Method, system and mixer truck for determining profit of mixer truck holder

By setting up a positioning device on the mixer truck, using inversion marks and mileage data to calculate the number of transportation times and revenue, combined with cost data, the problem of low profit calculation efficiency of the mixer truck holder is solved, and accurate profit statistics are achieved.

CN114358481BActive Publication Date: 2025-07-11ZHONGKE YUNGU TECH +1
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Patent Information

Application Number
CN202111428150.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-11-26
Publication Date
2025-07-11
Estimated Expiration
2041-11-26

AI Technical Summary

Technical Problem

In the prior art, the profit calculation efficiency of the mixer truck holder is low, and it is impossible to accurately count the volume of the transported party and the monthly profit. The existing methods are time-consuming and labor-intensive and easy to miss or misread.

Method used

The working condition data is obtained through the positioning device set on the mixer truck, the number of transportation is determined using the reversal mark and mileage, the revenue is calculated based on the vehicle square quantity and square quantity price, and the relevant cost data is obtained, and the profit is finally calculated.

Benefits of technology

Accurately calculate the number of transport times and profits of the mixer truck, improve the profit statistics efficiency, provide real profit data support for the mixer truck holders, and reduce the situation of missed records or repeated records.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present invention discloses a method, a system and a mixer truck for determining the profit of the mixer truck holder. The method includes: obtaining the working condition data of the mixer truck through a positioning device arranged on the mixer truck; determining the number of deliveries of the mixer truck according to the reverse mark and the driving mileage in the working condition data; obtaining the vehicle type volume and the volume price of the mixer truck; determining the income generated by the mixer truck according to the number of deliveries, the vehicle type volume and the volume price; obtaining the cost data associated with the mixer truck; subtracting the cost data from the income to obtain the profit of the mixer truck; and determining the profit data of the mixer truck holder according to the profit of each mixer truck. The present invention can accurately calculate the number of deliveries of the mixer truck, so as to obtain the final profit situation of the mixer truck holder, improve the statistical efficiency of the profit of the mixer truck holder, and provide effective data support for subsequent analysis of the value of the mixer truck holder and monitoring of the revenue risk of the mixer truck holder.
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Description

Technical Field

[0001] The present invention relates to the technical field of mixer trucks, and in particular, to a method, a system and a mixer truck for determining the profit of the mixer truck holder. Background Art

[0002] In the field of construction machinery, the profit calculation of mixer trucks (such as mixer trucks) is a difficult problem. Since enterprises only have data such as the driving mileage of the mixer trucks of the mixer truck holders (i.e., customers), and cannot directly obtain the specific transportation volume data of the customers, they cannot accurately know the specific working volume of the mixer trucks of the customers, and thus cannot calculate the monthly profit and annual profit of the customers. In the prior art, the statistical method for the transportation times of mixer trucks is to manually count based on the operation track of the positioning device, and special staff need to be arranged to continuously check the track operation diagram to record data, which is not only time-consuming and laborious but also prone to omission or misreading, resulting in low statistical efficiency of the profit of the mixer truck holders. Summary of the Invention

[0003] The purpose of the present invention is to provide a method, a system and a mixer truck for determining the profit of the mixer truck holder, so as to solve the problem of low production value calculation efficiency of the mixer truck holder in the prior art.

[0004] To achieve the above purpose, the present invention provides a method for determining the profit of the mixer truck holder, the method comprising:

[0005] Obtaining the working condition data of the mixer truck through a positioning device arranged on the mixer truck;

[0006] Determining the transportation times of the mixer truck according to the reverse mark and the driving mileage in the working condition data;

[0007] Obtaining the vehicle type volume and volume price of the mixer truck;

[0008] Determining the income generated by the mixer truck according to the transportation times, the vehicle type volume and the volume price;

[0009] Obtaining the cost data associated with the mixer truck;

[0010] Subtracting the cost data from the income to obtain the profit of the mixer truck; and

[0011] Determining the profit data of the mixer truck holder according to the profit of each mixer truck.

[0012] In an embodiment of the present invention, determining the transportation times of the mixer truck according to the reverse mark and the driving mileage in the working condition data includes:

[0013] When the reverse mark is monitored and the current driving mileage meets the preset condition, marking one transportation time;

[0014] Determine the transportation times of the mixer truck according to the sum of the operation times of the tags.

[0015] In an embodiment of the present invention, when a reverse tag is monitored and the current driving mileage meets a preset condition, marking one transportation time includes:

[0016] When a reverse tag is monitored, record the current mileage;

[0017] When the difference between the current mileage and the mileage corresponding to the previous transportation time is greater than the preset mileage, mark the current transportation time;

[0018] When the difference between the current mileage and the mileage corresponding to the previous transportation time is not greater than the preset mileage, do not mark the current transportation time.

[0019] In an embodiment of the present invention, obtaining cost data associated with the mixer truck includes:

[0020] Obtain the labor cost, vehicle insurance cost, equipment maintenance cost, and fuel consumption cost of the mixer truck.

