A housing information integration system

By introducing a jump-type housing information management module and storage area, the problem of information silos in housing information processing is solved, adaptive data management is realized, data processing load is avoided and system crashes are prevented, and the integrity of housing information is ensured.

CN115509780BActive Publication Date: 2026-07-03SHENZHEN JIANFANGWANG REAL ESTATE CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
SHENZHEN JIANFANGWANG REAL ESTATE CO LTD
Filing Date
2022-09-08
Publication Date
2026-07-03

AI Technical Summary

Technical Problem

Existing technologies suffer from information silos in the process of processing housing information, failing to effectively integrate housing information, leading to increased data processing load and potentially causing business interruptions and data loss.

Method used

The system introduces a jump-type property information management module and a jump-type storage area. By taking over the property information of small stores within a specific time period, it avoids data processing overflow. It also introduces a token holding judgment mechanism to achieve solidified storage and support the adaptive management of the system during the transition between large and small stores.

Benefits of technology

It effectively avoids data processing chaos and business interruption during the migration of large and small stores, ensures the integrity of housing information, avoids system downtime, and improves the system's adaptability.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention proposes a housing information integration system. Considering the data processing load exceeding that of small shops, and to facilitate the migration of large and small shops, this invention introduces a jump-type housing information management module, which is superior to existing technologies. By taking over the housing information of specific small shops within a specific time period, this module avoids data processing confusion during the migration process and prevents business processing interruptions that may occur due to the migration. It also avoids the technical problem of increased business data load on the original regional control center caused by the management of large and small shops, resulting in the loss of new housing information and business data processing failures. At the same time, this invention introduces a token holding judgment for the jump storage area to realize the specific fixed storage requirements of specific small shops, introducing adaptive functions to system management and avoiding system downtime caused by the uniform management of specific high-throughput small shops.
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Description

Technical Field

[0001] This invention belongs to the field of next-generation information technology, and in particular relates to a housing information integration system. Background Technology

[0002] In the process of digital business information processing, there is a high demand for information integration, especially in the process of housing information processing. Because housing information is constantly changing and new housing information is often added to the system, the data processing nodes are constantly updated, which increases the data processing load and thus creates a great need for information integration.

[0003] If housing information cannot be effectively integrated, it may lead to information silos when individual business nodes are overloaded. As enterprises develop and their level of informatization increases, they utilize more and more information systems, such as CRM, HRM, and ERP. While these systems have created significant benefits for enterprise operations and management, they have also brought some problems. These mainly include system fragmentation and information silos, which hinder the improvement of enterprises' informatization management capabilities.

[0004] Generally speaking, information silos refer to computer application systems that are functionally unconnected and lack mutual assistance, information sharing and exchange, and are disconnected from business processes and applications. Software has evolved from initial computerized accounting to OA collaboration, human resource management systems, and then to systems tailored to different business needs (MES, BIM, HIS, etc.). The form of these systems has also evolved from client-side to web-based and mobile-based platforms. This reflects the development of the information environment and technology. Most enterprise information systems or platforms are not built in one step, but rather in stages, progressing from basic to intermediate, and then from intermediate to advanced, built from the bottom up. Enterprises in the early stages of information technology development often hesitate or observe due to a lack of awareness and understanding. Furthermore, early-stage enterprises typically allocate funds to ensuring internal operations, marketing, inventory management, and personnel costs, avoiding significant investment in information technology. Based on these limitations, even when building information systems, the priority is primarily based on business needs. Systems for first-line business operations that generate revenue are given high priority, while second- and third-line business operations that cannot quickly generate value are given lower priority. The requirements for system construction prioritize practicality, ease of implementation, and quick results over large-scale, comprehensive, and time-consuming master planning. However, these short-term demands often prevent system builders from viewing problems from a holistic perspective and from considering the system's long-term integration, leading to the creation of information silos.

[0005] Currently, real estate data processing systems simply achieve the distribution and transmission of information, but neglect the integration of information during the business information processing process. When the business data at a specific business processing node encounters processing limitations, the problem is solved by simply adding or upgrading the load processing unit. This fails to achieve dual management of the information processing area. At the same time, it cannot meet the massive processing needs of a single node at a specific business processing node, nor does it make reasonable use of secondary solidified storage to achieve token-based management of data at specific nodes.

