Energy-saving lighting and multiple interaction method and system for household devices

By defining the collaborative relationship and interaction methods between energy-saving lighting and household appliances, an interactive system is constructed to dynamically adjust operating parameters, solving the problem of single interaction between energy-saving lighting and household appliances, and realizing multi-dimensional online control and overall management.

CN119364600BActive Publication Date: 2026-02-06LEAD OPTO-TECH CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202411772204.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-04
Publication Date
2026-02-06
Estimated Expiration
2044-12-04

AI Technical Summary

Technical Problem

The interaction between existing energy-saving lighting and household appliances is limited to a single command, which affects the realization of multiple interactions and cannot adapt to the multi-dimensional control of complex indoor spaces and equipment.

Method used

By determining the synergistic relationship between energy-saving lighting and household appliances, multiple interactions are triggered based on the maximum illumination range and location. An interactive system is then built to dynamically adjust the operating parameters of the lighting and appliances to adapt to the user's location and behavior, thereby achieving multi-dimensional online control.

Benefits of technology

It enables multi-level interactive overall control of energy-saving lighting and household appliances, improves the interaction effect, and adapts to the working needs of various indoor spaces and equipment.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119364600B_ABST
    Figure CN119364600B_ABST
Patent Text Reader

Abstract

The application discloses a kind of energy-saving lighting and multiple interaction method and system of household equipment, based on the interaction mode triggering energy-saving lighting and multiple interaction of household equipment, and in the multiple interaction of energy-saving lighting and household equipment, the working parameter of energy-saving lighting and the working parameter of household equipment are determined, multiple interaction of energy-saving lighting and household equipment is realized.Further, based on the interaction state triggering the user detection of the environment where energy-saving lighting is located, if the user is in the detection range of energy-saving lighting, then according to the location of the user, the location of energy-saving lighting and the behavior category of user, the working parameter of energy-saving lighting is dynamically regulated, based on the working parameter of regulated energy-saving lighting, the use state of household equipment regulates the working parameter of household equipment, improves the multiple interaction effect of energy-saving lighting and household equipment.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of energy-saving lighting and household equipment, in particular to a multiple interaction method and system of energy-saving lighting and household equipment. BACKGROUND

[0002] With the development of science and technology, energy-saving lighting is applied to people's life, and energy-saving lighting and household equipment are configured in indoor space, and the household equipment can be a television, kitchen equipment, etc. In the indoor space, the energy-saving lighting and the household equipment communicate and interact data in the communication process. In the prior art, the energy-saving lighting and the household equipment interact along a single instruction, which affects the multiple interaction of the energy-saving lighting and the household equipment. SUMMARY

[0003] The present application aims to overcome the shortcomings of the prior art, and provides a multiple interaction method and system of energy-saving lighting and household equipment, which determines the energy-saving lighting and the household equipment according to the traversal of the indoor space; determines the corresponding cooperative relationship according to the energy-saving lighting and the household equipment; determines the interaction mode of the energy-saving lighting and the household equipment according to the cooperative relationship, the maximum illumination range of the energy-saving lighting and the position of the household equipment; triggers the multiple interaction of the energy-saving lighting and the household equipment based on the interaction mode, and determines the working parameters of the energy-saving lighting and the working parameters of the household equipment in the multiple interaction of the energy-saving lighting and the household equipment, which realizes the multiple interaction of the energy-saving lighting and the household equipment, so as to facilitate the online control of the energy-saving lighting and the household equipment in multiple dimensions, and realizes the overall control of the multiple interaction of the energy-saving lighting and the household equipment.

[0004] Further, in the indoor space, an interaction system is constructed based on the working parameters of the energy-saving lighting, the working parameters of the household equipment and the overall area of the indoor space; an interaction state is determined according to the working parameters of the energy-saving lighting, the working parameters of the household equipment and the real-time state matching table; a user detection of the environment where the energy-saving lighting is located is triggered based on the interaction state, if the user is within the detection range of the energy-saving lighting, the working parameters of the energy-saving lighting are dynamically regulated according to the position of the user, the position of the energy-saving lighting and the behavior type of the user, and the working parameters of the household equipment are regulated based on the regulated working parameters of the energy-saving lighting and the use state of the household equipment, which realizes the autonomous regulation of the working parameters of the energy-saving lighting and the autonomous regulation of the working parameters of the household equipment, improves the multiple interaction effect of the energy-saving lighting and the household equipment, and maximizes the working effect of the energy-saving lighting and the household equipment in various indoor spaces.

[0005] The embodiment of the present application provides a multiple interaction method of an energy-saving lighting lamp and a household device, characterized by being applied to a multiple interaction scene of the energy-saving lighting lamp and the household device.

[0006] The multiple interaction method of the energy-saving lighting lamp and the household device comprises the following steps.

[0007] According to the traversal of the indoor space, the energy-saving lighting lamp and the household device are determined.

[0008] According to the energy-saving lighting lamp and the household device, a corresponding cooperative relationship is determined.

[0009] According to the cooperative relationship, the maximum illumination range of the energy-saving lighting lamp and the position of the household device, an interaction mode of the energy-saving lighting lamp and the household device is determined.

[0010] Based on the interaction mode, the multiple interaction of the energy-saving lighting lamp and the household device is triggered, and the working parameters of the energy-saving lighting lamp and the working parameters of the household device are determined in the multiple interaction of the energy-saving lighting lamp and the household device.

[0011] In the indoor space, based on the working parameters of the energy-saving lighting lamp, the working parameters of the household device and the overall area of the indoor space, an interaction system is constructed; according to the working parameters of the energy-saving lighting lamp, the working parameters of the household device and a real-time state matching table, an interaction state is determined.

[0012] Based on the interaction state, user detection of the environment where the energy-saving lighting lamp is located is triggered; if the user is in the detection range of the energy-saving lighting lamp, the working parameters of the energy-saving lighting lamp are dynamically regulated according to the position of the user, the position of the energy-saving lighting lamp and the behavior category of the user, and the working parameters of the household device are regulated based on the regulated working parameters of the energy-saving lighting lamp and the use state of the household device.

[0013] Optionally, the energy-saving lighting lamp and the household device are determined according to the traversal of the indoor space, and the method comprises the following steps.

[0014] The indoor space is positioned.

[0015] According to the detection of the indoor space, a plurality of working areas are determined.

[0016] According to the relative positions among the plurality of working areas, the area sizes of the plurality of working areas and the corresponding space positions, a corresponding traversal mode is determined.

[0017] The traversal of the indoor space is triggered along the traversal mode.

[0018] The energy-saving lighting lamp and the household device are determined based on the traversal of the indoor space.