[0021] In an embodiment of the present invention, obtaining the fuel consumption cost of the mixer truck includes:

[0022] Obtain the fuel consumption of the mixer truck through a fuel consumption detection device provided on the mixer truck;

[0023] Determine the fuel consumption cost of the mixer truck according to the fuel consumption and the oil price.

[0024] In an embodiment of the present invention, obtaining the fuel consumption cost of the mixer truck includes:

[0025] Obtain the vehicle load, vehicle average speed, and transportation distance of the mixer truck within a single trip;

[0026] Determine the single-trip fuel consumption of the mixer truck according to the vehicle load, vehicle average speed, and transportation distance;

[0027] Add up the single-trip fuel consumption of all trips of the mixer truck to obtain the total fuel consumption;

[0028] Determine the fuel consumption cost of the mixer truck according to the total fuel consumption and the oil price.

[0029] A second aspect of the present invention provides a server, including:

[0030] A memory configured to store instructions; and

[0031] A processor configured to call instructions from the memory and be able to implement the above method for determining the profit of the mixer truck holder when executing the instructions.

[0032] In a third aspect of the present invention, there is provided a machine-readable storage medium having instructions stored thereon for causing a machine to execute the method for determining the profit of the mixer truck holder as described above.

[0033] In a fourth aspect of the present invention, there is provided a system for determining the profit of a mixer truck holder, the system comprising:

[0034] A positioning device disposed on the mixer truck for collecting the working condition data of the mixer truck;

[0035] The above-mentioned server, communicatively connected to the positioning device, for receiving the working condition data sent by the positioning device.

[0036] In a fifth aspect of the present invention, there is provided a mixer truck comprising the above-mentioned system for determining the profit of the mixer truck holder.

[0037] Through the above technical solutions, the processor determines the number of deliveries of the mixer truck according to the reverse mark and the driving mileage in the obtained working condition data of the mixer truck, combines the vehicle type volume and the volume price of the mixer truck to determine the income generated by the mixer truck, and further obtains the profit of the mixer truck; finally, the profit data of the mixer truck holder is determined according to the profit of each mixer truck. The present invention models the real business scenario of the mixer truck holder through the collected data, accurately calculates the number of deliveries of the mixer truck, thereby obtaining the final profit situation of the mixer truck holder, improving the statistical efficiency of the profit of the mixer truck holder, and providing effective data support for subsequent analysis of the value of the mixer truck holder and monitoring of the revenue risk of the mixer truck holder.

[0038] Other features and advantages of the present invention will be described in detail in the subsequent specific implementation section. BRIEF DESCRIPTION OF THE DRAWINGS

[0039] The accompanying drawings are used to provide a further understanding of the present invention, and constitute a part of the specification, and are used to explain the present invention together with the following specific implementation, but do not constitute a limitation to the present invention. In the accompanying drawings:

[0040] Figure 1 is a flowchart of a method for determining the profit of a mixer truck holder provided by an embodiment of the present invention;

[0041] Figure 2 is a schematic diagram of a mixer truck business scenario provided by an embodiment of the present invention;

[0042] Figure 3 is a block diagram of the structure of a server provided by an embodiment of the present invention;

[0043] Figure 4 is a schematic diagram of the structure of a system for determining the profit of a mixer truck holder provided by an embodiment of the present invention. Detailed implementation manners

[0044] The following will describe in detail the detailed implementation manners of the present invention with reference to the accompanying drawings. It should be understood that the detailed implementation manners described herein are only for the purpose of illustrating and explaining the present invention, and are not used to limit the present invention.

[0045] It should be noted that if there are directional indications (such as up, down, left, right, front, back,...) involved in the embodiments of the present invention, then such directional indications are only used to explain the relative positional relationship, movement conditions, etc. between components in a specific posture (as shown in the accompanying drawings). If this specific posture changes, then such directional indications will also change accordingly.

[0046] In addition, if there are descriptions such as "first", "second", etc. involved in the embodiments of the present invention, then such descriptions of "first", "second", etc. are only for descriptive purposes, and cannot be understood as indicating or implying their relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first", "second" may explicitly or implicitly include at least one such feature. In addition, the technical solutions between various embodiments can be combined with each other, but it must be based on the ability of those of ordinary skill in the art to implement. When the combination of technical solutions results in contradictions or cannot be implemented, it should be considered that such a combination of technical solutions does not exist and is not within the protection scope required by this application.

[0047] Figure 1 is a schematic flowchart of a method for determining the profit of the mixer truck holder provided by an embodiment of the present invention. As Figure 1 shown, an embodiment of the present invention provides a method for determining the profit of the mixer truck holder, and the method may include the following steps.

[0048] Step 101: Obtain the working condition data of the mixer truck through a positioning device provided on the mixer truck.