[0006] This invention proposes a housing information integration system. Considering the data processing load exceeding that of small shops, and to facilitate the migration of large and small shops, this invention introduces a jump-type housing information management module, which is superior to existing technologies. By taking over the housing information of specific small shops within a specific time period, this module avoids data processing confusion during the migration process and prevents business processing interruptions that may occur due to the migration. It also avoids the technical problem of increased business data load on the original regional control center caused by the management of large and small shops, resulting in the loss of new housing information and business data processing failures. At the same time, this invention introduces a token holding judgment for the jump storage area to realize the specific fixed storage requirements of specific small shops, introducing adaptive functions to system management and avoiding system downtime caused by the uniform management of specific high-throughput small shops. Summary of the Invention

[0007] The present invention aims to provide a housing information integration system that is superior to the prior art.

[0008] To achieve the above objectives, the technical solution of the present invention is as follows:

[0009] A housing information integration system, the system comprising:

[0010] The regional control center is used to receive configuration and management instructions issued by the remote system control platform, forward them to the corresponding street shops, and upload the business data and configuration information of the street shops within the control area to the remote system control platform.

[0011] The regional control center is also used to receive business data and configuration information of street shops within the controlled area;

[0012] The jump property information management module is pre-installed in each of the regional control centers. The jump property information management module is used to set up a jump storage area when a small store in the corresponding regional control center jumps to a large store. Within a time period N, it takes over the new property information of other small stores and stores all the new property information taken over in the jump storage area according to the property ID and the original small store ID.

[0013] The jump property information management module is also used to process the corresponding business data of the jump property information, and to upload the business data to the remote system control platform, bypassing the regional control center.

[0014] The jump-up housing information management module is also used to receive configuration instructions and management instructions from the remote system control platform, and to feed back configuration information to the remote system control platform;

[0015] The jump property information management database is connected to the jump storage area, receives the permanent fixation instruction from the jump storage area, and fixes and stores the jump property information corresponding to the instruction into the jump property information management database;

[0016] The remote system control platform is used to interact with the regional control center, the regional business center, the regional configuration center, and several large stores, and to receive business data from the regional control center, the regional business center, the regional configuration center, and several large stores.

[0017] The remote system control platform is also used to issue configuration and management instructions to the regional control center, regional business center, regional configuration center, and several large stores.

[0018] Multiple street shops, each corresponding to a business street, the business streets being divided in a specific way; each of the multiple street shops processes business data within its corresponding business street and uploads the business data to the regional control center;

[0019] Each of the multiple street shops also receives configuration instructions and management instructions from the remote system control platform forwarded by the regional control center, and feeds back configuration information to the remote system control platform through the regional control center;

[0020] When the first specific condition is met, the small street store obtains the permission signal from the remote system control platform and is upgraded to a large store; the large store ignores the regional control center and directly uploads its own business data and feeds back configuration information to the remote system control platform;

[0021] The large store directly receives configuration and management instructions from the remote system's central control platform.

[0022] The large store also takes over the configuration information fed back by each of the street stores under the corresponding regional control center and uploads it to the remote system control platform. In addition, the large store also receives the configuration instructions and management instructions issued by the remote system control platform to each of the street stores under the corresponding regional control center and forwards them to the corresponding street stores.

[0023] When the second specific condition is met, the large store incubates several sub-stores and is decomposed into regional business centers and regional configuration centers.

[0024] The sub-stores share the business data of the large store, process business based on the shared business data, upload business data to the regional business center, feed back configuration information to the regional configuration center, and receive configuration instructions and management instructions issued by the remote system control platform and forwarded by the regional configuration center.

[0025] The regional business center receives the uploaded business data from the corresponding sub-stores and forwards it to the remote system control platform;

[0026] The regional configuration center receives configuration information from the corresponding sub-stores, forwards it to the remote system control platform, and receives configuration and management instructions from the remote system control platform, forwarding them to the corresponding sub-stores.

