CN108377270B - Method and system for reporting and managing equipment use data - Google Patents

Method and system for reporting and managing equipment use data Download PDF

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CN108377270B
CN108377270B CN201810233326.7A CN201810233326A CN108377270B CN 108377270 B CN108377270 B CN 108377270B CN 201810233326 A CN201810233326 A CN 201810233326A CN 108377270 B CN108377270 B CN 108377270B
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CN108377270A (en
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任传贇
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Yunshen Information Technology Shanghai Co ltd
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/01Protocols
    • H04L67/12Protocols specially adapted for proprietary or special-purpose networking environments, e.g. medical networks, sensor networks, networks in vehicles or remote metering networks
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/50Network services
    • H04L67/60Scheduling or organising the servicing of application requests, e.g. requests for application data transmissions using the analysis and optimisation of the required network resources
    • H04L67/62Establishing a time schedule for servicing the requests

Abstract

The invention provides a method and a system for reporting and managing equipment use data, wherein the method comprises the following steps: s1, acquiring current sample data of the current use state of the equipment and historical sample data of the use state of the equipment in each historical unit time period in a preset window period; s2, calculating the data reporting period of the equipment use data according to the current sample data and each historical sample data; s3, if the timing time of the timer is greater than or equal to the data reporting period, uploading the use state of the equipment and/or the current sample data, and resetting the initial value of the timer and the preset window period; and S4, if not, the use state and/or the current sample data of the equipment are/is abandoned. The invention enables the uploading of the data to better meet the uploading requirement, reduces the uploading frequency and reduces the system power consumption.

Description

Method and system for reporting and managing equipment use data
Technical Field
The present invention relates to the field of data management, and in particular, to a method and system for reporting and managing device usage data.
Background
With the progress of science and technology, the technology of the internet of things is developed better and better nowadays. The mode of things and cloud brings great convenience to work and life of people.
In an internet of things system, each device often uploads a lot of use data to a server or a cloud, and a user can check whether the current device works normally or know the current state of the device through the internet. For the data uploading method, many current devices upload data at regular time or upload data in real time, so that the power consumption is very high, and for many low-power-consumption devices, the data uploading mode is very cumbersome.
Therefore, in order to solve the above problem, the present invention provides a method and a system for reporting and managing device usage data.
Disclosure of Invention
The invention aims to provide a method and a system for reporting and managing equipment use data, so that the data uploading is more in line with the uploading requirement, the uploading frequency is reduced, and the system power consumption is reduced.
The technical scheme provided by the invention is as follows:
the invention provides a method for reporting and managing equipment use data, which comprises the following steps: s1, acquiring current sample data of the current use state of the equipment and historical sample data of the use state of the equipment in each historical unit time interval; s2, calculating the data reporting period of the equipment use data according to the current sample data and each historical sample data; the device usage data comprises a device usage status; s3, if the timing time of the timer is larger than or equal to the data reporting period, uploading the use state of the equipment and/or the current sample data, and resetting the initial value of the timer; and S4, if not, the uploading of the use state and/or the current sample data of the equipment is abandoned.
Preferably, step S1 specifically includes: s11, if the current use state of the equipment or the use state of the equipment in each historical unit time interval is used, defining the current sample data or the historical sample data as a first parameter; otherwise, defining the current sample data or the historical sample data as a second parameter.
Preferably, step S2 specifically includes: s21, calculating characteristic parameters according to the current sample data and each historical sample data; s22, calculating the data reporting period of the device using data according to the characteristic parameters.
Preferably, step S21 specifically includes: s211, if the current sample data is a first parameter, the characteristic parameter is 1; s212, if the current sample data is the second parameter, calculating the characteristic parameter according to the historical sample data and the historical sample coefficient corresponding to each historical sample data.
Preferably, the calculation formula of the characteristic parameter in step S212 is:
Figure BDA0001603197590000021
wherein Y is the characteristic parameter; xiFor the ith history sample data, X0~Xn-2History sample data respectively representing the use state of the equipment in each history unit time interval; a. theiIs the historical sample coefficient corresponding to the ith historical sample data, A0~An-2The historical sample coefficients corresponding to each historical sample data are respectively shown, and An-2 ≧ An-3 ≧ … ≧ A0.
Preferably, the calculation formula of the data reporting period in step S22 is as follows:
Figure BDA0001603197590000022
wherein, T is the data reporting period; and Y is the characteristic parameter.