[0049] In an embodiment of the present invention, a mixer truck is a special truck for transporting construction concrete. A cylindrical mixing drum is provided on the mixer truck to transport the mixed concrete. Each mixer truck held by a mixer truck holder includes a positioning device. Among them, the positioning device may include, but is not limited to, a Global Positioning System (GPS) and other devices that can be used to collect source data of the mixer truck. The source data of the mixer truck may include, but is not limited to, working condition data and marketing data. The processor processes the working condition data and marketing data collected by the positioning device for the mixer truck held by the mixer truck holder, and then processes the working condition data and marketing data to obtain effective indicators. Among them, the effective indicators may include, but are not limited to: forward and reverse marks of the mixer truck, vehicle driving mileage, vehicle working hours, pumped volume, fuel and other loss data, vehicle operation unit price data in different regions, basic quantity of customer orders, and repayment data, etc. The processing methods of the processor for the source data may include, but are not limited to: invalid data cleaning, abnormal data correction, and missing data filling, etc.

[0050] Step 102: Determine the transportation times of the mixer truck according to the reverse mark and driving mileage in the working condition data.

[0051] Figure 2 It is a schematic diagram of a mixer truck business scenario provided by an embodiment of the present invention. As Figure 2 shown, the mixer truck shuttles between the mixing station and the construction site. Therefore, when calculating the output value of the mixer truck, the transportation times of the mixer truck need to be considered.

[0052] The business scenario of the mixer truck includes the following steps: S1. Waiting: The mixer truck starts and waits in the mixing station (the mixing drum rotates forward or does not rotate); S2. Loading: The mixer truck loads concrete into the mixing drum under the mixing station (the mixing drum rotates forward); S3. Transporting: The mixer truck transports the concrete to the construction site (the mixing drum rotates forward); S4. Unloading: Unload the concrete in the drum to the feeding port of the pump truck or directly pour it onto the construction site (the mixing drum rotates reversely); S5. Washing the car: Cleaning the residual materials (the rotation direction of the mixing drum is uncertain); S6. Returning: The empty truck returns to the mixing station (the mixing drum rotates forward or does not rotate); S1. Waiting: Waiting in the mixing station for the next loading (the mixing drum rotates forward or does not rotate). It can be seen that when the mixer truck unloads in step S4, the mixing drum rotates reversely. At this time, the reverse mark of the mixing drum can be obtained. When the mixer truck washes the car in step S5, the rotation direction of the mixing drum is uncertain. However, since the mixer truck basically washes the car in place and has a small activity range, the mileage of the mixer truck is small. A threshold can be set to determine whether to mark this reverse as a reverse mark. By viewing the reverse mark and judging whether this reverse mark is recorded as one transportation time according to the mileage in the embodiment of the present invention, the real business data of the mixer truck can be collected, reducing the situation of missing records or duplicate records, which is not only easy to operate, but also improves the accuracy and efficiency of data collection.

[0053] Step 103: Obtain the vehicle type capacity and the price per cubic meter of the mixer truck.

[0054] In an embodiment of the present invention, the processor can also obtain the vehicle type capacity and the price per cubic meter of the mixer truck through a positioning device. The vehicle type capacity refers to the capacity of the mixing drum of each mixer truck to hold concrete, and the price per cubic meter refers to the operating price of the mixer truck in the local area.

[0055] Step 104: Determine the income generated by the mixer truck based on the number of trips, the vehicle type capacity, and the price per cubic meter.

[0056] In an embodiment of the present invention, the processor calculates the total number of trips N of the mixer truck, and combines the vehicle type capacity P and the price per cubic meter V of the mixer truck to obtain the income (i.e., the final output value) G of the mixer truck: G = N * P * V. In this way, the output value of each mixer truck can be calculated.

[0057] Step 105: Obtain the cost data associated with the mixer truck.

[0058] Each mixer truck incurs certain costs. Therefore, when calculating the profit of the mixer truck, it is necessary to subtract the cost data from the income to obtain the profit of the mixer truck. In an embodiment of the present invention, the processor can also obtain the cost data of each mixer truck through a positioning device, such as: the labor cost (salary + commission) of the mixer truck, the vehicle insurance cost, the equipment maintenance cost, and the fuel consumption cost, etc. The cost standards for different regions and different mixers are inconsistent, and the cost data can be collected according to the actual situation of the region.

[0059] Step 106: Subtract the cost data from the income to obtain the profit of the mixer truck.

[0060] In an embodiment of the present invention, subtracting the cost data of each mixer truck from the income of each mixer truck can obtain the profit of the mixer truck, so as to determine the profit data of the mixer truck holder.

[0061] Step 107: Determine the profit data of the mixer truck holder based on the profit of each mixer truck.