[0027] Preferably, the jump property information management module allocates jump storage quotas to the corresponding small shops in the regional control center according to the predetermined settings, in order to store the newly added property information of the corresponding small shops. When the quota of a specific small shop is used up, the jump property information management module triggers a jump storage area solidification storage request, carrying the small shop identifier and solidifying the storage based on the holding status of the solidification storage token.

[0028] The jump-up property information management module is pre-configured in each of the regional control centers. This module is used to set up a jump-up storage area when a small store in the corresponding regional control center jumps to a large store. Within a duration of N, it takes over the newly added property information of other small stores and stores all the taken-over new property information in the jump-up storage area, categorized by property ID and original small store ID, as jump-up property information. Specifically:

[0029] When a small store in the corresponding regional control center is upgraded to a large store, the jump property information management module takes over the new property information of other small stores within a time period N, stores all the new property information taken over as jump property information in the jump storage area according to the property ID, starts a timer, and abandons the takeover when the timer reaches N, and resets the subsequent new property information data to the original small store for processing.

[0030] Preferably, when a first specific condition is met, the street shop obtains a permission signal from the remote system control platform and transitions to a large shop. The first specific condition includes at least condition one and condition two:

[0031] Condition 1: The area control center to which the street shop belongs exceeds its predetermined carrying capacity;

[0032] Condition 2: The business data volume of the street shop exceeds the first threshold M1, or...

[0033] The street shops have pre-stored permission signaling triggers for the remote system control platform that are triggered at regular intervals;

[0034] Furthermore, the business streets are divided in a specific way, as follows:

[0035] The business streets are divided according to specific latitude and longitude.

[0036] or,

[0037] The business streets are divided into administrative streets.

[0038] Preferably, when the second specific condition is met, the large store incubates several sub-stores, specifically as follows:

[0039] The amount of business data of the large store exceeded the second threshold M2.

[0040] Preferably, the jump-up property information management module triggers a solidified storage request in the jump-up storage area, carrying the store identifier and performing solidified storage based on the holding status of the solidified storage token, specifically:

[0041] The system assigns a fixed storage token to a specific store to confirm its priority access to the jump property information management database. When the jump property information management module triggers a fixed storage request in the jump storage area, the jump property information management module checks the corresponding store identifier to confirm whether the system has assigned a fixed storage token to the corresponding store. If so, it allows the system to receive the permanent fixed storage instruction from the jump storage area and permanently store the jump property information corresponding to the instruction in the jump property information management database.

[0042] The permanent fixation command is sent after the change storage area verifies the fixation storage token, and sets the corresponding change property information to change property information within a specific time period.

[0043] Preferably, the remote system control platform is also used to record the historical data of the leap and incubation of the stores of different sizes; the historical data of the leap and incubation is used to record the specific time of each leap and incubation, the objects before and after the leap and incubation, and the regional business center to which the store belonged before the leap.

[0044] Preferably, the permission signal is at least used to permit a specific street shop to be upgraded to a large shop when the area control center to which the street shop belongs exceeds a predetermined load capacity.

[0045] Preferably, the permission signaling is embedded by the remote system central control platform administrator to a pre-set street shop, or the signaling is issued to a specific street shop at a specific time.

[0046] Preferably, the permission signaling trigger is used to enable the permission signaling at a preset trigger time.

[0047] Preferably, the permission signaling is enabled via the permission signaling trigger.

[0048] This invention proposes a housing information integration system. Considering the data processing load exceeding that of small shops, and to facilitate the migration of large and small shops, this invention introduces a jump-type housing information management module, which is superior to existing technologies. By taking over the housing information of specific small shops within a specific time period, this module avoids data processing confusion during the migration process and prevents business processing interruptions that may occur due to the migration. It also avoids the technical problem of increased business data load on the original regional control center caused by the management of large and small shops, resulting in the loss of new housing information and business data processing failures. At the same time, this invention introduces a token holding judgment for the jump storage area to realize the specific fixed storage requirements of specific small shops, introducing adaptive functions to system management and avoiding system downtime caused by the uniform management of specific high-throughput small shops. Attached Figure Description

[0049] Figure 1 This is a basic system structure diagram of a housing information integration system shown in this invention;

[0050] Figure 2 This is a schematic diagram of a preferred embodiment of the interconnection between the regional control center of the housing information integration system, the jump housing information management module, and the jump housing information management database, as shown in this invention.

