CN105117842A - Order pushing method and device - Google Patents

Order pushing method and device Download PDF

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Publication number
CN105117842A
CN105117842A CN201510516040.6A CN201510516040A CN105117842A CN 105117842 A CN105117842 A CN 105117842A CN 201510516040 A CN201510516040 A CN 201510516040A CN 105117842 A CN105117842 A CN 105117842A
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China
Prior art keywords
order
region
broadcast
predetermined time
radius
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CN201510516040.6A
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Chinese (zh)
Inventor
叶勇
刘养彪
石宽
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Beijing Didi Infinity Technology and Development Co Ltd
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Beijing Didi Infinity Technology and Development Co Ltd
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Application filed by Beijing Didi Infinity Technology and Development Co Ltd filed Critical Beijing Didi Infinity Technology and Development Co Ltd
Priority to CN201510516040.6A priority Critical patent/CN105117842A/en
Publication of CN105117842A publication Critical patent/CN105117842A/en
Priority to SG11201706188YA priority patent/SG11201706188YA/en
Priority to US15/547,221 priority patent/US10977585B2/en
Priority to EP16742811.9A priority patent/EP3252705A4/en
Priority to PCT/CN2016/072840 priority patent/WO2016119749A1/en
Priority to KR1020177024089A priority patent/KR20180013843A/en
Priority to PH12017501364A priority patent/PH12017501364A1/en
Priority to HK18104774.4A priority patent/HK1245473A1/en
Priority to US17/227,439 priority patent/US20210232984A1/en
Pending legal-status Critical Current

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Abstract

The invention provides an order pushing method and device. The method comprises the steps that receiving a user equipment (UE) taxi request generates order information request according to the taxi, the order information includes a starting address; n in reaching the first preset when the time to send the n-th preset to all terminals within the broadcast single region order information, n is an integer of not less than 1 and not more than N, said N being an integer greater than 1; wherein, the first preset time n + 1 night n in the first preset time; the first pre-sowing single region n to the starting address location for the center, according to the n-th pre-sowing single radius determined area; the first n + 1 pre-sowing single radius greater than the first n pre-sowing single radius. The present invention can effectively shorten the distance of order execution, increase the turnover rate of the short-range order, while reducing the rate of order cancellation.

Description

Order method for pushing and device
Technical field
The present invention relates to field of computer technology, particularly relate to a kind of order method for pushing and device.
Background technology
Taxi taking platform is receiving subscriber equipment (UserEquipment, be called for short UE) send call a taxi request after, generate sequence information according to this request of calling a taxi, and send this sequence information to all driver terminals broadcast in single scope, to enable the successful competition for orders of driver terminal.
Broadcast in folk prescription method existing, general is all to all driver terminal broadcast sequence informations within the scope of this based on certain limit, although this method can allow order strike a bargain in the shortest time as much as possible, but but have ignored another problem, when namely going to meet passenger after driver's order, need the time expended.And under this large-scale broadcast mode, the distance of driver's order also can become more random broadcasting in single scope.From the cancellation reason of current order, cancel an order before driver arrives and account for significant proportion.
Summary of the invention
For the defect of prior art, the invention provides a kind of order method for pushing and device, effectively can shorten order conclusion of the business distance, improve short distance order probability of transaction, reduce cancellation of order rate simultaneously.
First aspect, the invention provides a kind of order method for pushing, described method comprises:
Receive the request of calling a taxi that user equipment (UE) sends, generate sequence information according to the described request of calling a taxi, described sequence information comprises address of setting out;
When arrival the n-th predetermined time, to n-th preset all terminals broadcast in single region send described sequence information, n is the integer being not less than 1 and being not more than N, described N be greater than 1 integer;
Wherein, the (n+1)th predetermined time is later than the n-th predetermined time; Described n-th presets and broadcasts single region for centered by described present position, address of setting out, and presets according to n-th the region broadcast single radius and determine; (n+1)th preset broadcast single radius be greater than n-th preset broadcast single radius.
Further, when arrival the n-th predetermined time, before sending described sequence information to the n-th default all terminals broadcast in single region, described method also comprises:
Determine that each presetting broadcasts single radius according to the first order probability of transaction that described N presets the History Order data broadcast in the identical a certain region of single regional extent;
Wherein, determine that each presetting broadcasts single radius according to the first order probability of transaction that described N presets the History Order data broadcast in the identical a certain region of single regional extent, comprising:
The History Order data analysis broadcast in the identical a certain region of single regional extent is preset to described N, the region that the probability of transaction that address is positioned at the History Order of this regional center of determining to set out is in the n-th preset range is the n-th region, radius corresponding to the n-th region is n-th preset and broadcast single radius, wherein, the radius that the (n+1)th region is corresponding is greater than radius corresponding to the n-th region.
Further, described when arrival the n-th predetermined time, preset to n-th all terminals broadcast in single region and send described sequence information, comprising:
When arrival the n-th predetermined time, obtain the terminal iidentification that n-th presets all terminals broadcast in single region, send described sequence information according to described terminal iidentification to described terminal.