The invention also provides a system for reporting and managing the device use data, which comprises: the acquisition module is used for acquiring current sample data of the current use state of the equipment and historical sample data of the use state of the equipment in each historical unit time interval; the calculation module is used for calculating the data reporting period of the equipment use data according to the current sample data and each historical sample data; the device usage data comprises a device usage status; the uploading module is used for uploading the use state of the equipment and/or the current sample data if the timing time of the timer is greater than or equal to the data reporting period, and otherwise, giving up the uploading of the use state of the equipment and/or the current sample data; and the control module is used for resetting the initial value of the timer after uploading the use state of the equipment and/or the current sample data.
Preferably, the obtaining module is further configured to define the current sample data or the historical sample data as a first parameter if the current usage state of the device or the usage state of the device in each historical unit time period is used; otherwise, defining the current sample data or the historical sample data as a second parameter.
Preferably, the calculation module is further configured to calculate a characteristic parameter according to the current sample data and each historical sample data;
and the calculating module is further used for calculating the data reporting period of the equipment use data according to the characteristic parameters.
Preferably, the calculation module is further configured to assign the characteristic parameter to be 1 if the current sample data is the first parameter; and the calculation module is further configured to calculate the characteristic parameter according to the historical sample data and a historical sample coefficient corresponding to each historical sample data if the current sample data is the second parameter.
Preferably, the calculating module is further configured to calculate the characteristic parameter, and a calculation formula of the calculating module is as follows:
Figure BDA0001603197590000031
wherein Y is the characteristic parameter; xiFor the ith history sample data, X0~Xn-2History sample data respectively representing the use state of the equipment in each history unit time interval; a. theiIs the historical sample coefficient corresponding to the ith historical sample data, A0~An-2The historical sample coefficients corresponding to each historical sample data are respectively shown, and An-2 ≧ An-3 ≧ … ≧ A0.
Preferably, the calculating module is further configured to calculate the data reporting period, and a calculation formula of the calculating module is as follows:
Figure BDA0001603197590000032
wherein, T is the data reporting period; and Y is the characteristic parameter.
The method and the system for reporting and managing the device use data can bring at least one of the following beneficial effects:
1. compared with the existing timing data uploading or real-time data uploading, the data uploading in the invention is carried out according to the data reporting period, if the equipment is not suitable for use, the uploading frequency is reduced, and the system power consumption can be reduced.
2. By defining a calculation formula of the data reporting period, the data reporting period is calculated according to current sample data and historical sample data, the frequency of uploading is high when the number of devices is large, and the frequency of uploading is low when the number of devices is small, so that the data reporting period is more in line with the reporting requirement.
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The above features, technical features, advantages and implementation manners of the method and system for managing reporting of device usage data will be further described in the following preferred embodiments in a clearly understandable manner with reference to the accompanying drawings.
Fig. 1 is a flowchart of an embodiment of a method for reporting and managing device usage data according to the present invention;
fig. 2 is a flowchart of another embodiment of a method for reporting and managing device usage data according to the present invention;
fig. 3 is a schematic structural diagram of an embodiment of a reporting management system for device usage data according to the present invention.
The reference numbers illustrate:
the system comprises an acquisition module, a 2-calculation module, a 3-uploading module and a 4-control module.
Detailed Description
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following description will be made with reference to the accompanying drawings. It is obvious that the drawings in the following description are only some examples of the invention, and that for a person skilled in the art, other drawings and embodiments can be derived from them without inventive effort.
For the sake of simplicity, the drawings only schematically show the parts relevant to the present invention, and they do not represent the actual structure as a product. In addition, in order to make the drawings concise and understandable, components having the same structure or function in some of the drawings are only schematically illustrated or only labeled. In this document, "one" means not only "only one" but also a case of "more than one".
As shown in fig. 1, an embodiment of a method for reporting and managing device usage data according to the present invention includes:
s1, acquiring current sample data of the current use state of the equipment and historical sample data of the use state of the equipment in each historical unit time interval; each historical unit time interval is each historical unit time interval divided by unit time in a preset window period;
s2, calculating the data reporting period of the equipment use data according to the current sample data and each historical sample data;
s3, if the timing time of the timer is larger than or equal to the data reporting period, uploading the use state of the equipment and/or the current sample data, and resetting the initial value of the timer;
and S4, if not, the use state and/or the current sample data of the equipment are/is abandoned.
Specifically, this embodiment may be applied to devices that need to report data, for example, some devices may continuously collect data and upload the data to a server, but if the devices continuously upload data, power consumption caused by the continuous data collection is also very large, and for some low-power devices, a data upload mode with lower power consumption needs to be designed.
