WO2018039888A1 - 宠物饮食智能推送的方法、服务器及系统 - Google Patents

宠物饮食智能推送的方法、服务器及系统 Download PDF

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Publication number
WO2018039888A1
WO2018039888A1 PCT/CN2016/097226 CN2016097226W WO2018039888A1 WO 2018039888 A1 WO2018039888 A1 WO 2018039888A1 CN 2016097226 W CN2016097226 W CN 2016097226W WO 2018039888 A1 WO2018039888 A1 WO 2018039888A1
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WO
WIPO (PCT)
Prior art keywords
pet
feeding
food
energy
mobile terminal
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Application number
PCT/CN2016/097226
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English (en)
French (fr)
Inventor
王忠山
胡勇
Original Assignee
深圳市沃特沃德股份有限公司
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Application filed by 深圳市沃特沃德股份有限公司 filed Critical 深圳市沃特沃德股份有限公司
Priority to PCT/CN2016/097226 priority Critical patent/WO2018039888A1/zh
Publication of WO2018039888A1 publication Critical patent/WO2018039888A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01KANIMAL HUSBANDRY; CARE OF BIRDS, FISHES, INSECTS; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
    • A01K5/00Feeding devices for stock or game ; Feeding wagons; Feeding stacks
    • A01K5/02Automatic devices
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D10/00Energy efficient computing, e.g. low power processors, power management or thermal management

Definitions

  • the present invention relates to the field of smart devices, and in particular, to a method, server and system for pet food intelligent push.
  • the main object of the present invention is to provide a method, server and system for pet food intelligent push, which pushes a reasonable diet for pets, and controls the weight and health of the pet.
  • the present invention provides a method for intelligently pushing a pet diet, comprising the following steps:
  • Receiving body information of the pet wherein the body information of the pet includes a pet body shape and an exercise amount; calculating energy consumption of the pet according to body information of the pet, and according to the body information of the pet and the pet Energy consumption calculates the energy that the pet needs to replenish;
  • the step of receiving the body information of the pet includes:
  • the preset time interval includes an inter-segment interval between the last feeding and the preparation for feeding.
  • the physical information of the pet further includes one or more of a pet's breed, age, sex, weight, and health condition.
  • the food feeding suggestion list includes feeding food, food energy, and feeding amount.
  • the feeding food material comprises one or more of a beverage, a coarse grain, a fruit, a vegetable, a meat, and a dry food of a pet.
  • the step of matching the energy-matching food feeding suggestion list according to the need to be supplemented comprises: [0017] matching at least two feeding food materials according to the energy to be supplemented;
  • the step of the energy-matching food feeding suggestion list according to the need to be supplemented includes: [0022] receiving a photo of the food material acquired and sent by the mobile terminal; extracting the photo of the food material by image recognition technology Feeding ingredients;
  • the method includes:
  • the present invention also provides a server for pet food intelligent push, comprising:
  • a receiving unit configured to receive body information of the pet, where the body information of the pet includes a pet body shape and an amount of exercise;
  • a calculating unit configured to calculate energy consumption of the pet according to the body information of the pet, and calculate energy to be supplemented by the pet according to physical information of the pet and energy consumption of the pet;
  • a matching unit configured to match the food feeding suggestion list according to the energy to be supplemented
  • a pushing unit configured to push the food feeding suggestion list to the mobile terminal.
  • the receiving unit is configured to receive, by the smart wearable device, the body information of the pet that is triggered to be collected and sent by the preset wearer, wherein the smart wearable device is worn by the pet; or ,
  • the receiving unit is configured to receive the body information in the preset pre-feeding period input by the user and sent by the mobile terminal.
  • the server for intelligently pushing the pet diet further includes a preset unit, configured to preset a time interval, wherein the preset time interval includes a middle interval between the last feeding and the preparation for feeding. .
  • the physical information of the pet further includes one or more of a pet's breed, age, sex, weight, and health condition.
  • the food feeding suggestion list includes feeding food, food energy, and feeding amount.
  • the feeding food comprises one or more of a beverage, a coarse grain, a fruit, a vegetable, a fish, a meat, and a dry food of a pet.
  • the matching unit includes:
  • a matching subunit configured to match at least two feeding materials according to the energy to be supplemented
  • a first query subunit configured to query a corresponding unit energy value according to the two feeding materials and a health weight ratio of the two feeding ingredients
  • a first calculating subunit configured to calculate, according to the energy to be supplemented, the unit energy value, and the health weight ratio, a required feeding amount of the two feeding materials respectively;
  • a first generating subunit configured to add the energy to be supplemented, the two feeding materials, and the corresponding The unit energy value, the health weight ratio, and the feeding amount generate the food feeding suggestion list.
  • the matching unit further includes:
  • a receiving subunit configured to receive a photo of the food material acquired and sent by the mobile terminal
  • an food material extracting unit configured to extract feeding food materials in the photo of the food material by image recognition technology
  • a second query subunit configured to query a corresponding unit energy value according to the selected feeding food item
  • a second calculating subunit configured to: according to the energy to be supplemented and the unit The energy value, calculate the required feeding amount
  • a second generation subunit configured to generate the food feeding suggestion list by using the energy to be supplemented, the feeding food, the unit energy value, and the feeding amount.
  • the server further includes:
  • the receiving unit is further configured to receive a selection finger of the feeding food item sent by the mobile terminal, wherein the feeding food item is selected by the user from the food feeding suggestion list displayed on the mobile terminal;
  • a third query subunit configured to query a corresponding unit energy value according to the feeding food material
  • a sending unit configured to send the feeding amount to the mobile terminal.
  • the present invention also provides a pet diet intelligent push system, including a server sending unit,
  • the server is configured to receive physical information of a pet, wherein the body information of the pet includes a pet body shape and an exercise amount; and calculating, according to physical information of the pet, energy consumption of the pet, and according to the pet
  • the body information and the energy consumption of the pet calculate the energy that the pet needs to replenish; match the food feeding suggestion list according to the energy to be supplemented, and push the food feeding suggestion list to the mobile terminal.
  • the device further includes a smart wearable device, and the smart wearable device is in communication with the mobile terminal.
  • the body information of the pet is sent to the server by the mobile terminal or the smart wearable device.
  • the present invention provides a method, server and system for pet food intelligent push, wherein the method calculates the energy required by the pet by receiving the body information of the pet and calculating the energy consumed by the pet according to the body information, and then according to the need Supplementary energy-matched food feeding advice list and push the list of food feeding suggestions to the mobile terminal, push the user a reasonable healthy diet, reasonably control the weight of the pet, balance the nutrition of the pet, and ensure that the pet is not too fat or too weak . Make pets grow healthily.
  • FIG. 1 is a schematic diagram showing the steps of a method for intelligently pushing a pet diet according to an embodiment of the present invention
  • step S2 is a schematic diagram showing specific steps of step S2 in the method for intelligently pushing a pet diet of FIG. 1;
  • step S2 in the method for intelligently pushing a pet diet of FIG. 1;
  • FIG. 3a is a schematic diagram of specific steps after step S3 in the method for intelligently pushing a pet diet of FIG. 1;
  • FIG. 4 is a schematic structural diagram of a server for intelligently pushing a pet diet according to an embodiment of the present invention
  • FIG. 5 is a schematic structural diagram of a matching unit in the server of FIG. 4;
  • FIG. 6 is another schematic structural diagram of a matching unit in the server of FIG. 4;
  • 6A is a schematic structural diagram of a server for intelligently pushing a pet diet according to another embodiment of the present invention.
  • FIG. 7 is a schematic structural diagram of a system for intelligently pushing a pet diet according to still another embodiment of the present invention.
  • the "mobile terminal” as used herein includes both a device of a wireless signal receiver, a device having only a wireless signal receiver without a transmitting capability, and a device including receiving and transmitting hardware.
  • the method, server and system for pet food intelligent push provided in the present invention are mainly applied to an application scenario in which a pet owner cares for a pet's diet.
  • pets generally cannot eat their own food, nor can they control their own diet. People and pets can't communicate with each other.
  • pet owners control the amount of pets according to their habits. Pet owners control too much food. It will cause the pet to be too obese; if the food that is dominated is too small, it will easily cause the pet to be too weak.
  • the present invention provides a method, server and system for pet food smart push to solve the above problems.
  • FIG. 1 is a schematic diagram showing the steps of a method for intelligently pushing a pet diet according to an embodiment of the present invention.
  • a method for intelligently pushing a pet diet is proposed, which is applied to a server, and includes the following steps:
  • Step S1 receiving body information of the pet, where the body information of the pet includes a pet body shape and [0085] Step S1.1, calculating the energy consumption of the pet according to the body information of the pet, and calculating the energy to be supplemented by the pet according to the body information of the pet and the energy consumption of the pet.
  • Step S2 matching the food feeding suggestion list according to the energy supplement to be added.
  • Step S3 pushing the above-mentioned food feeding suggestion list to the mobile terminal.
  • the food feeding suggestion list is matched, and the above-mentioned food feeding suggestion list is pushed to the mobile terminal.
  • the mobile terminal can notify the pet owner by means of a screen display or a voice prompt to let the pet owner know; the pet owner then matches the food according to the push result, and feeds the pet.
  • the server prestores a food feeding suggestion database, and the food feeding suggestion database can be a form prepared by the pet owner according to the experience of feeding a large amount of pets, and can also include pet experts to develop according to different breeds of pets, in different body types, exercise amounts, years, The gender, weight, health status, season and other conditions are recommended to match the different feeding ingredients and the proportion of health weights of the various feeding materials.
  • the server calculates the energy to be replenished by the pet according to the physical information of the pet, and then extracts the information of the feeding material corresponding to the energy to be supplemented by the pet and the body information according to the energy and the body information that the pet needs to replenish and generate the body information.
  • List of ingredients for feeding among them, The list of feeding suggestions for food ingredients includes parameters such as feeding ingredients, energy of the ingredients, and feeding amount.
  • the above-mentioned preset daytime includes the inter-temporal segment one day or more before feeding or the inter-temporal segment between the last feeding and the feeding.
  • the body information of the pet in the inter-segment between the last feeding and the feeding is more conducive to accurately calculating the feeding amount of the pet.
  • the smart wearable device is worn on a dog, and the smart wearable device has a built-in sensor to collect body information of the dog in the inter-segment between the feeding and the last feeding, the body information. At least the size and amount of exercise of the dog may be included, or may include weight, physiological information, and the like.
  • the above sensor includes one or more of an acceleration sensor, a nine-axis sensor, an angular acceleration sensor, a geomagnetic sensor, etc., in order to accurately obtain the dog's body information, other sensors may be appropriately used in combination.
  • the smart wearable device collects the body information of the dog through the sensor
  • the body information is sent to the mobile terminal
  • the mobile terminal receives the body information and sends the information to the server, which may also be directly used by the smart wearable device worn on the pet.
  • the server sends to the server, the server receives the body information, and calculates the energy consumed by the dog in the preset interval before feeding according to the body information; specifically, it can be calculated by a step counting software (for example, running software, music, etc.)