[0019] Optionally, the corresponding cooperative relationship is determined according to the energy-saving lighting lamp and the household appliance, and the method comprises the following steps:

[0020] The energy-saving lighting lamp and the household appliance are determined;

[0021] The corresponding association mode is determined according to the position of the energy-saving lighting lamp and the position of the household appliance;

[0022] The dynamic association between the energy-saving lighting lamp and the household appliance is triggered based on the association mode and the corresponding network signal strength;

[0023] The corresponding association coefficient is determined based on the dynamic association between the energy-saving lighting lamp and the household appliance;

[0024] The interaction intensity between the energy-saving lighting lamp and each household appliance is constructed according to the comparison of the plurality of association coefficients;

[0025] The corresponding cooperative relationship is determined based on the interaction intensity between the energy-saving lighting lamp and each household appliance, the illumination range of the energy-saving lighting lamp, and the function of each household appliance.

[0026] Optionally, the interaction mode between the energy-saving lighting lamp and the household appliance is determined according to the cooperative relationship, the maximum illumination range of the energy-saving lighting lamp, and the position of the household appliance, and the method comprises the following steps:

[0027] The cooperative relationship is determined;

[0028] The maximum illumination range of the energy-saving lighting lamp is determined according to the orientation of the energy-saving lighting lamp and the specification of the energy-saving lighting lamp;

[0029] The cooperative relationship, the maximum illumination range of the energy-saving lighting lamp, and the position of the household appliance are associated;

[0030] The first interaction parameter is determined based on the cooperative relationship and the maximum illumination range of the energy-saving lighting lamp;

[0031] The second interaction parameter is determined based on the cooperative relationship and the position of the household appliance;

[0032] The interaction mode between the energy-saving lighting lamp and the household appliance is determined based on the first interaction parameter, the second interaction parameter, and the interaction matching table.

[0033] Optionally, the multiple interactions between the energy-saving lighting lamp and the household appliance are triggered based on the interaction mode, and the working parameters of the energy-saving lighting lamp and the working parameters of the household appliance are determined in the multiple interactions between the energy-saving lighting lamp and the household appliance, and the method comprises the following steps:

[0034] The interaction mode is determined;

[0035] The multiple interactions between the energy-saving lighting lamp and the household appliance are triggered based on the interaction mode;

[0036] In the multiple interactions between the energy-saving lighting lamp and the household appliance, the energy-saving lighting lamp and the household appliance interact in multiple aspects in different dimensions;

[0037] Real-time monitoring of the multiple interactions between the energy-saving lighting lamp and the household appliance;

[0038] Determining the working parameters of the energy-saving lighting lamp and the working parameters of the household appliance in the multiple interactions between the energy-saving lighting lamp and the household appliance.

[0039] Optionally, the interaction system is constructed in the indoor space based on the working parameters of the energy-saving lighting lamp, the working parameters of the household appliance, and the overall area of the indoor space; the interaction state is determined according to the working parameters of the energy-saving lighting lamp, the working parameters of the household appliance, and the real-time state matching table, comprising:

[0040] Freezing the indoor space and performing online detection on the indoor space;

[0041] In the online detection of the indoor space, the working parameters of the energy-saving lighting lamp, the working parameters of the household appliance, and the overall area of the indoor space are collected;

[0042] Correlating the working parameters of the energy-saving lighting lamp, the working parameters of the household appliance, and the overall area of the indoor space, and constructing the interaction system based on the working parameters of the energy-saving lighting lamp, the working parameters of the household appliance, and the overall area of the indoor space.

[0043] Optionally, the interaction system is constructed in the indoor space based on the working parameters of the energy-saving lighting lamp, the working parameters of the household appliance, and the overall area of the indoor space; the interaction state is determined according to the working parameters of the energy-saving lighting lamp, the working parameters of the household appliance, and the real-time state matching table, further comprising:

[0044] Freezing the interaction system;

[0045] Dynamically monitoring the working parameters of the energy-saving lighting lamp and the working parameters of the household appliance based on the interaction system;

[0046] Determining the interaction state according to the working parameters of the energy-saving lighting lamp, the working parameters of the household appliance, and the real-time state matching table.

[0047] Optionally, the user detection of the environment where the energy-saving lighting lamp is located is triggered based on the interaction state; if the user is within the detection range of the energy-saving lighting lamp, the working parameters of the energy-saving lighting lamp are dynamically regulated according to the location of the user, the location of the energy-saving lighting lamp, and the behavior type of the user; the working parameters of the household appliance are regulated based on the regulated working parameters of the energy-saving lighting lamp and the use state of the household appliance, comprising:

[0048] monitoring the interaction state in real time;

[0049] triggering user detection of an environment where the energy-saving lighting lamp is located based on the interaction state;

[0050] determining whether a user is in a detection range of the energy-saving lighting lamp according to the user detection of the environment where the energy-saving lighting lamp is located.

[0051] Optionally, the triggering of the user detection of the environment where the energy-saving lighting lamp is located based on the interaction state, if the user is in the detection range of the energy-saving lighting lamp, dynamically regulating working parameters of the energy-saving lighting lamp according to a location of the user, a location of the energy-saving lighting lamp and a behavior type of the user, regulating working parameters of a household device based on the regulated working parameters of the energy-saving lighting lamp and a use state of the household device, further comprising:

[0052] if the user is in the detection range of the energy-saving lighting lamp, collecting the location of the user, the location of the energy-saving lighting lamp and the behavior type of the user;

[0053] dynamically regulating the working parameters of the energy-saving lighting lamp according to the location of the user, the location of the energy-saving lighting lamp, the behavior type of the user and the interaction state;

[0054] correlating the regulated working parameters of the energy-saving lighting lamp and the use state of the household device, and regulating the working parameters of the household device based on the regulated working parameters of the energy-saving lighting lamp and the use state of the household device.

[0055] In addition, the embodiment of the present application also provides a multiple interaction system of an energy-saving lighting lamp and a household device, which comprises:

[0056] a traversal module for determining the energy-saving lighting lamp and the household device according to traversal of an indoor space;

[0057] a cooperative relationship module for determining a corresponding cooperative relationship according to the energy-saving lighting lamp and the household device;

[0058] an interaction mode module for determining an interaction mode of the energy-saving lighting lamp and the household device according to the cooperative relationship, a maximum illumination range of the energy-saving lighting lamp and a location of the household device;

[0059] a multiple interaction module for triggering multiple interaction of the energy-saving lighting lamp and the household device based on the interaction mode, and determining working parameters of the energy-saving lighting lamp and working parameters of the household device in the multiple interaction of the energy-saving lighting lamp and the household device;

[0060] An interaction state module is configured to construct an interaction system based on the working parameters of the energy-saving lighting lamp, the working parameters of the household device, and the overall area of the indoor space in the indoor space, determine an interaction state according to the working parameters of the energy-saving lighting lamp, the working parameters of the household device, and a real-time state matching table, and determine the interaction state according to the working parameters of the energy-saving lighting lamp, the working parameters of the household device, and the overall area of the indoor space.