Generally, there will be usage logs in the usage process of the device, or there will also be usage logs of the device on the usage management system of some devices, and the usage condition of the device can be obtained through these usage logs, so as to obtain the current sample data and the historical sample data described in step S1, and calculate the data reporting period. When the data reporting device works, the timer starts to time, and when the time reaches the data reporting period, the data is reported. In addition, different from the conventional uploading mode with a fixed period, the data reporting period in this embodiment is reasonably calculated according to the historical use condition of the device, and the uploading period better conforms to the use condition of the device.
As shown in fig. 2, an embodiment of a method for reporting and managing device usage data according to the present invention includes:
s11, if the current use state of the equipment or the use state of the equipment in each historical unit time interval is used, defining the current sample data or the historical sample data as a first parameter; otherwise, define as the second parameter.
S211, if the current sample data is a first parameter, the characteristic parameter is 1;
s212, if the current sample data is the second parameter, calculating the characteristic parameter according to the historical sample data and the historical sample coefficient corresponding to each historical sample data, where the calculation formula is:
Figure BDA0001603197590000051
wherein Y is the characteristic parameter; xiFor the ith history sample data, X0~Xn-2History sample data respectively representing the use state of the equipment in each history unit time interval; a. theiIs the historical sample coefficient corresponding to the ith historical sample data, A0~An-2The historical sample coefficients corresponding to each historical sample data are respectively shown, and An-2 ≧ An-3 ≧ … ≧ A0.
S22, calculating the data reporting period of the device usage data according to the characteristic parameters, wherein the calculation formula is as follows:
Figure BDA0001603197590000061
wherein, T is the data reporting period; and Y is the characteristic parameter.
S3, if the timing time of the timer is larger than or equal to the data reporting period, uploading the use state of the equipment and/or the current sample data, and resetting the initial value of the timer;
and S4, if not, the use state and/or the current sample data of the equipment are/is abandoned.
Specifically, this embodiment specifically introduces the method for calculating the data reporting period, where the characteristic parameter calculation adopts a periodic windowing manner, and is defined in the following rule:
the windowing window period is defined as n. The unit time interval is defined as days, the characteristic sample data of each day is defined as X, the sample data of the first day is X0, the sample data of the second day is X1, the sample data of the first day is Xn-1 till the (n-1) th day, and the Xn represents the current sample data. The value rule of X is as follows: the equipment is used in the same day, which is 1; otherwise it is 0. The initialization values of X0 to Xn-1 are 1.
The method for calculating the characteristic parameter Y is as shown in steps S211 and S212:
if Xn is 1, then Y is 1;
if Xn is 0, then
Figure BDA0001603197590000062
The device has a timer t inside it, with an initial value of 1, in days. And (3) calculating the value T according to a formula every morning at 0 point, and reporting the statistical data if T > is T. Obviously, if Xn is 1, according to the formula, Y is 1, and T is 1, then the data of the current day is reported. If Xn is 0, then need to decide whether to report according to the decision. If the decision result is reported, after reporting, the related parameters are initialized again, T is 1, and T is 1. The X sample data is shifted, that is, Xn-1 ═ Xn, Xn-2 ═ Xn-1, … …, X0 ═ X1. And calculating T every morning at 0, and comparing the T with the T to judge.
The method can be used for data reporting management of seat use conditions, and the seat use method is as follows:
A. when the second sensor detects that a human body exists in the second direction, a second occupancy state signal is sent to the processor; the first direction and the second direction are opposite;
B. and after receiving the second occupation state signal and the first preset time is over, the processor starts the first sensor.
C, detecting whether a human body exists in a first direction by a first sensor, and sending a first state signal to the processor;
preferably, step C comprises the steps of: c1, when the first sensor detects that there is a human body in the first direction within a second preset time, the first sensor sends the first occupancy status signal to the processor; c2, when the first sensor does not detect the existence of human body in the first direction within the second preset time, sending the first release state signal to the processor;
D. if the processor receives the first occupation state signal, the processor recognizes that the current use state of the space is an occupation state, and closes the second sensor; returning to the step C;
E. and when the space is in an idle state, if the processor receives the first release state signal, closing the first sensor, and returning to the step A.
F. When the space is in an occupied state, if the processor receives the first release state signal, the second sensor is started;
G. the second sensor detects whether a human body exists in the second direction within a third preset time;
H. if the second sensor detects that the human body exists in the second direction, the processor closes the second sensor and returns to the step C;
I. otherwise, the second sensor sends a second release status signal to the processor;
J. and the processor identifies that the current using state of the space is a releasing state according to the second releasing signal.
