TEMPORARY PAPER MONEY STORAGE DEVICE AND CONTROL METHOD THEREOF
20180350182 ยท 2018-12-06
Assignee
Inventors
- Tao Zhang (Guangzhou, Guangdong, CN)
- Zhiqiang SUN (Guangzhou, Guangdong, CN)
- Hanfeng XIAO (Guangzhou, Guangdong, CN)
Cpc classification
B65H2301/41912
PERFORMING OPERATIONS; TRANSPORTING
B65H2511/166
PERFORMING OPERATIONS; TRANSPORTING
B65H2220/02
PERFORMING OPERATIONS; TRANSPORTING
B65H2701/1912
PERFORMING OPERATIONS; TRANSPORTING
B65H2220/09
PERFORMING OPERATIONS; TRANSPORTING
B65H2553/412
PERFORMING OPERATIONS; TRANSPORTING
B65H2513/52
PERFORMING OPERATIONS; TRANSPORTING
B65H43/00
PERFORMING OPERATIONS; TRANSPORTING
B65H2301/4452
PERFORMING OPERATIONS; TRANSPORTING
B65H2220/01
PERFORMING OPERATIONS; TRANSPORTING
G07D11/237
PHYSICS
B65H2513/52
PERFORMING OPERATIONS; TRANSPORTING
B65H2220/11
PERFORMING OPERATIONS; TRANSPORTING
B65H2220/01
PERFORMING OPERATIONS; TRANSPORTING
B65H2220/02
PERFORMING OPERATIONS; TRANSPORTING
B65H2220/11
PERFORMING OPERATIONS; TRANSPORTING
B65H2220/03
PERFORMING OPERATIONS; TRANSPORTING
B65H2301/4191
PERFORMING OPERATIONS; TRANSPORTING
B65H2511/166
PERFORMING OPERATIONS; TRANSPORTING
B65H2220/03
PERFORMING OPERATIONS; TRANSPORTING
International classification
G07D11/00
PHYSICS
B65H43/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A banknote temporary storage device includes: a timing unit, configured to obtain a time period between a time when the front end of a banknote enters into a first sensor and a time when the back end of the banknote leaves the first sensor; a calculating unit, configured to calculate a width of the banknote based on the time period, calculate a bump radius based on the width, and determine a condition of generating a bump on the storage coiling block; a detecting unit, configured to detect whether the condition of generating a bump on the storage coiling block is met, based on a real-time radius; and an interval control unit, configured to change an interval between banknotes on the storage coiling block in a pre-set control manner to eliminate a bump, in a case that the condition is met.
Claims
1. A banknote temporary storage device, comprising: a storage coiling block driven by a motor, a first sensor, a second sensor and a conveying passage, wherein the first sensor is arranged at an entrance of the banknote temporary storage device, and configured to detect whether there is a banknote entering into the banknote temporary storage device; the second sensor is arranged between the first sensor and the storage coiling block, and configured to detect whether a banknote completely enters into the banknote temporary storage device; and the conveying passage is located between the first sensor and the second sensor, and configured to convey banknotes to the banknote temporary storage device at a constant speed V, wherein the banknote temporary storage device further comprises: a timing unit, configured to obtain a time period ?t1 between a time when the front end of a banknote enters into the first sensor and a time when the back end of the banknote leaves the first sensor; a calculating unit, configured to calculate a width W of the banknote based on the time period ?t1 obtained by the timing unit, calculate a bump radius R.sub.bump of the storage coiling block where a bump is to be generated, based on the width W, and determine a condition of generating a bump on the storage coiling block based on the bump radius R.sub.bump; a detecting unit, configured to detect whether the condition of generating a bump on the storage coiling block is met, based on a real-time radius R.sub.real-time of the storage coiling block; and an interval control unit, configured to change an interval d between banknotes on the storage coiling block in a pre-set control manner to eliminate a bump, in a case that the detecting unit detects that the condition of generating a bump on the storage coiling block is met.