  • the energy consumed by the dog is calculated based on the size of the dog and the energy consumed by the dog. The larger the size of the dog, the greater the energy to be replenished. The greater the amount of exercise, the more energy is consumed.
  • the method for intelligently pushing pet food provided in the embodiment of the present invention, the method calculates the energy required by the pet by receiving the body information of the pet and calculating the energy consumed by the pet according to the body information, and then matching the energy according to the need to supplement Feeding advice list and pushing the list of recommended feeding suggestions to the mobile terminal, pushing the user a reasonable healthy diet, rationally controlling the weight of the pet, balancing the nutrition of the pet, ensuring that the pet is not too obese or too weak, making the pet healthy growing up.
  • the step of receiving body information of the pet includes:
  • the method may be used alone or in combination with the above-mentioned body information of the pet collected by the smart wearable device.
  • the feeding amount of the food to be fed by the dog is calculated according to the above-mentioned embodiment, and details are not described herein.
  • the number of the above-mentioned food materials includes one or more; the above-mentioned food materials include one or more of a drink, a coarse grain, a fruit, a vegetable, a fish, a meat bird, and a dry pet food.
  • the ingredients are usually various, which may be one or more of drinks, whole grains, fruits, vegetables, fish, meat and poultry, and pet dry food; when the pet owner is busy, it is convenient to save the daytime. You can also feed your pets with only one ingredient.
  • FIG. 2 is a schematic diagram showing the specific steps of step S2 in the method for intelligently pushing pet diet of FIG. 1.
  • the specific list includes:
  • Step S20A receiving a photo of the food item sent by the mobile terminal
  • step S21A extracting the feeding food in the photo of the food material by image recognition technology; [0105] Of course, it is also possible to receive the feeding material directly input and sent by the user at the mobile terminal without having to identify the photo of the food item.
  • Step S22A querying the corresponding unit energy value according to the feeding food item; wherein the unit energy value information of the various food materials is pre-stored in the food material information database of the server.
  • Step S23A calculating the required feeding amount according to the energy to be supplemented and the unit energy value
  • Step S24A generating the food feeding advice list by adding the energy to be supplemented, the feeding food, the unit energy value, and the feeding amount.
  • the pet owner may input the feeding material to the pet on the mobile terminal, or may photograph the physical object through the mobile terminal or the smart wearing device worn on the pet, and the mobile terminal or the smart wearing device passes the image recognition technology.
  • the feeding of the ingredients is identified and the information of the feeding ingredients is sent to the server, or the server identifies the feeding ingredients in the picture by image recognition technology.
  • the server obtains the unit energy value of the food material from the food information database, or obtains it by other means.
  • the server further calculates the required feeding amount according to the energy to be supplemented and the unit energy value; and finally pushes the energy to be supplemented, the feeding material, the unit energy value and the feeding amount to generate the feeding recommendation list to the mobile terminal. .
  • the feeding amount of the desired food material is calculated and a list of food feeding suggestions is generated.
  • the feeding amount of the desired food material is obtained based on the ratio between the energy to be replenished by the pet and the energy contained in the unit weight of the foodstuff. For example, pets need to add 200,000 calories, and the energy information for potatoes is 760,000 calories per kilogram, so you need to feed 20/76 kilograms of pets.
  • FIG. 3 is a schematic diagram showing specific steps of step S2 in the method for intelligently pushing pet diet of FIG. 1.
  • the pet in order to consider a healthy eating mix of a pet, the pet is usually paired with a plurality of ingredients.
  • the specific list includes:
  • Step S21B matching at least two feeding materials according to the energy to be supplemented.
  • a variety of feeding ingredients are usually matched.
  • Step S22B querying the corresponding unit energy value according to the above two feeding materials and the health weight ratio of the two feeding ingredients; wherein, the unit energy of various food materials is pre-stored in the database of the server.
  • the proportion of health-matching weights of various ingredients pre-stored in the database varies.
  • Step S23B Calculate the respective required feeding amounts of the two feeding materials according to the energy to be supplemented, the unit energy value, and the health weight ratio.
  • Step S24B generating the food feeding suggestion list by adding the energy to be supplemented, the two feeding materials, the corresponding unit energy value, the health weight ratio, and the feeding amount.
  • the amount of food to be replenished is calculated based on the energy to be replenished by the pet, the energy value of the food unit, and the weight ratio of the various ingredients.
  • pets need to add 200,000 calories to match the feeding of rice and potatoes, and the weight ratio of rice X to potato y is 2:1.
  • the weight of y A list of food feeding suggestions is generated based on the above data, and is pushed to the mobile terminal to push the feeding information for the pet. Reasonable arrangement of ingredients and nutritional mix is more conducive to the health of pets.
  • the pet breed is husky, half-year-old, weight 12kg, 100 calories consumed by exercise, 3 hours between the last feeding, and 500 calories for a normal meal. ⁇ , the service will calculate the energy that the siberian huskies need to supplement to 600 calories according to the above conditions.
  • the food feeding recommendation database matches the annual sang and weight of the above-mentioned husky, and the feeding recommendation list is as follows. (where the value of the supplementary energy is rounded to ten, and the value of the feeding amount is retained to the ones)
  • FIG. 3a is a schematic diagram of specific steps after step S3 in the method for intelligently pushing pet food in FIG.
  • the method further includes:
  • Step S5 receiving a selection instruction of the feeding food sent by the mobile terminal
  • Step S6 querying the corresponding unit energy value according to the selected feeding food item; wherein the unit energy value information of the various food materials is pre-stored in the food material information database of the server.
  • the selected plurality of food materials information is fed back to the server through the mobile terminal, and the server queries the unit energy value of the selected plurality of food materials and the health weight ratio of the plurality of food materials; Calculate the required feeding amount of the selected feeding ingredients according to the energy to be supplemented, the unit energy value of the selected various food materials, and the proportion of the health weight of the plurality of ingredients; and the energy to be supplemented, and a plurality of feeding ingredients. And the corresponding unit energy value, health weight ratio, and feed amount generation The list of food feeding suggestions is pushed to the mobile terminal.
  • the present invention also provides a server for pet food smart push.
  • FIG. 4 is a schematic structural diagram of a server for intelligently pushing a pet diet according to an embodiment of the present invention.
  • a server structure diagram of a pet diet intelligent push is provided, which includes
  • the receiving unit 9 is configured to receive physical information of the pet, where the physical information of the pet includes the pet body type and the amount of exercise;
  • the calculating unit 10 is configured to calculate the energy consumption of the pet according to the body information of the pet, and calculate the energy to be supplemented by the pet according to the body information of the pet and the energy consumption of the pet.
  • the matching unit 20 matches the food feeding suggestion list according to the above-mentioned energy supplementation.
  • the pushing unit 30 pushes the above-mentioned food feeding suggestion list to the mobile terminal.
  • the receiving unit 9 before feeding the pet, the receiving unit 9 first receives the body information of the pet in the preset interval before the feeding by the mobile terminal, and the body information mainly includes the breed, the size, and the amount of the pet. Of course, it can also include one or more of gender, age, health status, and weight. The more judgments, the more accurate and reasonable the server recommends feeding the pet's ingredients.
  • the calculation unit 10 calculates the energy consumed by the animal based on the body shape of the pet and the amount of exercise. Further, according to the relationship between the energy that the pet needs to replenish and the energy consumed, the energy that the animal needs to eat is calculated.
  • the energy that the pet needs to supplement refers to the energy in the food that the pet eats, and the energy that the pet needs to supplement is usually More than the consumption of pets.
  • the final matching unit 20 matches the food feeding suggestion list according to the energy that the pet needs to replenish, and the pushing unit 30 pushes the above-mentioned food feeding suggestion list to the mobile terminal to calculate the feeding food of the pet.
  • the feeding amount of the material, and the calculation result is pushed to the pet owner through the mobile terminal.
  • the mobile terminal can notify the pet owner by means of a screen display or a voice prompt to let the pet owner know; the pet owner then matches the food according to the calculation result, and feeds the pet.
  • the server prestores a food feeding suggestion database
  • the food feeding suggestion database can be a form prepared by the pet owner according to the experience of feeding a large amount of pets, and can also include pet experts to develop according to different breeds of pets, in different body types, exercise amounts, years, Sex, J, weight, health status, season and other conditions are recommended to match the different feeding ingredients and the proportion of health weights of a variety of feeding ingredients, or other means such as the Internet.
  • the server calculates the energy to be replenished by the pet according to the physical information of the pet, and then extracts the information of the feeding material corresponding to the energy to be supplemented by the pet and the body information according to the energy and the body information that the pet needs to replenish and generate the body information.
  • a list of recommended feeding instructions, wherein the list of feeding suggestions includes ingredients such as feeding ingredients, energy of the ingredients, and feeding amount.
  • the pet breed, age, sex, weight, physiological information (heart rate, blood pressure, etc.) and health status all have an effect on the amount of food the pet needs. For example, huskies feed more than Teddy. Dogs need more feed than cats. 1-6 year old dogs need more feed than older dogs and younger ones; dogs of different sex or cats There is also a difference in the amount of feeding between the two; the food intake of the pet is also reduced. Therefore, in the present embodiment, one or more of the above parameters may also serve as a reference standard for matching the food for feeding the pet, and it is more accurate for calculating the eating amount of the pet.
  • the above server further includes a preset unit for presetting the daytime, the preset daytime includes a day or a day before the feeding or an inter-segment between the last feeding and the feeding. Obtaining the body information of the pet in the inter-segment between the last feeding and the feeding is more conducive to accurately calculating the feeding of the pet.
  • the smart wearable device is worn on a dog, and the smart wearable device has a built-in sensor for collecting body information of the dog in the inter-segment between the feeding and the last feeding, the body information. At least the size and amount of exercise of the dog may be included, or may include weight, physiological information, and the like.
  • the above sensor includes one or more of an acceleration sensor, a nine-axis sensor, an angular acceleration sensor, a geomagnetic sensor, etc., in order to accurately obtain the dog's body information, other sensors may be appropriately used in combination.
  • the smart wearable device collects the body information of the dog through the sensor
  • the body information is sent to the mobile terminal.
  • the mobile terminal obtains the body information and sends the information to the server.
  • the smart wearable device that is worn on the pet can be directly sent to the server.
  • the server receives the body information, and the calculating unit 10 calculates, according to the body information, the dog is feeding.
  • the energy consumed in the pre-preset period; specifically, the energy consumed by the dog can be calculated by a step counter software (such as running software, music, etc.), and then the dog needs to be comprehensively calculated according to the size of the dog and the energy consumed by the dog.
  • Supplemental energy usually the larger the dog's size, the more energy needs to be replenished; the greater the amount of exercise, the more energy is consumed, the more energy needs to be replenished; considering that the energy in the dog's food is generally not complete It is absorbed, so the energy needed to feed the food is greater than the energy absorbed by the dog. For example, if a dog consumes 100,000 calories, it usually needs to absorb 100,000 calories or slightly more than 100,000 calories. Considering the dog's energy absorption rate, it may require food to provide 200,000 calories. . Therefore, in the present embodiment, the total energy that the food needs to provide is taken as the energy that the dog needs to supplement (or the energy that the dog needs to feed).