K. The processor uploads the current use state of the space according to the method for reporting and managing the device use data provided by the embodiment.
For example, it may be assumed that the window-dividing window period n is 7, and each history sample coefficient in the window-dividing window period is set to a0 is 1; a1 ═ 2; a2 ═ 3; a3 ═ 6; a4 ═ 12; a5 ═ 24.
If the historical sample data (i.e. the usage data of the seat) is X0 ═ 0, X1 ═ 0, X2 ═ 0, X3 ═ 1, X4 ═ 1, X5 ═ 0, (0 generation day this seat is not used, 1 means this seat was used) and then t ═ 3, then after Xn is confirmed, the characteristic parameters of this day are:
if Xn is 1, according to the formula, Y is 1, T is 1, Y/1, T is T, and the results are reported all the night of the day; (As known from historical sample data, the use data of the seat will be reported when the data of the current day is 1 in the window period)
If Xn is 0 (i.e. the day's seat is not used), then Y (1X 0+ 2X 1+ 3X 2+ 6X 3+ 12X 4+ 24X 5)/48 18/48 is 0.375,
then the reporting period T1/Y2.6667. Obviously T > T, all the days need to report the usage data of the seat. At this time, the reset t is 1, X0 to Xn are shifted and updated, that is, X0 to Xn are updated one day backward, and the next decision time is waited for.
As shown in fig. 3, the present invention provides a system for reporting and managing device usage data, including:
the acquisition module 1 is used for acquiring current sample data of the current use state of the equipment and historical sample data of the use state of the equipment in each historical unit time period in a preset window period;
preferably, the obtaining module 1 is further configured to define the current sample data or the historical sample data as a first parameter if the current usage state of the device or the usage state of the device in each historical unit time period is used; otherwise, define as the second parameter.
A calculating module 2, configured to calculate a data reporting period of the device usage data according to the current sample data and each historical sample data;
preferably, the calculating module 2 is further configured to calculate a characteristic parameter according to the current sample data and each historical sample data; the calculating module 2 is further configured to calculate a data reporting period of the device usage data according to the characteristic parameter.
Preferably, the calculating module 2 is further configured to assign the characteristic parameter to be 1 if the current sample data is the first parameter; the calculating module 2 is further configured to calculate the characteristic parameter according to the historical sample data and a historical sample coefficient corresponding to each historical sample data if the current sample data is the second parameter.
Preferably, the calculating module 2 is further configured to calculate the characteristic parameter, and a calculation formula of the calculating module is as follows:
Figure BDA0001603197590000081
wherein Y is the characteristic parameter; xiFor the ith history sample data, X0~Xn-2History sample data respectively representing the use state of the equipment in each history unit time interval; a. theiIs the historical sample coefficient corresponding to the ith historical sample data, A0~An-2The historical sample coefficients corresponding to each historical sample data are respectively shown, and An-2 ≧ An-3 ≧ … ≧ A0.
Preferably, the calculating module 2 is further configured to calculate the data reporting period, and a calculation formula of the calculating module is as follows:
Figure BDA0001603197590000091
wherein, T is the data reporting period; and Y is the characteristic parameter.
The uploading module 3 is configured to upload the use state of the device and/or the current sample data if the time counted by the timer is greater than or equal to the data reporting period, and otherwise, abandon the uploading of the use state of the device and/or the current sample data;
and the control module 4 is used for resetting the initial value of the timer and the preset window period after the use state of the equipment and/or the current sample data are uploaded.
Specifically, each module of the present embodiment may be integrated on a processor to implement the above functions.
In addition, the unit period may also be in units of hours, for example, it may be assumed that the windowing window period n is 7, and the history sample coefficients are respectively set to a0 is 1; a1 ═ 2; a2 ═ 3; a3 ═ 5; a4 ═ 8; a5 ═ 13.
If the historical sample data is X0 ═ 1, X1 ═ 1, X2 ═ 0, X3 ═ 1, X4 ═ 0, X5 ═ 0, and then t ═ 4, then after Xn validation, the characteristic parameters for the day are:
if Xn is 1, according to the formula, Y is 1, T is 1, Y/1, T is T, and the results are reported all the night of the day;
if Xn is 0, then Y (1X 0+ 2X 1+ 3X 2+ 5X 3+ 8X 4+ 13X 5)/32 (8/32) is 0.25,
then the reporting period T-1/Y-4. Obviously, T is T, and all the evening of the day needs to report the statistical result. At this time, the reset t is 1, X0 to Xn are shifted and updated, and the next decision time is waited for.