[0051] Figure 3 This is a schematic diagram of a preferred embodiment of a system structure for managing small shops based on a jump-type housing information management module and a jump-type housing information management database in a housing information integration system, as shown in this invention.

[0052] Figure 4 This is a preferred embodiment of the large-store leap and incubation based on the housing information integration system shown in this invention;

[0053] Figure 5This is a schematic diagram of a preferred embodiment of the decomposition and incubation of large stores based on the housing information integration system of the present invention. Detailed Implementation

[0054] The following describes in detail several embodiments and beneficial effects of the housing information integration system and method claimed in this invention, in order to facilitate a more detailed examination and breakdown of this invention.

[0055] To better understand the technical solution of the present invention, the embodiments of the present invention will be described in detail below with reference to the accompanying drawings.

[0056] It should be understood that the described embodiments are merely some, not all, of the embodiments of the present invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without inventive effort are within the scope of protection of the present invention.

[0057] The terminology used in the embodiments of this invention is for the purpose of describing particular embodiments only and is not intended to limit the invention. The singular forms “a,” “the,” and “the” as used in the embodiments of this invention and the appended claims are also intended to include the plural forms unless the context clearly indicates otherwise.

[0058] It should be understood that the term "and / or" used in this article is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A existing alone, A and B existing simultaneously, and B existing alone. Additionally, the character " / " in this article generally indicates that the preceding and following related objects have an "or" relationship.

[0059] It should be understood that although the terms "first," "second," etc., may be used to describe the methods and corresponding apparatus in the embodiments of the present invention, these keywords should not be limited to these terms. These terms are only used to distinguish the keywords from each other. For example, without departing from the scope of the embodiments of the present invention, "first specific condition," "first threshold," etc., may also be referred to as "second specific condition," "second threshold," etc., and similarly, "second specific condition," "second threshold," etc., may also be referred to as "first specific condition," "first threshold."

[0060] Depending on the context, the word "if" as used herein can be interpreted as "when," "when," "in response to determination," or "in response to detection." Similarly, depending on the context, the phrases "if determination" or "if detection (of the stated condition or event)" can be interpreted as "when determination" or "in response to determination," "when detection (of the stated condition or event)," or "in response to detection (of the stated condition or event)."

[0061] As per the instruction manual Figure 1The image shows one embodiment of the housing information integration system and its specific internal modules claimed in this invention. The housing information integration system includes:

[0062] The regional control center is used to receive configuration and management instructions issued by the remote system central control platform, forward them to the corresponding street shops, and upload the business data and configuration information of the street shops within the control area to the regional control center.

[0063] The regional control center is also used to receive business data and configuration information of street shops within the controlled area;

[0064] As per the instruction manual Figure 2 As shown, Figure 2 This is a schematic diagram of a preferred embodiment of the interconnection between the regional control center of the housing information integration system, the jump housing information management module, and the jump housing information management database, as shown in this invention.

[0065] The jump property information management module is pre-installed in each of the regional control centers. The jump property information management module is used to set up a jump storage area when a small store in the corresponding regional control center jumps to a large store. Within a time period N, it takes over the new property information of other small stores and stores all the new property information taken over in the jump storage area according to the property ID and the original small store ID.

[0066] As per the instruction manual Figure 3 As shown, Figure 3 This is a schematic diagram of a preferred embodiment of a system structure for managing small shops based on a jump-type housing information management module and a jump-type housing information management database in a housing information integration system, as shown in this invention.

[0067] The jump property information management module is also used to process the corresponding business data of the jump property information, and to upload the business data to the remote system control platform, bypassing the regional control center.

[0068] The jump-up housing information management module is also used to receive configuration instructions and management instructions from the remote system control platform, and to feed back configuration information to the remote system control platform;

[0069] The jump property information management database is connected to the jump storage area, receives the permanent fixation instruction from the jump storage area, and fixes and stores the jump property information corresponding to the instruction into the jump property information management database;

[0070] The remote system control platform is used to interact with the regional control center, the regional business center, the regional configuration center, and several large stores, and to receive business data from the regional control center, the regional business center, the regional configuration center, and several large stores.

