10 Method and system for restoring project cost Pending CN101706917A (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105184443A (en) * 2015-07-29 2015-12-23 浪潮通用软件有限公司 Cost recovery method and device
CN110428134A (en) * 2019-06-28 2019-11-08 唐山钢铁集团有限责任公司 Iron and steel enterprise's day-rate cost accounting method based on SAP platform
CN111652652A (en) * 2020-06-09 2020-09-11 苏宁云计算有限公司 Cost calculation method and device for calculation platform, computer equipment and storage medium

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105184443A (en) * 2015-07-29 2015-12-23 浪潮通用软件有限公司 Cost recovery method and device
CN110428134A (en) * 2019-06-28 2019-11-08 唐山钢铁集团有限责任公司 Iron and steel enterprise's day-rate cost accounting method based on SAP platform
CN110428134B (en) * 2019-06-28 2023-05-23 唐山钢铁集团有限责任公司 SAP platform-based daily cost accounting method for iron and steel enterprises
CN111652652A (en) * 2020-06-09 2020-09-11 苏宁云计算有限公司 Cost calculation method and device for calculation platform, computer equipment and storage medium
WO2021249350A1 (en) * 2020-06-09 2021-12-16 苏宁易购集团股份有限公司 Cost calculation method and apparatus of calculation platform, and computer device and storage medium
CN111652652B (en) * 2020-06-09 2022-11-22 苏宁云计算有限公司 Cost calculation method and device for calculation platform, computer equipment and storage medium

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Application publication date: 20100512