[0062] In an embodiment of the present invention, the mixer truck holder may hold multiple mixer trucks, and the vehicle type capacity, cost, etc. of each mixer truck may be different. Therefore, to determine the profit data of the mixer truck holder, the profits of each mixer truck can be added together to obtain the final profit data of the mixer truck holder. In one example, the model for determining the profit data of the mixer truck holder can satisfy the following formula:

[0063] G = ∑ j (n * p * v - l - i - m - c);

[0064] Wherein, G is the profit data of the mixer truck holder, j is the number of mixer trucks held by the mixer truck holder; n is the number of trips of each mixer truck, p is the volume of each mixer truck's model, v is the price per volume of each mixer truck; l is the labor cost of each mixer truck, i is the vehicle insurance cost of each mixer truck, m is the equipment maintenance cost of each mixer truck, and c is the fuel consumption cost of each mixer truck. In this way, the profit data of each mixer truck holder can be obtained according to the above model for determining the profit data of the mixer truck holder, providing effective data support for subsequent analysis of the value of the mixer truck holder and monitoring the revenue risk of the mixer truck holder.

[0065] Through the above technical solution, the processor determines the number of trips of the mixer truck according to the reverse mark and driving mileage in the working condition data of the mixer truck, combines the volume of each mixer truck's model and the price per volume to determine the income generated by the mixer truck, and further obtains the profit of the mixer truck; finally, the profit data of the mixer truck holder is determined according to the profit of each mixer truck. The present invention models the real business scenario of the mixer truck holder through the collected data, accurately calculates the number of trips of the mixer truck, thereby obtaining the final profit situation of the mixer truck holder, improving the statistical efficiency of the profit of the mixer truck holder, and providing effective data support for subsequent analysis of the value of the mixer truck holder and monitoring the revenue risk of the mixer truck holder.

[0066] In the embodiment of the present invention, step 102, determining the number of trips of the mixer truck according to the reverse mark and driving mileage in the working condition data may include:

[0067] When the reverse mark is monitored and the current driving mileage meets the preset conditions, mark the number of trips once;

[0068] Determine the number of trips of the mixer truck according to the sum of the marked operation times.

[0069] Specifically, as Figure 2 shown, the mixer truck shuttles between the mixing station and the construction site. Therefore, when calculating the output value of the mixer truck, the number of trips of the mixer truck needs to be considered. The mixer truck reverses when unloading in step S4. At this time, the reverse mark of the mixing drum can be obtained. When the mixer truck washes the car in step S5, the steering of the mixing drum is uncertain. However, since the mixer truck basically washes the car in place and has a small activity range, the mileage of the mixer truck is small. A threshold can be set to determine whether to mark this reverse as a reverse mark. In summary, in the embodiment of the present invention, by checking the reverse mark and judging whether the reverse mark is recorded as the number of trips according to the mileage, the real business data of the mixer truck can be collected, reducing the situation of missing records or duplicate records, which is not only easy to operate, but also improves the accuracy and efficiency of data collection.

[0070] In an embodiment of the present invention, when a reverse mark is monitored and the current driving mileage meets a preset condition, marking the number of transports once may include:

[0071] When a reverse mark is monitored, record the current mileage;

[0072] When the difference between the current mileage and the mileage corresponding to the previous number of transports is greater than a preset mileage, mark the current number of transports;

[0073] When the difference between the current mileage and the mileage corresponding to the previous number of transports is not greater than the preset mileage, do not mark the current number of transports.

[0074] Specifically, when the processor monitors a reverse mark, the mixer truck may be in the state of discharging at S4, the state of washing at S5, or reversing in the mixing station. Therefore, based on the reverse mark alone, it is impossible to accurately collect whether the mixer truck has completed a transport. In an embodiment of the present invention, while the processor monitors the reverse mark, it is also necessary to record the current mileage. Use the difference between the current mileage and the mileage of the previous number of transports to determine whether the difference is greater than the preset mileage. When the difference is greater than the preset mileage, it means that the mixer truck is not moving in a small range and can be marked as the number of transports once. When the difference is not greater than the preset mileage, it means that the mixer truck is moving in a small range and this reverse mark cannot be marked as the number of transports once.

[0075] In one example, for a single mixer truck, taking days as the unit, sort the time of the day from small to large, mark the initial time, that is, the mileage at the start time of the mixer truck. When the processor monitors a reverse mark, mark the number of runs as 1 and record the first mileage at this time. Continue to search for the reverse mark along the time. When the next reverse mark appears, record the corresponding second mileage. Take the difference between the second mileage and the first mileage. When the difference is greater than the preset mileage (such as 1.5 km), mark this reverse mark as the number of transports once. When the difference is not greater than the preset mileage, do not mark this reverse mark as the number of transports once. In this way, the situation of missing records or duplicate records is reduced, which is not only easy to operate, but also improves the accuracy and efficiency of data collection.

[0076] In an embodiment of the present invention, step 105, obtaining cost data associated with the mixer truck may include:

[0077] Obtain the labor cost, vehicle insurance cost, equipment maintenance cost, and fuel consumption cost of the mixer truck.