Further, described method also comprises:
Obtain in preset time range the second order probability of transaction of carrying out corresponding to order transmission;
If described second order probability of transaction is less than predetermined threshold value, then adjusts each presetting and broadcast single radius and/or each predetermined time.
Further, after the request of calling a taxi described in described basis generates sequence information, described method also comprises:
Obtain the order density in predeterminable area, single radius and/or each predetermined time is broadcast according to each the presetting of described order density adjustment, described order density is the ratio of the area of quantity on order in described predeterminable area and described predeterminable area, and the quantity on order in described predeterminable area is that present position, address of setting out belongs to the quantity of the sequence information of described predeterminable area;
And/or,
Obtain the terminal density in predeterminable area, broadcast single radius and/or each predetermined time according to each the presetting of described terminal density adjustment, described terminal density is the ratio of the area of terminal quantity in described predeterminable area and described predeterminable area.
Second aspect, present invention also offers a kind of order pusher, comprising:
Receiving element, for receiving the request of calling a taxi that user equipment (UE) sends;
Generation unit, generate sequence information for the request of calling a taxi described in basis, described sequence information comprises address of setting out;
Judging unit, for judging whether arrival n-th predetermined time; N is the integer being not less than 1 and being not more than N, described N be greater than 1 integer;
Transmitting element, for when described judging unit determines arrival the n-th predetermined time, presets to n-th all terminals broadcast in single region and sends described sequence information;
Wherein, the (n+1)th predetermined time is later than the n-th predetermined time; Described n-th presets and broadcasts single region for centered by described present position, address of setting out, and presets according to n-th the region broadcast single radius and determine; (n+1)th preset broadcast single radius be greater than n-th preset broadcast single radius.
Further, described device also comprises: determining unit;
With the first order probability of transaction that described N presets the History Order data broadcast in the identical a certain region of single regional extent, described determining unit, determines that each presetting broadcasts single radius for basis;
Wherein, described determining unit, specifically for:
The History Order data analysis broadcast in the identical a certain region of single regional extent is preset to described N, the region that the probability of transaction that address is positioned at the History Order of this regional center of determining to set out is in the n-th preset range is the n-th region, radius corresponding to the n-th region is n-th preset and broadcast single radius, wherein, the radius that the (n+1)th region is corresponding is greater than radius corresponding to the n-th region.
Further, described transmitting element comprises the first acquisition module and sending module;
Described first acquisition module, for when arrival the n-th predetermined time, obtains the terminal iidentification that n-th presets all terminals broadcast in single region;
Described sending module, sends described sequence information for the terminal iidentification obtained according to described first acquisition module to described terminal.
Further, described device also comprises: the first adjustment unit;
Described first adjustment unit comprises the second acquisition module, judge module and the first adjusting module;
Described second acquisition module, for obtaining in preset time range the second order probability of transaction of carrying out corresponding to order transmission;
Described judge module, for judging whether described second order probability of transaction is less than predetermined threshold value;
Described first adjusting module, during for determining that at described judge module described second order probability of transaction is less than predetermined threshold value, adjusting each presetting and broadcasting single radius and/or each predetermined time.
Further, described device also comprises: the second adjustment unit;
Described second adjustment unit comprises the 3rd acquisition module and the second adjusting module; And/or, the 4th acquisition module and the 3rd adjusting module;
Described 3rd acquisition module, for described generation unit according to described in the request of calling a taxi generate after sequence information, obtain the order density in predeterminable area;
Described second adjusting module, each the presetting of order density adjustment for obtaining according to described 3rd acquisition module broadcasts single radius and/or each predetermined time, described order density is the ratio of the area of quantity on order in described predeterminable area and described predeterminable area, and the quantity on order in described predeterminable area is that present position, address of setting out belongs to the quantity of the sequence information of described predeterminable area;
Described 4th acquisition module, for described generation unit according to described in the request of calling a taxi generate after sequence information, obtain the terminal density in predeterminable area;
Described 3rd adjusting module, broadcast single radius and/or each predetermined time for each the presetting of terminal density adjustment obtained according to described 4th acquisition module, described terminal density is the ratio of the area of terminal quantity in described predeterminable area and described predeterminable area.
As shown from the above technical solution, order method for pushing provided by the invention, described (n+1)th predetermined time is set and is later than the n-th predetermined time, described (n+1)th preset broadcast single radius be greater than n-th preset broadcast single radius, thus make to receive the time of described sequence information more early with the departure place of order at a distance of nearer terminal, number of times is more, the time making to receive described sequence information with the departure place of order at a distance of farther terminal is more late, number of times is less, thus improve the terminal nearer with the departure place of order apart to the probability of transaction of this order, lower conclusion of the business distance, facilitate order and realize short distance conclusion of the business as soon as possible, thus significantly reduce cancellation of order rate, improve competition for orders success ratio.Also save channel from another point of view simultaneously, such as effectively save the channel of remote teminal, make it have an opportunity to receive more excellent order.