2. The banknote temporary storage device according to claim 1, wherein the calculating unit is configured to calculate the width W of the banknote as W=V??t1, calculate the bump radius R.sub.bump as R.sub.bump=(W+d)?N/2?, and determine the condition of generating a bump on the storage coiling block as R.sub.real-time=R.sub.bump, based on the bump radius R.sub.bump, where N is a positive integer.
3. The banknote temporary storage device according to claim 1, wherein the calculating unit is configured to calculate the width W of the banknote as W=V??t1, calculate the bump radius R.sub.bump as R.sub.bump=(W+d)?N/2?, and determine the condition of generating a bump on the storage coiling block as (R.sub.bump?R)<R.sub.real-time<(R.sub.bump+?R) , based on the bump radius R.sub.bump, where Nis a positive integer, and ?R is a pre-set multiple of a thickness of a banknote.
4. The banknote temporary storage device according to claim 1, wherein the interval control unit is configured to change the interval d between banknotes on the storage coiling block to be greater than d in the pre-set control manner to eliminate the bump, in a case that the detecting unit detects that the condition of generating a bump on the storage coiling block is met.
5. The banknote temporary storage device according to claim 4, wherein the interval control unit is configured to change the interval d between banknotes on the storage coiling block to be greater than d in the pre-set control manner to eliminate a bump by: delaying, by the interval control unit, stop of the motor for a time period ?t2, from the time when the second sensor detects that the back end of a banknote leaves the second sensor, to change the interval d between banknotes on the storage coiling block to 2d to eliminate the bump, where ?t2=d/V.sub.constant-speed, and V.sub.constant-speed denotes a constant rotation linear speed of the storage coiling block.
6. A control method of a banknote temporary storage device, wherein an interval between banknotes on a storage coiling block is set as d, a conveying passage in the banknote temporary storage device conveys banknotes to a banknote temporary storage device at a constant speed V, and while entering into the temporary storage device, each of the banknotes first passes through a first sensor arranged outside the banknote temporary storage device to enter into the temporary storage device and then passes through a second sensor; the method comprises: S1, obtaining a time period ?t1 between a time when the front end of a banknote enters into a first sensor and a time when the back end of the banknote leaves the first sensor; S2, calculating a width W of the banknote based on the time period ?t1, calculating a bump radius R.sub.bump of the storage coiling block where a bump is to be generated based on the width W, and determining a condition of generating a bump on the storage coiling block based on the bump radius R.sub.bump; S3, calculating a real-time radius R.sub.real-time of the storage coiling block; S4, determining whether the condition of generating a bump on the storage coiling block is met, based on the real-time radius R.sub.real-time of the storage coiling block; and S5, changing an interval d between banknotes on the storage coiling block in a pre-set control manner to eliminate a bump, in a case that a determination result of S4 is positive.
7. The control method of a banknote temporary storage device according to claim 6, wherein S2 comprises: calculating the width W of the banknote as W=V??t1, calculating the bump radius R.sub.bump as R.sub.bump=(W+d)?N/2?, and determining the condition of generating a bump on the storage coiling block as R.sub.real-time=R.sub.bump, based on the bump radius R.sub.bump, where N is a positive integer.
8. The control method of a banknote temporary storage device according to claim 6, wherein S2 comprises: calculating the width W of the banknote as W=V??t1, calculating the bump radius R.sub.bump as R.sub.bump=(W+d)?N/2?, and determining the condition of generating a bump on the storage coiling block as (R.sub.bump??R)<R.sub.real-time<(R.sub.bump+?R), based on the bump radius R.sub.bump, where N is a positive integer, and ?R is a pre-set multiple of a thickness of a banknote.
9. The control method of a banknote temporary storage device according to claim 6, wherein S5 comprises: changing the interval d between banknotes on the storage coiling block to be greater than d in the pre-set control manner to eliminate the bump, in a case that the determination result of S4 is positive.