[0061] A regulation module is configured to trigger user detection of an environment where the energy-saving lighting lamp is located based on the interaction state, dynamically regulate the working parameters of the energy-saving lighting lamp according to the location of the user, the location of the energy-saving lighting lamp, and the behavior type of the user if the user is in the detection range of the energy-saving lighting lamp, and regulate the working parameters of the household device based on the working parameters of the energy-saving lighting lamp after regulation, the use state of the household device.

[0062] In the embodiment of the present application, the energy-saving lighting lamp and the household device are determined according to the traversal of the indoor space by the method in the embodiment of the present application, the corresponding cooperative relationship is determined according to the energy-saving lighting lamp and the household device, the interaction mode of the energy-saving lighting lamp and the household device is determined according to the cooperative relationship, the maximum illumination range of the energy-saving lighting lamp, and the location of the household device, the multiple interactions of the energy-saving lighting lamp and the household device are triggered based on the interaction mode, and the working parameters of the energy-saving lighting lamp and the working parameters of the household device are determined in the multiple interactions of the energy-saving lighting lamp and the household device, thereby realizing the multiple interactions of the energy-saving lighting lamp and the household device, facilitating the online control of the energy-saving lighting lamp and the household device in multiple dimensions, and realizing the overall control of the multiple interactions of the energy-saving lighting lamp and the household device.

[0063] Further, in the indoor space, an interaction system is constructed based on the working parameters of the energy-saving lighting lamp, the working parameters of the household device, and the overall area of the indoor space, an interaction state is determined according to the working parameters of the energy-saving lighting lamp, the working parameters of the household device, and a real-time state matching table, user detection of an environment where the energy-saving lighting lamp is located is triggered based on the interaction state, the working parameters of the energy-saving lighting lamp are dynamically regulated according to the location of the user, the location of the energy-saving lighting lamp, and the behavior type of the user if the user is in the detection range of the energy-saving lighting lamp, and the working parameters of the household device are regulated based on the working parameters of the energy-saving lighting lamp after regulation, the use state of the household device, thereby realizing the autonomous regulation of the working parameters of the energy-saving lighting lamp and the autonomous regulation of the working parameters of the household device, improving the multiple interaction effect of the energy-saving lighting lamp and the household device, and adapting to various indoor spaces and maximizing the working effect of the energy-saving lighting lamp and the household device. BRIEF DESCRIPTION OF DRAWINGS

[0064] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description. Obviously, the drawings described below only illustrate some of the embodiments of the present application, and are not all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor should be within the scope of protection of the present application.

[0065] Figure 1 is a flowchart of the multi-interaction method of the energy-saving lighting lamp and the household appliance in the embodiments of the present application;

[0066] Figure 2 is a flowchart of S11 in the multi-interaction method of the energy-saving lighting lamp and the household appliance in the embodiments of the present application;

[0067] Figure 3 is a flowchart of S12 in the multi-interaction method of the energy-saving lighting lamp and the household appliance in the embodiments of the present application;

[0068] Figure 4 is a flowchart of S13 in the multi-interaction method of the energy-saving lighting lamp and the household appliance in the embodiments of the present application;

[0069] Figure 5 is a flowchart of S14 in the multi-interaction method of the energy-saving lighting lamp and the household appliance in the embodiments of the present application;

[0070] Figure 6 is a flowchart of S15 in the multi-interaction method of the energy-saving lighting lamp and the household appliance in the embodiments of the present application;

[0071] Figure 7 is a flowchart of S16 in the multi-interaction method of the energy-saving lighting lamp and the household appliance in the embodiments of the present application;

[0072] Figure 8 is a structural composition diagram of the multi-interaction system of the energy-saving lighting lamp and the household appliance in the embodiments of the present application;

[0073] Figure 9 is a hardware diagram of an electronic device according to an exemplary embodiment. DETAILED DESCRIPTION

[0074] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, and not all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor should be within the scope of protection of the present application.

[0075] Please refer to Figures 1 to 9 A multi-interaction method of an energy-saving lighting lamp and a household appliance is applied to a multi-interaction scene of the energy-saving lighting lamp and the household appliance, and the multi-interaction method comprises the following steps:

[0076] Step S11: determining the energy-saving lighting lamp and the household appliance according to traversal of an indoor space;

[0077] Step S12: determining a corresponding cooperative relationship according to the energy-saving lighting lamp and the household appliance;

[0078] Step S13: determining an interaction mode of the energy-saving lighting lamp and the household appliance according to the cooperative relationship, a maximum illumination range of the energy-saving lighting lamp and a position of the household appliance;

[0079] Step S14: triggering multi-interaction of the energy-saving lighting lamp and the household appliance based on the interaction mode, and determining working parameters of the energy-saving lighting lamp and working parameters of the household appliance in the multi-interaction of the energy-saving lighting lamp and the household appliance;

[0080] Step S15: constructing an interaction system based on the working parameters of the energy-saving lighting lamp, the working parameters of the household appliance and a total area of the indoor space in the indoor space, and determining an interaction state according to the working parameters of the energy-saving lighting lamp, the working parameters of the household appliance and a real-time state matching table;

[0081] Step S16: triggering user detection of an environment where the energy-saving lighting lamp is located based on the interaction state, and if the user is in a detection range of the energy-saving lighting lamp, dynamically regulating the working parameters of the energy-saving lighting lamp according to a position of the user, a position of the energy-saving lighting lamp and a behavior type of the user, and regulating the working parameters of the household appliance based on the working parameters of the energy-saving lighting lamp after the regulation and a use state of the household appliance.

[0082] In the embodiment of the present application, the energy-saving lighting lamp and the household appliance are determined according to traversal of an indoor space by the method in the embodiment of the present application, a corresponding cooperative relationship is determined according to the energy-saving lighting lamp and the household appliance, an interaction mode of the energy-saving lighting lamp and the household appliance is determined according to the cooperative relationship, a maximum illumination range of the energy-saving lighting lamp and a position of the household appliance, multi-interaction of the energy-saving lighting lamp and the household appliance is triggered based on the interaction mode, and working parameters of the energy-saving lighting lamp and working parameters of the household appliance are determined in the multi-interaction of the energy-saving lighting lamp and the household appliance, so that multi-interaction of the energy-saving lighting lamp and the household appliance is realized, online control of multiple dimensions of the energy-saving lighting lamp and the household appliance is facilitated, and overall control of the multi-interaction of the energy-saving lighting lamp and the household appliance is realized.