In instructions of the present invention, describe a large amount of detail.But can understand, embodiments of the invention can be put into practice when not having these details.In some instances, be not shown specifically known method, structure and technology, so that not fuzzy understanding of this description.
Above embodiment only in order to technical scheme of the present invention to be described, is not intended to limit; Although with reference to previous embodiment to invention has been detailed description, those of ordinary skill in the art is to be understood that; It still can be modified to the technical scheme described in foregoing embodiments, or carries out equivalent replacement to wherein portion of techniques feature; And these amendments or replacement, do not make the essence of appropriate technical solution depart from the spirit and scope of various embodiments of the present invention technical scheme.
Accompanying drawing explanation
In order to be illustrated more clearly in the embodiment of the present invention or technical scheme of the prior art, be briefly described to the accompanying drawing used required in embodiment or description of the prior art below, apparently, accompanying drawing in the following describes is only some embodiments of the present invention, for those of ordinary skill in the art, under the prerequisite not paying creative work, other accompanying drawing can also be obtained according to these figure.
Fig. 1 is the process flow diagram of the order method for pushing that first embodiment of the invention provides;
Fig. 2 is the process flow diagram of the order method for pushing that second embodiment of the invention provides;
Fig. 3 is the process flow diagram of the order method for pushing that third embodiment of the invention provides;
Fig. 4 is the process flow diagram of the order method for pushing that four embodiment of the invention provides;
Fig. 5 is the structural representation of the order pusher that fifth embodiment of the invention provides;
Fig. 6 is the structural representation of the order pusher that sixth embodiment of the invention provides;
Fig. 7 is the structural representation of the order pusher that seventh embodiment of the invention provides;
Fig. 8 is the structural representation of the order pusher that eighth embodiment of the invention provides.
Embodiment
Below in conjunction with the accompanying drawing in disclosure embodiment, be clearly and completely described the technical scheme in the embodiment of the present invention, obviously, described embodiment is only the present invention's part embodiment, instead of whole embodiments.Based on the embodiment in the present invention, those of ordinary skill in the art, not making the every other embodiment obtained under creative work prerequisite, belong to the scope of protection of the invention.
Below the partial words mentioned in the embodiment of the present invention is illustrated.
Subscriber equipment (the UserEquipment mentioned in the embodiment of the present invention, be called for short UE) refer to demand for services side, as the passenger in vehicles dial-a-cab the mobile phone that uses or landline telephone or other there is the equipment etc. of information transfer capability, such as smart mobile phone, personal digital assistant (PDA), panel computer, notebook computer, vehicle-mounted computer (carputer), handheld device, intelligent glasses, intelligent watch, wearable device, virtual display device or display enhancing equipment are (as GoogleGlass, OculusRift, Hololens, GearVR) etc.
The taxi taking platform mentioned in the embodiment of the present invention refers to the system of calling a taxi and corresponding background server thereof.Wherein, the system of calling a taxi is a management system, and it is for asking to provide corresponding service for user according to calling a taxi of the UE received.Wherein, UE call a taxi request in include departure place information and destination information.
The terminal mentioned in the embodiment of the present invention for providing service side, as the driver in vehicles dial-a-cab, the equipment such as the mobile terminal for order used or PC end.Such as above-mentioned demand for services side uses each equipment.In the embodiment of the present invention, in order to distinguish passenger and driver, user equipment (UE) and terminal is adopted to represent the equipment such as the mobile terminal that passenger and driver hold respectively respectively.
Fig. 1 shows the process flow diagram of the order method for pushing that first embodiment of the invention provides.As shown in Figure 1, the order method for pushing that the present embodiment provides comprises the steps:
Step 101: receive the request of calling a taxi that user equipment (UE) sends, generate sequence information according to the described request of calling a taxi, described sequence information comprises address of setting out.
In this step, in the order messages of generation except comprising address of setting out, also other information such as destination address are comprised.
Step 102: when arrival the n-th predetermined time, presets to n-th all terminals broadcast in single region and sends described sequence information.
In this step, when arrival the n-th predetermined time, preset to n-th all terminals broadcast in single region and send described sequence information, particularly, when arrival the n-th predetermined time, first obtain the terminal iidentification that n-th presets all terminals broadcast in single region, then send described sequence information according to described terminal iidentification to described terminal, know this sequence information to enable presetting all terminals broadcast in single region accordingly.
Such as, for a certain request of calling a taxi, generation is called a taxi with this and is asked the time of corresponding sequence information to be 8: 55: 10 on the 3rd August in 2015, so when arrival first predetermined time 8: 55: 11, obtain the terminal iidentification that the 1st presets all terminals broadcast in single region, then preset to the 1st all terminals broadcast in single region according to described terminal iidentification and send described sequence information.When arrival second predetermined time 8: 55: 18, obtain the terminal iidentification that the 2nd presets all terminals broadcast in single region, then preset to the 2nd all terminals broadcast in single region according to described terminal iidentification and send described sequence information.When arrival the 3rd predetermined time 8: 55: 25, obtain the terminal iidentification that the 3rd presets all terminals broadcast in single region, then preset to the 3rd all terminals broadcast in single region according to described terminal iidentification and send described sequence information.The rest may be inferred, when arrival the n-th predetermined time, first obtains the terminal iidentification that n-th presets all terminals broadcast in single region, then send described sequence information according to described terminal iidentification to described terminal.