[0071] The remote system control platform is also used to issue configuration and management instructions to the regional control center, regional business center, regional configuration center, and several large stores.

[0072] Multiple street shops, each corresponding to a business street, the business streets being divided in a specific way; each of the multiple street shops processes business data within its corresponding business street and uploads the business data to the regional control center;

[0073] Each of the multiple street shops also receives configuration instructions and management instructions from the remote system control platform forwarded by the regional control center, and feeds back configuration information to the remote system control platform through the regional control center;

[0074] As per the instruction manual Figure 4 As shown, Figure 4 This is a preferred embodiment of the large-store leap and incubation based on the housing information integration system shown in this invention.

[0075] When the first specific condition is met, the small street store obtains the permission signal from the remote system control platform and is upgraded to a large store; the large store ignores the regional control center and directly uploads its own business data and feeds back configuration information to the remote system control platform;

[0076] The large store directly receives configuration and management instructions from the remote system's central control platform.

[0077] The large store also takes over the configuration information fed back by each of the street stores under the corresponding regional control center and uploads it to the remote system control platform. In addition, the large store also receives the configuration instructions and management instructions issued by the remote system control platform to each of the street stores under the corresponding regional control center and forwards them to the corresponding street stores.

[0078] As per the instruction manual Figure 5 As shown, Figure 5 This is a schematic diagram of a preferred embodiment of the decomposition and incubation of large stores based on the housing information integration system of the present invention.

[0079] When the second specific condition is met, the large store incubates several sub-stores and is decomposed into regional business centers and regional configuration centers.

[0080] The sub-stores share the business data of the large store, process business based on the shared business data, upload business data to the regional business center, feed back configuration information to the regional configuration center, and receive configuration instructions and management instructions issued by the remote system control platform and forwarded by the regional configuration center.

[0081] The regional business center receives the uploaded business data from the corresponding sub-stores and forwards it to the remote system control platform;

[0082] The regional configuration center receives configuration information from the corresponding sub-stores, forwards it to the remote system control platform, and receives configuration and management instructions from the remote system control platform, forwarding them to the corresponding sub-stores.

[0083] As a preferred embodiment that can be superimposed, the jump property information management module allocates jump storage quotas to the corresponding small shops in the regional control center according to the predetermined settings, in order to store the new property information of the corresponding small shops. When the quota of a specific small shop is used up, the jump property information management module triggers a solidified storage request in the jump storage area, carrying the small shop identifier and performing solidified storage based on the holding status of the solidified storage token.

[0084] The jump-up property information management module is pre-configured in each of the regional control centers. This module is used to set up a jump-up storage area when a small store in the corresponding regional control center jumps to a large store. Within a duration of N, it takes over the newly added property information of other small stores and stores all the taken-over new property information in the jump-up storage area, categorized by property ID and original small store ID, as jump-up property information. Specifically:

[0085] When a small store in the corresponding regional control center is upgraded to a large store, the jump property information management module takes over the new property information of other small stores within a time period N, stores all the new property information taken over as jump property information in the jump storage area according to the property ID, starts a timer, and abandons the takeover when the timer reaches N, and resets the subsequent new property information data to the original small store for processing.

[0086] As a preferred embodiment that can be superimposed, when a first specific condition is met, the street shop obtains permission signaling from the remote system control platform and transitions to a large shop. The first specific condition includes at least condition one and includes condition two:

[0087] Condition 1: The area control center to which the street shop belongs exceeds its predetermined carrying capacity;

[0088] Condition 2: The business data volume of the street shop exceeds the first threshold M1, or...

[0089] The street shops have pre-stored permission signaling triggers for the remote system control platform that are triggered at regular intervals;

[0090] Furthermore, the business streets are divided in a specific way, as follows:

[0091] The business streets are divided according to specific latitude and longitude.

[0092] or,

[0093] The business streets are divided into administrative streets.

