WO2020133318A1 - 一种监护系统及方法、存储介质 - Google Patents

一种监护系统及方法、存储介质 Download PDF

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Publication number
WO2020133318A1
WO2020133318A1 PCT/CN2018/125241 CN2018125241W WO2020133318A1 WO 2020133318 A1 WO2020133318 A1 WO 2020133318A1 CN 2018125241 W CN2018125241 W CN 2018125241W WO 2020133318 A1 WO2020133318 A1 WO 2020133318A1
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WO
WIPO (PCT)
Prior art keywords
monitoring device
ward
target
channel
level monitoring
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PCT/CN2018/125241
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English (en)
French (fr)
Inventor
聂鹏鹏
莫大仪
付能
刘彬
任健
Original Assignee
深圳迈瑞生物医疗电子股份有限公司
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Application filed by 深圳迈瑞生物医疗电子股份有限公司 filed Critical 深圳迈瑞生物医疗电子股份有限公司
Priority to PCT/CN2018/125241 priority Critical patent/WO2020133318A1/zh
Priority to CN201880098610.6A priority patent/CN112839565A/zh
Publication of WO2020133318A1 publication Critical patent/WO2020133318A1/zh

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/24Detecting, measuring or recording bioelectric or biomagnetic signals of the body or parts thereof
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/28Data switching networks characterised by path configuration, e.g. LAN [Local Area Networks] or WAN [Wide Area Networks]

Definitions

  • the embodiments of the present invention relate to the technical field of medical equipment, and in particular, to a monitoring system and method, and a storage medium.
  • Wireless medical telemetry services that is, using radio technology to remotely monitor patient physiological parameters, such as pulse and breathing frequency, etc.
  • WMTS frequency division multiplexing
  • the use of WMTS can help medical staff achieve effective care of patients.
  • the medical staff can learn the current situation of the patient in real time, so as to perform the corresponding processing.
  • WMTS using frequency division multiplexing often causes interference when multiple devices work together, which cannot guarantee the performance of data transmission.
  • embodiments of the present invention are expected to provide a monitoring system and method, and a storage medium.
  • the channels in the corresponding channel group are configured as transmission channels for the ward-level monitoring equipment included in each area.
  • the ward-level is reduced.
  • the pairing interference between the monitoring device and the corresponding main mobile monitoring device during data transmission improves the performance of data transmission.
  • An embodiment of the present invention provides a monitoring system.
  • the system includes:
  • At least one ward-level monitoring device belonging to the first area the at least one ward-level monitoring device configuring a channel in the first channel group corresponding to the first area as a transmission channel;
  • At least one main mobile monitoring device corresponding to the at least one ward-level monitoring device the at least one main mobile monitoring device will retrieve the patient recovery state parameter corresponding to the target object through the channels in the first channel group It is transmitted to the at least one ward-level monitoring device to realize real-time monitoring of the target object.
  • management equipment In the above system, it also includes: management equipment;
  • the management device determines a preset channel group corresponding to each area from all channels according to a preset channel allocation method, and configures different ward-level monitoring devices in each area corresponding to different preset channel groups Channel as a transmission channel;
  • the first channel group is a preset channel group corresponding to the first area determined by the management device from the all channels.
  • At least one auxiliary mobile monitoring device is also included;
  • the patient recovery state parameter includes at least one first patient recovery state parameter collected by the at least one primary mobile monitoring device and at least one second patient recovery state parameter collected by the at least one auxiliary mobile monitoring device;
  • the at least one auxiliary mobile monitoring device transmits the at least one second patient recovery state parameter to the at least one primary mobile monitoring device by wireless transmission.
  • the at least one ward-level monitoring device includes a target ward-level monitoring device; the target ward-level monitoring device includes a first wireless communication module, and the management device includes a second wireless communication module;
  • the management device determines the first channel corresponding to the target ward-level monitoring device from the first channel group, and transmits the first indication information corresponding to the first channel to the Describe the target ward-level monitoring equipment;
  • the target ward-level monitoring device receives the first indication information through the first wireless communication module, and configures the first channel as a transmission channel according to the first indication information.
  • the at least one main mobile monitoring device includes a target mobile monitoring device, and the target ward-level monitoring device corresponds to the target mobile monitoring device;
  • the target mobile monitoring device acquires some of the parameters of the patient's recovery state, and transmits the partial parameters to the target ward-level monitoring device through the first channel.
  • the target ward-level monitoring equipment includes a first near-field communication module, and the target mobile monitoring device includes a second near-field communication module;
  • the target ward-level monitoring device combines a preset serial number and the current time to generate a first pairing code, and transmits the first pairing code to the target mobile monitoring device through the first near-field communication module;
  • the target mobile monitoring device receives the first pairing code through the second near field communication module, and performs pairing with the target ward-level monitoring device.
  • system further includes a non-target mobile monitoring device
  • the target ward-level monitoring device refuses to monitor with the non-target mobile Device pairing.
  • the target ward-level monitoring device After the target ward-level monitoring device is turned on, it scans all the channels to determine whether the current channel in all channels is in the first channel group;
  • the target ward-level monitoring device When the current working channel among all the channels is not a channel in the first channel group, the target ward-level monitoring device outputs mixed use prompt information for prompting;
  • the target ward-level monitoring device is paired with the target mobile monitoring device.
  • the target ward-level monitoring equipment includes a third wireless communication module
  • the target mobile monitoring device includes a fourth wireless communication module that can perform coupling communication with the third wireless communication module
  • the target mobile monitoring device transmits the partial parameters to the ward-level monitoring equipment through the first channel through the fourth wireless communication module;
  • the target ward-level monitoring device receives the partial parameters on the first channel through the third wireless communication module.
  • the management device determines the second channel corresponding to the target ward-level monitoring device from the second channel group, and sends the second indication information corresponding to the second channel through the second wireless communication module Transmitted to the target ward-level monitoring device; wherein the second channel group is a preset channel group corresponding to the second area determined by the management device from the all channels;
  • the target ward-level monitoring device receives the second indication information through the first wireless communication module, stops configuring the first channel according to the second indication information, and configures the second channel as a transmission channel, To leave the first area and join the second area.
  • each ward-level monitoring device in the at least one ward-level monitoring device is respectively configured with a preset color label corresponding to the first area to distinguish that the at least one ward-level monitoring device belongs to the The first area.
  • each ward-level monitoring device in the at least one ward-level monitoring device is respectively configured with preset area identification information corresponding to the first area to distinguish whether the at least one ward-level monitoring device belongs to The first area.
  • An embodiment of the present invention provides a monitoring method, which is applied to at least one ward-level monitoring device belonging to a first area.
  • the method is characterized in that the method includes:
  • the first channel group is determined from all channels by the management device.
  • the at least one ward-level monitoring device includes a target ward-level monitoring device.
  • the target ward-level monitoring device includes a first wireless communication module.
  • the management device includes a second wireless communication module; before receiving the patient recovery state parameter corresponding to the target object acquired by at least one master mobile monitoring device through the channel in the first channel group corresponding to the first area, the method Also includes:
  • a first channel as a transmission channel of the target ward-level monitoring device according to the first indication information
  • the first channel is a transmission channel corresponding to the target ward-level monitoring device determined by the management device from the first channel group, and the management device is used by the second wireless communication module to The first indication information corresponding to the first channel is transmitted to the target ward-level monitoring device.
  • the receiving, by the channel in the first preset channel group corresponding to the first area, the patient recovery state parameter corresponding to the target object acquired by the at least one master mobile monitoring device includes:
  • the target mobile monitoring device is correspondingly matched with the target ward-level monitoring equipment.
  • the target ward-level monitoring equipment includes a first near-field communication module, before receiving some of the patient recovery state parameters acquired by the target mobile monitoring device in the at least one main mobile monitoring device, The method also includes:
  • the first pairing code is generated by the target ward-level monitoring device combining the preset serial number and the current time;
  • the first pairing code is transmitted to the target mobile monitoring device through the first near-field communication module to achieve pairing with the target mobile monitoring device.
  • the method further includes :
  • the target ward-level monitoring device refuses to pair with the non-target mobile monitoring device .
  • the method before receiving some of the patient recovery state parameters acquired by the target mobile monitoring device in the at least one master mobile monitoring device, the method further includes:
  • the target ward-level monitoring device After the target ward-level monitoring device is turned on, the target ward-level monitoring device scans all the channels to determine whether the current channel among all the channels in the working state is the channel in the first channel group;
  • the target ward-level monitoring device When the current channel among all the channels is not in the first channel group, the target ward-level monitoring device outputs mixed prompt information for prompting;
  • the target ward-level monitoring device is paired with the target mobile monitoring device.
  • the target ward-level monitoring device includes a third wireless communication module, and the first channel configured by the target ward-level monitoring device receives target mobile monitoring in the at least one main mobile monitoring device
  • the third wireless communication module receives the partial parameter on the first channel.
  • the method further includes:
  • the management device is used to determine a second channel group corresponding to the second area from the all channels, and determine a second channel corresponding to the target ward-level monitoring device from the second channel group, In order to transmit the second indication information corresponding to the second channel to the target ward-level monitoring device through the second wireless communication module.