[0083] Further, in the indoor space, an interactive system is constructed based on the working parameters of the energy-saving lighting lamp, the working parameters of the household device, and the overall area of the indoor space; an interactive state is determined according to the working parameters of the energy-saving lighting lamp, the working parameters of the household device, and the real-time state matching table; and user detection of the environment where the energy-saving lighting lamp is located is triggered based on the interactive state, if the user is in the detection range of the energy-saving lighting lamp, the working parameters of the energy-saving lighting lamp are dynamically regulated according to the location of the user, the location of the energy-saving lighting lamp, and the behavior type of the user, and the working parameters of the household device are regulated based on the regulated working parameters of the energy-saving lighting lamp and the use state of the household device, thereby realizing autonomous regulation of the working parameters of the energy-saving lighting lamp and the working parameters of the household device, improving the multiple interaction effect of the energy-saving lighting lamp and the household device, and adapting to various indoor spaces and maximizing the working effect of the energy-saving lighting lamp and the household device.

[0084] Reference Figure 2 In step S11, the energy-saving lighting lamp and the household device are determined according to the traversal of the indoor space.

[0085] In the specific implementation process of the present application, the specific steps can be:

[0086] S111: positioning the indoor space;

[0087] S112: determining a plurality of working areas according to the detection of the indoor space;

[0088] S113: determining a corresponding traversal mode according to the relative positions between the plurality of working areas, the area sizes of the plurality of working areas, and the corresponding spatial positions;

[0089] S114: triggering the traversal of the indoor space along the traversal mode;

[0090] S115: determining the energy-saving lighting lamp and the household device based on the traversal of the indoor space.

[0091] In the embodiments of the present application, the indoor space is positioned, the plurality of working areas are further determined according to the detection of the indoor space, the corresponding traversal mode is determined according to the relative positions between the plurality of working areas, the area sizes of the plurality of working areas, and the corresponding spatial positions, the overall consideration of the relative positions between the plurality of working areas, the area sizes of the plurality of working areas, and the corresponding spatial positions is compatible, the multi-dimensional control of the relative positions between the plurality of working areas, the area sizes of the plurality of working areas, and the corresponding spatial positions is realized, and the accuracy of the traversal mode is ensured.

[0092] Therefore, the traversal of the indoor space is triggered along the traversal mode; the energy-saving lighting lamp and the household device are introduced based on the traversal of the indoor space, so as to facilitate multiple interactions of the energy-saving lighting lamp and the household device.

[0093] Reference Figure 3 In step S12, the corresponding cooperative relationship is determined according to the energy-saving lighting lamp and the household device;

[0094] In the specific implementation of the present application, the specific steps can be:

[0095] S121: framing the energy-saving lighting lamp and the household device;

[0096] S122: determining the corresponding association mode according to the positions of the energy-saving lighting lamp and the household device;

[0097] S123: triggering the dynamic association between the energy-saving lighting lamp and the household device based on the association mode and the corresponding network signal strength;

[0098] S124: determining the corresponding association coefficient based on the dynamic association between the energy-saving lighting lamp and the household device;

[0099] S125: constructing the interaction intensity of the energy-saving lighting lamp and each household device according to the comparison of multiple association coefficients;

[0100] S126: determining the corresponding cooperative relationship based on the interaction intensity of the energy-saving lighting lamp and each household device, the illumination range of the energy-saving lighting lamp, and the functions of each household device.

[0101] In the embodiments of the present application, the energy-saving lighting lamp and the household device are framed; the corresponding association mode is determined according to the positions of the energy-saving lighting lamp and the household device, the positions of the energy-saving lighting lamp and the household device are introduced, the multidimensional control of the positions of the energy-saving lighting lamp and the household device is realized, and the accuracy of the association mode is ensured.

[0102] Further, the dynamic association between the energy-saving lighting lamp and the household device is triggered based on the association mode and the corresponding network signal strength, the dynamic association between the energy-saving lighting lamp and the household device is realized, and the dynamic control of the energy-saving lighting lamp and the household device is facilitated.

[0103] Therefore, the corresponding correlation coefficient is determined based on the dynamic correlation between the energy-saving lighting lamp and the household equipment, the interaction intensity of the energy-saving lighting lamp and each household equipment is constructed according to comparison of a plurality of correlation coefficients, the corresponding cooperative relationship is determined based on the interaction intensity of the energy-saving lighting lamp and each household equipment, the illumination range of the energy-saving lighting lamp and the function of each household equipment, the overall consideration of the interaction intensity of the energy-saving lighting lamp and each household equipment, the illumination range of the energy-saving lighting lamp and the function of each household equipment is compatible, the multi-dimensional control of the interaction intensity of the energy-saving lighting lamp and each household equipment, the illumination range of the energy-saving lighting lamp and the function of each household equipment is realized, and the accuracy of the cooperative relationship is ensured.

[0104] Reference Figure 4 In step S13, the interaction mode of the energy-saving lighting lamp and the household equipment is determined according to the cooperative relationship, the maximum illumination range of the energy-saving lighting lamp and the position of the household equipment.

[0105] In the specific implementation process of the present application, the specific steps can be:

[0106] S131: freeze the cooperative relationship;

[0107] S132: determine the maximum illumination range of the energy-saving lighting lamp according to the orientation of the energy-saving lighting lamp and the specification of the energy-saving lighting lamp;

[0108] S133: correlate the cooperative relationship, the maximum illumination range of the energy-saving lighting lamp and the position of the household equipment;

[0109] S134: determine the first interaction parameter based on the cooperative relationship and the maximum illumination range of the energy-saving lighting lamp;

[0110] S135: determine the second interaction parameter based on the cooperative relationship and the position of the household equipment;

[0111] S136: determine the interaction mode of the energy-saving lighting lamp and the household equipment based on the first interaction parameter, the second interaction parameter and the interaction matching table.

[0112] In the embodiment of the present application, the cooperative relationship is frozen, the maximum illumination range of the energy-saving lighting lamp is determined according to the orientation of the energy-saving lighting lamp and the specification of the energy-saving lighting lamp, the orientation of the energy-saving lighting lamp and the specification of the energy-saving lighting lamp are introduced, the overall control of the orientation of the energy-saving lighting lamp and the specification of the energy-saving lighting lamp is performed, and the maximum illumination range of the energy-saving lighting lamp is ensured, so that the subsequent processing of the maximum illumination range of the energy-saving lighting lamp is performed.

[0113] Therefore, the maximum illumination range of the energy-saving lighting lamp and the position of the household device are associated with the cooperative relationship; the first interaction parameter is determined based on the cooperative relationship and the maximum illumination range of the energy-saving lighting lamp; the second interaction parameter is determined based on the cooperative relationship and the position of the household device, the first interaction parameter, the second interaction parameter and the interaction matching table are introduced, so as to determine the interaction mode of the energy-saving lighting lamp and the household device based on the first interaction parameter, the second interaction parameter and the interaction matching table, and the multi-dimensional control of the first interaction parameter, the second interaction parameter and the interaction matching table is realized, and the accuracy of the interaction mode of the energy-saving lighting lamp and the household device is ensured.