[0094] As a preferred embodiment that can be stacked, when the second specific condition is met, the large store incubates several sub-stores, specifically as follows:

[0095] The amount of business data of the large store exceeded the second threshold M2.

[0096] As a preferred, superimposed embodiment, the jump-up property information management module triggers a solidified storage request in the jump storage area, carrying the store identifier and performing solidified storage based on the holding status of the solidified storage token, specifically:

[0097] The system assigns a fixed storage token to a specific store to confirm its priority access to the jump property information management database. When the jump property information management module triggers a fixed storage request in the jump storage area, the jump property information management module checks the corresponding store identifier to confirm whether the system has assigned a fixed storage token to the corresponding store. If so, it allows the system to receive the permanent fixed storage instruction from the jump storage area and permanently store the jump property information corresponding to the instruction in the jump property information management database.

[0098] The permanent fixation command is sent after the change storage area verifies the fixation storage token, and sets the corresponding change property information to change property information within a specific time period.

[0099] As a preferred embodiment that can be superimposed, the remote system control platform is also used to record the historical data of the leap and incubation of the stores of different sizes; the historical data of the leap and incubation is used to record the specific time of each leap and incubation, the objects before and after the leap and incubation, and the regional business center to which the store belonged before the leap.

[0100] As a preferred embodiment that can be superimposed, the permission signaling is at least used to permit a specific street shop to be upgraded to a large shop when the area control center to which the street shop belongs exceeds a predetermined carrying capacity.

[0101] As a preferred embodiment that can be superimposed, the permission signaling is embedded by the remote system central control platform administrator to the pre-set street shops, or the signaling is issued to a specific street shop at a specific time.

[0102] As a preferred embodiment that can be stacked, the permission signaling trigger is used to enable the permission signaling at a preset trigger time.

[0103] As a preferred embodiment that can be overridden, the permission signaling is enabled via the permission signaling trigger.

[0104] The sub-stores share the business data of the large store, process business based on the shared business data, upload business data to the regional business center, feed back configuration information to the regional configuration center, and receive configuration instructions and management instructions issued by the remote system control platform and forwarded by the regional configuration center.

[0105] As another preferred embodiment that can be superimposed, the first threshold M1 should be set to twice the total load capacity of the regional control center / the total number of small stores under the regional control center, or it should be set to 2.5 times the total load capacity of the regional control center / the total number of small stores under the regional control center. This is more reasonable, as it can avoid frequent changes in the size of stores while the system can tolerate a certain degree of overload.

[0106] As another preferred embodiment that can be superimposed, when the second specific condition is met, the large store incubates several sub-stores, specifically as follows:

[0107] The amount of business data of the large store exceeded the second threshold M2.

[0108] As another preferred embodiment that can be superimposed, the second threshold M2 should be set between 5 and 10 times the average street shop business load of the system. As another preferred embodiment that can be superimposed, the number of incubated shops can be set to the integer value of M2 / average street shop business load of the system, so as to ensure that the number of shops can reasonably match the business data volume after incubation.

[0109] As another preferred embodiment that can be superimposed, the permission signal is at least used to permit a specific street shop to be upgraded to a large shop when the area control center to which the street shop belongs exceeds a predetermined carrying capacity.

[0110] This invention proposes a housing information integration system. Considering the data processing load exceeding that of small shops, and to facilitate the migration of large and small shops, this invention introduces a jump-type housing information management module, which is superior to existing technologies. By taking over the housing information of specific small shops within a specific time period, this module avoids data processing confusion during the migration process and prevents business processing interruptions that may occur due to the migration. It also avoids the technical problem of increased business data load on the original regional control center caused by the management of large and small shops, resulting in the loss of new housing information and business data processing failures. At the same time, this invention introduces a token holding judgment for the jump storage area to realize the specific fixed storage requirements of specific small shops, introducing adaptive functions to system management and avoiding system downtime caused by the uniform management of specific high-throughput small shops.

[0111] In all the above embodiments, in order to achieve certain special data transmission and read / write function requirements, the above methods and corresponding devices can be expanded by adding devices, modules, components, hardware, pin connections or memory, processor differences during operation.