  • the matching unit 20 pushes the matching food feeding advice list from the pre-stored food feeding advice database, and the pushing unit 30 pushes the food feeding suggestion list to the mobile terminal.
  • the pet owner can get feeding advice from the mobile terminal and feed the pet according to the feeding recommendations.
  • the server for intelligently pushing the pet diet provided in the embodiment of the present invention calculates the energy required by the pet by receiving the body information of the pet and calculating the energy consumed by the pet according to the body information, and then matching the feeding of the food according to the energy to be supplemented.
  • the list pushes the list of recommended feeding suggestions to the mobile terminal, pushes the user a reasonable healthy diet, controls the weight of the pet reasonably, balances the nutrition of the pet, and ensures that the pet is not too obese or too weak, so that the pet grows healthily.
  • the receiving unit 9 is configured to receive the pet body information in the pre-feeding period before the feeding by the user through the mobile terminal, and the manner may be used alone or in combination with the body information of the pet collected by the smart wearing device.
  • the user inputs the body information of the dog in the inter-segment between the feeding and the last feeding on the mobile terminal, and the body information may include the size of the dog, the amount of exercise of the dog, or may directly input the dog. Calories burned.
  • the calorie data consumed by the above dogs can be roughly obtained according to the dog's habits. For example, the pet owner measures that the normal exercise consumption of the dog is 200,000 calories, and the amount of exercise of the dog before the feeding is about the same. The data is used as an approximation.
  • the dog After acquiring the body information of the dog, the dog needs to be calculated according to the above-mentioned embodiment.
  • the amount of food to be fed is not described here.
  • the number of the above-mentioned food materials includes one or more; the above-mentioned food materials include one or more of a drink, a coarse grain, a fruit, a vegetable, a fish, a meat, and a dry pet food.
  • the ingredients are usually various, which may be one or more of beverages, whole grains, fruits, vegetables, fish, meat and poultry, and pet dry food; when the pet owner is busy, it is convenient to save money.
  • FIG. 5 is a schematic structural diagram of a matching unit in the server of FIG. 4.
  • a pet in order to consider a healthy eating mix of a pet, a pet is usually paired with a plurality of ingredients. Then the matching unit 20 includes
  • the matching subunit 201 is configured to match at least two feeding food materials according to the energy to be supplemented as described above. For the health of pets, a variety of feeding ingredients are usually matched.
  • the first query sub-unit 202 is configured to query a corresponding unit energy value according to the above two kinds of feeding food materials and a health weight ratio of the two feeding food materials; wherein, various materials are pre-stored in the database of the server; Unit energy value information, and pre-stored the proportion of health weights of various ingredients with feeding pets
  • the first calculating subunit 203 is configured to calculate respectively the required feeding amounts of the two feeding materials according to the energy to be supplemented, the unit energy value, and the health weight ratio.
  • the first generation subunit 204 is configured to generate the food feeding suggestion list by adding the energy to be supplemented, the two feeding materials, the corresponding unit energy value, the health weight ratio, and the feeding amount.
  • the number of foods to be fed to the pet is a plurality of types of cockroaches
  • a pet needs to add 200,000 calories to match the feeding of rice and potatoes, and the weight ratio of rice X to potato y is 2:1.
  • the weight of y A list of food feeding suggestions is generated based on the above data, and is pushed to the mobile terminal to push the feeding information for the pet. Reasonable arrangement of ingredients, nutritional mix, is more conducive The health of the pet.
  • the pet breed is husky, half-year-old, weight 12kg, 100 calories consumed by exercise, 3 hours between the last feeding, and 500 calories for a normal meal. ⁇ , the service will calculate the energy needed to supplement the siberian hustle to 600 calories according to the above conditions.
  • the food feeding recommendation database matches the annual sap and weight of the siberian huskies according to the needs and the weight of the above-mentioned siberian husks, as shown in Table 1. (where the value of the supplementary energy is rounded to ten, and the value of the feeding amount is retained to the ones)
  • FIG. 6 is another schematic structural diagram of a matching unit in the server of FIG. 4.
  • the matching unit 20 when the food feeding the pet is a cockroach, the matching unit 20 includes:
  • receiving subunit 205 configured to receive a photo of the food item sent by the mobile terminal
  • the food material extracting unit 215 is configured to extract the feeding food item in the photo of the food material by the image recognition technology; [0156] of course, the receiving sub-unit 205 can also be used to receive the feeding food directly input and sent by the user at the mobile terminal, without Identify the photo of the ingredients.
  • the second query subunit 206 is configured to query a corresponding unit energy value according to the feeding food item
  • the unit energy value information of various food materials is prestored in the food information database of the server.
  • the second generation subunit 208 is configured to generate the food feeding suggestion list by adding the energy to be supplemented, the feeding material, the unit energy value, and the feeding amount.
  • the pet owner may input the feeding material to the pet on the mobile terminal, or may photograph the physical object through the mobile terminal or the smart wearing device worn on the pet, and the mobile terminal or the smart wearing device passes the image recognition technology.
  • the feeding material is identified and the feeding material information is transmitted to the server, and the food material extracting unit 215 of the server may recognize the feeding food in the picture by image recognition technology.
  • the second query sub-unit 206 obtains the unit energy value of the food material from the food information database, or obtains it by other means.
  • the second calculating subunit 207 further calculates the required feeding amount according to the energy to be supplemented and the unit energy value; and finally the second generating subunit 208 adds the energy to be supplemented, the feeding material, the unit energy value, and the feeding
  • the above-described food feeding suggestion list is generated in order to push the push unit 30 to the mobile terminal.
  • the feeding amount of the desired food material is obtained based on the ratio between the energy to be replenished by the pet and the energy contained in the unit weight of the foodstuff. For example, pets need to add 200,000 calories, and the energy information for potatoes is 760,000 calories per kilogram, so you need to feed 20/76 kilograms of pets.
  • the server further includes a third query subunit 301, a third computing subunit 302, and a sending unit 303.
  • the receiving unit 9 is further configured to receive a selection instruction of the feeding food item sent by the mobile terminal, wherein the feeding food item is selected by the user from the food feeding suggestion list displayed on the mobile terminal;
  • the third query subunit 301 is configured to query the corresponding unit energy value according to the selected feeding food item; wherein the unit energy value information of the various food materials is prestored in the food material information database of the server.
  • a third calculating subunit 302 configured to calculate a required feeding amount according to the energy to be supplemented and the unit energy value
  • the sending unit 303 is configured to send the foregoing feeding amount to the mobile terminal.
  • the pet owner may not feed all the ingredients in the list, and usually select one or several ingredients selectively.
  • the selected feeding item information is fed back to the server through the mobile terminal, the third query subunit 301 queries the unit energy value of the item, and the third calculating subunit 30 2 according to the energy to be supplemented.
  • the unit energy value of the food material recalculates the feeding amount of the food material, and the transmitting unit 303 transmits the calculated feeding amount to the mobile terminal.
  • the selected plurality of food materials information is fed back to the server by the mobile terminal, and the third query subunit 301 queries the unit energy value of the selected plurality of food materials and the health of the plurality of food materials.
  • the third calculation sub-unit 302 calculates the required feeding amount of the selected feeding ingredients according to the energy to be supplemented, the unit energy value of the selected plurality of food materials, and the health weight ratio of the plurality of food materials;
  • the generating unit generates the food feeding amount distribution list by adding the energy to be supplemented, the plurality of feeding food materials, the corresponding unit energy value, the health weight ratio, and the feeding amount, and the sending unit 303 pushes the food feeding amount distribution list including the feeding amount to the movement. terminal.
  • another embodiment of the present invention further provides a system for pet food intelligent push, comprising a server and a mobile terminal;
  • the server is configured to receive body information of the pet, wherein the body information of the pet includes a body shape and a motion amount of the pet; and calculating energy consumption of the pet according to the body information of the pet, and according to the body information of the pet and the energy consumption of the pet Calculate the energy that the pet needs to replenish; match the food feeding recommendation list according to the energy that the pet needs to replenish, and push the above-mentioned food feeding suggestion list to the mobile terminal.
  • the system further includes a smart wearable device, wherein the smart wearable device is in communication with the mobile terminal; the smart wearable device is worn on the pet, and is used to collect the physical information of the pet after reaching the preset time. And sending to the mobile terminal or the server, where the physical information of the pet is sent to the server by the mobile terminal or the smart wearable device.
  • the server of the present invention includes a memory for storing a program, the program being a smart food push method, and a processor for executing a program in the memory to operate the pet diet intelligent push method.
  • the present invention provides a method, server and system for pet food intelligent push, wherein the method calculates the energy required by the pet by receiving the body information of the pet and calculating the energy consumed by the pet according to the body information.
  • the user can push the pet a reasonable healthy diet, reasonably control the pet's weight, balance the pet's nutrition, and ensure that the pet is not too obese or Too weak to make pets grow healthily.
  • the server and system for pet food smart push including the method also have the effect achieved by the method.
  • the present invention includes apparatus that is directed to performing one or more of the operations described herein.
  • These devices may be specially designed and manufactured for the required purposes, or may also include known devices in a general purpose computer.
  • These devices have computer programs stored therein that are selectively activated or reconfigured.
  • Such computer programs may be stored in a device (eg, computer) readable medium or in any type of medium suitable for storing electronic instructions and respectively coupled to a bus, including but not limited to any Type of disk (including floppy disk, Hard disk, CD, CD-ROM and magneto-optical disk), ROM (Read-Only Memory, Read Only Memory, RAM (Random Access Memory), EPROM (Erasable)
  • a readable medium includes any medium that is stored or transmitted by a device (e.g., a computer) in a readable form.
  • each block of the block diagrams and/or block diagrams and/or flow diagrams can be implemented by computer program instructions, and/or in the block diagrams and/or block diagrams and/or flow diagrams. The combination of boxes.
  • these computer program instructions can be implemented by a general purpose computer, a professional computer, or a processor of other programmable data processing methods, such that the processor is executed by a computer or other programmable data processing method.
  • the block diagrams and/or block diagrams of the invention and/or the schemes specified in the blocks or blocks of the flow diagram are invented.