  • An embodiment of the present invention provides a monitoring method, which is applied to at least one main mobile monitoring device that corresponds to at least one ward-level monitoring device belonging to a first area.
  • the method includes:
  • the at least one ward-level monitoring device configures the channel in the first channel group corresponding to the first area as a transmission channel.
  • the at least one main mobile monitoring device includes a target mobile monitoring device
  • the at least one ward-level monitoring device includes a target ward-level monitoring device
  • the target ward-level monitoring device corresponds to the target mobile monitoring device
  • the transmitting the patient recovery state parameter to the at least one ward-level monitoring device through the channel in the first channel group includes:
  • the first channel is a channel in the first channel group configured by the target ward-level monitoring device.
  • the target mobile monitoring device includes a second near-field communication module, and the target mobile monitoring device transmits the partial parameters to the target ward level through the first channel
  • the method further includes:
  • An embodiment of the present invention provides a ward-level monitoring device.
  • the ward-level monitoring device includes: a first processor, a first memory, a first communication bus, and a first communication accessory;
  • the first communication bus is used to implement a communication connection between the first processor, the first memory, and the first communication accessory;
  • the first processor and the first communication accessory are used to execute a first monitoring program stored in the first memory, so as to implement the above monitoring method applied to at least one ward-level monitoring device.
  • An embodiment of the present invention provides a main mobile monitoring device, which includes: a second processor, a second memory, a second communication bus, and a second communication accessory;
  • the second communication bus is used to implement a communication connection between the second processor, the second memory, and the second communication accessory;
  • the second processor and the second communication accessory are used to execute a second monitoring program stored in the second memory to implement the above monitoring method applied to at least one main mobile monitoring device.
  • An embodiment of the present invention provides a computer-readable storage medium.
  • the computer-readable storage medium stores a monitoring program, and the monitoring program may be executed by a processor to implement the foregoing monitoring method.
  • the monitoring system includes: at least one ward-level monitoring device belonging to the first area, and the at least one ward-level monitoring device configures a channel in the first channel group corresponding to the first area as a transmission channel ; At least one main mobile monitoring device corresponding to at least one ward-level monitoring device, at least one main mobile monitoring device transmits the acquired patient recovery state parameters corresponding to the target object to at least one ward through the channels in the first channel group Level monitoring equipment to achieve real-time monitoring of target objects.
  • the channel in the corresponding channel group as the transmission channel for the ward-level monitoring equipment included in each area, the pairing interference during data transmission between the ward-level monitoring equipment and the corresponding main mobile monitoring device is reduced, thereby Improve the performance of data transmission.
  • FIG. 1 is a schematic structural diagram of a monitoring system provided by an embodiment of the present invention.
  • FIG. 2 is a schematic structural diagram of a monitoring system according to an embodiment of the present invention.
  • FIG. 3 is a schematic diagram of wearing a primary mobile monitoring device and an auxiliary mobile monitoring device according to an embodiment of the present invention
  • FIG. 4 is a schematic structural diagram of a monitoring system according to an embodiment of the present invention.
  • FIG. 5 is a communication schematic diagram of a target ward-level monitoring device, a target mobile monitoring device, and a management device according to an embodiment of the present invention
  • FIG. 6 is a schematic flowchart of a monitoring method provided by an embodiment of the present invention.
  • FIG. 7 is a schematic flowchart of a monitoring method provided by an embodiment of the present invention.
  • FIG. 8 is a schematic structural diagram of a ward-level monitoring device according to an embodiment of the present invention.
  • FIG. 9 is a schematic structural diagram of a mobile monitoring device according to an embodiment of the present invention.
  • FIG. 1 is a schematic structural diagram of a monitoring system provided by an embodiment of the present invention. As shown in Figure 1, the monitoring system includes:
  • At least one ward-level monitoring device belonging to the first area and at least one ward-level monitoring device configures channels in the first channel group corresponding to the first area as transmission channels;
  • At least one main mobile monitoring device corresponding to at least one ward-level monitoring device transmits the acquired patient recovery state parameter corresponding to the target object to at least one ward-level through the channel in the first channel group Monitoring equipment to achieve real-time monitoring of target objects.
  • the patient recovery state parameters include three types of parameters: exercise-related parameters, such as exercise step number, cadence, exercise distance, calories, etc.; physiological parameters, such as blood oxygen , Blood pressure, pulse rate, body temperature, electrocardiogram, respiration and other parameters, as well as the relevant statistics and rate of change of these parameters; human state time parameters, for example, time parameters related to exercise or sleep that characterize the human state.
  • exercise-related parameters such as exercise step number, cadence, exercise distance, calories, etc.
  • physiological parameters such as blood oxygen , Blood pressure, pulse rate, body temperature, electrocardiogram, respiration and other parameters, as well as the relevant statistics and rate of change of these parameters
  • human state time parameters for example, time parameters related to exercise or sleep that characterize the human state.
  • Specific patient recovery state parameters are not limited in the embodiments of the present invention.
  • the ward-level monitoring equipment may be divided into different areas according to different positions in advance, that is, the ward-level monitoring equipment located closer to each other may be divided into an area, and the first area is only An area, for example, in the actual application of the hospital, the ward-level monitoring equipment in the same department is relatively close, therefore, the ward-level monitoring equipment in the same department can be divided into one area.
  • the specific first area is not limited by the embodiment of the present invention.
  • the monitoring system may include not only ward-level monitoring equipment and mobile monitoring devices belonging to the first area, but also ward-level monitoring equipment and mobile monitoring devices in other areas, specifically
  • the number of areas included in the monitoring system, the number of ward-level monitoring equipment and mobile monitoring devices belonging to each area are not limited by the embodiments of the present invention.
  • the target object is a patient who needs to be monitored.
  • the target object may specifically include multiple patients.
  • Each ward-level monitoring device in the first area may be used to monitor a patient in the first area.
  • Each ward-level monitoring device of the hospital is matched with a main mobile monitoring device, that is, a main mobile monitoring device can actually obtain the patient recovery status parameters corresponding to a patient, that is, the ward-level monitoring device and the main mobile monitoring device can It is a one-to-one match.
  • FIG. 2 is a schematic structural diagram of a monitoring system provided by an embodiment of the present invention.
  • the ward-level monitoring equipment in the first area of the monitoring system includes: ward-level monitoring equipment 1, ward-level monitoring equipment 2, and ward-level monitoring equipment 3.
  • the main mobile monitoring device 1 corresponds to the ward-level monitoring equipment 1.
  • the main mobile monitoring device 2 corresponds to the ward-level monitoring equipment 2
  • the main mobile monitoring device 3 corresponds to the ward-level monitoring equipment 3
  • the first channel group includes the channels f a , f b and f c
  • the main mobile monitoring device 1 communicates with the ward-level monitoring device 1 through the channel f a
  • the main mobile monitoring device 2 communicates with the ward-level monitoring device 2 through the channel f b
  • the main mobile monitoring device 3 communicates with the ward-level monitoring device 3 through the channel f c .
  • different ward-level monitoring devices in at least one ward-level monitoring device belonging to the first area configure different channels in the first channel group as transmission channels, that is, belong to the first In at least one ward-level monitoring device in an area, as long as one ward-level monitoring device configures a channel in the first channel group as a transmission channel, other ward-level monitoring devices cannot configure the channel as a transmission channel.
  • the main movement monitoring device can be worn anywhere on the body of the target object, for example, in the wrist, leg, arm, chest, finger, or waist.
  • the monitoring system further includes at least one auxiliary mobile monitoring device
  • the patient recovery state parameter includes at least one first patient recovery state parameter collected by at least one primary mobile monitoring device and at least one second patient recovery state parameter collected by at least one auxiliary mobile monitoring device;
  • At least one secondary mobile monitoring device transmits at least one second patient recovery state parameter to at least one primary mobile monitoring device by wireless transmission.
  • the mobile monitoring devices in the monitoring system can be divided into two types, one is a primary mobile monitoring device, and the other is a secondary mobile monitoring device, wherein, for each primary mobile monitoring device
  • the device is concerned, not only the first patient recovery state parameter in the patient recovery state parameter but also the second patient recovery state parameter in the patient recovery state parameter collected by the auxiliary mobile monitoring device matched with it can be collected, so that the complete patient
  • the recovery state parameters are transmitted to the corresponding matching ward-level monitoring equipment.
  • each mobile monitoring device worn by the patient communicates with the ward-level monitoring device
  • the The life time of each mobile monitoring device has an impact.
  • each mobile monitoring device worn by a patient communicates with ward-level monitoring equipment, it will also occupy a large amount of spectrum resources. Therefore, in order to reduce power consumption and avoid occupying a large amount of spectrum resources, mobile monitoring devices are divided into two categories. The main mobile monitoring device collects patient recovery status parameters, and only the main mobile monitoring device communicates with the ward-level monitoring equipment, that is, transmission Patient recovery status parameters.
  • ECG is usually an item that must be monitored, so ECG-Pod can be selected as the main mobile monitoring device.
  • ECG-Pod can be selected as the main mobile monitoring device.
  • all mobile monitoring devices worn on the patient can be used as the main mobile monitoring device to communicate with ward-level monitoring equipment alone.