10. The control method of a banknote temporary storage device according to claim 9, wherein the changing the interval d between banknotes on the storage coiling block to be greater than d in the pre-set control manner to eliminate the bump on S5 comprises: delaying stop of a motor for a time period ?t2, from the time when the second sensor detects that the back end of a banknote leaves the second sensor, to change the interval d between banknotes on the storage coiling block to 2d to eliminate the bump, where ?t2=d/V.sub.constant-speed, and V.sub.constant-speed denotes a constant rotation linear speed of the storage coiling block.
11. The banknote temporary storage device according to claim 2, wherein the interval control unit is configured to change the interval d between banknotes on the storage coiling block to be greater than d in the pre-set control manner to eliminate the bump, in a case that the detecting unit detects that the condition of generating a bump on the storage coiling block is met.
12. The banknote temporary storage device according to claim 3, wherein the interval control unit is configured to change the interval d between banknotes on the storage coiling block to be greater than d in the pre-set control manner to eliminate the bump, in a case that the detecting unit detects that the condition of generating a bump on the storage coiling block is met.
13. The banknote temporary storage device according to claim 11, wherein the interval control unit is configured to change the interval d between banknotes on the storage coiling block to be greater than d in the pre-set control manner to eliminate a bump by: delaying, by the interval control unit, stop of the motor for a time period ?t2, from the time when the second sensor detects that the back end of a banknote leaves the second sensor, to change the interval d between banknotes on the storage coiling block to 2d to eliminate the bump, where ?t2=d/V.sub.constant-speed, and V.sub.constant-speed denotes a constant rotation linear speed of the storage coiling block.
14. The banknote temporary storage device according to claim 12, wherein the interval control unit is configured to change the interval d between banknotes on the storage coiling block to be greater than d in the pre-set control manner to eliminate a bump by: delaying, by the interval control unit, stop of the motor for a time period ?t2, from the time when the second sensor detects that the back end of a banknote leaves the second sensor, to change the interval d between banknotes on the storage coiling block to 2d to eliminate the bump, where ?t2=d/V.sub.constant-speed, and V.sub.constant-speed denotes a constant rotation linear speed of the storage coiling block.
15. The control method of a banknote temporary storage device according to claim 7, wherein S5 comprises: changing the interval d between banknotes on the storage coiling block to be greater than d in the pre-set control manner to eliminate the bump, in a case that the determination result of S4 is positive.
16. The control method of a banknote temporary storage device according to claim 8, wherein S5 comprises: changing the interval d between banknotes on the storage coiling block to be greater than d in the pre-set control manner to eliminate the bump, in a case that the determination result of S4 is positive.
17. The control method of a banknote temporary storage device according to claim 15, wherein the changing the interval d between banknotes on the storage coiling block to be greater than d in the pre-set control manner to eliminate the bump on S5 comprises: delaying stop of a motor for a time period ?t2, from the time when the second sensor detects that the back end of a banknote leaves the second sensor, to change the interval d between banknotes on the storage coiling block to 2d to eliminate the bump, where ?t2=d/V.sub.constant-speed, and V.sub.constant-speed denotes a constant rotation linear speed of the storage coiling block.
18. The control method of a banknote temporary storage device according to claim 16, wherein the changing the interval d between banknotes on the storage coiling block to be greater than d in the pre-set control manner to eliminate the bump on S5 comprises: delaying stop of a motor for a time period ?t2, from the time when the second sensor detects that the back end of a banknote leaves the second sensor, to change the interval d between banknotes on the storage coiling block to 2d to eliminate the bump, where ?t2=d/V.sub.constant-speed, and V.sub.constant-speed denotes a constant rotation linear speed of the storage coiling block.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0034] To illustrate technical solutions according to embodiments of the present disclosure or in the conventional technologies more clearly, drawings to be used in the descriptions of the conventional technologies or the embodiments are described briefly hereinafter. Apparently, the drawings described hereinafter are only for some embodiments of the present disclosure, and other drawings may be obtained by those skilled in the art based on those drawings without creative efforts.