Abstract

一种宠物饮食智能推送的方法、服务器及系统,其方法包括:接收宠物的身体信息,其中,所述宠物的身体信息包括宠物体型以及运动量;根据所述宠物的身体信息,计算宠物的能量消耗,并根据所述宠物的身体信息以及所述宠物的能量消耗计算宠物需补充的能量;根据所述需补充的能量匹配食材喂食建议列表;将所述食材喂食建议列表推送至移动终端,为用户推送宠物合理的健康饮食,合理地控制宠物的体重,均衡宠物的营养,保障宠物不会过于肥胖或者过于瘦弱,使宠物健康成长。

Description

发明名称:宠物饮食智能推送的方法、 服务器及系统 技术领域
[0001] 本发明涉及智能设备领域, 特别涉及一种宠物饮食智能推送的方法、 服务器及 系统。
背景技术
[0002] 随着人们生活水平的提高, 饲养动物的家庭越来越多, 有些家庭已经把动物视 为家庭的一份子。 宠物主人在照看宠物吋, 需要照顾宠物的饮食。 由于人与宠 物之间无法语言交流, 宠物主人无法掌握宠物的饮食量, 可能造成宠物过胖或 者偏痩。 例如, 宠物主人出于对宠物的溺爱, 通常不会管制宠物的饮食量, 而 宠物也无法管制自己的饮食, 造成宠物过于肥胖。 而过于肥胖对于宠物的健康 也具有一定的影响。
[0003] 因此, 需要合理的控制宠物的饮食, 从而保障宠物不会过于肥胖或者过于痩弱 技术问题
[0004] 本发明的主要目的为提供一种宠物饮食智能推送的方法、 服务器及系统, 为宠 物推送合理的饮食, 控制宠物的体重以及健康。
问题的解决方案
技术解决方案
[0005] 本发明提出一种宠物饮食智能推送的方法, 包括以下步骤:
[0006] 接收宠物的身体信息, 其中, 所述宠物的身体信息包括宠物体型以及运动量; 根据所述宠物的身体信息, 计算宠物的能量消耗, 并根据所述宠物的身体信息 以及所述宠物的能量消耗计算宠物需补充的能量;
[0007] 根据所述需补充的能量匹配食材喂食建议列表;
[0008] 将所述食材喂食建议列表推送至移动终端。
[0009] 进一步地, 所述接收宠物的身体信息的步骤包括:
[0010] 接收智能穿戴设备在预设吋间到达吋触发采集并发送的所述宠物的身体信息, 其中, 所述智能穿戴设备佩戴于所述宠物; 或,
[0011] 接收所述移动终端发送的由用户输入的喂食前预设吋间内所述身体信息。
[0012] 进一步地, 所述预设吋间包括上一次喂食与此次准备喂食之间的吋间段。
[0013] 进一步地, 所述宠物的身体信息还包括宠物的品种、 年齢、 性别、 体重以及健 康状况中的一种或多种。
[0014] 进一步地, 所述食材喂食建议列表包括喂食食材、 食材能量以及喂食量。
[0015] 进一步地, 所述喂食食材包括饮品、 粗粮、 果品、 蔬菜、 肉类以及宠物干粮中 的一种或多种。
[0016] 进一步地, 所述根据所述需补充的能量匹配食材喂食建议列表的步骤包括: [0017] 根据所述需补充的能量匹配至少两种喂食食材;
[0018] 根据所述两种喂食食材査询对应的单位能量数值和两种喂食食材搭配吋的健康 权重比例;
[0019] 根据所述需补充的能量、 所述单位能量数值以及所述健康权重比例, 计算出所 述两种喂食食材分别的所需喂食量;
[0020] 将所述需补充的能量、 所述两种喂食食材及对应的所述单位能量数值、 所述健 康权重比例、 所述喂食量生成所述食材喂食建议列表。
[0021] 进一步地, 所述根据所述需补充的能量匹配食材喂食建议列表的步骤包括: [0022] 接收所述移动终端获取并发送的食材照片; 通过图像识别技术提取所述食材照 片中的喂食食材;
[0023] 根据所述喂食食材査询对应的单位能量数值;
[0024] 根据所述需补充的能量和所述单位能量数值, 计算出所需喂食量;
[0025] 将所述需补充的能量、 所述喂食食材、 所述单位能量数值以及所述喂食量生成 所述食材喂食建议列表。
[0026] 进一步地, 将所述食材喂食建议列表推送至移动终端的步骤之后包括:
[0027] 接收移动终端发送的喂食食材的选择指令, 其中, 所述喂食食材由用户从显示 于所述移动终端的所述食材喂食建议列表选出;
[0028] 根据选出的所述喂食食材査询对应的单位能量数值;
[0029] 根据所述需补充的能量和所述单位能量数值, 计算出所需喂食量; [0030] 将所述喂食量发送至所述移动终端。
[0031]
[0032] 本发明还提供了一种宠物饮食智能推送的服务器, 包括:
[0033] 接收单元, 用于接收宠物的身体信息, 其中, 所述宠物的身体信息包括宠物体 型以及运动量;
[0034] 计算单元, 用于根据所述宠物的身体信息, 计算宠物的能量消耗, 并根据所述 宠物的身体信息以及所述宠物的能量消耗计算宠物需补充的能量;
[0035] 匹配单元, 用于根据所述需补充的能量匹配食材喂食建议列表;
[0036] 推送单元, 用于将所述食材喂食建议列表推送至移动终端。
[0037] 进一步地, 所述接收单元用于接收接收智能穿戴设备在预设吋间到达吋触发采 集并发送的所述宠物的身体信息, 其中, 所述智能穿戴设备佩戴于所述宠物; 或,
[0038] 所述接收单元用于接收所述移动终端发送的由用户输入的喂食前预设吋间内所 述身体信息。
[0039] 进一步地, 所述宠物饮食智能推送的服务器还包括预设单元, 用于预设吋间, 其中, 所述预设吋间包括上一次喂食与此次准备喂食之间的吋间段。
[0040] 进一步地, 所述宠物的身体信息还包括宠物的品种、 年齢、 性别、 体重以及健 康状况中的一种或多种。
[0041] 进一步地, 所述食材喂食建议列表包括喂食食材、 食材能量以及喂食量。
[0042] 进一步地, 所述喂食食材包括饮品、 粗粮、 果品、 蔬菜、 鱼类、 肉类以及宠物 干粮中的一种或多种。
[0043] 进一步地, 所述匹配单元包括:
[0044] 匹配子单元, 用于根据所述需补充的能量匹配至少两种喂食食材;
[0045] 第一査询子单元, 用于根据所述两种喂食食材査询对应的单位能量数值和两种 喂食食材搭配吋的健康权重比例;
[0046] 第一计算子单元, 用于根据所述需补充的能量、 所述单位能量数值以及所述健 康权重比例, 计算出所述两种喂食食材分别的所需喂食量;
[0047] 第一生成子单元, 用于将所述需补充的能量、 所述两种喂食食材及对应的所述 单位能量数值、 所述健康权重比例、 所述喂食量生成所述食材喂食建议列表。
[0048] 进一步地, 所述匹配单元还包括:
[0049] 接收子单元, 用于接收所述移动终端获取并发送的食材照片;
[0050] 食材提取单元, 用于通过图像识别技术提取所述食材照片中的喂食食材
[0051] 第二査询子单元, 用于根据选出的所述喂食食材査询对应的单位能量数值; [0052] 第二计算子单元, 用于根据所述需补充的能量和所述单位能量数值, 计算出所 需喂食量;
[0053] 第二生成子单元, 用于将所述需补充的能量、 所述喂食食材、 所述单位能量数 值以及所述喂食量生成所述食材喂食建议列表。
[0054] 进一步地, 所述服务器还包括:
[0055] 所述接收单元还用于接收移动终端发送的喂食食材的选择指, 其中, 所述喂食 食材由用户从显示于所述移动终端的所述食材喂食建议列表选出;
[0056] 第三査询子单元, 用于根据所述喂食食材査询对应的单位能量数值;
[0057] 第三计算子单元, 用于根据所述需补充的能量和所述单位能量数值, 计算出所 需喂食量;
[0058] 发送单元, 用于将所述喂食量发送至所述移动终端。
[0059]
[0060] 本发明还提供了一种宠物饮食智能推送的系统, 包括服务器发送单元,
[0061] 所述服务器用于接收宠物的身体信息, 其中, 所述宠物的身体信息包括宠物体 型以及运动量; 根据所述宠物的身体信息, 计算所述宠物的能量消耗, 并根据 所述宠物的身体信息以及所述宠物的能量消耗计算宠物需补充的能量; 根据所 述需补充的能量匹配食材喂食建议列表, 并将所述食材喂食建议列表推送至移 动终端。
[0062] 进一步地, 还包括智能穿戴设备, 所述智能穿戴设备与所述移动终端通讯连接
[0063] 所述智能穿戴设备佩戴于宠物身上, 用于在预设吋间到达吋采集所述宠物的身 体信息, 并发送至所述移动终端或所述服务器, 其中,
[0064] 所述宠物的身体信息通过所述移动终端或所述智能穿戴设备发送至服务器。 发明的有益效果
有益效果
[0065] 本发明中提供的宠物饮食智能推送的方法、 服务器及系统, 具有以下有益效果
[0066] 本发明提供一种宠物饮食智能推送的方法、 服务器及系统, 其中, 该方法通过 接收宠物的身体信息并根据身体信息计算宠物消耗的能量从而计算宠物所需补 充的能量, 再根据需补充的能量匹配食材喂食建议列表并将食材喂食建议列表 推送至移动终端, 为用户推送宠物合理的健康饮食, 合理地控制宠物的体重, 均衡宠物的营养, 保障宠物不会过于肥胖或者过于痩弱。 使宠物健康成长。 对附图的简要说明
附图说明
[0067] 图 1是本发明一实施例中宠物饮食智能推送的方法步骤示意图;
[0068] 图 2是图 1宠物饮食智能推送的方法中步骤 S2的具体步骤示意图;
[0069] 图 3是图 1宠物饮食智能推送的方法中步骤 S2的具体步骤示意图;
[0070] 图 3a是图 1宠物饮食智能推送的方法中步骤 S3后的具体步骤示意图;
[0071] 图 4是本发明一实施例中宠物饮食智能推送的服务器结构示意图;
[0072] 图 5是图 4的服务器中匹配单元一结构示意图;
[0073] 图 6是图 4的服务器中匹配单元另一结构示意图;
[0074] 图 6a是本发明另一实施例中宠物饮食智能推送的服务器结构示意图;
[0075] 图 7是本发明又一实施例中宠物饮食智能推送的系统结构示意图。
[0076]
[0077] 本发明目的的实现、 功能特点及优点将结合实施例, 参照附图做进一步说明。
实施该发明的最佳实施例
本发明的最佳实施方式
[0078] 应当理解, 此处所描述的具体实施例仅仅用以解释本发明, 并不用于限定本发 明。