  • FIG. 3 is a schematic diagram of an exemplary main mobile monitoring and auxiliary mobile monitoring device provided by an embodiment of the present invention. As shown in FIG.
  • the main mobile monitoring device may be an electrocardiographic signal measuring device (hereinafter referred to as ECG-PoD), which is worn on the wrist, and the auxiliary mobile monitoring device may be a non-invasive blood pressure measuring device (hereinafter referred to as NIBP-PoD), which is worn on At the arm, ECG-PoD can collect the patient's ECG signal, that is, the above-mentioned first patient recovery status parameter, NIBP-PoD can collect the patient's blood pressure data, that is, the above-mentioned second patient recovery status parameter, and NIBP-PoD converts the patient's blood pressure data Wireless transmission to ECG-PoD.
  • ECG-PoD electrocardiographic signal measuring device
  • NIBP-PoD non-invasive blood pressure measuring device
  • the wireless transmission methods of the primary mobile monitoring device and the auxiliary mobile monitoring device may be Bluetooth transmission, Wireless Fidelity (WI-FI) transmission, and other transmission methods.
  • the specific wireless transmission mode is not limited in the embodiments of the present invention.
  • the monitoring system further includes: a management device, which determines a preset channel group corresponding to each area from all channels according to a preset channel allocation method, and assigns different ward levels for each area
  • the monitoring device configures different channels in the corresponding preset channel group as transmission channels; wherein, the first channel group is a preset channel group corresponding to the first area determined by the management device from all channels.
  • the management device may select a set of discrete channels from all channels as the corresponding preset channel group for each region based on the degree of channel interference, so as to achieve a limited frequency Coexistence.
  • the management device may determine the preset channel group corresponding to each area from all channels according to certain preset rules, or some specific optimal channel algorithms, and the specific preset
  • the channel allocation method is not limited in this embodiment of the present invention.
  • an area is a department in a hospital.
  • the management device selects a discrete channel from all channels to obtain a first channel group.
  • the first channel group includes channels f a , f b , f c ,..., F n .
  • the management device simultaneously shifts the channels in the first channel group by one channel at the same time as the corresponding second department.
  • the second channel group includes channels f a+1 , f b+1 , f c+1 ,..., F n+1 .
  • the monitoring system includes a first area and a second area, the first channel group in the first area is f a , f b and f c , and the second channel group in the second area is f a+1 , f b+1 , f c+1 .
  • the main mobile monitoring device 1 is matched with the ward-level monitoring equipment 1
  • the main mobile monitoring device 2 is matched with the ward-level monitoring equipment 2
  • the main mobile monitoring device 3 is matched with the ward-level monitoring equipment 3
  • the main mobile monitoring Device 1 communicates with ward-level monitoring equipment 1 through channel f a
  • main mobile monitoring device 2 communicates with ward-level monitoring equipment 2 through channel f b
  • main mobile monitoring device 3 communicates with ward-level monitoring equipment 3 through channel f c .
  • the main mobile monitoring device 4 is matched with the ward-level monitoring equipment 4, the main mobile monitoring device 5 is matched with the ward-level monitoring equipment 5, the main mobile monitoring device 6 is matched with the ward-level monitoring equipment 6, the main mobile monitoring Device 4 communicates with ward-level monitoring equipment 4 through channel f a+1 , main mobile monitoring device 5 communicates with ward-level monitoring equipment 5 through channel f b+1 , and main mobile monitoring device 6 communicates with ward-level monitoring equipment 6 through channel f c+1 realizes communication.
  • FIG. 5 is a communication schematic diagram of a target ward-level monitoring device, a target mobile monitoring device, and a management device according to an embodiment of the present invention, wherein the target ward-level monitoring device is any of at least one ward-level monitoring device belonging to the first area One device, the target mobile monitoring device is the only device in the at least one main mobile monitoring device that corresponds to the target ward-level monitoring device.
  • the target ward-level monitoring device is any of at least one ward-level monitoring device belonging to the first area One device
  • the target mobile monitoring device is the only device in the at least one main mobile monitoring device that corresponds to the target ward-level monitoring device.
  • At least one ward-level monitoring device includes a target ward-level monitoring device; the target ward-level monitoring device includes a first wireless communication module 101, and the management device includes a second wireless communication module 102;
  • the management device determines the first channel corresponding to the target ward-level monitoring device from the first channel group, and transmits the first indication information corresponding to the first channel to the target ward-level monitoring device through the second wireless communication module 102;
  • the target ward-level monitoring device receives the first indication information through the first wireless communication module 101, and configures the first channel as a transmission channel according to the first indication information.
  • the target ward-level monitoring device there may be multiple ward-level monitoring devices belonging to the first area, and the target ward-level monitoring device is only any one of them.
  • the specific target ward-level monitoring device is an embodiment of the present invention Not limited.
  • the first area includes: ward-level monitoring equipment 1, ward-level monitoring equipment 2, ward-level monitoring equipment 3, ward-level monitoring equipment 4, and ward-level monitoring equipment 5, management equipment
  • the determined first channel group includes five channels f a , f b , f c , f d , and f e .
  • the management device selects channel f a from the first channel group as the first channel corresponding to the ward-level monitoring device 1, Therefore, the management device transmits the first indication information to the ward-level monitoring device 1 through the second wireless communication module 102, and the ward-level monitoring device 1 receives the first indication information through the first wireless communication module 101.
  • the first indication information has The ward-level monitoring device 1 is instructed to configure the channel fa as a transmission channel information. Therefore, the ward-level monitoring device 1 can configure the channel fa as a transmission channel according to the first indication information.
  • the target ward-level monitoring device and the management device can be wirelessly communicated in WI-FI mode beforehand, that is, the target ward-level monitoring device includes the first wireless communication module 101 and
  • the second wireless communication module 102 included in the management device may be a WI-FI module, and the specific first wireless communication module 101 and second wireless communication module 102 are not limited in this embodiment of the present invention.
  • the multiple communication modules mentioned in the embodiments of the present application may be multiple independent modules, or may be integrated into one module to implement the functions required by the embodiments of the present application.
  • At least one main mobile monitoring device includes a target mobile monitoring device, and the target ward-level monitoring equipment is correspondingly matched with the target mobile monitoring device;
  • the target mobile monitoring device acquires some of the parameters of the patient's recovery state, and transmits some of the parameters to the target ward-level monitoring equipment through the first channel.
  • the target ward-level monitoring equipment and the target mobile monitoring device are matched, and the two constitute a pair of communication devices. Since the target mobile monitoring device is only one of the main mobile monitoring devices, so It only obtains part of the parameters of the patient's recovery state. This part of the parameters is actually the first patient recovery state parameter collected by the target mobile monitoring device itself as described in the above description, and corresponds to the target mobile monitoring device. The second patient recovery state parameter collected by the matched auxiliary mobile monitoring device is actually a part of the parameter that is also the patient recovery state parameter corresponding to the target ward-level monitoring device that needs to monitor the patient.
  • the ward-level monitoring device 1 is the target ward-level monitoring device, and accordingly, the main mobile monitoring device 1 is the target mobile monitoring device.
  • the ward-level monitoring device Device 2 is the target ward-level monitoring equipment.
  • the main mobile monitoring device 2 is the target mobile monitoring device, and the ward-level monitoring device 3 is the target ward-level monitoring device.
  • the main mobile monitoring device 3 is the target mobile monitoring device. .
  • the target ward-level monitoring device since the target ward-level monitoring device is configured as the first channel in the first channel group, the target mobile monitoring device corresponding to the target ward-level monitoring device needs to pass The first channel transmits some parameters to the target ward-level monitoring equipment.
  • the target ward-level monitoring equipment includes a first near-field communication module 201, and the target mobile monitoring device includes a second near-field communication module 202;
  • the target ward-level monitoring device combines the preset serial number and the current time to generate a first pairing code, and transmits the first pairing code to the target mobile monitoring device through the first near-field communication module 201;
  • the target mobile monitoring device receives the first pairing code through the second near-field communication module 202, and pairs with the target ward-level monitoring equipment.
  • the target ward-level monitoring device and the corresponding matched target mobile monitoring device need to be matched before communicating through the first channel.
  • each ward-level monitoring device corresponds to a different serial number. Therefore, the target ward-level monitoring device can combine the preset serial number and the current time to generate a currently unique pairing code , That is, the first pairing code, which is transmitted to the target mobile monitoring device through the first near-field communication module 201. Correspondingly, the target mobile monitoring device receives the first pairing code through the second near-field communication module 202.
  • the pairing code is paired with the target ward-level monitoring device, that is, a pair of communication devices is paired.
  • the first near-field communication module and the second near-field communication module may be near field communication (NFC) modules. Therefore, when the target moves the monitoring device and the target When the ward-level monitoring equipment is touched at close range, the target ward-level monitoring equipment can send the first pairing code to the target mobile monitoring device through the first near-field communication module 201, and the target mobile monitoring device can pass through the second near-field communication module 202 Receive the first pairing code.
  • NFC near field communication
  • the monitoring system further includes a non-target mobile monitoring device
  • the target ward-level monitoring device refuses to pair with the non-target mobile monitoring device.