[0114] Reference Figure 5 , S14: based on the interaction mode, triggering multiple interactions of the energy-saving lighting lamp and the household device, and determining the working parameters of the energy-saving lighting lamp and the working parameters of the household device in the multiple interactions of the energy-saving lighting lamp and the household device;

[0115] In the specific implementation process of the present application, the specific steps can be:

[0116] S141: determining the interaction mode;

[0117] S142: based on the interaction mode, triggering multiple interactions of the energy-saving lighting lamp and the household device;

[0118] S143: in the multiple interactions of the energy-saving lighting lamp and the household device, the energy-saving lighting lamp and the household device interact in multiple aspects under different dimensions;

[0119] S144: real-time monitoring of the multiple interactions of the energy-saving lighting lamp and the household device;

[0120] S145: determining the working parameters of the energy-saving lighting lamp and the working parameters of the household device in the multiple interactions of the energy-saving lighting lamp and the household device.

[0121] In the embodiments of the present application, the energy-saving lighting lamp and the household device are determined according to the traversal of the indoor space; the corresponding cooperative relationship is determined according to the energy-saving lighting lamp and the household device; the interaction mode of the energy-saving lighting lamp and the household device is determined according to the cooperative relationship, the maximum illumination range of the energy-saving lighting lamp and the position of the household device; based on the interaction mode, multiple interactions of the energy-saving lighting lamp and the household device are triggered, and the working parameters of the energy-saving lighting lamp and the working parameters of the household device are determined in the multiple interactions of the energy-saving lighting lamp and the household device, realizing the multiple interactions of the energy-saving lighting lamp and the household device, so as to facilitate the online control of the energy-saving lighting lamp and the household device in multiple dimensions, and realizing the overall control of the multiple interactions of the energy-saving lighting lamp and the household device.

[0122] At this time, the frame interaction mode is determined; the multiple interactions between the energy-saving lighting lamp and the household equipment are triggered based on the interaction mode, and the multiple interactions between the energy-saving lighting lamp and the household equipment are ensured.

[0123] Therefore, in the multiple interactions between the energy-saving lighting lamp and the household equipment, the energy-saving lighting lamp and the household equipment interact in multiple aspects in different dimensions; the multiple interactions between the energy-saving lighting lamp and the household equipment are monitored in real time; the working parameters of the energy-saving lighting lamp and the working parameters of the household equipment are determined in the multiple interactions between the energy-saving lighting lamp and the household equipment, and the multiple interactions between the energy-saving lighting lamp and the household equipment are realized, so as to facilitate the online control of the energy-saving lighting lamp and the household equipment in multiple dimensions, and the overall control of the multiple interactions between the energy-saving lighting lamp and the household equipment is realized.

[0124] Reference Figure 6 , S15: based on the working parameters of the energy-saving lighting lamp, the working parameters of the household equipment and the overall area of the indoor space, an interaction system is constructed in the indoor space; and an interaction state is determined according to the working parameters of the energy-saving lighting lamp, the working parameters of the household equipment and the real-time state matching table.

[0125] In the specific implementation process of the present application, the specific steps can be:

[0126] S151: frame the indoor space and perform online detection on the indoor space;

[0127] S152: in the online detection of the indoor space, the working parameters of the energy-saving lighting lamp, the working parameters of the household equipment and the overall area of the indoor space are collected;

[0128] S153: correlate the working parameters of the energy-saving lighting lamp, the working parameters of the household equipment and the overall area of the indoor space, and based on the working parameters of the energy-saving lighting lamp, the working parameters of the household equipment and the overall area of the indoor space, an interaction system is constructed;

[0129] S154: frame the interaction system;

[0130] S155: based on the interaction system, the working parameters of the energy-saving lighting lamp and the working parameters of the household equipment are dynamically monitored;

[0131] S156: according to the working parameters of the energy-saving lighting lamp, the working parameters of the household equipment and the real-time state matching table, an interaction state is determined.

[0132] In the embodiment of the present application, the indoor space is fixed, and the indoor space is detected online, so that the online detection of the indoor space is realized. Meanwhile, in the online detection of the indoor space, the working parameters of the energy-saving lighting lamp, the working parameters of the household equipment and the overall area of the indoor space are collected; the working parameters of the energy-saving lighting lamp, the working parameters of the household equipment and the overall area of the indoor space are associated, and an interactive system is constructed based on the working parameters of the energy-saving lighting lamp, the working parameters of the household equipment and the overall area of the indoor space, which is compatible with the overall consideration of the working parameters of the energy-saving lighting lamp, the working parameters of the household equipment and the overall area of the indoor space, realizes the multi-dimensional control of the working parameters of the energy-saving lighting lamp, the working parameters of the household equipment and the overall area of the indoor space, and guarantees the accuracy of the interactive system.

[0133] Therefore, the interactive system is fixed; the working parameters of the energy-saving lighting lamp and the working parameters of the household equipment are dynamically monitored based on the interactive system; the interactive state is determined according to the working parameters of the energy-saving lighting lamp, the working parameters of the household equipment and the real-time state matching table, which is compatible with the overall consideration of the working parameters of the energy-saving lighting lamp, the working parameters of the household equipment and the real-time state matching table, realizes the multi-dimensional control of the working parameters of the energy-saving lighting lamp, the working parameters of the household equipment and the real-time state matching table, and guarantees the accuracy of the interactive state.

[0134] Reference Figure 7 , S16: Trigger user detection of the environment where the energy-saving lighting lamp is located based on the interactive state, if the user is in the detection range of the energy-saving lighting lamp, dynamically regulate the working parameters of the energy-saving lighting lamp according to the location of the user, the location of the energy-saving lighting lamp and the behavior type of the user, and regulate the working parameters of the household equipment based on the working parameters of the energy-saving lighting lamp after regulation and the use state of the household equipment.

[0135] In the specific implementation process of the present application, the specific steps can be:

[0136] S161: Real-time monitoring of the interactive state;

[0137] S162: Trigger user detection of the environment where the energy-saving lighting lamp is located based on the interactive state;

[0138] S163: Determine whether the user is in the detection range of the energy-saving lighting lamp according to the user detection of the environment where the energy-saving lighting lamp is located;

[0139] S164: If the user is in the detection range of the energy-saving lighting lamp, collect the location of the user, the location of the energy-saving lighting lamp and the behavior type of the user;

[0140] S165: dynamically regulating the working parameter of the energy-saving lighting lamp according to the location of the user, the location of the energy-saving lighting lamp, the behavior type of the user, and the interactive state;

[0141] S166: correlating the working parameter of the energy-saving lighting lamp after regulation, the use state of the household equipment, and regulating the working parameter of the household equipment based on the working parameter of the energy-saving lighting lamp after regulation and the use state of the household equipment.