[0112] Those skilled in the art will clearly understand that, for the sake of convenience and brevity, the specific working processes of the methods, devices, and units described above can be referred to the corresponding processes in the foregoing method embodiments, and will not be repeated here.

[0113] In the embodiments provided by this invention, it should be understood that the disclosed systems, apparatuses, and methods can be implemented in other ways. For example, the apparatus embodiments described above are merely illustrative; for instance, the division of method steps is only a logical or functional division, and in actual implementation, there may be other division methods. For example, multiple units or components may be combined or integrated into another system, or some features may be ignored or not executed. Furthermore, the couplings or direct couplings or communication connections shown or discussed may be indirect couplings or communication connections through some interfaces, apparatuses, or units, and may be electrical, mechanical, or other forms.

[0114] The units described as separate components of the method and apparatus may or may not be logically or physically separate, and may not be physical units. That is, they may be located in one place or distributed across multiple network units. Some or all of the units can be selected to achieve the purpose of this embodiment according to actual needs.

[0115] Furthermore, the method steps and their implementations, as well as the functional units, in the various embodiments of the present invention can be integrated into one processing unit, or each unit can exist physically separately, or two or more units can be integrated into one unit. The integrated unit described above can be implemented in hardware or in the form of hardware plus software functional units.

[0116] The methods and apparatus described above can be implemented as integrated units in the form of software functional units, which can be stored in a computer-readable storage medium. These software functional units, stored in a storage medium, include several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) or processor to execute some steps of the methods described in the various embodiments of the present invention. The aforementioned storage medium includes various media capable of storing program code, such as USB flash drives, portable hard drives, read-only memory (ROM), random access memory (RAM), NVRAM, magnetic disks, or optical disks.

[0117] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the scope of protection of the present invention.

[0118] It should be noted that the above embodiments are only used to more clearly explain and illustrate the technical solutions of the present invention, and are not intended to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that:

[0119] It is still possible to modify the technical solutions described in the foregoing embodiments, or to make equivalent substitutions for some of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. A housing information integration system, characterized in that, The system includes: The regional control center is used to receive configuration and management instructions issued by the remote system control platform, forward them to the corresponding street shops, and upload the business data and configuration information of the street shops within the control area to the remote system control platform. The regional control center is also used to receive business data and configuration information of street shops within the controlled area; The jump property information management module is pre-installed in each of the regional control centers. The jump property information management module is used to set up a jump storage area when a small store in the corresponding regional control center jumps to a large store. Within a time period N, it takes over the new property information of other small stores and stores all the new property information taken over in the jump storage area according to the property ID and the original small store ID. The jump property information management module is also used to process the corresponding business data of the jump property information, and to upload the business data to the remote system control platform, bypassing the regional control center. The jump-up housing information management module is also used to receive configuration instructions and management instructions from the remote system control platform, and to feed back configuration information to the remote system control platform; The jump property information management database is connected to the jump storage area, receives the permanent fixation instruction from the jump storage area, and fixes and stores the jump property information corresponding to the instruction into the jump property information management database; The remote system control platform is used to interact with the regional control center, regional business center, regional configuration center and several large stores, and to receive business data from the regional control center, regional business center, regional configuration center and several large stores. The remote system control platform is also used to issue configuration and management instructions to the regional control center, regional business center, regional configuration center, and several large stores. Multiple street shops, each corresponding to a business street, the business streets being divided in a specific way; each of the multiple street shops processes business data within its corresponding business street and uploads the business data to the regional control center; Each of the multiple street shops also receives configuration instructions and management instructions from the remote system control platform forwarded by the regional control center, and feeds back configuration information to the remote system control platform through the regional control center; When the first specific condition is met, the small street shop obtains a permission signal from the remote system control platform and is upgraded to a large shop; The large stores bypass the regional control center and directly upload their business data and configuration information to the remote system control platform. The large store directly receives configuration and management instructions from the remote system's central control platform. The large store also takes over the configuration information fed back by each of the street stores under the corresponding regional control center and uploads it to the remote system control platform. In addition, the large store also receives the configuration instructions and management instructions issued by the remote system control platform to each of the street stores under the corresponding regional control center and forwards them to the corresponding street stores. When the second specific condition is met, the large store incubates several sub-stores and is decomposed into regional business centers and regional configuration centers. The sub-stores share the business data of the large store, process business based on the shared business data, upload business data to the regional business center, feed back configuration information to the regional configuration center, and receive configuration instructions and management instructions issued by the remote system control platform and forwarded by the regional configuration center. The regional business center receives business data uploaded by the corresponding sub-stores and forwards it to the remote system control platform. The regional configuration center receives configuration information from the corresponding sub-stores, forwards it to the remote system control platform, and receives configuration and management instructions from the remote system control platform, forwarding them to the corresponding sub-stores.