  • the monitoring system may include multiple primary mobile monitoring devices and multiple secondary mobile monitoring devices.
  • the target mobile monitoring device other mobile monitoring devices in the monitoring system can be regarded as
  • the non-target mobile monitoring device may be paired with the target ward-level monitoring device before, or the non-target mobile monitoring device needs to be paired with other ward-level monitoring devices.
  • the non-target mobile monitoring device may obtain The pairing code that has been paired before, or the pairing code that needs to be paired with other ward-level monitoring equipment, such pairing codes can be used as the second pairing code, rather than the target mobile monitoring device may be around the target ward-level monitoring equipment, so , There is a case where the non-target mobile monitoring device attempts to access the target ward-level monitoring device through the second pairing code. At this time, the target ward-level monitoring device can recognize that it is not the first pairing code, and thus refuses to carry out with the non-target mobile monitoring device Pairing, that realizes interference-free communication.
  • the target ward-level monitoring device after the target ward-level monitoring device is turned on, it scans all channels to determine whether the current channel in all channels is in the first channel group;
  • the target ward-level monitoring device When all the current channels in the working state are not the channels in the first channel group, the target ward-level monitoring device outputs mixed prompt information for prompting;
  • the target ward-level monitoring device is paired with the target mobile monitoring device.
  • the target ward-level monitoring equipment belonging to the first area is taken to other areas by medical personnel for use Situation, therefore, after the target ward-level monitoring equipment is turned on, it does not pair with the target mobile monitoring device, but scans all channels to determine whether the current channel in all channels is in the first channel group.
  • Channel if it is, it means that the target ward-level monitoring device is currently in the first area, so it can work normally, if not, it means that the target ward-level monitoring device is currently in another area other than the first area, so output mixing is required
  • the prompt message is a reminder for medical personnel.
  • the mixed warning information is output through the target ward-level monitoring device, which may specifically be an alarm sound, or a related text prompt is displayed on the display interface of the target ward-level monitoring device.
  • the embodiments of the invention are not limited.
  • the target ward-level monitoring device further includes a third wireless communication module 301, and the target mobile monitoring device includes a fourth wireless communication module 302 that can couple and communicate with the third wireless communication module 301 ;
  • the target mobile monitoring device transmits part of the parameters to the ward-level monitoring equipment through the fourth wireless communication module 302 in the first channel;
  • the target ward-level monitoring device receives some parameters in the first channel through the third wireless communication module 301.
  • the communication between the target ward-level monitoring device and the target mobile monitoring device through the first channel depends on the specific third wireless communication module 301 and the fourth wireless communication module 302 to It is realized that the third wireless communication module 301 and the fourth wireless communication module 302 actually transmit on the first channel.
  • the target mobile monitoring device and the target ward-level monitoring device perform wireless communication on the first channel through the third wireless communication module 301 and the fourth wireless communication module 302, which is actually WMTS
  • the third wireless communication module 301 and the fourth wireless communication module 302 are the hardware required to implement the WMTS transmission method.
  • the management device may also determine the second channel corresponding to the target ward-level monitoring device from the second channel group, and use the second wireless communication module to convert the second channel corresponding to the second channel
  • the instruction information is transmitted to the target ward-level monitoring device; wherein, the second channel group is a preset channel group corresponding to the second area determined by the management device from the partial channel;
  • the target ward-level monitoring device receives the second indication information through the first wireless communication module, stops configuring the first channel according to the second indication information, and configures the second channel as a transmission channel to leave the first area and join the second area.
  • the management device may also replace the transmission channel configured by the ward-level monitoring equipment in one area and add it to another area for use.
  • the target ward-level monitoring device itself is configured as the first channel in the first channel group, that is, the target ward-level monitoring device belongs to the first area.
  • the target ward needs to be The level-level monitoring equipment is applied to the second area, that is, the target ward-level monitoring equipment is used as the ward-level monitoring equipment in the second area.
  • the management device can then select a channel from the second channel group corresponding to the second area, that is, the second channel
  • the ward-level monitoring equipment is configured, wherein the selected second channel must be a channel in the second channel group that is not configured for any ward-level monitoring equipment belonging to the second area.
  • each ward-level monitoring device in at least one ward-level monitoring device is respectively configured with a preset color label corresponding to the first area to distinguish that at least one ward-level monitoring device belongs to the first area.
  • each ward-level monitoring device in at least one ward-level monitoring device belonging to the first area may be configured with a preset color label, and when the medical staff sees the preset color label, then It can be judged whether the ward-level monitoring equipment belongs to the first area.
  • a preset color label of the corresponding area can be configured for the ward-level monitoring equipment of each area in the monitoring system.
  • the preset color label may be the color of the indicator light, that is, the ward-level monitoring devices in different regions may be configured with different indicator colors; or, the ward-level monitoring device may display a certain Each area displays a color label.
  • the specific preset color label is not limited in this embodiment of the present invention.
  • each ward-level monitoring device in at least one ward-level monitoring device is respectively configured with preset area identification information corresponding to the first area to distinguish that at least one ward-level monitoring device belongs to the first area .
  • each ward-level monitoring device in at least one ward-level monitoring device belonging to the first area may have preset area identity information corresponding to the first area when the medical personnel see
  • the preset area identity information of the ward-level monitoring equipment can determine whether the ward-level monitoring equipment belongs to the first area.
  • the preset area identity of the corresponding area can be configured.
  • the monitoring system includes: a first area, a second area, a third area, ..., an Nth area, and the ward-level monitoring devices in the first area are all configured in the first area Preset area ID ID1, ward-level monitoring equipment in the second area are configured with the preset area ID ID2 in the second area, ward-level monitoring equipment in the third area are configured with the preset area ID ID3 in the third area,... ..., the ward-level monitoring equipment in the Nth area is configured with the preset area identity IDN in the Nth area.
  • An embodiment of the present invention provides a monitoring system, including: at least one ward-level monitoring device belonging to a first area, at least one ward-level monitoring device configuring a channel in a first channel group corresponding to the first area as a transmission channel; and at least One ward-level monitoring device corresponds to at least one matching main mobile monitoring device, and the at least one main-mobile monitoring device transmits the acquired patient recovery state parameter corresponding to the target object to at least one ward-level monitoring device through a channel in the first channel group To achieve real-time monitoring of the target object.
  • the monitoring system provided by the embodiment of the present invention reduces the number of ward-level monitoring devices and corresponding mobile monitoring devices by configuring the channels in the corresponding channel group as transmission channels for the ward-level monitoring devices included in each area Mutual interference during data transmission, thereby improving the performance of data transmission.
  • FIG. 6 is a schematic flowchart of a monitoring method according to an embodiment of the present invention. As shown in Figure 6, it mainly includes the following steps:
  • At least one ward-level monitoring device belonging to the first area configures the channels in the first channel group to communicate with at least one master mobile monitoring device.
  • the patient recovery state parameter is the same as the patient recovery state parameter defined in the foregoing embodiment, and details are not described herein again.
  • At least one mobile monitoring device can be matched with at least one ward-level monitoring device, for example, the first area specifically includes a ward-level monitoring device 1, a ward-level monitoring device 2, and a ward-level monitoring device 3.
  • the first area specifically Including the main mobile monitoring device 1, the main mobile monitoring device 2 and the main mobile monitoring device 3, wherein the ward-level monitoring equipment 1 corresponds to the main mobile monitoring device 1, the ward-level monitoring equipment 2 corresponds to the main mobile monitoring device 2, the ward The level monitoring equipment 3 matches the mobile monitoring device 3 correspondingly.
  • At least one ward-level monitoring device receives the patient recovery state parameter corresponding to the target object acquired by at least one main mobile monitoring device through the channel in the first channel group corresponding to the first area Previously, each ward-level monitoring device in at least one ward-level monitoring device needed to configure the channel in the first channel group as a transmission channel.
  • the first channel group is determined by the management device from all channels, at least one ward-level monitoring device includes a target ward-level monitoring device, and the target ward-level monitoring device includes the first wireless communication module 101,
  • the management device includes a second wireless communication module 102.
  • the target ward-level monitoring device receives the first indication information transmitted by the management device through the first wireless communication module 101, and then configures the first channel as the transmission channel of the target ward-level monitoring device according to the first indication information, where the first channel is
  • the management device determines the transmission channel corresponding to the target ward-level monitoring device from the first channel group.
  • the management device is used to transmit the first indication information corresponding to the first channel to the target ward-level monitoring device through the second wireless communication module 102.
  • the target ward-level monitoring device is any ward-level monitoring device among at least one ward-level monitoring device belonging to the first area, and the specific target ward-level monitoring device is an embodiment of the present invention Not limited.
  • At least one mobile monitoring device receives the patient recovery state parameter corresponding to the target object acquired by at least one main mobile monitoring device through a channel in a first preset channel group corresponding to the first area
  • the method includes: receiving, through a first channel configured by a target ward-level monitoring device, at least one of the patient recovery state parameters acquired by the target mobile monitoring device in the main mobile monitoring device; wherein the target mobile monitoring device corresponds to the target ward-level monitoring device match.