[0142] In the specific implementation process of the present application, in the indoor space, an interactive system is constructed based on the working parameter of the energy-saving lighting lamp, the working parameter of the household equipment, and the overall area of the indoor space; the interactive state is determined according to the working parameter of the energy-saving lighting lamp, the working parameter of the household equipment, and the real-time state matching table; the user detection of the environment where the energy-saving lighting lamp is located is triggered based on the interactive state, if the user is in the detection range of the energy-saving lighting lamp, the working parameter of the energy-saving lighting lamp is dynamically regulated according to the location of the user, the location of the energy-saving lighting lamp, and the behavior type of the user, the working parameter of the household equipment is regulated based on the working parameter of the energy-saving lighting lamp after regulation and the use state of the household equipment, the autonomous regulation of the working parameter of the energy-saving lighting lamp and the autonomous regulation of the working parameter of the household equipment are realized, the multiple interactive effects of the energy-saving lighting lamp and the household equipment are improved, so as to adapt to various indoor spaces and maximize the working effects of the energy-saving lighting lamp and the household equipment.

[0143] At this time, the interactive state is monitored in real time; the user detection of the environment where the energy-saving lighting lamp is located is triggered based on the interactive state; whether the user is in the detection range of the energy-saving lighting lamp is determined according to the user detection of the environment where the energy-saving lighting lamp is located, so as to realize the preliminary judgment of whether the user is in the detection range of the energy-saving lighting lamp.

[0144] Therefore, if the user is in the detection range of the energy-saving lighting lamp, the location of the user, the location of the energy-saving lighting lamp, and the behavior type of the user are collected; the working parameter of the energy-saving lighting lamp is dynamically regulated according to the location of the user, the location of the energy-saving lighting lamp, the behavior type of the user, and the interactive state, the dynamic regulation of the working parameter of the energy-saving lighting lamp is realized, and the multidimensional control of the location of the user, the location of the energy-saving lighting lamp, the behavior type of the user, and the interactive state is compatible.

[0145] Further, the working parameters of the energy-saving lighting lamp after regulation and control, the use state of the household equipment are associated, and the working parameters of the household equipment are regulated and controlled based on the working parameters of the energy-saving lighting lamp after regulation and control and the use state of the household equipment, thereby realizing the autonomous regulation and control of the working parameters of the energy-saving lighting lamp and the autonomous regulation and control of the working parameters of the household equipment, improving the multiple interaction effect of the energy-saving lighting lamp and the household equipment, so as to adapt to various indoor spaces and maximize the working effect of the energy-saving lighting lamp and the household equipment.

[0146] In the embodiment of the present application, the energy-saving lighting lamp and the household equipment are determined according to the traversal of the indoor space, the corresponding cooperative relationship is determined according to the energy-saving lighting lamp and the household equipment, the interaction mode of the energy-saving lighting lamp and the household equipment is determined according to the cooperative relationship, the maximum illumination range of the energy-saving lighting lamp and the position of the household equipment, the multiple interaction of the energy-saving lighting lamp and the household equipment is triggered based on the interaction mode, and the working parameters of the energy-saving lighting lamp and the working parameters of the household equipment are determined in the multiple interaction of the energy-saving lighting lamp and the household equipment, thereby realizing the multiple interaction of the energy-saving lighting lamp and the household equipment, facilitating the online control of the energy-saving lighting lamp and the household equipment in multiple dimensions, and realizing the overall control of the multiple interaction of the energy-saving lighting lamp and the household equipment.

[0147] Further, in the indoor space, an interaction system is constructed based on the working parameters of the energy-saving lighting lamp, the working parameters of the household equipment and the overall area of the indoor space, the interaction state is determined according to the working parameters of the energy-saving lighting lamp, the working parameters of the household equipment and the real-time state matching table, the user detection of the environment where the energy-saving lighting lamp is located is triggered based on the interaction state, if the user is in the detection range of the energy-saving lighting lamp, the working parameters of the energy-saving lighting lamp are dynamically regulated and controlled according to the position of the user, the position of the energy-saving lighting lamp and the behavior type of the user, the working parameters of the household equipment are regulated and controlled based on the working parameters of the energy-saving lighting lamp after regulation and control and the use state of the household equipment, thereby realizing the autonomous regulation and control of the working parameters of the energy-saving lighting lamp and the autonomous regulation and control of the working parameters of the household equipment, improving the multiple interaction effect of the energy-saving lighting lamp and the household equipment, so as to adapt to various indoor spaces and maximize the working effect of the energy-saving lighting lamp and the household equipment.

[0148] Please refer to Figure 8 , Figure 8 which is a structural composition diagram of the multiple interaction system of the energy-saving lighting lamp and the household equipment in the embodiment of the present application.

[0149] As Figure 8 shown, a multiple interaction system of an energy-saving lighting lamp and a household equipment includes:

[0150] The traversal module 21 is configured to determine the energy-saving lighting lamp and the household appliance according to the traversal of the indoor space;

[0151] The coordination relationship module 22 is configured to determine the corresponding coordination relationship according to the energy-saving lighting lamp and the household appliance.

[0152] The interaction mode module 23 is configured to determine the interaction mode of the energy-saving lighting lamp and the household appliance according to the coordination relationship, the maximum illumination range of the energy-saving lighting lamp and the position of the household appliance.

[0153] The multiple interaction module 24 is configured to trigger the multiple interaction of the energy-saving lighting lamp and the household appliance based on the interaction mode, and determine the working parameter of the energy-saving lighting lamp and the working parameter of the household appliance in the multiple interaction of the energy-saving lighting lamp and the household appliance.

[0154] The interaction state module 25 is configured to construct an interaction system based on the working parameter of the energy-saving lighting lamp, the working parameter of the household appliance and the overall area of the indoor space in the indoor space, and determine the interaction state according to the working parameter of the energy-saving lighting lamp, the working parameter of the household appliance and the real-time state matching table.

[0155] The regulation module 26 is configured to trigger user detection of an environment where the energy-saving lighting lamp is located based on the interaction state, and dynamically regulate the working parameter of the energy-saving lighting lamp according to the position of the user, the position of the energy-saving lighting lamp and the behavior type of the user if the user is in the detection range of the energy-saving lighting lamp, and regulate the working parameter of the household appliance based on the regulated working parameter of the energy-saving lighting lamp and the use state of the household appliance.