It should be noted that the above embodiments can be freely combined as necessary. The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, various modifications and decorations can be made without departing from the principle of the present invention, and these modifications and decorations should also be regarded as the protection scope of the present invention.

Claims (6)

1. A method for reporting and managing device usage data is characterized by comprising the following steps:
s1, acquiring current sample data of the current use state of the equipment and historical sample data of the use state of the equipment in each historical unit time interval;
s2, calculating the data reporting period of the equipment use data according to the current sample data and each historical sample data; the device usage data comprises a device usage status;
s3, if the timing time of the timer is larger than or equal to the data reporting period, uploading the use state of the equipment and/or the current sample data, and resetting the initial value of the timer;
s4, if not, abandoning to upload the use state and/or current sample data of the device;
step S1 specifically includes:
s11, if the current use state of the equipment or the use state of the equipment in each historical unit time interval is used, defining the current sample data or the historical sample data as a first parameter; otherwise, defining the current sample data or the historical sample data as a second parameter;
step S2 specifically includes:
s21, calculating characteristic parameters according to the current sample data and each historical sample data;
s22, calculating the data reporting period of the use data according to the characteristic parameters;
step S21 specifically includes:
s211, if the current sample data is a first parameter, the characteristic parameter is 1;
s212, if the current sample data is the second parameter, calculating the characteristic parameter according to the historical sample data and the historical sample coefficient corresponding to each historical sample data.
2. The method as claimed in claim 1, wherein the calculation formula of the characteristic parameter in step S212 is:
Figure FDA0002814824000000011
wherein Y is the characteristic parameter; xiFor the ith history sample data, X0~Xn-2History sample data respectively representing the use state of the equipment in each history unit time interval; a. theiIs the historical sample coefficient corresponding to the ith historical sample data, A0~An-2The historical sample coefficients corresponding to each historical sample data are respectively shown, and An-2 ≧ An-3 ≧ … ≧ A0.
3. The method as claimed in claim 2, wherein the data reporting period in step S22 is calculated by the following formula:
Figure FDA0002814824000000021
wherein, T is the data reporting period; and Y is the characteristic parameter.
4. A system for reporting and managing device usage data is characterized by comprising:
the acquisition module is used for acquiring current sample data of the current use state of the equipment and historical sample data of the use state of the equipment in each historical unit time interval;
the acquisition module is further configured to define the current sample data or the historical sample data as a first parameter if the current usage state of the device or the usage state of the device in each historical unit time interval is used; otherwise, defining the current sample data or the historical sample data as a second parameter;
the calculation module is used for calculating the data reporting period of the equipment use data according to the current sample data and each historical sample data; the device usage data comprises a device usage status;
the uploading module is used for uploading the use state of the equipment and/or the current sample data if the timing time of the timer is greater than or equal to the data reporting period, and otherwise, giving up the uploading of the use state of the equipment and/or the current sample data;
the control module is used for resetting the initial value of the timer after uploading the use state of the equipment and/or the current sample data;
the calculation module is further used for calculating characteristic parameters according to the current sample data and each historical sample data;
the computing module is further configured to compute a data reporting period of the device usage data according to the characteristic parameters;
the calculation module is further configured to assign the characteristic parameter to 1 if the current sample data is the first parameter;
and the calculation module is further configured to calculate the characteristic parameter according to the historical sample data and a historical sample coefficient corresponding to each historical sample data if the current sample data is the second parameter.
5. The system according to claim 4, wherein the system further comprises:
the calculation module is further configured to calculate the characteristic parameter, and a calculation formula of the calculation module is as follows:
Figure FDA0002814824000000031
wherein Y is the characteristic parameter; xiFor the ith history sample data, X0~Xn-2History sample data respectively representing the use state of the equipment in each history unit time interval; a. theiIs the historical sample coefficient corresponding to the ith historical sample data, A0~An-2The historical sample coefficients corresponding to each historical sample data are respectively shown, and An-2 ≧ An-3 ≧ … ≧ A0.
6. The system according to claim 5, wherein the system further comprises:
the calculation module is further configured to calculate the data reporting period, and a calculation formula of the calculation module is as follows:
Figure FDA0002814824000000032
wherein, T is the data reporting period; and Y is the characteristic parameter.
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