[0078] Specifically, the processor can also obtain the cost data of each mixer truck through the positioning device. For example: the labor cost of the mixer truck (salary + commission), vehicle insurance cost, equipment maintenance cost, fuel consumption cost, etc. The cost standards of different regions and different mixers are inconsistent, and the cost data can be collected according to the actual situation of the region. In this way, the profit of a single mixer truck can be obtained based on the output value and cost data of the mixer truck.

[0079] In the embodiment of the present invention, obtaining the fuel consumption cost of the mixer truck includes:

[0080] Obtaining the fuel consumption of the mixer truck through the fuel consumption detection device provided on the mixer truck;

[0081] Determining the fuel consumption cost of the mixer truck according to the fuel consumption and the oil price.

[0082] Specifically, some mixer trucks are provided with fuel consumption detection devices. The processor can communicate with the fuel consumption detection devices of each mixer truck to obtain the fuel consumption of the mixer truck. Further, the fuel consumption cost of the mixer truck can be determined according to the fuel consumption and the oil price of the mixer truck, so as to accurately obtain the fuel consumption cost of the mixer truck for calculating the profit of each mixer truck.

[0083] In the embodiment of the present invention, obtaining the fuel consumption cost of the mixer truck includes:

[0084] Obtaining the vehicle load, vehicle average speed and transportation distance of the mixer truck within a single trip;

[0085] Determining the fuel consumption of a single trip of the mixer truck according to the vehicle load, vehicle average speed and transportation distance;

[0086] Adding up the fuel consumption of all single trips of the mixer truck to obtain the total fuel consumption;

[0087] Determining the fuel consumption cost of the mixer truck according to the total fuel consumption and the oil price.

[0088] Specifically, some mixer trucks are not provided with special fuel consumption detection devices. However, the fuel consumption cost of a single mixer truck can be determined according to the vehicle load, average speed and transportation distance of the mixer truck. In the case of a large vehicle load, a small vehicle average speed or a long transportation distance, the fuel consumption cost is large; in the case of a small vehicle load, a large vehicle average speed or a short transportation distance, the fuel consumption cost is small.

[0089] In an embodiment of the present invention, the processor can obtain the vehicle load, average vehicle speed, and transportation distance of each mixer truck through a positioning device, and thus determine the fuel consumption of a single trip of the mixer truck based on the vehicle load, average vehicle speed, and transportation distance. Adding up the fuel consumption of all single trips can obtain the total fuel consumption, and further determine the fuel consumption cost of the mixer truck based on the total fuel consumption and the oil price. Through the above method, even without setting up a dedicated fuel consumption acquisition device, the fuel consumption of the mixer truck can be efficiently obtained.

[0090] Figure 3 is a structural block diagram of a server provided by an embodiment of the present invention. As Figure 3 shown, the present invention provides a server, which may include:

[0091] A memory 310, configured to store instructions; and

[0092] A processor 320, configured to call instructions from the memory 310 and be able to implement the above method for determining the profit of the mixer truck holder when executing the instructions.

[0093] Specifically, in an embodiment of the present invention, the processor 320 may be configured to:

[0094] Obtain the working condition data of the mixer truck through a positioning device set on the mixer truck;

[0095] Determine the transportation times of the mixer truck according to the reverse mark and driving mileage in the working condition data;

[0096] Obtain the vehicle model volume and volume price of the mixer truck;

[0097] Determine the income generated by the mixer truck according to the transportation times, vehicle model volume, and volume price;

[0098] Obtain the cost data associated with the mixer truck;

[0099] Subtract the cost data from the income to obtain the profit of the mixer truck; and

[0100] Determine the profit data of the mixer truck holder according to the profit of each mixer truck.

[0101] In an embodiment of the present invention, a mixer truck is a special truck for transporting concrete used in construction. A cylindrical mixing drum is provided on the mixer truck to transport the mixed concrete. Each mixer truck held by a mixer truck holder includes a positioning device. Among them, the positioning device may include, but is not limited to, devices such as GPS that can be used to collect source data of the mixer truck. The source data of the mixer truck may include, but is not limited to, working condition data and marketing data. The processor collects the working condition data and marketing data of the mixer truck held by the mixer truck holder based on the positioning device, and then processes the working condition data and marketing data to obtain effective indicators. Among them, the effective indicators may include, but are not limited to: forward and reverse marks of the mixer truck, vehicle driving mileage, vehicle working hours, pumped volume, fuel and other loss data, vehicle operation unit price data in different regions, basic quantity of customer orders, and repayment data, etc. The processing methods of the processor for the source data may include, but are not limited to: invalid data cleaning, abnormal data correction, and vacant data filling, etc.