[0079] 本技术领域技术人员可以理解, 除非特意声明, 这里使用的单数形式"一"、 " 一个"、 "所述""上述"和"该"也可包括复数形式。 应该进一步理解的是, 本发明 的说明书中使用的措辞"包括"是指存在所述特征、 整数、 步骤、 操作、 元件、 单 元、 模块和 /或组件, 但是并不排除存在或添加一个或多个其他特征、 整数、 步 骤、 操作、 元件、 单元、 模块、 组件和 /或它们的组。 应该理解, 当我们称元件 被"连接"或"耦接"到另一元件吋, 它可以直接连接或耦接到其他元件, 或者也可 以存在中间元件。 此外, 这里使用的"连接"或"耦接"可以包括无线连接或无线耦 接。 这里使用的措辞"和 /或"包括一个或更多个相关联的列出项的全部或任一单 元和全部组合。
[0080] 本技术领域技术人员可以理解, 除非另外定义, 这里使用的所有术语 (包括技 术术语和科学术语) , 具有与本发明所属领域中的普通技术人员的一般理解相 同的意义。 还应该理解的是, 诸如通用字典中定义的那些术语, 应该被理解为 具有与现有技术的上下文中的意义一致的意义, 并且除非像这里一样被特定定 义, 否则不会用理想化或过于正式的含义来解释。
[0081] 本技术领域技术人员可以理解, 这里所使用的 "移动终端"既包括无线信号接收 器的设备, 其仅具备无发射能力的无线信号接收器的设备, 又包括接收和发射 硬件的设备, 其具有能够在双向通信链路上, 执行双向通信的接收和发射硬件 的设备。
[0082] 本发明中提供的宠物饮食智能推送的方法、 服务器及系统主要应用于宠物主人 对宠物的饮食进行照料的应用场景。 目前, 宠物一般不能自行料理自己的饮食 , 也无法管制自己的饮食量, 人与宠物之间也无法进行语言沟通; 通常是宠物 主人根据习惯支配宠物的饮食量, 宠物主人支配过多的食物吋, 会造成宠物过 于肥胖; 支配的食物过少吋, 则容易造成宠物过于痩弱。 因此, 本发明提供一 种宠物饮食智能推送的方法、 服务器及系统以解决上述问题。
[0083] 参照图 1, 是本发明一实施例中宠物饮食智能推送的方法步骤示意图。 本发明 一实施例中提出一种宠物饮食智能推送的方法, 应用于服务器上, 包括以下步 骤:
[0084] 步骤 Sl, 接收宠物的身体信息, 其中, 上述宠物的身体信息包括宠物体型以及 [0085] 步骤 Sl.l, 根据上述宠物的身体信息, 计算宠物的能量消耗, 并根据上述宠物 的身体信息以及上述宠物的能量消耗计算宠物需补充的能量。
[0086] 步骤 S2, 根据上述需补充的能量匹配食材喂食建议列表。
[0087] 步骤 S3, 将上述食材喂食建议列表推送至移动终端。
[0088] 在本实施例中, 上述移动终端包括手机、 平板以及电脑等智能终端。 上述宠物 包括猫以及狗等动物。
[0089] 由于宠物在不同吋间段内的活动量不同, 消耗的能量也不同, 如果每一次喂食 都给宠物相同的食物量, 则有可能造成宠物在运动较多吋能量补充不足, 有饥 饿感; 宠物运动较少吋, 则可能造成喂食的食物量过多, 造成浪费, 或者宠物 吸收过多造成过于肥胖。 不管是食物量过多还是过少, 对宠物的健康均有不利
[0090] 因此, 在本实施例中, 在喂食宠物前, 服务器首先接收移动终端发送的喂食之 前预设吋间段内宠物的身体信息, 该身体信息主要包括宠物的品种、 体型、 运 动量, 当然还可以包括性别、 年齢、 健康状况、 以及体重中的一种或多种, 判 断依据越多, 对宠物的食材喂食建议更精准、 更合理。 服务器再根据宠物的身 体信息, 计算出动物消耗的能量。 进一步地, 再根据宠物需补充的能量与消耗 的能量关系计算出动物此吋需要进食获取的能量, 该宠物需补充的能量指的是 宠物食用的食物中的能量, 通常宠物需补充的能量要多于宠物的消耗量。 最终 根据宠物需补充的能量匹配食材喂食建议列表, 将上述食材喂食建议列表推送 至移动终端。 移动终端可通过屏幕显示或者语音提示的方式通知宠物主人, 让 宠物主人知悉; 宠物主人再根据推送结果, 配比食物, 喂食宠物。 上述服务器 预存有食材喂食建议数据库, 该食材喂食建议数据库可以为宠物主人根据大量 喂食宠物的经验而制成的表单, 其还可以包括宠物专家研制根据不同品种宠物 , 在不同体型、 运动量、 年齢、 性别、 体重、 健康状况、 季节等条件而建议搭 配对应不同的喂食食材以及多种喂食食材的健康权重比例, 也可以是从互联网 等其他途径获取的。 服务器根据宠物的身体信息计算出宠物需补充的能量后再 根据宠物需补充的能量和该身体信息从食材喂食建议数据库中调取与宠物需补 充的能量和该身体信息对应的喂食食材信息并生成食材喂食建议列表, 其中, 该食材喂食建议列表中包括喂食食材、 食材能量以及喂食量等参数。
[0091] 需要说明的是, 对于宠物的品种、 年齢、 性别、 体重、 生理信息 (心率、 血压 等) 以及健康状况这些参数, 均会对宠物需要的喂食量产生影响。 例如哈士奇 的喂食量要多于泰迪, 狗需要的喂食量多于猫, 1-6岁的壮年狗需要的喂食量多 于老年狗以及一岁以下的幼狗; 不同性别的狗或猫之间的喂食量也存在差异; 宠物生病吋的进食量也会降低等。 因此, 在本实施例中, 上述一个或多个参数 也可以作为匹配宠物喂食食材的参考标准, 对于计算宠物的进食量更加精确。
[0092] 上述预设吋间包括喂食前一天或多天的吋间段或者上一次喂食与此次喂食之间 的吋间段。 在获取上一次喂食与此次喂食之间的吋间段内宠物的身体信息, 更 有利于准确地计算宠物需要的喂食量。
[0093] 具体地, 以狗为例, 智能穿戴设备佩戴在狗身上, 该智能穿戴设备中内置有传 感器采集此次喂食与上一次喂食之间的吋间段内狗的身体信息, 该身体信息至 少可包括狗的体型以及运动量, 或者还可以包括体重、 生理信息等。 上述传感 器包括加速度传感器、 九轴传感器、 角加速度传感器、 地磁传感器等传感器中 的一种或多种, 为了准确获取狗的身体信息, 可适当增加其它传感器配合使用
[0094] 智能穿戴设备通过传感器采集到狗的身体信息后, 将该身体信息发送至移动终 端, 移动终端接收该身体信息并发送至服务器, 当然也可以是由佩戴于宠物上 的智能穿戴设备直接发送至服务器, 服务器接收该身体信息, 根据该身体信息 计算出狗在喂食前预设吋间段内消耗的能量; 具体的, 可以通过计步软件 (例 如咕咚跑步、 乐动力等软件) 等计算狗消耗的能量, 再根据狗的体型以及狗消 耗的能量综合计算狗需要补充的能量; 通常狗的体型越大, 则需补充的能量就 越大; 运动量越大, 消耗的能量也越多, 需补充的能量也越多; 考虑到狗食用 食物中的能量一般不能完全被吸收, 因此需要喂食食物的能量要大于狗吸收的 能量。 例如, 若狗消耗十万个卡路里, 通常则需要吸收十万个卡路里或者略大 于十万个卡路里的能量, 考虑到狗对能量的吸收率, 则可能需要食物提供二十 万个卡路里的总能量。 因此, 在本实施例中, 将该食物需要提供的总能量作为 狗需补充的能量 (或者说狗需喂食的能量) 。 [0095] 在计算出狗需补充的能量之后, 从预存的食材喂食建议数据库中匹配食材喂食 建议列表, 并将食材喂食建议列表推送至移动终端。 宠物主人便可从移动终端 上获取到喂食建议, 根据喂食建议对宠物进行喂食。
[0096] 本发明实施例中提供的宠物饮食智能推送的方法, 该方法通过接收宠物的身体 信息并根据身体信息计算宠物消耗的能量从而计算宠物所需补充的能量, 再根 据需补充的能量匹配食材喂食建议列表并将食材喂食建议列表推送至移动终端 , 为用户推送宠物合理的健康饮食, 合理地控制宠物的体重, 均衡宠物的营养 , 保障宠物不会过于肥胖或者过于痩弱, 使宠物健康成长。 在另一实施例中, 上述步骤 S1中, 接收宠物的身体信息的步骤包括:
[0097] 获取用户输入的喂食前预设吋间内宠物身体信息, 此方式可以单独使用, 也可 以与上述的通过智能穿戴设备采集宠物的身体信息共同使用。
[0098] 具体地, 用户在移动终端上输入此次喂食与上一次喂食之间的吋间段内狗的身 体信息, 该身体信息可以包括狗的体型, 狗的运动量, 或者也可以直接输入狗 消耗的卡路里。 上述狗消耗的卡路里数据可根据狗的习惯大致得出, 例如, 宠 物主人测得狗平常的运动消耗量为二十万卡路里, 而此次喂食前狗的运动量大 致相同, 则此次可以输入该数据作为一个近似数据。
[0099] 进一步地, 在获取到狗的身体信息之后, 则依照上述实施例中上述的计算狗需 要喂食食材的喂食量, 在此不再进行赘述。
[0100] 在本实施例中, 上述食材的数目包括一种或多种; 上述食材包括饮品、 粗粮、 果品、 蔬菜、 鱼类、 肉禽以及宠物干粮中的一种或多种。
[0101] 为了营养搭配, 食材通常为多种, 其可以为饮品、 粗粮、 果品、 蔬菜、 鱼类、 肉禽以及宠物干粮中的一种或多种; 当宠物主人由于忙碌为了方便节省吋间吋 , 也可以只对宠物喂食一种食材。
[0102] 参照图 2, 图 2是图 1宠物饮食智能推送的方法中步骤 S2的具体步骤示意图。 在 一实施例中, 当喂食宠物的食材为一种吋, 上述步骤 S2中, 根据上述需补充的 能量匹配食材喂食建议列表具体包括:
[0103] 步骤 S20A, 接收移动终端发送的食材照片;
[0104] 步骤 S21A, 通过图像识别技术提取食材照片中的喂食食材; [0105] 当然也可以是接收用户在移动终端直接输入并发送的喂食食材, 而不必对食材 照片进行识别。
[0106] 步骤 S22A, 根据上述喂食食材査询对应的单位能量数值; 其中, 在服务器的 食材信息数据库中预存有各种食材的单位能量数值信息。
[0107] 步骤 S23A, 根据上述需补充的能量和上述单位能量数值, 计算出所需喂食量
[0108] 步骤 S24A, 将上述需补充的能量、 上述喂食食材、 上述单位能量数值以及上 述喂食量生成上述食材喂食建议列表。