  • the first channel group includes channels f a , f b , and f c , and the target ward-level monitoring device configures channel f a as a transmission channel. Therefore, at least one main mobile monitoring device , The target mobile monitoring device corresponding to the target ward-level monitoring equipment actually transmits part of the parameters of the patient recovery state parameters acquired by itself through the channel f a . Correspondingly, at least one ward-level monitoring equipment passes through the target ward-level monitoring equipment Channel f a receives some parameters of the patient's recovery state parameters.
  • S602 Perform real-time monitoring on the target object according to the patient recovery state parameter.
  • At least one ward-level monitoring device after receiving the patient recovery state parameter, at least one ward-level monitoring device can perform real-time monitoring on the target object according to the patient recovery state parameter.
  • each of the at least one main mobile monitoring device transmits part of the parameters of the patient recovery state parameter, and these partial parameters can actually be different for different patients.
  • the different relevant parameters of the system constitute all the patient recovery state parameters, that is to say, at least one ward-level monitoring device receives different partial parameters through each ward-level monitoring device, and in fact can monitor different patients.
  • the target ward-level monitoring device before at least one ward-level monitoring device receives part of the parameters of the patient's recovery state parameter through the target ward-level monitoring device, the target ward-level monitoring device also needs to be paired with the target mobile monitoring device .
  • the target ward-level monitoring device includes a first near-field communication module 201, at least one ward-level monitoring device receives at least one main mobile monitoring device through the target ward-level monitoring device, and the target mobile monitoring device Before obtaining some of the parameters in the recovery state parameters of the patient, the following steps are also included: a first pairing code is generated by combining the preset serial number and the current time with the target ward-level monitoring device; the first pairing is performed through the first near-field communication module 201 The code is transmitted to the target mobile monitoring device to achieve pairing with the target mobile monitoring device.
  • the target ward-level monitoring device in at least one ward-level monitoring device transmits the first pairing code to the target mobile monitoring device through the first near-field communication module 201 to achieve movement with the target After the monitoring device is paired, it also includes the following steps: when the non-target mobile monitoring device obtains the second pairing code and attempts to pair with the target ward-level monitoring device through the second pairing code, the target ward-level monitoring device refuses to move with the non-target Monitor device pairing.
  • each ward-level monitoring device corresponds to a different serial number, that is, a unique identity. Therefore, at least one ward-level monitoring device can be combined with a preset by the target ward-level monitoring device
  • the serial number and the current time generate a first pairing code
  • the preset serial number is the preset serial number of the target ward-level monitoring device itself
  • the target mobile monitoring device receives the first pairing code and can establish with the target ward-level monitoring device Pairing, of course, cannot be paired with the target ward-level monitoring equipment for other mobile monitoring devices that cannot know the first pairing code.
  • At least one ward-level monitoring device before at least one ward-level monitoring device receives some of the parameters of the patient's recovery state parameter acquired by the target mobile monitoring device in the at least one main mobile monitoring device through the target ward-level monitoring device, It may include the following steps: after the target ward-level monitoring device is turned on, scan all channels through the target ward-level monitoring device to determine whether the current channel among all channels is in the first channel group; in the current all channels When the channel in the working state is not the channel in the first channel group, the target ward-level monitoring device outputs mixed prompt information for prompting; when the channel in the working state of all the current channels is the channel in the first channel group, pass The target ward-level monitoring equipment is paired with the target mobile monitoring device.
  • the target ward-level monitoring equipment belonging to the first area is taken to other areas by medical personnel for use Situation, therefore, after the target ward-level monitoring equipment is turned on, it does not pair with the target mobile monitoring device, but scans all channels to determine whether the current channel in all channels is in the first channel group.
  • Channel if it is, it means that the target ward-level monitoring device is currently in the first area, so it can work normally, if not, it means that the target ward-level monitoring device is currently in another area other than the first area, so output mixing is required
  • the prompt message is a reminder for medical personnel.
  • the mixed warning information is output through the target ward-level monitoring device, which may specifically be an alarm sound, or a related text prompt is displayed on the display interface of the target ward-level monitoring device.
  • the embodiments of the invention are not limited.
  • the target ward-level monitoring device includes a third wireless communication module 301, and at least one ward-level monitoring device receives at least one main mobile monitoring device through the first channel configured by the target ward-level monitoring device Part of the patient recovery state parameters acquired by the target mobile monitoring device in the device specifically receive part of the parameters on the first channel through the third wireless communication module.
  • the following steps may be further included: through the first wireless
  • the communication module receives the second indication information transmitted by the management device; through the target ward-level monitoring device, the first channel is stopped according to the second indication information, and the second channel is configured as a transmission channel of the target ward-level monitoring device to achieve the target ward
  • the level monitoring equipment departs from the first area and joins the second area; wherein, the management device is used to determine the second channel group corresponding to the second area from all channels, and determine the second channel group corresponding to the target ward level monitoring device from the second channel group Two channels to transmit the second indication information corresponding to the second channel to the target ward-level monitoring device through the second wireless communication module.
  • the ward-level monitoring equipment in order to use the ward-level monitoring equipment more flexibly, for example, more patients need to be monitored in the second area of the monitoring system, and more ward-level monitoring equipment is needed.
  • the ward-level monitoring device in the first area can be transferred to the first area, and the ward-level monitoring equipment in the second area is configured as a channel in the second channel group, therefore, the ward-level monitoring in the first area needs to be The channel in the first channel group configured by the device is replaced with the channel in the second channel group.
  • Yet another embodiment of the present invention provides a monitoring method, which is applied to at least one main mobile monitoring device, and at least one main mobile monitoring device is correspondingly matched with at least one ward-level monitoring device belonging to the first area.
  • 7 is a schematic flowchart of a monitoring method according to an embodiment of the present invention. As shown in Figure 7, it mainly includes the following steps:
  • At least one main mobile monitoring device may acquire the patient recovery state parameter corresponding to the target object.
  • the target object may be multiple patients, where one patient corresponds to one main mobile monitoring device, that is, one patient wears one main mobile monitoring device, and each main mobile monitoring device can obtain Corresponding to the relevant parameters of the patient, the relevant parameters of each patient are some of the parameters of the patient's recovery state.
  • each of the at least one main mobile monitoring device may also have a corresponding matching auxiliary mobile monitoring device, and the main mobile monitoring device may collect the parameters of the patient's recovery state itself.
  • Some parameters for example, electrocardiogram signals, can also collect some parameters collected by the auxiliary mobile monitoring device, for example, blood pressure data.
  • At least one main mobile monitoring device includes a target mobile monitoring device
  • at least one ward-level monitoring device includes a target ward-level monitoring device
  • the target ward-level monitoring device corresponds to the target mobile monitoring device
  • at least one main mobile device The monitoring device transmits the patient recovery state parameters to at least one ward-level monitoring device through the channels in the first channel group, including: acquiring part of the patient recovery state parameters through the target mobile monitoring device; and using the first channel through the target mobile monitoring device Transmit some parameters to the target ward-level monitoring device; where the first channel is a channel in the first channel group configured by the target ward-level monitoring device.
  • the target mobile monitoring device includes a fourth wireless communication module 302, specifically, the fourth wireless communication module 302 transmits part of the parameters to the target ward-level monitoring device through the first channel.
  • the target mobile monitoring device includes a second near-field communication module 202, and at least one main mobile monitoring device transmits part of the parameters to the target ward-level monitoring through the target mobile monitoring device on the first channel Before the device, it also includes: receiving the first pairing code transmitted by the target ward-level monitoring device through the second near-field communication module; and pairing with the target ward-level monitoring device according to the first pairing code.
  • the second near-field communication module 202 may actually be an NFC module.
  • the target ward-level monitoring equipment corresponding to the target mobile monitoring device includes the first near-field communication Module 201, when the target ward-level monitoring equipment and the target mobile monitoring device are in close proximity, the first pairing code can be transmitted through the first near-field communication module 201 and the second near-field communication module 202 to achieve pairing.
  • FIG. 8 is a schematic structural diagram of a ward-level monitoring device according to an embodiment of the present invention. As shown in FIG. 8, the ward-level monitoring device includes: a first processor 801, a first memory 802, a first communication bus 803, and a first communication accessory 804;
  • the first communication bus 803 is used to implement a communication connection between the first processor 801, the first memory 802, and the first communication accessory 804;
  • the first processor 801 and the first communication accessory 804 are used to execute the first monitoring program stored in the first memory 802 to implement the above monitoring method applied to at least one ward-level monitoring device.
  • FIG. 9 is a schematic structural diagram of a mobile monitoring device according to an embodiment of the present invention.
  • the main mobile monitoring device includes: a second processor 901, a second memory 902, a second communication bus 903, and a second communication accessory 904;
  • the second communication bus 903 is used to implement a communication connection between the second processor 901, the second memory 902, and the second communication accessory 904;
  • the second processor 901 and the second communication accessory 904 are used to execute the second monitoring program stored in the second memory 902, so as to implement the above monitoring method applied to the main mobile monitoring device.
  • An embodiment of the present invention also provides a computer-readable storage medium that stores a monitoring program, and the monitoring program can be executed by a processor to implement the above monitoring method.