[0102] As Figure 2 shown, the mixer truck shuttles between the mixing plant and the construction site. Therefore, when calculating the output value of the mixer truck, the number of trips of the mixer truck needs to be considered. The business scenario of the mixer truck includes the following steps: S1. Waiting: The mixer truck starts waiting in the mixing plant (the mixing drum rotates forward or does not rotate); S2. Loading: The mixer truck loads concrete into the mixing drum under the mixing plant (the mixing drum rotates forward); S3. Transporting: The mixer truck transports the concrete to the construction site (the mixing drum rotates forward); S4. Unloading: Unload the concrete in the drum to the feeding port of the pump truck or directly pour it to the construction site (the mixing drum rotates backward); S5. Washing the truck: Wash the residual materials (the rotation direction of the mixing drum is uncertain); S6. Returning: The empty truck returns to the mixing plant (the mixing drum rotates forward or does not rotate); S1. Waiting: Wait in the mixing plant for the next loading (the mixing drum rotates forward or does not rotate). It can be seen that when the mixer truck unloads in step S4, the mixing drum rotates backward. At this time, the reverse mark of the mixing drum can be obtained. When the mixer truck washes the truck in step S5, the rotation direction of the mixing drum is uncertain. However, since the mixer truck basically washes the truck in place and has a small activity range, the mileage of the mixer truck is small. A threshold can be set to determine whether to mark this reverse as a reverse mark. By viewing the reverse mark and judging whether this reverse mark is recorded as a transportation time according to the mileage in the embodiment of the present invention, the real business data of the mixer truck can be collected, reducing the situation of missed recording or repeated recording. It is not only easy to operate, but also improves the accuracy and efficiency of data collection.

[0103] In an embodiment of the present invention, the processor can also obtain the vehicle model volume and volume price of the mixer truck through the positioning device. The vehicle model volume is the capacity of the concrete that the mixing drum of each mixer truck can hold, and the volume price is the operating price of the mixer truck in the local area. The processor calculates the total number of deliveries N of the mixer truck, and combines the vehicle model volume P and the volume price V of the mixer truck to obtain the income (i.e., the final output value) G of the mixer truck: G = N * P * V. In this way, the output value of each mixer truck can be calculated.

[0104] Each mixer truck incurs certain costs. Therefore, when calculating the profit of the mixer truck, it is necessary to subtract the cost data from the income to obtain the profit of the mixer truck. In an embodiment of the present invention, the processor can also obtain the cost data of each mixer truck through the positioning device, such as: the labor cost (salary + commission) of the mixer truck, the vehicle insurance cost, the equipment maintenance cost, and the fuel consumption cost, etc. The cost standards of different regions and different mixers are inconsistent, and the cost data can be collected according to the actual situation of the region. Subtracting the cost data of each mixer truck from the income of each mixer truck can obtain the profit of the mixer truck, so as to determine the profit data of the mixer truck holder.

[0105] In an embodiment of the present invention, the mixer truck holder may hold multiple mixer trucks, and the vehicle model volume, cost, etc. of each mixer truck may be different. Therefore, to determine the profit data of the mixer truck holder, the profits of each mixer truck can be added together to obtain the final profit data of the mixer truck holder. In an example, the model for determining the profit data of the mixer truck holder can satisfy the following formula:

[0106] G = ∑ j (n * p * v - l - i - m - c);

[0107] Where G is the profit data of the mixer truck holder, j is the number of mixer trucks held by the mixer truck holder; n is the number of deliveries of each mixer truck, p is the vehicle model volume of each mixer truck, v is the volume price of each mixer truck; l is the labor cost of each mixer truck, i is the vehicle insurance cost of each mixer truck, m is the equipment maintenance cost of each mixer truck, and c is the fuel consumption cost of each mixer truck. In this way, the profit data of each mixer truck holder can be obtained according to the above model for determining the profit data of the mixer truck holder, providing effective data support for subsequent analysis of the value of the mixer truck holder and monitoring the revenue risk of the mixer truck holder.

[0108] Furthermore, the processor 320 can also be configured to:

[0109] Determining the number of deliveries of the mixer truck according to the reverse mark and driving mileage in the working condition data includes:

[0110] When a reverse mark is monitored and the current driving mileage meets a preset condition, mark the number of transports once.

[0111] Determine the number of transports of the mixer truck according to the sum of the marked operation times.

[0112] Specifically, as Figure 2 shown, the mixer truck shuttles between the mixing plant and the construction site. Therefore, when calculating the output value of the mixer truck, the number of transports of the mixer truck needs to be considered. When the mixer truck unloads in step S4, it reverses. At this time, the reverse mark of the mixing drum can be obtained. When the mixer truck washes the car in step S5, the rotation direction of the mixing drum is uncertain. However, since the mixer truck basically washes the car in place and has a small activity range, the mileage of the mixer truck is small. A threshold can be set to determine whether to mark this reverse as a reverse mark. In summary, in the embodiment of the present invention, by checking the reverse mark and judging whether the reverse mark is recorded as the number of transports according to the mileage, the real business data of the mixer truck can be collected, reducing the situation of missing records or duplicate records. It is not only easy to operate, but also improves the accuracy and efficiency of data collection.