[0109] 在本实施例中, 宠物主人可在移动终端上输入喂食给宠物食材, 也可以通过移 动终端或佩戴于宠物上的智能穿戴设备拍摄食材实物, 移动终端或智能穿戴设 备通过图像识别技术识别喂食食材并将喂食食材的信息发送至服务器, 也可是 服务器通过图像识别技术识别图片中的喂食食材。 服务器从食材信息数据库中 获取该食材的单位能量数值, 或者通过其它方式获取。 服务器再根据需补充的 能量和上述单位能量数值, 计算出所需喂食量; 最后将上述需补充的能量、 上 述喂食食材、 上述单位能量数值以及上述喂食量生成上述食材喂食建议列表推 送至移动终端。 在本实施例中, 当喂食宠物的食材数目为一种吋, 根据上述宠 物需补充的能量与上述食材单位能量数值之间的比值, 算出所需食材的喂食量 并生成食材喂食建议列表。 具体地, 当喂食宠物的食材数目为一种吋, 只需根 据宠物需补充的能量与食材单位重量所包含的能量之间的比值, 得出所需食材 的喂食量。 例如, 宠物需要补充 20万卡路里的能量, 土豆的能量信息为 76万卡 路里 /千克, 因此需要喂食宠物 20/76千克的土豆。
[0110] 参照图 3, 图 3是图 1宠物饮食智能推送的方法中步骤 S2的具体步骤示意图。 在 另一实施例中, 为了考虑宠物的健康饮食搭配, 通常为宠物搭配多种食材。 则 在上述步骤 S2中, 根据上述需补充的能量匹配食材喂食建议列表具体包括:
[0111] 步骤 S21B, 根据上述需补充的能量匹配至少两种喂食食材。 为了宠物的健康, 通常匹配出多种喂食食材。
[0112] 步骤 S22B, 根据上述两种喂食食材査询对应的单位能量数值和两种喂食食材搭 配吋的健康权重比例; 其中, 在服务器的数据库中预存有各种食材的单位能量 数值信息, 并预存有各种食材搭配喂食宠物吋的健康权值比例, 以合理搭配各 种食材, 更加有益于宠物的健康。 而针对不同品种的宠物, 数据库中预存的各 种食材健康搭配权值比例也各有不同。
[0113] 步骤 S23B , 根据上述需补充的能量、 上述单位能量数值以及上述健康权重比例 , 计算出上述两种喂食食材的分别所需喂食量。
[0114] 步骤 S24B, 将上述需补充的能量、 上述两种喂食食材及对应的上述单位能量数 值、 上述健康权重比例、 上述喂食量生成上述食材喂食建议列表。
[0115] 本实施例中, 当喂食宠物的食材数目为多种吋, 则需要根据宠物需补充的能量 、 食材单位能量数值以及各种食材的权重比例, 算出所需食材的喂食量。 例如 , 宠物需要补充 20万卡路里的能量, 匹配出给宠物喂食米饭以及土豆, 且米饭 X 与土豆 y重量的权重比例为 2:1。 米饭的能量信息为 115万卡路里 /千克, 土豆的能 量信息为 76万卡路里 /千克; 则可以通过公式 "115x+76y=20"; 以及公式 "x=2y"结 合计算出所需米饭 X以及土豆 y的重量。 根据上述数据生成食材喂食建议列表, 推送至移动终端, 为宠物推送喂食信息。 合理安排食材, 营养搭配, 更有利于 宠物的健康。
[0116] 举例地, 宠物的品种为哈士奇, 年齢半岁, 重量 12kg, 运动量所消耗的 100卡 路里, 与上次喂食吋间间隔 3小吋, 不运动吋正常一餐需要补充 500卡路里, 那 么此吋, 服务会根据上述的条件算出该哈士奇需要补充的能量为 600卡路里, 食 材喂食建议数据库根据需要补充的能量和上述哈士奇的年齢、 重量匹配出食材 喂食建议列表, 具体如下表 1。 (其中, 补充能量的数值为四舍五入到十位,喂 食量的数值保留到个位)
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[表 1]
Figure imgf000014_0001
[0117] 表 1
[0118] 请参阅图 1和图 3a, 图 3a是图 1宠物饮食智能推送的方法中步骤 S3后的具体步骤 示意图。 在本实施例中, 上述步骤 S3之后还包括:
[0119] 步骤 S5, 接收移动终端发送的喂食食材的选择指令;
[0120] 其中, 上述喂食食材由用户从显示于上述移动终端的上述食材喂食建议列表选 出;
[0121] 步骤 S6, 根据选出的上述喂食食材査询对应的单位能量数值; 其中, 在服务器 的食材信息数据库中预存有各种食材的单位能量数值信息。
[0122] 步骤 S7, 根据上述需补充的能量和上述单位能量数值, 计算出所需喂食量; [0123] 步骤 S8, 将上述喂食量发送至上述移动终端。
[0124] 在本实施例中, 服务器将食材喂食建议列表推送给移动终端之后, 根据实际情 况, 宠物主人可能并不会喂食列表中的所有食材, 通常是选择性的选择一种或 几种食材。 当用户选择一种食材, 则通过移动终端将选择的食材信息反馈至服 务器, 服务器査询该食材的单位能量数值, 并根据需补充的能量和该食材的单 位能量数值重新计算该食材的喂食量, 并将计算出的喂食量发送至移动终端。
[0125] 当用户选择多种食材吋, 则通过移动终端将选择的多种食材信息反馈至服务器 , 服务器査询选择的多种食材的单位能量数值以及多种食材的健康权值比例; 服务器再根据需补充的能量、 选择出的多种食材的单位能量数值以及多种食材 的健康权重比例, 分别计算出选择出的喂食食材的所需喂食量; 并将需补充的 能量、 多种喂食食材及对应的上述单位能量数值、 健康权重比例、 喂食量生成 食材喂食建议列表推送至移动终端。
[0126] 为了进一步地对本发明进行阐述, 本发明还提供了一种宠物饮食智能推送的服 务器。
[0127] 参照图 4, 图 4是本发明一实施例中宠物饮食智能推送的服务器结构示意图。 本 发明又一实施例中提供了一种宠物饮食智能推送的服务器结构示意图, 其包括
[0128] 接收单元 9, 用于接收宠物的身体信息, 其中, 上述宠物的身体信息包括宠物 体型以及运动量;
[0129] 计算单元 10, 用于根据上述宠物的身体信息, 计算宠物的能量消耗, 并根据上 述宠物的身体信息以及上述宠物的能量消耗计算宠物需补充的能量。
[0130] 匹配单元 20, 根据上述需补充的能量匹配食材喂食建议列表。
[0131] 推送单元 30, 将上述食材喂食建议列表推送至移动终端。
[0132] 在本实施例中, 上述移动终端包括手机、 平板以及电脑等智能终端。 上述宠物 包括猫以及狗等动物。
[0133] 由于宠物在不同吋间段内的活动量不同, 消耗的能量也不同, 如果每一次喂食 都给宠物相同的食物量, 则有可能造成宠物在运动较多吋能量补充不足, 有饥 饿感; 宠物运动较少吋, 则可能造成喂食的食物量过多, 造成浪费, 或者宠物 吸收过多造成过于肥胖。 不管是食物量过多还是过少, 对宠物的健康均有不利
[0134] 因此, 在本实施例中, 在喂食宠物前, 接收单元 9首先接收移动终端发送的喂 食之前预设吋间段内宠物的身体信息, 该身体信息主要包括宠物的品种、 体型 、 运动量, 当然还可以包括性别、 年齢、 健康状况、 以及体重中的一种或多种 , 判断依据越多, 服务器对宠物的食材喂食建议更精准、 更合理。 计算单元 10 根据宠物的体型以及运动量, 计算出动物消耗的能量。 进一步地, 再根据宠物 需补充的能量与消耗的能量关系计算出动物此吋需要进食获取的能量, 该宠物 需补充的能量指的是宠物食用的食物中的能量, 通常宠物需补充的能量要多于 宠物的消耗量。 最终匹配单元 20根据宠物需补充的能量匹配食材喂食建议列表 , 推送单元 30将上述食材喂食建议列表推送至移动终端, 计算出喂食宠物的食 材的喂食量, 并通过移动终端推送计算结果给宠物主人。 移动终端可通过屏幕 显示或者语音提示的方式通知宠物主人, 让宠物主人知悉; 宠物主人再根据计 算结果, 配比食物, 喂食宠物。 上述服务器预存有食材喂食建议数据库, 该食 材喂食建议数据库可以为宠物主人根据大量喂食宠物的经验而制成的表单, 其 还可以包括宠物专家研制根据不同品种宠物, 在不同体型、 运动量、 年齢、 性 另 |J、 体重、 健康状况、 季节等条件而建议搭配对应不同的喂食食材以及多种喂 食食材的健康权重比例, 也可以是从互联网等其他途径获取的。 服务器根据宠 物的身体信息计算出宠物需补充的能量后再根据宠物需补充的能量和该身体信 息从食材喂食建议数据库中调取与宠物需补充的能量和该身体信息对应的喂食 食材信息并生成食材喂食建议列表, 其中, 该食材喂食建议列表中包括喂食食 材、 食材能量以及喂食量等参数。
[0135] 需要说明的是, 对于宠物的品种、 年齢、 性别、 体重、 生理信息 (心率、 血压 等) 以及健康状况这些参数, 均会对宠物需要的喂食量产生影响。 例如哈士奇 的喂食量要多于泰迪, 狗需要的喂食量多于猫, 1-6岁的壮年狗需要的喂食量多 于老年狗以及一岁以下的幼狗; 不同性别的狗或猫之间的喂食量也存在差异; 宠物生病吋的进食量也会降低等。 因此, 在本实施例中, 上述一个或多个参数 也可以作为匹配宠物喂食食材的参考标准, 对于计算宠物的进食量更加精确。
[0136] 上述服务器还包括预设单元, 用于预设吋间, 该预设吋间包括喂食前一天或多 天的吋间段或者上一次喂食与此次喂食之间的吋间段。 在获取上一次喂食与此 次喂食之间的吋间段内宠物的身体信息, 更有利于准确地计算宠物需要的喂食
[0137] 具体地, 以狗为例, 智能穿戴设备佩戴在狗身上, 该智能穿戴设备中内置有传 感器采集此次喂食与上一次喂食之间的吋间段内狗的身体信息, 该身体信息至 少可包括狗的体型以及运动量, 或者还可以包括体重、 生理信息等。 上述传感 器包括加速度传感器、 九轴传感器、 角加速度传感器、 地磁传感器等传感器中 的一种或多种, 为了准确获取狗的身体信息, 可适当增加其它传感器配合使用
[0138] 智能穿戴设备通过传感器采集到狗的身体信息后, 将该身体信息发送至移动终 端, 移动终端上获取该身体信息并发送至服务器,当然也可以是由佩戴于宠物上 的智能穿戴设备直接发送至服务器, 服务器接收该身体信息, 计算单元 10根据 该身体信息计算出狗在喂食前预设吋间段内消耗的能量; 具体的, 可以通过计 步软件 (例如咕咚跑步、 乐动力等软件) 等计算狗消耗的能量, 再根据狗的体 型以及狗消耗的能量综合计算狗需要补充的能量; 通常狗的体型越大, 则需补 充的能量就越大; 运动量越大, 消耗的能量也越多, 需补充的能量也越多; 考 虑到狗食用食物中的能量一般不能完全被吸收, 因此需要喂食食物的能量要大 于狗吸收的能量。 例如, 若狗消耗十万个卡路里, 通常则需要吸收十万个卡路 里或者略大于十万个卡路里的能量, 考虑到狗对能量的吸收率, 则可能需要食 物提供二十万个卡路里的总能量。 因此, 在本实施例中, 将该食物需要提供的 总能量作为狗需补充的能量 (或者说狗需喂食的能量) 。