Wherein, described n-th presets and broadcasts single region for centered by described present position, address of setting out, and presets according to n-th the region broadcast single radius and determine; (n+1)th preset broadcast single radius be greater than n-th preset broadcast single radius.Wherein, described n is the integer being not less than 1 and being not more than N, described N be greater than 1 integer; Described (n+1)th predetermined time is later than the n-th predetermined time.
Wherein, N (as n=N) presets and broadcasts single radius for the longest and effectively broadcast single distance, N presets and broadcasts single region is maximumly effectively broadcast single region, namely to N preset the region broadcast beyond single region send this sequence information time, do not have terminal and receive this sequence information.
Particularly, when the terminal iidentification of all terminals broadcast in single region is preset in acquisition n-th, be according to the address of setting out in described sequence information, obtain and preset at a distance of n-th the terminal iidentification broadcasting all terminals of single radius with described address of setting out.
Above-mentioned each presetting is broadcast single radius and is had and multiplely determine mode, determines as by empirical value, or by determining historical data analysis.Following second embodiment of the invention is exactly to call a taxi data by analyzing history in the past, obtains each presetting and broadcasts single radius.
In order to complete goal of the invention of the present invention, namely cancellation of order rate is reduced, improve in-plant order probability of transaction in other words, reduce conclusion of the business distance in other words conj.or perhaps, in this step, described (n+1)th predetermined time is set and is later than the n-th predetermined time, described (n+1)th preset broadcast single radius be greater than n-th preset broadcast single radius, thus make to receive the time of described sequence information more early with the departure place of order at a distance of nearer terminal, number of times is more, the time making to receive described sequence information with the departure place of order at a distance of farther terminal is more late, number of times is less, thus improve the terminal nearer with the departure place of order apart to the probability of transaction of this order, lower conclusion of the business distance, facilitate order and realize short distance conclusion of the business as soon as possible, thus significantly reduce cancellation of order rate, improve competition for orders success ratio.
In addition, when arrival (n-1)th predetermined time, after the (n-1)th default all terminals broadcast in single region send described sequence information, if before the n-th predetermined time, (n-1)th presets a certain terminal success competition for orders broadcasting single region, then at the n-th predetermined time, need not continue to preset to n-th all terminals broadcast in single region again and send described sequence information.The terminal quantity broadcast in single region is preset because the (n-1)th default terminal quantity broadcast in single region is less than n-th, more be less than N and preset the terminal quantity (i.e. the maximum terminal quantity effectively broadcast in single region) broadcast in single region, thus compared to prior art (sending sequence information directly to the maximum all terminals effectively broadcast in single region), save information transmitting channel and receives information channel.
In addition, for more remote terminal, owing to taking its receive channel later, therefore, sequence information that is more in-plant, that be more suitable for self can be received in time.
Order method for pushing described in the present embodiment, gradient division is carried out according to certain granularity in single region of broadcasting originally, broadcast by gradient and singly ensure that more early more times several hears order to nearer driver, more remote driver is more late less hears order, thus promote that order more closely strikes a bargain, effectively reduce conclusion of the business distance, and then effectively reduce cancellation of order rate.Also save channel from another point of view simultaneously, such as effectively save remote driver's channel, make it have an opportunity to hear more excellent order.
In a second embodiment of the present invention, see Fig. 2, before described step 102, described order method for pushing also comprises step 102 '.
Step 102 ': determine that each presetting broadcasts single radius according to the first order probability of transaction that described N presets the History Order data broadcast in the identical a certain region of single regional extent.
In this step, determine that each presetting broadcasts single radius according to the first order probability of transaction that described N presets the History Order data broadcast in the identical a certain region of single regional extent, comprising:
The History Order data analysis broadcast in the identical a certain region of single regional extent is preset to described N, the region that the probability of transaction that address is positioned at the History Order of this regional center of determining to set out is in the n-th preset range is the n-th region, radius corresponding to the n-th region is n-th preset and broadcast single radius, wherein, the radius that the (n+1)th region is corresponding is greater than radius corresponding to the n-th region.