[0113] Further, the processor 320 can also be configured to:

[0114] When a reverse mark is monitored and the current driving mileage meets a preset condition, marking the number of transports once includes:

[0115] When a reverse mark is monitored, record the current mileage;

[0116] When the difference between the current mileage and the mileage corresponding to the previous number of transports is greater than the preset mileage, mark the current number of transports;

[0117] When the difference between the current mileage and the mileage corresponding to the previous number of transports is not greater than the preset mileage, do not mark the current number of transports.

[0118] Specifically, when the processor monitors a reverse mark, the mixer truck may be in the state of unloading in S4, the state of washing the car in S5, or reversing in the mixing plant. Therefore, based on the reverse mark alone, it is impossible to accurately collect whether the mixer truck has completed a transport. In the embodiment of the present invention, when the processor monitors the reverse mark, it also needs to record the current mileage. Use the difference between the current mileage and the mileage of the previous number of transports to judge whether the difference is greater than the preset mileage. When the difference is greater than the preset mileage, it means that the mixer truck is not moving in a small range and can be marked as the number of transports once. When the difference is not greater than the preset mileage, it means that the mixer truck is moving in a small range and this reverse cannot be marked as the number of transports.

[0119] In one example, for a single mixer truck, taking a day as the unit, sort the time of the day from smallest to largest, mark the initial time, that is, the mileage at the start time of the mixer truck. When the processor monitors the reverse mark, mark the number of runs as 1 and record the first mileage at this time. Continue to search for the reverse mark along the time. When the next reverse mark appears, record the corresponding second mileage. Subtract the first mileage from the second mileage to get the difference. When the difference is greater than the preset mileage (such as 1.5 km), mark this reverse as one delivery time. When the difference is not greater than the preset mileage, do not mark this reverse as one delivery time. In this way, the situation of missing records or duplicate records is reduced, which is not only easy to operate, but also improves the accuracy and efficiency of data collection.

[0120] Furthermore, the processor 320 can also be configured to:

[0121] Obtain cost data associated with the mixer truck, including:

[0122] Obtain the labor cost, vehicle insurance cost, equipment maintenance cost, and fuel consumption cost of the mixer truck.

[0123] Specifically, the processor can also obtain the cost data of each mixer truck through the positioning device. For example: the labor cost (salary + commission) of the mixer truck, vehicle insurance cost, equipment maintenance cost, and fuel consumption cost, etc. The cost standards of different regions and different mixers are inconsistent, and the cost data can be collected according to the actual situation of the region. In this way, the profit of a single mixer truck can be obtained based on the output value and cost data of the mixer truck.

[0124] Furthermore, the processor 320 can also be configured to:

[0125] Obtain the fuel consumption cost of the mixer truck, including:

[0126] Obtain the fuel consumption of the mixer truck through the fuel consumption detection device set on the mixer truck;

[0127] Determine the fuel consumption cost of the mixer truck according to the fuel consumption and the oil price.

[0128] Specifically, some mixer trucks are equipped with fuel consumption detection devices. The processor can communicate with the fuel consumption detection device of each mixer truck to obtain the fuel consumption of the mixer truck. Further, according to the fuel consumption of the mixer truck and the oil price, the fuel consumption cost of the mixer truck can be determined, so as to accurately obtain the fuel consumption cost of the mixer truck for calculating the profit of each mixer truck.

[0129] Furthermore, the processor 320 can also be configured to:

[0130] Obtain the fuel consumption cost of the mixer truck, including:

[0131] Obtain the vehicle load, average vehicle speed, and transportation distance of the mixer truck within a single trip;

[0132] Determine the fuel consumption per single trip of the mixer truck according to the vehicle load, the average vehicle speed, and the transportation distance;

[0133] Add up the fuel consumption of all single trips of the mixer truck to obtain the total fuel consumption;

[0134] Determine the fuel consumption cost of the mixer truck according to the total fuel consumption and the oil price.

[0135] Specifically, some mixer trucks are not equipped with a dedicated fuel consumption detection device. However, the fuel consumption cost of a single mixer truck can be determined according to the vehicle load, average speed, and transportation distance of the mixer truck. When the vehicle load is large, the average vehicle speed is small, or the transportation distance is long, the fuel consumption cost is large; when the vehicle load is small, the average vehicle speed is large, or the transportation distance is small, the fuel consumption cost is small.

[0136] In the embodiment of the present invention, the processor can obtain the vehicle load, the average vehicle speed, and the transportation distance of each mixer truck through the positioning device, so as to determine the fuel consumption per single trip of the mixer truck according to the vehicle load, the average vehicle speed, and the transportation distance. Adding up the fuel consumption of all single trips can obtain the total fuel consumption, and further determine the fuel consumption cost of the mixer truck according to the total fuel consumption and the oil price. Through the above method, even without a dedicated fuel consumption acquisition device, the fuel consumption of the mixer truck can be efficiently obtained.

[0137] The present invention also provides a machine-readable storage medium, on which instructions are stored for causing a machine to execute the above method for determining the profit of the mixer truck holder.