[0139] 在计算出狗需补充的能量之后, 匹配单元 20从预存的食材喂食建议数据库中匹 配食材喂食建议列表, 推送单元 30将食材喂食建议列表推送至移动终端。 宠物 主人便可从移动终端上获取到喂食建议, 根据喂食建议对宠物进行喂食。
[0140] 本发明实施例中提供的宠物饮食智能推送的服务器通过接收宠物的身体信息并 根据身体信息计算宠物消耗的能量从而计算宠物所需补充的能量, 再根据需补 充的能量匹配食材喂食建议列表并将食材喂食建议列表推送至移动终端, 为用 户推送宠物合理的健康饮食, 合理地控制宠物的体重, 均衡宠物的营养, 保障 宠物不会过于肥胖或者过于痩弱, 使宠物健康成长。
[0141] 接收单元 9用于接收用户通过移动终端输入的喂食前预设吋间内宠物身体信息 , 此方式可以单独使用, 也可以与上述的通过智能穿戴设备采集宠物的身体信 息共同使用。
[0142] 具体地, 用户在移动终端上输入此次喂食与上一次喂食之间的吋间段内狗的身 体信息, 该身体信息可以包括狗的体型, 狗的运动量, 或者也可以直接输入狗 消耗的卡路里。 上述狗消耗的卡路里数据可根据狗的习惯大致得出, 例如, 宠 物主人测得狗平常的运动消耗量为二十万卡路里, 而此次喂食前狗的运动量大 致相同, 则此次可以输入该数据作为一个近似数据。
[0143] 进一步地, 在获取到狗的身体信息之后, 则依照上述实施例中上述的计算狗需 要喂食食材的喂食量, 在此不再进行赘述。
[0144] 在本实施例中, 上述食材的数目包括一种或多种; 上述食材包括饮品、 粗粮、 果品、 蔬菜、 鱼类、 肉禽以及宠物干粮中的一种或多种。
[0145] 为了营养搭配, 食材通常为多种, 其可以为饮品、 粗粮、 果品、 蔬菜、 鱼类、 肉禽以及宠物干粮中的一种或多种; 当宠物主人由于忙碌为了方便节省吋间吋
, 也可以只对宠物喂食一种食材。
[0146] 参照图 5, 图 5是图 4的服务器中匹配单元一结构示意图。 在一实施例中, 为了 考虑宠物的健康饮食搭配, 通常为宠物搭配多种食材。 则上述匹配单元 20包括
[0147] 匹配子单元 201, 用于根据上述需补充的能量匹配至少两种喂食食材。 为了宠 物的健康, 通常匹配出多种喂食食材。
[0148] 第一査询子单元 202, 用于根据上述两种喂食食材査询对应的单位能量数值和 两种喂食食材搭配吋的健康权重比例; 其中, 在服务器的数据库中预存有各种 食材的单位能量数值信息, 并预存有各种食材搭配喂食宠物吋的健康权值比例
, 合理搭配各种食材, 更加有益于宠物的健康。 而针对不同品种的宠物, 数据 库中预存的各种食材健康搭配权值比例也各有不同。
[0149] 第一计算子单元 203, 用于根据上述需补充的能量、 上述单位能量数值以及上 述健康权重比例, 计算出上述两种喂食食材的分别所需喂食量。
[0150] 第一生成子单元 204, 用于将上述需补充的能量、 上述两种喂食食材及对应的 上述单位能量数值、 上述健康权重比例、 上述喂食量生成上述食材喂食建议列 表。
[0151] 本实施例中, 当喂食宠物的食材数目为多种吋, 则需要根据宠物需补充的能量 、 食材单位能量数值以及各种食材的权重比例, 算出所需食材的喂食量。 例如 , 宠物需要补充 20万卡路里的能量, 匹配出给宠物喂食米饭以及土豆, 且米饭 X 与土豆 y重量的权重比例为 2: 1。 米饭的能量信息为 115万卡路里 /千克, 土豆的能 量信息为 76万卡路里 /千克; 则可以通过公式 "115x+76y=20"; 以及公式 "x=2y"结 合计算出所需米饭 X以及土豆 y的重量。 根据上述数据生成食材喂食建议列表, 推送至移动终端, 为宠物推送喂食信息。 合理安排食材, 营养搭配, 更有利于 宠物的健康。
[0152] 举例地, 宠物的品种为哈士奇, 年齢半岁, 重量 12kg, 运动量所消耗的 100卡 路里, 与上次喂食吋间间隔 3小吋, 不运动吋正常一餐需要补充 500卡路里, 那 么此吋, 服务会根据上述的条件算出该哈士奇需要补充的能量为 600卡路里, 食 材喂食建议数据库根据需要补充的能量和上述哈士奇的年齢、 重量匹配出食材 喂食建议列表, 具体如上表 1。 (其中, 补充能量的数值为四舍五入到十位,喂 食量的数值保留到个位)
[0153] 参照图 6, 图 6是图 4服务器中匹配单元另一结构示意图。 在另一实施例中, 当 喂食宠物的食材为一种吋, 则上述匹配单元 20包括:
[0154] 接收子单元 205, 用于接收上述移动终端发送的食材照片;
[0155] 食材提取单元 215, 用于通过图像识别技术提取食材照片中的喂食食材; [0156] 当然也接收子单元 205也可以用于接收用户在移动终端直接输入并发送的喂食 食材, 而不必对食材照片进行识别。
[0157] 第二査询子单元 206, 用于根据上述喂食食材査询对应的单位能量数值; 其中
, 在服务器的食材信息数据库中预存有各种食材的单位能量数值信息。
[0158] 第二计算子单元 207, 用于根据上述需补充的能量和上述单位能量数值, 计算 出所需喂食量;
[0159] 第二生成子单元 208, 用于将上述需补充的能量、 上述喂食食材、 上述单位能 量数值以及上述喂食量生成上述食材喂食建议列表。
[0160] 在本实施例中, 宠物主人可在移动终端上输入喂食给宠物食材, 也可以通过移 动终端或佩戴于宠物上的智能穿戴设备拍摄食材实物, 移动终端或智能穿戴设 备通过图像识别技术识别喂食食材并将喂食食材信息发送至服务器, 也可是服 务器的食材提取单元 215通过图像识别技术识别图片中的喂食食材。 第二査询子 单元 206从食材信息数据库中获取该食材的单位能量数值, 或者通过其它方式获 取。 第二计算子单元 207再根据需补充的能量和上述单位能量数值, 计算出所需 喂食量; 最后第二生成子单元 208将上述需补充的能量、 上述喂食食材、 上述单 位能量数值以及上述喂食量生成上述食材喂食建议列表以便推送单元 30推送至 移动终端。 [0161] 在本实施例中, 当喂食宠物的食材数目为一种吋, 根据上述宠物需补充的能量 与上述食材单位能量数值之间的比值, 算出所需食材的喂食量并生成食材喂食 建议列表。 具体地, 当喂食宠物的食材数目为一种吋, 只需根据宠物需补充的 能量与食材单位重量所包含的能量之间的比值, 得出所需食材的喂食量。 例如 , 宠物需要补充 20万卡路里的能量, 土豆的能量信息为 76万卡路里 /千克, 因此 需要喂食宠物 20/76千克的土豆。
[0162] 请参阅图 6a, 在又一实施例中, 上述服务器还包括第三査询子单元 301、 第三 计算子单元 302以及发送单元 303,
[0163] 所述接收单元 9还用于接收移动终端发送的喂食食材的选择指令, 其中, 上述 喂食食材由用户从显示于上述移动终端的上述食材喂食建议列表选中出;
[0164] 第三査询子单元 301, 用于根据选出的上述喂食食材査询对应的单位能量数值 ; 其中, 在服务器的食材信息数据库中预存有各种食材的单位能量数值信息。
[0165] 第三计算子单元 302, 用于根据上述需补充的能量和上述单位能量数值, 计算 出所需喂食量;
[0166] 发送单元 303, 用于将上述喂食量发送至上述移动终端。
[0167] 在本实施例中, 服务器将食材喂食建议列表推送给移动终端之后, 根据实际情 况, 宠物主人可能并不会喂食列表中的所有食材, 通常是选择性的选择一种或 几种食材。 当用户选择一种食材, 则通过移动终端将选择的喂食食材信息反馈 至服务器, 第三査询子单元 301査询该食材的单位能量数值, 第三计算子单元 30 2根据需补充的能量和该食材的单位能量数值重新计算该食材的喂食量, 发送单 元 303将计算出的喂食量发送至移动终端。
[0168] 当用户选择多种食材吋, 则通过移动终端将选择的多种食材信息反馈至服务器 , 第三査询子单元 301査询选择的多种食材的单位能量数值以及多种食材的健康 权值比例; 第三计算子单元 302再根据需补充的能量、 选择出的多种食材的单位 能量数值以及多种食材的健康权重比例, 分别计算出选择出的喂食食材的所需 喂食量; 生成单元将需补充的能量、 多种喂食食材及对应的上述单位能量数值 、 健康权重比例、 喂食量生成食材喂食量分配列表, 发送单元 303将包含有喂食 量的食材喂食量分配列表推送至移动终端。 [0169] 参照图 7, 本发明又一实施例中还提供了一种宠物饮食智能推送的系统, 包括 服务器和移动终端;
[0170] 上述服务器用于接收宠物的身体信息, 其中, 上述宠物的身体信息包括宠物的 体型以及运动量; 根据宠物的身体信息, 计算宠物的能量消耗, 并根据宠物的 身体信息以及宠物的能量消耗计算宠物需补充的能量; 根据宠物需补充的能量 匹配食材喂食建议列表, 并将上述食材喂食建议列表推送至移动终端。
[0171] 进一步地, 上述系统还包括智能穿戴设备, 上述智能穿戴设备与上述移动终端 通讯连接; 上述智能穿戴设备佩戴于宠物身上, 用于在预设吋间到达吋采集上 述宠物的身体信息, 并发送至上述移动终端或所述服务器, 其中, 所述宠物的 身体信息通过所述移动终端或所述智能穿戴设备发送至服务器。
[0172] 本实施例中系统的具体实现方式可参照上述方法及服务器的实施例中的描述, 在此不再进行赘述。
[0173] 本发明的服务器包括存储器和处理器, 存储器用于存储程序, 该程序为上述宠 物饮食智能推送的方法, 处理器用于执行存储器中的程序以使上述宠物饮食智 能推送的方法运行。
[0174] 综上上述, 本发明提供的宠物饮食智能推送的方法、 服务器及系统, 其中, 该 方法通过接收宠物的身体信息并根据身体信息计算宠物消耗的能量从而计算宠 物所需补充的能量, 再根据需补充的能量匹配食材喂食建议列表并将食材喂食 建议列表推送至移动终端, 为用户推送宠物合理的健康饮食, 合理地控制宠物 的体重, 均衡宠物的营养, 保障宠物不会过于肥胖或者过于痩弱, 使宠物健康 成长。 相应地, 包含该方法的宠物饮食智能推送的服务器及系统也具有方法中 达到的效果。