[0035]
[0036]
[0037]
[0038]
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0039] A banknote temporary storage device and a control method thereof are provided according to embodiments of the disclosure, for solving technical problems of instability and malfunction when the scrolling mechanism receives or outputs banknotes, which is caused by an irregular circular formed in the banknote temporary storage unit due to a bump formed in the banknote temporary storage unit.
[0040] In order to make objects, features and advantages of the present disclosure clearer and easier to understand, hereinafter technical solutions of embodiments of the present disclosure are illustrated clearly and completely in conjunction with drawings of the embodiments of the disclosure. Apparently, the described embodiments are merely a few rather than all of the embodiments of the present disclosure. All other embodiments obtained by persons of ordinary skill in the art based on the embodiments of the present disclosure without creative efforts shall fall within the protection scope of the present disclosure.
[0041] Reference is made to
[0042] The banknote temporary storage device according to the embodiment of the present disclosure further includes a timing unit 105, a calculating unit 106, a detecting unit 107 and an interval control unit 108.
[0043] The timing unit 105 is configured to obtain a time period ?t1 between a time when the front end of a banknote enters into the first sensor 104 and a time when the back end of the banknote leaves the first sensor 104.
[0044] The calculating unit 106 is configured to calculate a width W of the banknote based on the time period ?t1 obtained by the timing unit 105, then calculate a bump radius R.sub.bump of the storage coiling block 101 where a bump is to be generated, based on the width W, and determine a condition of generating a bump on the storage coiling block 101 based on the bump radius R.sub.bump.
[0045] The detecting unit 107 is configured to detect whether the condition of generating a bump on the storage coiling block 101 is met, based on a real-time radius R.sub.real-time of the storage coiling block 101.
[0046] The interval control unit 108 is configured to change an interval d between banknotes on the storage coiling block 101 in a pre-set control manner to eliminate a bump, in a case that the detecting unit detects that the condition of generating a bump on the storage coiling block 101 is met.
[0047] Further, the above width W calculated by the calculating unit 105 may be calculated as W=V??t1, and then the calculating unit 105 calculates the bump radius R.sub.bump as R.sub.bump=(W+d)?N/2?. The condition of generating a bump on the storage coiling block 101 may be determined by the calculating unit 105 in multiple manners, which are respectively described below in detail.
[0048] In a first manner, the condition of generating a bump on the storage coiling block 101 is determined by the calculating unit 105 based on bump radius R.sub.bump as R.sub.real-time=R.sub.bump, where N is a positive integer.
[0049] In a second manner, the condition of generating a bump on the storage coiling block 101 is determined by the calculating unit 105 based on the bump radius R.sub.bump as (R.sub.bump??R)<R.sub.real-time<(R.sub.bump+?R), where N is a positive integer, and ?R is a pre-set multiple of a thickness of a banknote.
[0050] Further, the above interval control unit 108 changes the interval d between banknotes on the storage coiling block 101 to be greater than d in the pre-set control manner to eliminate the bump, in a case that the detecting unit detects that the condition of generating a bump on the storage coiling block 101 is met.
[0051] It may be understood that, the detailed process of changing by the interval control unit 108 the interval d between banknotes on the storage coiling block 101 to be greater than din the pre-set control manner to eliminate the bump may be performed as delaying, by the interval control unit 108, the stop of the motor for a time period ?t2, from the time when the second sensor 103 detects that the back end of a banknote leaves the second sensor, to change the interval d between banknotes on the storage coiling block 101 to 2d to eliminate the bump, where ?t2=d/V.sub.constant-speed, and V.sub.constant-speed denotes a constant rotation linear speed of the storage coiling block 101. It should be noted that, the interval d between banknotes on the storage coiling block 101 may be changed into an appropriate value greater than d based on actual parameters of the device. The above first sensor 104 and the second sensor 103 may be photoelectric sensors, which are not limited herein.