  • the computer-readable storage medium may be volatile memory (volatile memory), such as random access memory (Random-Access Memory, RAM); or non-volatile memory (non-volatile memory), such as Read-only memory (Read-Only Memory, ROM), flash memory (flash memory), hard disk (Hard Disk Drive, HDD) or solid-state hard disk (Solid-State Drive, SSD); can also include one of the above memory or any Combined devices, such as mobile phones, computers, tablet devices, personal digital assistants, etc.
  • volatile memory such as random access memory (Random-Access Memory, RAM)
  • non-volatile memory such as Read-only memory (Read-Only Memory, ROM), flash memory (flash memory), hard disk (Hard Disk Drive, HDD) or solid-state hard disk (Solid-State Drive, SSD
  • ROM Read-only memory
  • flash memory flash memory
  • HDD Hard Disk Drive
  • SSD solid-state hard disk
  • the embodiments of the present invention may be provided as methods, systems, or computer program products. Therefore, the present invention may take the form of a hardware embodiment, a software embodiment, or an embodiment combining software and hardware. Furthermore, the present invention may take the form of a computer program product implemented on one or more computer usable storage media (including but not limited to disk storage and optical storage, etc.) containing computer usable program code.
  • a computer usable storage media including but not limited to disk storage and optical storage, etc.
  • each flow and/or block in the flowchart and/or block diagram and a combination of the flow and/or block in the flowchart and/or block diagram may be implemented by computer program instructions.
  • These computer program instructions can be provided to a general-purpose computer, special-purpose computer, embedded processor, or processor of another programmable signal processing device to produce a machine that allows instructions generated by the computer or other programmable signal processing device's processor to produce A device for realizing the functions specified in one block or multiple blocks of one flow or multiple flows of a flowchart and/or one block or multiple blocks of a block diagram.
  • These computer program instructions may also be stored in a computer readable memory that can guide a computer or other programmable signal processing device to work in a specific manner, so that the instructions stored in the computer readable memory produce an article of manufacture including an instruction device, the instructions
  • the device implements the functions specified in one block or multiple blocks of the flowchart one flow or multiple flows and/or block diagrams.
  • These computer program instructions can also be loaded onto a computer or other programmable signal processing device, so that a series of operating steps are performed on the computer or other programmable device to generate computer-implemented processing, thereby executing on the computer or other programmable device
  • the instructions provide steps for implementing the functions specified in one block or multiple blocks of the flowchart one flow or multiple flows and/or block diagrams.
  • the monitoring system includes: at least one ward-level monitoring device belonging to the first area, and the at least one ward-level monitoring device configures a channel in the first channel group corresponding to the first area as a transmission channel; and At least one ward-level monitoring device corresponds to at least one main mobile monitoring device matched, and the at least one main mobile monitoring device transmits the acquired patient recovery state parameter corresponding to the target object to at least one ward-level monitoring through the channel in the first channel group Equipment to achieve real-time monitoring of target objects.
  • the channel in the corresponding channel group as the transmission channel for the ward-level monitoring equipment included in each area, the pairing interference during data transmission between the ward-level monitoring equipment and the corresponding main mobile monitoring device is reduced, thereby Improve the performance of data transmission.

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Abstract

一种监护系统,包括:属于第一区域的至少一个病房级监护设备,至少一个病房级监护设备配置第一区域对应的第一信道组中的信道作为传输信道;与至少一个病房级监护设备对应匹配的至少一个主移动监测装置,至少一个主移动监测装置将获取到的目标对象对应的病人恢复状态参数,通过第一信道组中的信道传输至至少一个病房级监护设备,以实现对目标对象的实时监护。

Description

一种监护系统及方法、存储介质 技术领域
本发明实施例涉及医疗设备技术领域,尤其涉及一种监护系统及方法、存储介质。
背景技术
无线医疗遥测服务(Wireless Medical Telemetry Services,WMTS),即采用无线电技术对病人生理参数,例如,脉搏和呼吸频率等,进行远程监护。