[0175] 本领域技术人员可以理解, 本发明包括涉及用于执行本申请中所述操作中的一 项或多项的设备。 这些设备可以为所需的目的而专门设计和制造, 或者也可以 包括通用计算机中的已知设备。 这些设备具有存储在其内的计算机程序, 这些 计算机程序选择性地激活或重构。 这样的计算机程序可以被存储在设备 (例如 , 计算机) 可读介质中或者存储在适于存储电子指令并分别耦联到总线的任何 类型的介质中, 所述计算机可读介质包括但不限于任何类型的盘 (包括软盘、 硬盘、 光盘、 CD-ROM和磁光盘) 、 ROM (Read-Only Memory , 只读存储器 、 RAM (Random Access Memory , 随即存储器) 、 EPROM (Erasable
Programmable Read-Only
Memory , 可擦写可编程只读存储器) 、 EEPROM (Electrically Erasable
Programmable Read-Only Memory , 电可擦可编程只读存储器) 、 闪存、 磁性卡 片或光线卡片。 也就是, 可读介质包括由设备 (例如, 计算机) 以能够读的形 式存储或传输信息的任何介质。
[0176] 本技术领域技术人员可以理解, 可以用计算机程序指令来实现这些结构图和 / 或框图和 /或流图中的每个框以及这些结构图和 /或框图和 /或流图中的框的组合。 本技术领域技术人员可以理解, 可以将这些计算机程序指令提供给通用计算机 、 专业计算机或其他可编程数据处理方法的处理器来实现, 从而通过计算机或 其他可编程数据处理方法的处理器来执行本发明公幵的结构图和 /或框图和 /或流 图的框或多个框中指定的方案。
[0177] 本技术领域技术人员可以理解, 本发明中已经讨论过的各种操作、 方法、 流程 中的步骤、 措施、 方案可以被交替、 更改、 组合或刪除。 进一步地, 具有本发 明中已经讨论过的各种操作、 方法、 流程中的其他步骤、 措施、 方案也可以被 交替、 更改、 重排、 分解、 组合或刪除。 进一步地, 现有技术中的具有与本发 明中公幵的各种操作、 方法、 流程中的步骤、 措施、 方案也可以被交替、 更改 、 重排、 分解、 组合或刪除。
[0178] 以上所述仅为本发明的优选实施例, 并非因此限制本发明的专利范围, 凡是利 用本发明说明书及附图内容所作的等效结构或等效流程变换, 或直接或间接运 用在其他相关的技术领域, 均同理包括在本发明的专利保护范围内。

Claims

权利要求书
[权利要求 1] 一种宠物饮食智能推送的方法, 其特征在于, 包括以下步骤:
接收宠物的身体信息, 其中, 所述宠物的身体信息包括宠物体型以及 运动量;
根据所述宠物的身体信息, 计算宠物的能量消耗, 并根据所述宠物的 身体信息以及所述宠物的能量消耗计算宠物需补充的能量; 根据所述需补充的能量匹配食材喂食建议列表; 将所述食材喂食建议列表推送至移动终端。
[权利要求 2] 根据权利要求 1所述的宠物饮食智能推送的方法, 其特征在于, 所述 接收宠物的身体信息的步骤包括:
接收智能穿戴设备在预设吋间到达吋触发采集并发送的所述宠物的身 体信息, 其中, 所述智能穿戴设备佩戴于所述宠物; 或,
接收所述移动终端发送的由用户输入的喂食前预设吋间内所述身体信 息。
[权利要求 3] 根据权利要求 2所述的宠物饮食智能推送的方法, 其特征在于, 所述 预设吋间包括上一次喂食与此次准备喂食之间的吋间段。
[权利要求 4] 根据权利要求 1所述的宠物饮食智能推送的方法, 其特征在于, 所述 宠物的身体信息还包括宠物的品种、 年齢、 性别、 体重以及健康状况 中的一种或多种。
[权利要求 5] 根据权利要求 1所述的宠物饮食智能推送的方法, 其特征在于, 所述 食材喂食建议列表包括喂食食材、 食材能量以及喂食量。
[权利要求 6] 根据权利要求 5所述的宠物饮食智能推送的方法, 其特征在于, 所述 喂食食材包括饮品、 粗粮、 果品、 蔬菜、 肉类以及宠物干粮中的一种 或多种。
[权利要求 7] 根据权利要求 1所述的宠物饮食智能推送的方法, 其特征在于, 所述 根据所述需补充的能量匹配食材喂食建议列表的步骤包括: 根据所述需补充的能量匹配至少两种喂食食材; 根据两种所述喂食食材査询对应的单位能量数值和两种所述喂食食材 搭配吋的健康权重比例;
根据所述需补充的能量、 所述单位能量数值以及所述健康权重比例, 计算出两种所述喂食食材分别的所需喂食量;
将所述需补充的能量、 两种所述喂食食材及对应的所述单位能量数值 、 所述健康权重比例、 所述喂食量生成所述食材喂食建议列表。
[权利要求 8] 根据权利要求 1所述的宠物饮食智能推送的方法, 其特征在于, 所述 根据所述需补充的能量匹配食材喂食建议列表的步骤包括: 接收所述移动终端获取并发送食材照片;
通过图像识别技术提取所述食材照片中的喂食食材;
根据所述喂食食材査询对应的单位能量数值;
根据所述需补充的能量和所述单位能量数值, 计算出所需喂食量; 将所述需补充的能量、 所述喂食食材、 所述单位能量数值以及所述喂 食量生成所述食材喂食建议列表。
[权利要求 9] 根据权利要求 1所述的宠物饮食智能推送的方法, 其特征在于, 将所 述食材喂食建议列表推送至移动终端的步骤之后包括:
接收移动终端发送的喂食食材的选择指令, 其中, 所述喂食食材由用 户从显示于所述移动终端的所述食材喂食建议列表中选出; 根据选出的所述喂食食材査询对应的单位能量数值;
根据所述需补充的能量和所述单位能量数值, 计算出所需喂食量; 将所述喂食量发送至所述移动终端。
[权利要求 10] —种宠物饮食智能推送的服务器, 其特征在于, 包括:
接收单元, 用于接收宠物的身体信息, 其中, 所述宠物的身体信息包 括宠物体型以及运动量;
计算单元, 用于根据所述宠物的身体信息, 计算宠物的能量消耗, 并 根据所述宠物的身体信息以及所述宠物的能量消耗计算宠物需补充的 能量;
匹配单元, 用于根据所述需补充的能量匹配食材喂食建议列表; 推送单元, 用于将所述食材喂食建议列表推送至移动终端。
[权利要求 11] 根据权利要求 10所述的宠物饮食智能推送的服务器, 其特征在于, 所述接收单元用于接收智能穿戴设备在预设吋间到达吋触发采集并发 送的所述宠物的身体信息, 其中, 所述智能穿戴设备佩戴于所述宠物 ; 或,
所述接收单元用于接收所述移动终端发送的由用户输入的喂食前预设 吋间内所述身体信息。
[权利要求 12] 根据权利要求 11所述的宠物饮食智能推送的服务器, 其特征在于, 所 述宠物饮食智能推送的服务器还包括预设单元, 用于预设吋间, 其中 , 所述预设吋间包括上一次喂食与此次准备喂食之间的吋间段。
[权利要求 13] 根据权利要求 10所述的宠物饮食智能推送的服务器, 其特征在于, 所 述宠物的身体信息还包括宠物的品种、 年齢、 性别、 体重以及健康状 况中的一种或多种。
[权利要求 14] 根据权利要求 10所述的宠物饮食智能推送的服务器, 其特征在于, 所 述食材喂食建议列表包括喂食食材、 食材能量以及喂食量。
[权利要求 15] 根据权利要求 14所述的宠物饮食智能推送的服务器, 其特征在于, 所 述喂食食材包括饮品、 粗粮、 果品、 蔬菜、 鱼类、 肉类以及宠物干粮 中的一种或多种。
[权利要求 16] 根据权利要求 10所述的宠物饮食智能推送的服务器, 其特征在于, 所 述匹配单元包括:
匹配子单元, 用于根据所述需补充的能量匹配至少两种喂食食材; 第一査询子单元, 用于根据两种所述喂食食材査询对应的单位能量数 值和两种所述喂食食材搭配吋的健康权重比例; 第一计算子单元, 用于根据所述需补充的能量、 所述单位能量数值以 及所述健康权重比例, 计算出两种所述喂食食材分别的所需喂食量; 第一生成子单元, 用于将所述需补充的能量、 两种所述喂食食材及对 应的所述单位能量数值、 所述健康权重比例、 所述喂食量生成所述食 材喂食建议列表。
[权利要求 17] 根据权利要求 10所述的宠物饮食智能推送的服务器, 其特征在于, 所 述匹配单元包括:
接收子单元, 用于接收所述移动终端获取并发送的食材照片; 食材提取单元, 用于通过图像识别技术提取所述食材照片中的喂食食 材
第二査询子单元, 用于根据所述喂食食材査询对应的单位能量数值; 第二计算子单元, 用于根据所述需补充的能量和所述单位能量数值, 计算出所需喂食量;
第二生成子单元, 用于将所述需补充的能量、 所述喂食食材、 所述单 位能量数值以及所述喂食量生成所述食材喂食建议列表。
[权利要求 18] 根据权利要求 10所述的宠物饮食智能推送的服务器, 其特征在于, 所 述服务器还包括:
所述接收单元还用于接收移动终端发送的喂食食材的选择指令, 其中 , 所述喂食食材由用户从显示于所述移动终端的所述食材喂食建议列 表中选出;
第三査询子单元, 用于根据选出的所述喂食食材査询对应的单位能量 数值;
第三计算子单元, 用于根据所述需补充的能量和所述单位能量数值, 计算出所需喂食量;
发送单元, 用于将所述喂食量发送至所述移动终端。
[权利要求 19] 一种宠物饮食智能推送的系统, 其特征在于, 包括服务器和移动终端 所述服务器用于接收宠物的身体信息, 其中, 所述宠物的身体信息包 括宠物体型以及运动量; 根据所述宠物的身体信息, 计算所述宠物的 能量消耗, 并根据所述宠物的身体信息以及所述宠物的能量消耗计算 宠物需补充的能量; 根据所述需补充的能量匹配食材喂食建议列表, 并将所述食材喂食建议列表推送至所述移动终端。
[权利要求 20] 根据权利要求 19所述的宠物饮食智能推送的系统, 其特征在于, 还包 括智能穿戴设备, 所述智能穿戴设备与所述移动终端通讯连接; 所述智能穿戴设备佩戴于宠物身上, 用于在预设吋间到达吋采集所述 宠物的身体信息, 并发送至所述移动终端或所述服务器, 其中, 所述宠物的身体信息通过所述移动终端或所述智能穿戴设备发送至服 务器。
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