[0052] In the embodiment, the timing unit 105 first obtains the time period ?t1 for the back end of the banknote leaving the first sensor 104, then the calculating unit 106 calculates a bump radius R.sub.bump of the storage coiling block 101 where a bump is to be generated, based on a width of the banknote obtained based on ?t1, to determine a condition of generating a bump on the storage coiling block 101, such that the detecting unit 107 determines whether a bump is generated according to the condition, and finally the interval control unit 108 changes an interval d between banknotes on the storage coiling block 101 in the pre-set control manner to eliminate the bump if it is detected that the bump is generated, thereby solving technical problems of instability and malfunction when the scrolling mechanism receives or outputs banknotes, which is caused by an irregular circular formed in the banknote temporary storage unit due to a bump formed in the banknote temporary storage unit.
[0053] Reference is made to
[0054] An interval between banknotes on the storage coiling block 101 shown in
[0055] In step S1, a time period ?t1 between a time when the front end of a banknote enters into a first sensor and a time when the back end of the banknote leaves the first sensor is obtained.
[0056] In the embodiment, the time period ?t1 between a time when the front end of a banknote enters into the first sensor and a time when the back end of the banknote leaves the first sensor needs to be firstly obtained.
[0057] In step S2, a width W of the banknote is calculated based on the time period ?t1, then a bump radius R.sub.bump of a storage coiling block is calculated based on the width W, and the condition of generating a bump on the storage coiling block R.sub.bump is determined based on the bump radius.
[0058] After obtaining the time period ?t1 between a time when the front end of a banknote enters into the first sensor and a time when the back end of the banknote leaves the first sensor, the width W of the banknote needs to be calculated based on the time period ?t1, then a bump radius R.sub.bump of a storage coiling block is calculated based on the width W, and the condition of generating a bump on the storage coiling block is determined based on the bump radius R.sub.bump. It is understood that how to determine the condition of generating a bump will be described in detailed in a next embodiment, which is not described herein.
[0059] In step S3, a real-time radius R.sub.real-time of the storage coiling block is calculated.
[0060] After calculating the width W of the banknote based on the time period ?t1, then calculating the bump radius R.sub.bump of the storage coiling block where a bump is to be generated based on the width W, and determining the condition of generating a bump on the storage coiling block based on the bump radius R.sub.bump, the real-time radius R.sub.real-time of the storage coiling block is calculated.
[0061] In step S4, it is determined whether the condition of generating a bump on the storage coiling block is met based on the real-time radius R.sub.real-time of the storage coiling block.
[0062] Here, it needs to determine whether the condition of generating a bump on the storage coiling block is met based on the real-time radius R.sub.real-time of the storage coiling block.
[0063] In step S5, an interval d between banknotes on the storage coiling block is changed in a pre-set control manner to eliminate the bump, in a case of a positive determination result in S4.
[0064] In a case that the determination result of S4 is positive, the interval d between banknotes on the storage coiling block is changed in the pre-set control manner to eliminate the bump. It should be noted that, the above pre-set control manner will be described in detail in a next embodiment, which is not described herein.
[0065] It should be noted that,
[0066] In the embodiment, the time period time ?t1 for the back end of the banknote leaveing the first sensor is first obtained, then a bump radius R.sub.bump of the storage coiling block where a bump is to be generated is calculated based on a width of the banknote obtained based on ?t1, to determine a condition of generating a bump on the storage coiling block, such that whether a bump is generated is determined according to the condition; and finally an interval d between banknotes on the storage coiling block is changed in the pre-set control manner to eliminate the bump after detecting that the bump is generated, thereby solving technical problems of instability and malfunction when the scrolling mechanism receives or outputs banknotes, which is caused by an irregular circular formed in the banknote temporary storage unit due to a bump formed in the banknote temporary storage unit.
[0067] In the above, the processes of the control method of a banknote temporary storage device are described in detail, and hereinafter how to determine a condition of generating a bump will be described in detail. Reference is made to
[0068] An interval between banknotes on the storage coiling block 101 shown in
[0069] In step 301, a time period ?t1 between a time when the front end of a banknote enters into a first sensor and a time when the back end of the banknote leaves the first sensor is obtained.