目前,在医院中,采用WMTS可以帮助医护人员实现对病人的有效看护。通常情况下,只要获取病人生理参数的设备将采集到的数据以无线传输到医护人员可查看的监护设备上,医护人员即可实时获知病人的当前情况,以便进行相应处理。然而,受制于频谱资源的限制,采用频分复用的WMTS经常会出现多个设备共同工作时,互相之间产生干扰的情况,无法保证数据传输的性能。
发明内容
为解决上述技术问题,本发明实施例期望提供一种监护系统及方法、存储介质,通过对每一个区域中包括的病房级监护设备配置对应的信道组中的信道作为传输信道,减少了病房级监护设备和对应的主移动监测装置进行数据传输时的配对干扰,从而提高了数据传输的性能。
本发明实施例的技术方案可以如下实现:
本发明实施例提供了一种监护系统,所述系统包括:
属于第一区域的至少一个病房级监护设备,所述至少一个病房级监护设备配置所述第一区域对应的第一信道组中的信道作为传输信道;
与所述至少一个病房级监护设备对应匹配的至少一个主移动监测装置,所述至少一个主移动监测装置将获取到的目标对象对应的病人恢复状态参数,通过所述第一信道组中的信道传输至所述至少一个病房级监护设备,以实现对所述目标对象的实时监护。
在上述系统中,还包括:管理设备;
所述管理设备按照预设信道分配方法,从全部信道中确定每一个区域对应的预设信道组,并为所述每一个区域中不同的病房级监护设备配置对应的预设信道组中不同的信道作为传输信道;
其中,所述第一信道组为所述管理设备从所述全部信道中确定的所述第一区域对应的预设信道组。
在上述系统中,还包括至少一个辅移动监测装置;
所述病人恢复状态参数包括所述至少一个主移动监测装置采集到的至少一个第一病人恢复状态参数和所述至少一个辅移动监测装置采集到的至少一个第二病人恢复状态参数;
所述至少一个辅移动监测装置将所述至少一个第二病人恢复状态参数以无线传输方式传输至所述至少一个主移动监测装置。
在上述系统中,所述至少一个病房级监护设备包括目标病房级监护设备;所述目标病房级监护设备包括第一无线通讯模块,所述管理设备包括第二无线通讯模块;
所述管理设备从所述第一信道组中确定所述目标病房级监护设备对应的第一信道,并通过所述第二无线通讯模块将所述第一信道对应的第一指示信息传输至所述目标病房级监护设备;
所述目标病房级监护设备通过所述第一无线通讯模块接收所述第一指示信息,根据所述第一指示信息将所述第一信道配置为传输信道。
在上述系统中,所述至少一个主移动监测装置包括目标移动监测装置,所述目标病房级监护设备与所述目标移动监测装置对应匹配;
所述目标移动监测装置获取所述病人恢复状态参数中的部分参数,并通过所述第一信道将所述部分参数传输至所述目标病房级监护设备。
在上述系统中,所述目标病房级监护设备包括第一近场通讯模块,所述目标移动监测装置包括第二近场通讯模块;
所述目标病房级监护设备结合预设序列号和当前时间,产生第一配对码,并通过所述第一近场通讯模块将所述第一配对码传输至所述目标移动监测装置;
所述目标移动监测装置通过所述第二近场通讯模块接收所述第一配对码,与所述目标病房级监护设备进行配对。
在上述系统中,所述系统还包括非目标移动监测装置;
当所述非目标移动监测装置获取第二配对码,并通过所述第二配对码尝试与所述目标病房级监护设备进行配对时,所述目标病房级监护设备拒绝与所述非目标移动监测装置配对。
在上述系统中,所述目标病房级监护设备开机之后扫描所述全部信道,确定当前所述全部信道中处于工作状态的信道是否为所述第一信道组中的信道;
在当前所述全部信道中处于工作状态的信道不为所述第一信道组中的信道时,所述目标病房级监护设备输出混用提示信息进行提示;
在当前所述全部信道中处于工作状态的信道为所述第一信道组中的信道时,所述目标病房级监护设备与所述目标移动监测装置进行配对。
在上述系统中,所述目标病房级监护设备包括第三无线通讯模块,所述目标移动监测装置包括可以所述第三无线通讯模块进行耦合通讯的第四无线通讯模块;
所述目标移动监测装置通过所述第四无线通讯模块将所述部分参数以所述第一信道传输至所述病房级监护设备;
所述目标病房级监护设备通过所述第三无线通讯模块以所述第一信道 接收所述部分参数。
在上述系统中,所述管理设备从第二信道组中确定所述目标病房级监护设备对应的第二信道,并通过所述第二无线通讯模块将所述第二信道对应的第二指示信息传输至所述目标病房级监护设备;其中,所述第二信道组为所述管理设备从所述全部信道中确定的第二区域对应的预设信道组;
所述目标病房级监护设备通过所述第一无线通讯模块接收所述第二指示信息,根据所述第二指示信息停止配置所述第一信道,并将所述第二信道配置为传输信道,以脱离所述第一区域,加入所述第二区域。
在上述系统中,所述至少一个病房级监护设备中的每一个病房级监护设备,分别配置有所述第一区域对应的预设颜色标签,以区分所述至少一个病房级监护设备属于所述第一区域。
在上述系统中,所述至少一个病房级监护设备中的每一个病房级监护设备,分别配置有所述第一区域对应的预设区域身份标识信息,以区分所述至少一个病房级监护设备属于所述第一区域。
本发明实施例提供了一种监护方法,应用于属于第一区域的至少一个病房级监护设备,其特征在于,所述方法包括:
通过所述第一区域对应的第一信道组中的信道接收至少一个主移动监测装置获取到的目标对象对应的病人恢复状态参数;其中,所述至少一个病房级监护设备与所述至少一个主移动监测装置对应匹配;
根据所述病人恢复状态参数对所述目标对象进行实时监护。
在上述方案中,所述第一信道组由管理设备从全部信道中确定,所述至少一个病房级监护设备包括目标病房级监护设备,所述目标病房级监护设备包括第一无线通讯模块,所述管理设备包括第二无线通讯模块;所述通过所述第一区域对应的第一信道组中的信道接收至少一个主移动监测装置获取到的目标对象对应的病人恢复状态参数之前,所述方法还包括:
通过所述第一无线通讯模块接收所述管理设备传输的第一指示信息;
通过所述目标病房级监护设备,根据所述第一指示信息将第一信道配置为所述目标病房级监护设备的传输信道;
其中,所述第一信道为所述管理设备从所述第一信道组中确定的所述目标病房级监护设备对应的传输信道,所述管理设备用于通过所述第二无线通讯模块将所述第一信道对应的第一指示信息传输至所述目标病房级监护设备。
在上述方案中,所述通过所述第一区域对应的第一预设信道组中的信道接收至少一个主移动监测装置获取到的目标对象对应的病人恢复状态参数,包括:
通过所述目标病房级监护设备配置的所述第一信道,接收所述至少一个主移动监测装置中目标移动监测装置获取的所述病人恢复状态参数中的部分参数;
其中,所述目标移动监测装置与所述目标病房级监护设备对应匹配。
在上述方案中,所述目标病房级监护设备包括第一近场通讯模块,所述接收所述至少一个主移动监测装置中目标移动监测装置获取的所述病人恢复状态参数中的部分参数之前,所述方法还包括:
通过所述目标病房级监护设备结合预设序列号和当前时间,产生第一配对码;
通过所述第一近场通讯模块将所述第一配对码传输至所述目标移动监测装置,以实现与所述目标移动监测装置进行配对。
在上述方案中,所述通过所述第一近场通讯模块将所述第一配对码传输至所述目标移动监测装置,以实现与所述目标移动监测装置进行配对之后,所述方法还包括:
当非目标移动监测装置获取第二配对码,并通过所述第二配对码尝试与所述目标病房级监护设备进行配对时,所述目标病房级监护设备拒绝与所述非目标移动监测装置配对。
在上述方案中,所述接收所述至少一个主移动监测装置中目标移动监测装置获取的所述病人恢复状态参数中的部分参数之前,所述方法还包括:
在所述目标病房级监护设备开机之后,通过所述目标病房级监护设备扫描所述全部信道,确定当前所述全部信道中处于工作状态的信道中是否为所述第一信道组中的信道;
在当前所述全部信道中处于工作状态的信道不为所述第一信道组中的信道时,通过所述目标病房级监护设备输出混用提示信息进行提示;
在当前所述全部信道中处于工作状态的信道为所述第一信道组中的信道时,通过所述目标病房级监护设备与所述目标移动监测装置进行配对。
在上述方案中,所述目标病房级监护设备包括第三无线通讯模块,所述通过所述目标病房级监护设备配置的所述第一信道,接收所述至少一个主移动监测装置中目标移动监测装置获取的所述病人恢复状态参数中的部分参数,包括:
通过所述第三无线通讯模块以所述第一信道接收所述部分参数。
在上述方案中,所述根据所述第一指示信息将第一信道配置为所述目标病房级监护设备的传输信道之后,所述方法还包括:
通过所述第一无线通讯模块接收所述管理设备传输的第二指示信息;通过所述目标病房级监护设备,根据所述第二指示信息停止配置所述第一信道,并将所述第二信道配置为所述目标病房级监护设备的传输信道,以实现所述目标病房级监护设备脱离所述第一区域,加入第二区域;
其中,所述管理设备用于从所述全部信道中确定所述第二区域对应的第二信道组,并从所述第二信道组中确定所述目标病房级监护设备对应的第二信道,以通过所述第二无线通讯模块将所述第二信道对应的所述第二指示信息传输至所述目标病房级监护设备。
本发明实施例提供了一种监护方法,应用于至少一个主移动监测装置,所述至少一个主移动监测装置与属于第一区域的至少一个病房级监护设备 对应匹配,所述方法包括:
获取目标对象对应的病人恢复状态参数;
通过第一信道组中的信道将所述病人恢复状态参数传输至所述至少一个病房级监护设备,以通过所述至少一个病房级监护设备实现对所述目标对象的实时监护;
其中,所述至少一个病房级监护设备配置所述第一区域对应的第一信道组中的信道作为传输信道。
在上述方案中,所述至少一个主移动监测装置包括目标移动监测装置,所述至少一个病房级监护设备包括目标病房级监护设备,所述目标病房级监护设备与所述目标移动监测装置对应匹配,所述通过第一信道组中的信道将所述病人恢复状态参数传输至所述至少一个病房级监护设备,包括:
通过所述目标移动监测装置获取所述病人恢复状态参数中的部分参数;
通过所述目标移动监测装置以所述第一信道将所述部分参数传输至所述目标病房级监护设备;
其中,所述第一信道为所述目标病房级监护设备配置的所述第一信道组中的信道。
在上述方案中,其特征在于,所述目标移动监测装置包括第二近场通讯模块,所述通过所述目标移动监测装置以所述第一信道将所述部分参数传输至所述目标病房级监护设备之前,所述方法还包括:
通过所述第二近场通讯模块接收所述目标病房级监护设备传输的第一配对码;
根据所述第一配对码与所述目标病房级监护设备进行配对。
本发明实施例提供了一种病房级监护设备,所述病房级监护设备包括:第一处理器、第一存储器、第一通信总线和第一通讯附件;
所述第一通信总线,用于实现所述第一处理器、所述第一存储器和所述第一通讯附件之间的通信连接;
所述第一处理器和所述第一通讯附件,用于执行所述第一存储器存储的第一监护程序,以实现上述应用于至少一个病房级监护设备的监护方法。
本发明实施例提供了一种主移动监测装置,所述主移动监测装置包括:第二处理器、第二存储器、第二通信总线和第二通讯附件;
所述第二通信总线,用于实现所述第二处理器、所述第二存储器和所述第二通讯附件之间的通信连接;