[0156] Please refer to Figure 9 , the electronic device 40 according to the embodiment of the present application will be described below with reference to Figure 9 . Figure 9 The electronic device 40 shown is merely an example, and should not impose any limitation on the function and use range of the embodiments of the present application.

[0157] As shown in Figure 9 , the electronic device 40 is in the form of a general computing device. The components of the electronic device 40 can include but are not limited to the above-mentioned at least one processing unit 41, the above-mentioned at least one storage unit 42, and a bus 43 connecting different system components (including the storage unit 42 and the processing unit 41).

[0158] The storage unit stores program code, which can be executed by the processing unit 41, so that the processing unit 41 performs the steps according to various exemplary embodiments of the present application described in the above “Embodiment Method” section of the specification.

[0159] The storage unit 42 can include a readable medium in the form of volatile storage such as random access memory (RAM) 421 and / or cache memory 422, and also can include a non-volatile storage such as read only memory (ROM) 423.

[0160] The storage unit 42 also can include a program / utility 424 having a set (at least one) of program modules 425, including an operating system, one or more application programs, other program modules, and program data, each of which can give the electronic device 40 its functionality, or some combination thereof.

[0161] The bus 43 can represent one or more of several types of bus structures, including a storage bus or bus controller, a peripheral bus, a graphics bus (e.g., an Accelerated Graphics Port, or AGP bus) and a local bus using any of a variety of bus architectures.

[0162] The electronic device 40 also can communicate with one or more external devices such as a keyboard or a pointing device, through an I / O interface 44. Additionally, the electronic device 40 can communicate with one or more devices that enable a user to interact with the electronic device 40, and / or one or more devices that enable the electronic device 40 to communicate with one or more other computing devices. Such communication can occur via an I / O interface 44. Still yet, the electronic device 40 can communicate with one or more networks (such as a local area network (LAN), a wide area network (WAN), and / or the Internet) through a network adapter 45. As an example, the network adapter 45 can include a modem, a network card (wireless or wired), or other well-known interface devices. The network adapter 45 can enable the electronic device 40 to communicate with other devices and / or systems through the Internet, for example. Figure 9 As shown, the network adapter 45 communicates with the other components of the electronic device 40 through the bus 43. It should be understood that although not shown, other hardware and / or software components that are Figure 9 It should be understood that, although not shown, the electronic device 40 can include other components, such as a microcode, device drivers, redundant processing unit, external disk drive arrays, RAID systems, tape drives, and data archival

[0163] Those skilled in the art will readily recognize that the example embodiments described herein can be implemented using software and / or hardware. The technical solutions according to the embodiments of the present disclosure can be embodied in the form of a software product, which can be stored in a non-volatile storage medium (such as a CD-ROM, a USB flash disk, a mobile hard disk, etc.) or a network, and includes a plurality of instructions to enable a computing device (such as a personal computer, a server, a terminal device, or a network device, etc.) to perform the methods according to the embodiments of the present disclosure.

[0164] Those skilled in the art can understand that all or part of the steps of various methods in the above embodiments can be completed by instructing the relevant hardware through a program, and the program can be stored in a computer readable storage medium, which can include a read only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk, etc. Moreover, the storage medium has computer program instructions stored therein, and the computer program instructions, when executed by a computer, cause the computer to execute the method according to the above.

[0165] In addition, the above describes in detail the multiple interaction method and system between the energy-saving lighting lamp and the household appliance provided by the embodiments of the present application, and the principle and implementation manner of the present application are described by using specific examples in this paper. The above embodiment is only used to help understand the method of the present application and its core idea. Meanwhile, for those skilled in the art, the specific implementation manner and application range will be changed according to the idea of the present application. In summary, the content of the specification should not be understood as a limitation of the present application.

Claims

1. A method for multiple interaction of an energy saving lighting lamp with a household appliance, characterized in that, Energy-saving lighting lamp Multiple interaction scenarios with home appliances The multiple interaction method of the energy-saving lighting lamp and the home appliance comprises: determining the energy-saving lighting lamp and the home appliance according to the traversal of the indoor space; determining the corresponding cooperative relationship according to the energy-saving lighting lamp and the home appliance; determining the interaction mode of the energy-saving lighting lamp and the home appliance according to the cooperative relationship, the maximum illumination range of the energy-saving lighting lamp, and the position of the home appliance; triggering the multiple interaction of the energy-saving lighting lamp and the home appliance based on the interaction mode, and determining the working parameters of the energy-saving lighting lamp and the working parameters of the home appliance in the multiple interaction of the energy-saving lighting lamp and the home appliance; in the indoor space, based on the working parameters of the energy-saving lighting lamp, the working parameters of the home appliance, and the overall area of the indoor space, an interaction system is constructed; according to the working parameters of the energy-saving lighting lamp, the working parameters of the home appliance, and the real-time state matching table, the interaction state is determined, including: freezing the indoor space, and online detecting the indoor space; in the online detection of the indoor space, the working parameters of the energy-saving lighting lamp, the working parameters of the home appliance, and the overall area of the indoor space are collected; the working parameters of the energy-saving lighting lamp, the working parameters of the home appliance, and the overall area of the indoor space are associated, and an interaction system is constructed based on the working parameters of the energy-saving lighting lamp, the working parameters of the home appliance, and the overall area of the indoor space; the interaction system is frozen; the working parameters of the energy-saving lighting lamp and the working parameters of the home appliance are dynamically monitored based on the interaction system; the interaction state is determined according to the working parameters of the energy-saving lighting lamp, the working parameters of the home appliance, and the real-time state matching table; based on the interaction state, triggering user detection of the environment where the energy-saving lighting lamp is located, if the user is within the detection range of the energy-saving lighting lamp, dynamically adjusting and controlling the working parameters of the energy-saving lighting lamp according to the location of the user, the location of the energy-saving lighting lamp, and the behavior type of the user, and adjusting and controlling the working parameters of the home appliance based on the adjusted working parameters of the energy-saving lighting lamp and the use state of the home appliance.

2. The method of claim 1, wherein the energy saving lighting lamp and home appliance multiple interaction method is characterized by, The determination of the energy-saving lighting lamp and the home appliance according to the traversal of the indoor space comprises: positioning the indoor space; determining a plurality of working areas according to the detection of the indoor space; determining a corresponding traversal mode according to the relative positions between the plurality of working areas, the area sizes of the plurality of working areas, and the corresponding spatial positions; triggering the traversal of the indoor space along the traversal mode; determining the energy-saving lighting lamp and the home appliance based on the traversal of the indoor space.