[0070] In the embodiment, the time period Atl between a time when the front end of a banknote enters into a first sensor and a time when the back end of the banknote leaves the first sensor needs to be firstly obtained.
[0071] In step S302, a width W of the banknote is calculated as W=V??t1, then a bump radius R.sub.bump is calculated as R.sub.bump=(W+d)?N/2?, and the condition of generating a bump on the storage coiling block is determined as R.sub.real-time=R.sub.bump or (R.sub.bump??R)<R.sub.real-time<(R.sub.bump+?R), based on the bump radius R.sub.bump.
[0072] After obtaining the time period ?t1 between a time when the front end of a banknote enters into a first sensor and a time when the back end of the banknote leaves the first sensor, the width W of the banknote needs to be calculated based on the time period ?t1. Then the bump radius R.sub.bump is calculated as R.sub.bump=(W+d)?N/2?, and the condition of generating a bump on the storage coiling block is determined as R.sub.real-time=R.sub.bump or (R.sub.bump??R)<R.sub.real-time<(R.sub.bump+?R) based on the bump radius R.sub.bump, where N is a positive integer, and ?R is a pre-set multiple of a thickness of a banknote.
[0073] In step S303, a real-time radius R.sub.real-time of the storage coiling block is calculated.
[0074] After calculating the width W of the banknote based on the time period ?t1, then calculating the bump radius R.sub.bump as R.sub.bump=(W+d)?N/2?, and determining the condition of generating a bump on the storage coiling block as R.sub.real-time=R.sub.bump or (R.sub.bump??R)<R.sub.real-time<(R.sub.bump+?R) based on the bump radius R.sub.bump, the real-time radius R.sub.real-time of the storage coiling block is calculated.
[0075] In step S304, it is determined whether the condition of generating a bump on the storage coiling block is met, based on the real-time radius R.sub.real-time of the storage coiling block.
[0076] Here, it needs to determine whether the condition of generating a bump on the storage coiling block is met, based on the real-time radius R.sub.real-time of the storage coiling block.
[0077] In step S305, an interval d between banknotes on the storage coiling block is changed to be greater than d in a pre-set control manner to eliminate the bump, in a case that a determination result of S4 is positive.
[0078] In a case that the determination result of S4 is positive, the interval d between banknotes on the storage coiling block is changed to be greater than d in the pre-set control manner to eliminate the bump. It should be noted that, the detail process of the changing the interval d between banknotes on the storage coiling block to be greater than d in the pre-set control manner to eliminate the bump described in the above is: delaying the stop of a motor for a time period ?t2, from the time when the second sensor detects that the back end of a banknote leaves the second sensor, to change the interval d between banknotes on the storage coiling block to 2d to eliminate the bump, where ?t2=d/V.sub.constant-speed, and V.sub.constant-speed denotes a constant rotation linear speed of the storage coiling block.
[0079] It should be noted that,
[0080] In the embodiment, the time period ?t1 for the back end of the banknote leaving the first sensor is first obtained, then a bump radius R.sub.bump of the storage coiling block where a bump is to be generated is calculated based on a width of the banknote obtained based on ?t1, and a condition of generating a bump on the storage coiling block is determined, so as to determine whether a bump is generated according to the condition, and finally an interval d between banknotes on the storage coiling block is changed in the pre-set control manner to eliminate the bump after detecting that the bump is generated, thereby solving the technical problems of instability and malfunction when the scrolling mechanism receives or outputs banknotes, which is caused by an irregular circular formed in the banknote temporary storage unit due to a bump formed in the banknote temporary storage unit. In addition, after detecting that a real-time radius of the bump satisfies the condition of generating a bump, the interval d between banknotes on the storage coiling block is adjusted to be of an appropriate value greater than d, such as 1.5d, 2d, 3d, thereby more accurately avoiding the technical problems of instability and malfunction when the scrolling mechanism receives or outputs banknotes.