Such as, preset with described N the History Order data broadcast in the identical a certain region of single regional extent by analyzing, the region that the probability of transaction that address is positioned at the History Order of this regional center of determining to set out is in the first preset range (as 80% ~ 100%) is first area, and the radius 200m corresponding with this first area first presets and broadcast single radius.The region that the probability of transaction that address is positioned at the History Order of this regional center of determining to set out is in the second preset range (as 60% ~ 80%) is second area, and the radius 400m corresponding with this second area second presets and broadcast single radius.The probability of transaction that address is positioned at the History Order of this regional center of determining to set out be in the 3rd preset range (as 40% ~ 60%) region be the 3rd region, the radius 800m corresponding with the 3rd region the 3rd presets and broadcasts single radius.The region that the probability of transaction that address is positioned at the History Order of this regional center of determining to set out is in the 4th preset range (as 20% ~ 40%) is the 4th region, and the radius 1000m corresponding with the 4th region the 4th presets and broadcast single radius.The region that the probability of transaction that address is positioned at the History Order of this regional center of determining to set out is in the 5th preset range (as 0% ~ 20%) is the 5th region, and the radius 1500m corresponding with the 5th region the 5th presets and broadcast single radius.
Above-mentioned be according to and described N the first order probability of transaction of presetting the History Order data broadcast in the identical a certain region of single regional extent determine that each presetting broadcasts single radius, certainly, also can determine that each presetting broadcasts single radius according to the first cancellation of order rate that described N presets the History Order data broadcast in the identical a certain region of single regional extent.
Such as, preset with described N the History Order data broadcast in the identical a certain region of single regional extent by analyzing, the region that the cancellation rate that address is positioned at the History Order of this regional center of determining to set out is in the first preset range (as 0% ~ 20%) is first area, the radius 200m corresponding with this first area (is to illustrate here, also be likely other values, as 180m) be first preset broadcast single radius.The region that the cancellation rate that address is positioned at the History Order of this regional center of determining to set out is in the second preset range (as 20% ~ 40%) is second area, and the radius 400m corresponding with this second area second presets and broadcast single radius.The cancellation rate that address is positioned at the History Order of this regional center of determining to set out be in the 3rd preset range (as 40% ~ 60%) region be the 3rd region, the radius 800m corresponding with the 3rd region the 3rd presets and broadcasts single radius.The region that the cancellation rate that address is positioned at the History Order of this regional center of determining to set out is in the 4th preset range (as 60% ~ 80%) is the 4th region, and the radius 1000m corresponding with the 4th region the 4th presets and broadcast single radius.The region that the probability of transaction that address is positioned at the History Order of this regional center of determining to set out is in the 5th preset range (as 80% ~ 100%) is the 5th region, and the radius 1500m corresponding with the 5th region the 5th presets and broadcast single radius.
In the 3rd embodiment of the present invention, see Fig. 3, after described step 102, described method also comprises step 103 ~ 104a.
Step 103: obtain in preset time range the second order probability of transaction of carrying out corresponding to order transmission.
Step 104: judge whether described second order probability of transaction is less than predetermined threshold value, if be less than, then performs step 104a.
Step 104a: adjust each presetting and broadcast single radius and/or each predetermined time.
In order to check the implementation result of the order method for pushing described in above-described embodiment, in the present embodiment, after having run the order method for pushing described in one section of above-described embodiment, obtain in preset time range (being less than or equal to the working time of the above order method for pushing) the second order probability of transaction of carrying out corresponding to order transmission, according to described second order probability of transaction situation, determine whether that each the presetting of adjustment broadcasts single radius and/or each predetermined time.
When whether described second order probability of transaction is less than predetermined threshold value, each the presetting chosen before expression broadcasts single radius and/or each predetermined time is not too suitable, needs to readjust each presetting and broadcasts single radius and/or each predetermined time.
Wherein, adjust each preset broadcast single radius time, each presetting can be redefined according to other historical datas (difference and the historical data in above-mentioned second embodiment) and broadcast single radius, or based on experience value each the presetting chosen before be broadcast single radius and finely tuned.
The meaning of the present embodiment is, constantly carries out effect detection to the order method for pushing of application of reaching the standard grade, and when finding poor effect, each the presetting of adjustment in real time broadcasts single radius and/or each predetermined time, pushes effect to reach reasonable order.
The present embodiment is with the implementation result of order probability of transaction for the order method for pushing described in index test above-described embodiment, certainly, can also according to other indexs, as cancellation of order rate etc.
In the 4th embodiment of the present invention, see Fig. 4, after described step 101, described method also comprises step 101 '.Wherein, the 4th embodiment of the present invention can be based upon on any one embodiment basis above-mentioned.
Step 101 ': obtain the order density in predeterminable area, broadcast single radius and/or each predetermined time according to each the presetting of described order density adjustment; And/or, obtain the terminal density in predeterminable area, broadcast single radius and/or each predetermined time according to each the presetting of described terminal density adjustment.
In this step, after generation sequence information, first obtain the order density in predeterminable area, then broadcast single radius and/or each predetermined time according to each the presetting of described order density adjustment.During the n-th predetermined time then after arrival n-th predetermined time or adjustment, to n-th preset broadcast that single radius determines n-th preset all terminals of broadcasting in single region or to n-th after adjustment preset broadcast that single radius determines n-th preset all terminals broadcast in single region and send described sequence information.
Wherein, described predeterminable area is centered by departure place, is less than or equal to N and presets the region broadcasting single region (maximum effectively broadcast single region).