2. The housing information integration system as described in claim 1, characterized in that, The jump property information management module allocates jump storage quotas to the corresponding small shops in the regional control center according to the predetermined settings, in order to store the newly added property information of the corresponding small shops. When the quota of a specific small shop is used up, the jump property information management module triggers a jump storage area solidification storage request, carrying the small shop identifier and solidifying the storage based on the holding status of the solidification storage token. The jump-up property information management module is pre-configured in each of the regional control centers. This module is used to set up a jump-up storage area when a small store in the corresponding regional control center jumps to a large store. Within a duration of N, it takes over the newly added property information of other small stores and stores all the taken-over new property information in the jump-up storage area, categorized by property ID and original small store ID, as jump-up property information. Specifically: When a small store in the corresponding regional control center is upgraded to a large store, the jump property information management module takes over the new property information of other small stores within a time period N, stores all the new property information taken over as jump property information in the jump storage area according to the property ID, starts a timer, and abandons the takeover when the timer reaches N, and resets the subsequent new property information data to the original small store for processing.

3. The housing information integration system as described in claim 2, characterized in that, When a specific first condition is met, the small street shop receives a permission signal from the remote system control platform and transitions to a large shop. This specific first condition includes at least condition one and condition two. Condition 1: The area control center to which the street shop belongs exceeds its predetermined carrying capacity; Condition 2: The business data volume of the street shop exceeds the first threshold M1, or... The street shops have pre-stored permission signaling triggers for the remote system control platform that are triggered at regular intervals; Furthermore, the business streets are divided in a specific way, as follows: The business streets are divided according to specific latitude and longitude. or, The business streets are divided into administrative streets.

4. The housing information integration system as described in claim 3, characterized in that: When the second specific condition is met, the large store incubates several sub-stores, specifically as follows: The amount of business data of the large store exceeded the second threshold M2.

5. The housing information integration system as described in claim 2, characterized in that: The jump-up property information management module triggers a solidified storage request in the jump-up storage area, carrying the store identifier and performing solidified storage based on the holding status of the solidified storage token, specifically: The system assigns a fixed storage token to a specific store to confirm its priority access to the jump property information management database. When the jump property information management module triggers a fixed storage request in the jump storage area, the jump property information management module checks the corresponding store identifier to confirm whether the system has assigned a fixed storage token to the corresponding store. If so, it allows the system to receive the permanent fixed storage instruction from the jump storage area and permanently store the jump property information corresponding to the instruction in the jump property information management database. The permanent fixation command is sent after the change storage area verifies the fixation storage token, and sets the corresponding change property information to change property information within a specific time period.

6. The housing information integration system as described in claim 5, characterized in that: The remote system control platform is also used to record the historical data of the small store's transition and the large store's incubation. The historical data of the transition and incubation is used to record the specific time of each transition and incubation, the objects before and after the transition and incubation, and the regional business center to which the store belonged before the transition.

7. The housing information integration system as described in claim 6, characterized in that: The permission signal is used at least to permit a specific street shop to be upgraded to a large shop when the area control center to which the street shop belongs exceeds the predetermined carrying capacity.

8. The housing information integration system as described in claim 5, characterized in that: The permission signaling is either embedded by the remote system control platform administrator to a pre-set street shop or issued to a specific street shop at a specific time.

9. The housing information integration system as described in claim 3, characterized in that: The permission signaling trigger is used to enable the permission signaling at a preset trigger time.

10. The housing information integration system as described in claim 3, characterized in that: The permission signaling is enabled via the permission signaling trigger.