[0081] For better understanding, hereinafter a specific application scenarios of the method for controlling a scrolling mechanism according to the embodiment as shown in
[0082] It is assumed that an interval between banknotes 108 on a storage coiling block 101 is controlled to be d=30 mm, a speed of an exterior passage of a banknote temporary storage device is the same as a constant speed of the storage coiling block 101, both of which are V.sub.0=0.8 mm/ms, a radius of the storage coiling block 101 varies in a range of 30 mm to 60 mm, a width of the banknote 308 is W.sub.banknote=70 mm, a thickness of the banknote is 0.1 mm. In this case, a location where a bump is generated may be calculated as L.sub.bump=(W.sub.banknote+d.sub.banknote)*N (where N is a positive integer). Since L.sub.bump is in the range of (2?*30 mm, 2?*20 mm), N may have two values of 2 and 3. Taking N=3 as an example, there is r.sub.bump=(W.sub.banknote+d.sub.banknote)*3/2??47.7 mm, ?r=10*0.1 mm=1 mm (here the thickness of the banknote is 0.1 mm), and ?t1=d.sub.banknote/V.sub.0=30/0.8 ms=37.5 ms. That is, if a real-time radius r.sub.real-time of the banknote temporary storage unit 301 is detected to be in a range of (R.sub.bump??r, R.sub.bump+?r), namely, a range of (46.7 mm, 48.7 mm), a stop condition of the first banknote 308 of every three banknotes entering into the device is changed, i.e., a first power motor is stopped after 37.5 ms from the time when the back end of the banknote leaves the second photoelectric sensor.
[0083] It is clearly understood by those skills in the art that, for convenience and brevity of description, reference may be made to corresponding processes of the above embodiments of the method for details of operating processes of the above systems, devices and units, which are not repeated herein.
[0084] It should be understood that, the disclosed systems, devices and methods in the embodiments according to the present disclosure may be implemented in other manners. For example, the above embodiments of the device are only illustrative. For example, the units are divided only based on logical functions, and there are other dividing modes in practical implementations. For example, multiple units or components may be combined or integrated into another system, or some features may be ignored or not be executed. In addition, the shown or discussed coupling or direct coupling or communication connection may be indirect coupling or communication connection via some interfaces, devices or units, and may be electrical, mechanical or other forms.
[0085] Units illustrated as separation components may or may not be separated physically. A component shown as a unit may or may not be a physical unit, that is, may be located in a same position, or may be distributed to multiple network units. A part of or all of units may be selected as required to implement objects of the technical solutions according to the embodiments.
[0086] In addition, various function units according to various embodiments of the present disclosure may be integrated into one processing unit, or may exist independently, or two or more than two of the above units may be integrated into one unit. The above integrated units may be implemented in a form of hardware, or in a form of a software function unit.
[0087] The integrated unit may be stored in a readable storage medium of a computing device, if the functions are implemented in a form of a soft function unit and sold or used as an independent product. Based on this understanding, the part of the technical solutions according to the present disclosure which is essential or contributes to the conventional technology, or all or some of the technical solutions can be embodied in a form of a software product. The computer software product is stored in a storage medium, which includes several instructions used for a rolling mechanism of a computing device (may be a rolling mechanism ofa personal computer, a server, or a network device) to execute all or some of steps described in various embodiments of the present disclosure. The storage medium in the forgoing includes various media which can store program codes, such as, a USB disk, a removable hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk.
[0088] As described above, the above embodiments are only to illustrate the technical solutions of the present disclosure, but not to limit the present disclosure. Although the present disclosure is illustrated in detail with reference to the above embodiments, it should be understood by those skilled in the art that, the technical solutions according to the above embodiments may be modified, or some technical features in the technical solutions may be substituted by equivalents. Those modifications or substitutes do not make the essence of the technical solutions departing from the spirit and scope of the technical solutions according to the embodiments of the present disclosure.