[0138] Figure 4 It is a schematic structural diagram of a system for determining the profit of a mixer truck holder provided by an embodiment of the present invention. As Figure 4 shown, the present invention provides a system for determining the profit of a mixer truck holder, and the system includes:

[0139] A positioning device 410, arranged on the mixer truck, for collecting the working condition data of the mixer truck;

[0140] The above-mentioned server 420, communicatively connected to the positioning device 410, for receiving the working condition data sent by the positioning device.

[0141] In an embodiment of the present invention, the positioning device 410 may include, but is not limited to, devices such as GPS that can be used to collect source data of the mixer truck. The source data of the mixer truck may include, but is not limited to, working condition data and marketing data. The server 420 is communicatively connected to the positioning device 410, obtains the working condition data of the mixer truck through the positioning device provided on the mixer truck, determines the number of trips of the mixer truck according to the reverse mark and driving mileage in the working condition data, and determines the income generated by the mixer truck in combination with the vehicle type volume and volume price of the mixer truck. Further, the income is subtracted from the cost data to obtain the profit of the mixer truck. Finally, the profit data of the mixer truck holder is determined according to the profit of each mixer truck. The embodiment of the present invention models the real business scenario of the mixer truck holder through the collected data, accurately calculates the number of trips of the mixer truck, so as to obtain the final profit situation of the mixer truck holder, improves the statistical efficiency of the profit of the mixer truck holder, and provides effective data support for subsequent analysis of the value of the mixer truck holder and monitoring of the revenue risk of the mixer truck holder.

[0142] The present invention also provides a mixer truck, including the system for determining the profit of the mixer truck holder described above.

[0143] The preferred embodiments of the present invention have been described in detail above in conjunction with the accompanying drawings. However, the present invention is not limited to the specific details in the above embodiments. Within the scope of the technical concept of the present invention, various simple modifications can be made to the technical solutions of the present invention, and these simple modifications all fall within the protection scope of the present invention.

[0144] In addition, it should be noted that, in the above specific embodiments, the various specific technical features described can be combined in any suitable manner without conflict. To avoid unnecessary repetition, the present invention does not separately describe various possible combination methods.

[0145] In addition, any combination can be made between various different embodiments of the present invention, as long as it does not violate the idea of the present invention, and it should also be regarded as the content disclosed by the present invention.

Claims

1. A method for determining the profit of the holder of a mixer truck, characterized in that, The method includes: Obtaining the working condition data of the mixer truck through a positioning device provided on the mixer truck; Determining the number of transports of the mixer truck according to the reverse mark and driving mileage in the working condition data; Obtaining the vehicle model volume and volume price of the mixer truck; Determining the income generated by the mixer truck according to the number of transports, the vehicle model volume and the volume price; Obtaining cost data associated with the mixer truck; Subtracting the cost data from the income to obtain the profit of the mixer truck; and Determining the profit data of the mixer truck holder according to the profit of each mixer truck; Wherein, the determining the number of transports of the mixer truck according to the reverse mark and driving mileage in the working condition data includes: Recording the current mileage when the reverse mark is monitored; Marking the current transport number when the difference between the current mileage and the mileage corresponding to the previous transport number is greater than a preset mileage; Determining the number of transports of the mixer truck according to the sum of the marked operation times.

2. The method according to claim 1, wherein The obtaining the cost data associated with the mixer truck includes: Obtaining the labor cost, vehicle insurance cost, equipment maintenance cost and fuel consumption cost of the mixer truck.

3. The method according to claim 2, wherein Obtaining the fuel consumption cost of the mixer truck includes: Obtaining the fuel consumption of the mixer truck through a fuel consumption detection device provided on the mixer truck; Determining the fuel consumption cost of the mixer truck according to the fuel consumption and the oil price.

4. The method according to claim 2, wherein Obtaining the fuel consumption cost of the mixer truck includes: Obtaining the vehicle load, vehicle average speed and transport distance of the mixer truck within a single trip; Determining the single-trip fuel consumption of the mixer truck according to the vehicle load, the vehicle average speed and the transport distance; Adding up all the single-trip fuel consumptions of the mixer truck to obtain the total fuel consumption; Determining the fuel consumption cost of the mixer truck according to the total fuel consumption and the oil price.

5. A server, characterized in that, Includes: A memory configured to store instructions; And A processor configured to call the instructions from the memory and capable of implementing the method for determining the profit of the mixer truck holder according to any one of claims 1 to 4 when executing the instructions.

6. A machine-readable storage medium, characterized in that, Instructions are stored on the machine-readable storage medium, and the instructions are used to cause the machine to execute the method for determining the profit of the mixer truck holder according to any one of claims 1 to 4.

7. A system for determining the profit of the holder of a mixer truck, characterized in that, The system includes: A positioning device provided on the mixer truck for collecting the working condition data of the mixer truck; The server according to claim 5, communicatively connected to the positioning device for receiving the working condition data sent by the positioning device.

8. A mixer truck, characterized in that, Includes the system for determining the profit of the mixer truck holder according to claim 7.

Citation Information

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