Wherein, broadcast single radius comprise according to each the presetting of order density adjustment in predeterminable area:
When the order density in predeterminable area is greater than first threshold, lengthens each presetting and broadcast single radius.Such as, being that 5 gradients broadcast single region for one effectively being broadcast single Region dividing, supposing respectively to preset that to broadcast single radius be 200m, 400m, 800m, 1000m, 1500m.When the order density in predeterminable area is greater than first threshold, adjusts and respectively preset that to broadcast single radius be 230m, 500m, 900m, 1200m, 1500m.
When the order density in predeterminable area is less than first threshold, shortens each presetting and broadcast single radius; Such as, suppose respectively to preset that to broadcast single radius be 200m, 400m, 800m, 1000m, 1500m.When the order density in predeterminable area is less than first threshold, adjusts and respectively preset that to broadcast single radius be 150m, 300m, 500m, 800m, 1500m.
Wherein, adjust each predetermined time according to the order density in predeterminable area to comprise:
When the order density in predeterminable area is greater than first threshold, postpone part predetermined time; Such as, the 2nd and the 3rd predetermined time is postponed; When the order density in predeterminable area is less than first threshold, part predetermined time in advance, such as, the 2nd and the 3rd predetermined time in advance.
Described predeterminable area presets for being less than or equal to N (as n=N) region broadcasting single region.
Described order density is the ratio of the area of quantity on order in described predeterminable area and described predeterminable area, and the quantity on order in described predeterminable area is that present position, address of setting out belongs to the quantity of the sequence information of described predeterminable area; Described terminal density is the ratio of the area of terminal quantity in described predeterminable area and described predeterminable area.
In like manner, broadcast single radius comprise according to each the presetting of terminal density adjustment in predeterminable area:
When the terminal density in predeterminable area is greater than Second Threshold, shortens each presetting and broadcast single radius; Such as, suppose respectively to preset that to broadcast single radius be 200m, 400m, 800m, 1000m, 1500m.When the terminal density in predeterminable area is greater than Second Threshold, adjusts and respectively preset that to broadcast single radius be 150m, 300m, 500m, 800m, 1500m.
When the terminal density in predeterminable area is less than Second Threshold, lengthens each presetting and broadcast single radius.Such as, suppose respectively to preset that to broadcast single radius be 200m, 400m, 800m, 1000m, 1500m.When the terminal density in predeterminable area is less than Second Threshold, adjusts and respectively preset that to broadcast single radius be 230m, 500m, 900m, 1200m, 1500m.
Adjust each predetermined time according to the terminal density in predeterminable area to comprise:
When the terminal density in predeterminable area is greater than Second Threshold, part predetermined time in advance, such as, the 2nd and the 3rd predetermined time in advance.
When the terminal density in predeterminable area is less than Second Threshold, postpone part predetermined time.Such as, the 2nd and the 3rd predetermined time is postponed.
Certainly, above-mentioned several adjustment modes, just in order to illustrate, when practical application, can adopt other modes or determining preferably to adjust mode by repetition test and adjust above-mentioned each presetting and broadcast single radius and/or each predetermined time.
The present embodiment is before each default terminal transmission information broadcast in single region, single radius and/or each predetermined time is broadcast according to order density and/or each the presetting of terminal density adjustment, thus shorten order closing time and conclusion of the business distance substantially, and then improve order probability of transaction, lower cancellation of order rate.
Fifth embodiment of the invention provides a kind of order pusher, and see Fig. 5, this device comprises:
Receiving element 51, for receiving the request of calling a taxi that user equipment (UE) sends;
Generation unit 52, generate sequence information for the request of calling a taxi described in basis, described sequence information comprises address of setting out;
Judging unit 53, for judging whether arrival n-th predetermined time; N is the integer being not less than 1 and being not more than N, described N be greater than 1 integer;
Transmitting element 54, for when described judging unit 53 determines arrival the n-th predetermined time, presets to n-th all terminals broadcast in single region and sends described sequence information;
Wherein, the (n+1)th predetermined time is later than the n-th predetermined time; Described n-th presets and broadcasts single region for centered by described present position, address of setting out, and presets according to n-th the region broadcast single radius and determine; (n+1)th preset broadcast single radius be greater than n-th preset broadcast single radius.
Further, described transmitting element 54 comprises the first acquisition module 541 and sending module 542;
Described first acquisition module 541, for when arrival the n-th predetermined time, obtains the terminal iidentification that n-th presets all terminals broadcast in single region;
Described sending module 542, sends described sequence information for the terminal iidentification obtained according to described first acquisition module to described terminal.
In the 6th embodiment of the present invention, see Fig. 6, described device also comprises: determining unit 55;
With the first order probability of transaction that described N presets the History Order data broadcast in the identical a certain region of single regional extent, described determining unit 55, determines that each presetting broadcasts single radius for basis.