3. The method of claim 1, wherein the energy saving lighting lamp and home appliance multiple interaction method is characterized by, The determination of the corresponding cooperative relationship according to the energy-saving lighting lamp and the home appliance comprises: freezing the energy-saving lighting lamp and the home appliance; determining a corresponding association mode according to the position of the energy-saving lighting lamp and the position of the home appliance; triggering the dynamic association between the energy-saving lighting lamp and the home appliance based on the association mode and the corresponding network signal strength; determining a corresponding association coefficient based on the dynamic association between the energy-saving lighting lamp and the home appliance; constructing the interaction intensity of the energy-saving lighting lamp and each home appliance according to the comparison of a plurality of association coefficients; The corresponding cooperative relationship is determined based on the interaction intensity between the energy-saving lighting lamp and each household device, the light range of the energy-saving lighting lamp, and the functions of each household device.

4. The method of claim 3, wherein the energy saving lighting lamp and home appliance multiple interaction method is characterized by, The interaction mode of the energy-saving lighting lamp and the household device is determined based on the cooperative relationship, the maximum light range of the energy-saving lighting lamp, and the position of the household device, and includes: fixing the cooperative relationship; determining the maximum light range of the energy-saving lighting lamp based on the orientation of the energy-saving lighting lamp and the specifications of the energy-saving lighting lamp; associating the cooperative relationship, the maximum light range of the energy-saving lighting lamp, and the position of the household device; determining the first interaction parameter based on the cooperative relationship and the maximum light range of the energy-saving lighting lamp; determining the second interaction parameter based on the cooperative relationship and the position of the household device; determining the interaction mode of the energy-saving lighting lamp and the household device based on the first interaction parameter, the second interaction parameter, and the interaction matching table.

5. The method of claim 4, wherein the energy saving lighting lamp and home appliance multiple interaction method is characterized by, The multiple interactions of the energy-saving lighting lamp and the household device are triggered based on the interaction mode, and the working parameters of the energy-saving lighting lamp and the working parameters of the household device are determined in the multiple interactions of the energy-saving lighting lamp and the household device, and includes: fixing the interaction mode; triggering the multiple interactions of the energy-saving lighting lamp and the household device based on the interaction mode; in the multiple interactions of the energy-saving lighting lamp and the household device, the energy-saving lighting lamp and the household device interact in multiple aspects in different dimensions; real-time monitoring the multiple interactions of the energy-saving lighting lamp and the household device; determining the working parameters of the energy-saving lighting lamp and the working parameters of the household device in the multiple interactions of the energy-saving lighting lamp and the household device.

6. The method of claim 1, wherein the energy saving lighting lamp and home appliance multiple interaction method is characterized by, The user detection of the environment where the energy-saving lighting lamp is located is triggered based on the interaction state, and if the user is in the detection range of the energy-saving lighting lamp, the working parameters of the energy-saving lighting lamp are dynamically regulated according to the position of the user, the position of the energy-saving lighting lamp, and the behavior category of the user, and the working parameters of the household device are regulated based on the regulated working parameters of the energy-saving lighting lamp and the use state of the household device, and includes: real-time monitoring the interaction state; triggering the user detection of the environment where the energy-saving lighting lamp is located based on the interaction state; determining whether the user is in the detection range of the energy-saving lighting lamp based on the user detection of the environment where the energy-saving lighting lamp is located.

7. The method of claim 6, wherein the energy saving lighting lamp and home appliance multiple interaction method is characterized by, The user detection of the environment where the energy-saving lighting lamp is located is triggered based on the interaction state, and if the user is in the detection range of the energy-saving lighting lamp, the working parameters of the energy-saving lighting lamp are dynamically regulated according to the position of the user, the position of the energy-saving lighting lamp, and the behavior category of the user, and the working parameters of the household device are regulated based on the regulated working parameters of the energy-saving lighting lamp and the use state of the household device, and further includes: if the user is in the detection range of the energy-saving lighting lamp, the position of the user, the position of the energy-saving lighting lamp, and the behavior category of the user are collected; dynamically regulating the working parameters of the energy-saving lighting lamp according to the position of the user, the position of the energy-saving lighting lamp, the behavior category of the user, and the interaction state; The working parameters of the energy-saving lighting lamp and the use state of the household equipment are associated after regulation, and the working parameters of the household equipment are regulated based on the working parameters of the energy-saving lighting lamp and the use state of the household equipment after regulation.

8. A multi-interaction system of an energy-saving lighting lamp and a household appliance, characterized in that, The multiple interaction system of the energy-saving lighting lamp and the household equipment is applied to the multiple interaction method of the energy-saving lighting lamp and the household equipment as claimed in any one of claims 1-7, and the multiple interaction system of the energy-saving lighting lamp and the household equipment comprises: a traversal module for determining the energy-saving lighting lamp and the household equipment according to the traversal of the indoor space; a coordination relationship module for determining the corresponding coordination relationship according to the energy-saving lighting lamp and the household equipment; an interaction mode module for determining the interaction mode of the energy-saving lighting lamp and the household equipment according to the coordination relationship, the maximum illumination range of the energy-saving lighting lamp and the position of the household equipment; a multiple interaction module for triggering the multiple interaction of the energy-saving lighting lamp and the household equipment based on the interaction mode, and determining the working parameters of the energy-saving lighting lamp and the working parameters of the household equipment in the multiple interaction of the energy-saving lighting lamp and the household equipment; an interaction state module for constructing an interaction system in the indoor space based on the working parameters of the energy-saving lighting lamp, the working parameters of the household equipment and the overall area of the indoor space, and determining the interaction state according to the working parameters of the energy-saving lighting lamp, the working parameters of the household equipment and the real-time state matching table, including: freezing the indoor space, and performing online detection on the indoor space; collecting the working parameters of the energy-saving lighting lamp, the working parameters of the household equipment and the overall area of the indoor space in the online detection of the indoor space; associating the working parameters of the energy-saving lighting lamp, the working parameters of the household equipment and the overall area of the indoor space, and constructing the interaction system based on the working parameters of the energy-saving lighting lamp, the working parameters of the household equipment and the overall area of the indoor space; freezing the interaction system; dynamically monitoring the working parameters of the energy-saving lighting lamp and the working parameters of the household equipment based on the interaction system; and determining the interaction state according to the working parameters of the energy-saving lighting lamp, the working parameters of the household equipment and the real-time state matching table; a regulation module for triggering user detection of the environment where the energy-saving lighting lamp is located based on the interaction state, and dynamically regulating the working parameters of the energy-saving lighting lamp according to the position of the user, the position of the energy-saving lighting lamp and the behavior type of the user if the user is in the detection range of the energy-saving lighting lamp, and regulating the working parameters of the household equipment based on the working parameters of the energy-saving lighting lamp and the use state of the household equipment after regulation.

Citation Information

Patent Citations

  • Intelligent household system, intelligent household control device and method

    CN105843050A

  • Scene linkage method and scene linkage device

    CN114818932A