Wherein, described determining unit 55, specifically for:
The History Order data analysis broadcast in the identical a certain region of single regional extent is preset to described N, the region that the probability of transaction that address is positioned at the History Order of this regional center of determining to set out is in the n-th preset range is the n-th region, radius corresponding to the n-th region is n-th preset and broadcast single radius, wherein, the radius that the (n+1)th region is corresponding is greater than radius corresponding to the n-th region.
In the 7th embodiment of the present invention, see Fig. 7, described device also comprises: the first adjustment unit 56;
Described first adjustment unit 56 comprises the second acquisition module 561, judge module 562 and the first adjusting module 563;
Described second acquisition module 561, for obtaining in preset time range the second order probability of transaction of carrying out corresponding to order transmission;
Described judge module 562, for judging whether described second order probability of transaction is less than predetermined threshold value;
Described first adjusting module 563, during for determining that described second order probability of transaction is less than predetermined threshold value at described judge module 562, adjusting each presetting and broadcasting single radius and/or each predetermined time.
In the 8th embodiment of the present invention, see Fig. 8, described device also comprises the second adjustment unit 57;
Described second adjustment unit 57 comprises the 3rd acquisition module 571 and the second adjusting module 572; And/or, the 4th acquisition module 573 and the 3rd adjusting module 574;
Described 3rd acquisition module 571, after generating sequence information at described generation unit 52 according to the described request of calling a taxi, obtains the order density in predeterminable area;
Described second adjusting module 572, each the presetting of order density adjustment for obtaining according to described 3rd acquisition module 571 broadcasts single radius and/or each predetermined time, described order density is the ratio of the area of quantity on order in described predeterminable area and described predeterminable area, and the quantity on order in described predeterminable area is that present position, address of setting out belongs to the quantity of the sequence information of described predeterminable area;
Described 4th acquisition module 573, after generating sequence information at described generation unit 52 according to the described request of calling a taxi, obtains the terminal density in predeterminable area;
Described 3rd adjusting module 574, each the presetting of terminal density adjustment for obtaining according to described 4th acquisition module 573 broadcasts single radius and/or each predetermined time, and described terminal density is the ratio of the area of terminal quantity in described predeterminable area and described predeterminable area.
Order pusher described in above-described embodiment can be embedded in taxi taking platform to be applied.
Order pusher described in above-described embodiment may be used for performing the order method for pushing described in above-described embodiment, and it realizes principle and technique effect is similar, no longer describes in detail herein.
One of ordinary skill in the art will appreciate that: all or part of step realizing said method embodiment can have been come by the hardware that programmed instruction is relevant, aforesaid program can be stored in the storage medium of embodied on computer readable, this program, when performing, performs the step comprising said method embodiment.

Claims (10)

1. an order method for pushing, is characterized in that, described method comprises:
Receive the request of calling a taxi that user equipment (UE) sends, generate sequence information according to the described request of calling a taxi, described sequence information comprises address of setting out;
When arrival the n-th predetermined time, to n-th preset all terminals broadcast in single region send described sequence information, n is the integer being not less than 1 and being not more than N, described N be greater than 1 integer;
Wherein, the (n+1)th predetermined time is later than the n-th predetermined time; Described n-th presets and broadcasts single region for centered by described present position, address of setting out, and presets according to n-th the region broadcast single radius and determine; (n+1)th preset broadcast single radius be greater than n-th preset broadcast single radius.
2. method according to claim 1, is characterized in that, when arrival the n-th predetermined time, before sending described sequence information to the n-th default all terminals broadcast in single region, described method also comprises:
Determine that each presetting broadcasts single radius according to the first order probability of transaction that described N presets the History Order data broadcast in the identical a certain region of single regional extent;
Wherein, determine that each presetting broadcasts single radius according to the first order probability of transaction that described N presets the History Order data broadcast in the identical a certain region of single regional extent, comprising:
The History Order data analysis broadcast in the identical a certain region of single regional extent is preset to described N, the region that the probability of transaction that address is positioned at the History Order of this regional center of determining to set out is in the n-th preset range is the n-th region, radius corresponding to the n-th region is n-th preset and broadcast single radius, wherein, the radius that the (n+1)th region is corresponding is greater than radius corresponding to the n-th region.
3. method according to claim 1, is characterized in that, described when arrival the n-th predetermined time, presets all terminals broadcast in single region and sends described sequence information, comprising to n-th:
When arrival the n-th predetermined time, obtain the terminal iidentification that n-th presets all terminals broadcast in single region, send described sequence information according to described terminal iidentification to described terminal.
4. method according to claim 1, is characterized in that, described method also comprises:
Obtain in preset time range the second order probability of transaction of carrying out corresponding to order transmission;
If described second order probability of transaction is less than predetermined threshold value, then adjusts each presetting and broadcast single radius and/or each predetermined time.
5., according to the arbitrary described method of Claims 1 to 4, it is characterized in that, after the request of calling a taxi described in described basis generates sequence information, described method also comprises:
Obtain the order density in predeterminable area, single radius and/or each predetermined time is broadcast according to each the presetting of described order density adjustment, described order density is the ratio of the area of quantity on order in described predeterminable area and described predeterminable area, and the quantity on order in described predeterminable area is that present position, address of setting out belongs to the quantity of the sequence information of described predeterminable area;
And/or,
Obtain the terminal density in predeterminable area, broadcast single radius and/or each predetermined time according to each the presetting of described terminal density adjustment, described terminal density is the ratio of the area of terminal quantity in described predeterminable area and described predeterminable area.
6. an order pusher, is characterized in that, comprising:
Receiving element, for receiving the request of calling a taxi that user equipment (UE) sends;
Generation unit, generate sequence information for the request of calling a taxi described in basis, described sequence information comprises address of setting out;
Judging unit, for judging whether arrival n-th predetermined time; N is the integer being not less than 1 and being not more than N, described N be greater than 1 integer;
Transmitting element, for when described judging unit determines arrival the n-th predetermined time, presets to n-th all terminals broadcast in single region and sends described sequence information;
Wherein, the (n+1)th predetermined time is later than the n-th predetermined time; Described n-th presets and broadcasts single region for centered by described present position, address of setting out, and presets according to n-th the region broadcast single radius and determine; (n+1)th preset broadcast single radius be greater than n-th preset broadcast single radius.
7. device according to claim 6, is characterized in that, also comprises: determining unit;
With the first order probability of transaction that described N presets the History Order data broadcast in the identical a certain region of single regional extent, described determining unit, determines that each presetting broadcasts single radius for basis;
Wherein, described determining unit, specifically for:
The History Order data analysis broadcast in the identical a certain region of single regional extent is preset to described N, the region that the probability of transaction that address is positioned at the History Order of this regional center of determining to set out is in the n-th preset range is the n-th region, radius corresponding to the n-th region is n-th preset and broadcast single radius, wherein, the radius that the (n+1)th region is corresponding is greater than radius corresponding to the n-th region.
8. device according to claim 6, is characterized in that, described transmitting element comprises the first acquisition module and sending module;
Described first acquisition module, for when arrival the n-th predetermined time, obtains the terminal iidentification that n-th presets all terminals broadcast in single region;
Described sending module, sends described sequence information for the terminal iidentification obtained according to described first acquisition module to described terminal.
9. device according to claim 6, is characterized in that, also comprises: the first adjustment unit;
Described first adjustment unit comprises the second acquisition module, judge module and the first adjusting module;
Described second acquisition module, for obtaining in preset time range the second order probability of transaction of carrying out corresponding to order transmission;
Described judge module, for judging whether described second order probability of transaction is less than predetermined threshold value;
Described first adjusting module, during for determining that at described judge module described second order probability of transaction is less than predetermined threshold value, adjusting each presetting and broadcasting single radius and/or each predetermined time.
10., according to the arbitrary described device of claim 6 ~ 9, it is characterized in that, also comprise: the second adjustment unit;
Described second adjustment unit comprises the 3rd acquisition module and the second adjusting module; And/or, the 4th acquisition module and the 3rd adjusting module;
Described 3rd acquisition module, for described generation unit according to described in the request of calling a taxi generate after sequence information, obtain the order density in predeterminable area;
Described second adjusting module, each the presetting of order density adjustment for obtaining according to described 3rd acquisition module broadcasts single radius and/or each predetermined time, described order density is the ratio of the area of quantity on order in described predeterminable area and described predeterminable area, and the quantity on order in described predeterminable area is that present position, address of setting out belongs to the quantity of the sequence information of described predeterminable area;
Described 4th acquisition module, for described generation unit according to described in the request of calling a taxi generate after sequence information, obtain the terminal density in predeterminable area;
Described 3rd adjusting module, broadcast single radius and/or each predetermined time for each the presetting of terminal density adjustment obtained according to described 4th acquisition module, described terminal density is the ratio of the area of terminal quantity in described predeterminable area and described predeterminable area.
CN201510516040.6A 2015-01-29 2015-08-20 Order pushing method and device Pending CN105117842A (en)

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Application Number Priority Date Filing Date Title
CN201510516040.6A CN105117842A (en) 2015-08-20 2015-08-20 Order pushing method and device
SG11201706188YA SG11201706188YA (en) 2015-01-29 2016-01-29 Order allocation system and method
US15/547,221 US10977585B2 (en) 2015-01-29 2016-01-29 Order allocation system and method
EP16742811.9A EP3252705A4 (en) 2015-01-29 2016-01-29 Order allocation system and method
PCT/CN2016/072840 WO2016119749A1 (en) 2015-01-29 2016-01-29 Order allocation system and method
KR1020177024089A KR20180013843A (en) 2015-01-29 2016-01-29 Order allocation system and method
PH12017501364A PH12017501364A1 (en) 2015-01-29 2017-07-28 Order allocation system and method
HK18104774.4A HK1245473A1 (en) 2015-01-29 2018-04-12 Order allocation system and method
US17/227,439 US20210232984A1 (en) 2015-01-29 2021-04-12 Order allocation system and method

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Application publication date: 20151202