所述第二处理器和所述第二通讯附件,用于执行所述第二存储器存储的第二监护程序,以实现上述应用于至少一个主移动监测装置的监护方法。
本发明实施例提供了一种计算机可读存储介质,所述计算机可读存储介质存储有监护程序,所述监护程序可以被处理器执行,以实现上述监护方法。
由此可见,在本发明的实施例中,监护系统包括:属于第一区域的至少一个病房级监护设备,至少一个病房级监护设备配置第一区域对应的第一信道组中的信道作为传输信道;与至少一个病房级监护设备对应匹配的至少一个主移动监测装置,至少一个主移动监测装置将获取到的目标对象对应的病人恢复状态参数,通过第一信道组中的信道传输至至少一个病房级监护设备,以实现对目标对象的实时监护。也就是说,通过对每一个区域中包括的病房级监护设备配置对应的信道组中的信道作为传输信道,减少了病房级监护设备和对应的主移动监测装置进行数据传输时的配对干扰,从而提高了数据传输的性能。
附图说明
图1为本发明实施例提供的一种监护系统的结构示意图;
图2为本发明实施例提供的一种监护系统的结构示意图;
图3为本发明实施例提供的一种主移动监测和辅移动监测装置的佩戴示意图;
图4为本发明实施例提供的一种监护系统的结构示意图;
图5为本发明实施例提供的一种目标病房级监护设备、目标移动监测装置和管理设备的通讯示意图;
图6为本发明实施例提供的一种监护方法的流程示意图;
图7为本发明实施例提供的一种监护方法的流程示意图;
图8为本发明实施例提供的一种病房级监护设备的结构示意图;
图9为本发明实施例提供的一种移动监测装置的结构示意图。
具体实施方式
为了能够更加详尽地了解本发明实施例的特点与技术内容,下面结合附图对本发明实施例的实现进行详细阐述,所附附图仅供参考说明之用,并非用来限定本发明实施例。
本发明的说明书和权利要求书及上述附图中的术语“第一”、“第二”等是用于区别不同的对象,而不是用于描述特定顺序。此外,术语“包括”和“具有”以及它们任何变形,意图在于覆盖不排他的包含。例如包含了一系列步骤或单元的过程、方法、系统、产品或设备没有限定于已列出的步骤或单元,而是可选的还包括没有列出的步骤或单元,或可选的还包括对于这些过程、方法或设备固有的其他步骤或单元。
本发明实施例提供了一种监护系统。图1为本发明实施例提供的一种监护系统的结构示意图。如图1所示,监护系统包括:
属于第一区域的至少一个病房级监护设备,至少一个病房级监护设备配置第一区域对应的第一信道组中的信道作为传输信道;
与至少一个病房级监护设备对应匹配的至少一个主移动监测装置,至少一个主移动监测装置将获取到的目标对象对应的病人恢复状态参数,通过第一信道组中的信道传输至至少一个病房级监护设备,以实现对目标对象的实时监护。
需要说明的是,在本发明的实施例中,病人恢复状态参数包含三种类型的参数:运动量相关参数,例如,运动步数、步频、运动距离、卡路里等;生理参数,例如,血氧、血压、脉率、体温、心电、呼吸等参数,以及这这些参数的相关统计量和变化率;人体状态时间参数,例如,与运动相关或睡眠相关的表征人体状态的时间参数。具体的病人恢复状态参数本发明实施例不作限定。
需要说明的是,在本发明的实施例中,可以预先将病房级监护设备按照不同的位置划分到不同的区域,即将位置较为靠近的病房级监护设备划分到一个区域,第一区域仅为其中的一个区域,例如,在医院实际应用时,同一科室的病房级监护设备位置较为靠近,因此,可以将同一科室的病房级监护设备划分为一个区域。具体的第一区域本发明实施例不作限定。
需要说明的是,在本发明的实施例中,监护系统中不仅可以包括属于第一区域的病房级监护设备和移动监测装置,还可以包括其它区域的病房级监护设备和移动监测装置,具体的监护系统中包括的区域的数量,属于每个区域的病房级监护设备和移动监测装置的数量,本发明实施例不作限定。
具体的,目标对象即为需要监护的病人,目标对象具体可以包括多个病人,其中,第一区域中的每一个病房级监护设备可以用于监护第一区域中的一个病人,第一区域中的每一个病房级监护设备与一个主移动监测装置对应匹配,即一个主移动监测装置实际上获取的可以为一个病人对应的病人恢复状态参数,也就是说病房级监护设备与主移动监测装置可以是一一对应匹配的。
图2为本发实施例提供的一种监护系统的结构示意图。如图2所示,监护系统中属于第一区域的病房级监护设备包括:病房级监护设备1、病房级监护设备2和病房级监护设备3,主移动监测装置1与病房级监护设备1对应匹配、主移动监测装置2与病房级监护设备2对应匹配,主移动监测 装置3与病房级监护设备3对应匹配,第一信道组中包括信道f a、f b和f c,主移动监测装置1与病房级监护设备1通过信道f a实现通讯,主移动监测装置2与病房级监护设备2通过信道f b实现通讯,主移动监测装置3与病房级监护设备3通过信道f c实现通讯。
需要说明的是,在本发明的实施例中,属于第一区域的至少一个病房级监护设备中不同的病房级监护设备配置第一信道组中不同的信道作为传输信道,也就是说,属于第一区域的至少一个病房级监护设备中,只要有一个病房级监护设备配置了第一信道组中的某一个信道作为传输信道,其它病房级监护设备就不能再配置该信道作为传输信道。
主移动监测装置可以佩戴在目标对象身体上任意位置,例如,佩戴在手腕、腿、臂膀、胸前、手指或腰中。
在本发明的实施例中,监护系统还包括至少一个辅移动监测装置;
病人恢复状态参数包括至少一个主移动监测装置采集到的至少一个第一病人恢复状态参数和至少一个辅移动监测装置采集到的至少一个第二病人恢复状态参数;
至少一个辅移动监测装置将至少一个第二病人恢复状态参数以无线传输方式传输至至少一个主移动监测装置。
需要说明的是,在本发明的实施例中,监护系统中的移动监测装置可以划分为两种,一种为主移动监测装置,一种为辅移动监测装置,其中,对于每一个主移动监测装置而言,不仅可以采集病人恢复状态参数中的第一病人恢复状态参数,还可以收集与其匹配的辅移动监测装置采集的病人恢复状态参数中的第二病人恢复状态参数,从而将完整的病人恢复状态参数传输至对应匹配病房级监护设备。
可以理解的是,在本发明的实施例中,由于移动监测装置与病房级监护设备之间的通讯存在功耗,如果病人佩戴的每个移动监测装置都与病房级监护设备进行通讯,将对每个移动监测装置的续航使用时间产生影响, 此外,如果病人佩戴的每个移动监测装置都与病房级监护设备进行通讯,也将占有大量的频谱资源。因此,为了降低功耗和避免占用大量频谱资源,将移动监测装置划分为两类,主移动监测装置收集病人恢复状态参数,且仅主移动监测装置与病房级监护设备之间进行通讯,即传输病人恢复状态参数。在实际使用过程中,由于心电通常为必须监护的项目,因此,可以将ECG-Pod选取为主移动监测装置。当然,在某些实施例中,病人身上佩戴的所有移动监测装置都可以作为主移动监测装置,单独与病房级监护设备进行通讯。
可以理解的是,在本发明的实施例中,不仅主移动监测装置需要佩戴在病人身体上,辅移动监测装置也需要佩戴在病人身体上。图3为本发明实施例提供的一种示例性的主移动监测和辅移动监测装置佩戴示意图。如图3所示,主移动监测装置可以为心电信号测量装置(以下简称ECG-PoD),佩戴在手腕处,辅移动监测装置可以为无创血压测量装置(以下简称NIBP-PoD),佩戴在手臂处,ECG-PoD可以采集病人的心电信号,即上述第一病人恢复状态参数,NIBP-PoD可以采集病人的血压数据,即上述第二病人恢复状态参数,NIBP-PoD将病人的血压数据以无线传输方式传输至ECG-PoD。
需要说明的是,在本发明的实施例中,主移动监测装置与辅移动监测装置的无线传输方式可以为蓝牙传输、无线保真(Wireless-Fidelity,WI-FI)传输等其它方式的传输,具体的无线传输方式本发明实施例不作限定。
在本发明的实施例中,监护系统还包括:管理设备,管理设备按照预设信道分配方法,从全部信道中确定每一个区域对应的预设信道组,并为每一个区域中不同的病房级监护设备配置对应的预设信道组中不同的信道作为传输信道;其中,第一信道组为管理设备从全部信道中确定的第一区域对应的预设信道组。
需要说明的是,在本发明的实施例中,管理设备可以基于信道相互干 扰的程度,针对每一个区域从全部信道中选取一组离散的信道作为对应的预设信道组,以实现有限的频点共存。
需要说明的是,在本发明的实施例中,管理设备可以按照一定预设规则,或者某些特定的最优信道算法从全部信道中确定每一个区域对应的预设信道组,具体的预设信道分配方法本发明实施例不作限定。
示例性的,在本发明的实施例中,一个区域即为医院中的一个科室,对于其中第一科室,即上述第一区域,管理设备从全部信道中选取离散信道,获得第一信道组,第一信道组包括信道f a、f b、f c,……,f n,对于第二科室,管理设备将第一信道组中的信道整体同时偏移一个信道,作为第二科室对应的第二信道组,第二信道组包括信道f a+1、f b+1、f c+1,……,f n+1
图4为本发明实施例提供的一种监护系统的结构示意图。如图4所示,监护系统包括第一区域和第二区域,第一区域的第一信道组为f a、f b和f c,第二区域对应的第二信道组为f a+1、f b+1、f c+1。第一区域中,主移动监测装置1与病房级监护设备1对应匹配、主移动监测装置2与病房级监护设备2对应匹配,主移动监测装置3与病房级监护设备3对应匹配,主移动监测装置1与病房级监护设备1通过信道f a实现通讯,主移动监测装置2与病房级监护设备2通过信道f b实现通讯,主移动监测装置3与病房级监护设备3通过信道f c实现通讯。第二区域中,主移动监测装置4与病房级监护设备4对应匹配、主移动监测装置5与病房级监护设备5对应匹配,主移动监测装置6与病房级监护设备6对应匹配,主移动监测装置4与病房级监护设备4通过信道f a+1实现通讯,主移动监测装置5与病房级监护设备5通过信道f b+1实现通讯,主移动监测装置6与病房级监护设备6通过信道f c+1实现通讯。
图5为本发明实施例提供的一种目标病房级监护设备、目标移动监测装置和管理设备的通讯示意图,其中,目标病房级监护设备为属于第一区域的至少一个病房级监护设备中的任意一个设备,目标移动监测装置为至 少一个主移动监测装置中唯一与目标病房级监护设备对应匹配的装置,以下将基于图5进行三者通讯的详细说明。
如图5所示,在本发明的实施例中,至少一个病房级监护设备包括目标病房级监护设备;目标病房级监护设备包括第一无线通讯模块101,管理设备包括第二无线通讯模块102;
管理设备从第一信道组中确定目标病房级监护设备对应的第一信道,并通过第二无线通讯模块102将第一信道对应的第一指示信息传输至目标病房级监护设备;
目标病房级监护设备通过第一无线通讯模块101接收第一指示信息,根据第一指示信息将第一信道配置为传输信道。
需要说明的是,在本发明的实施例中,属于第一区域的病房级监护设备可以为多个,目标病房级监护设备仅为其中的任意一个,具体的目标病房级监护设备本发明实施例不作限定。
示例性的,在本发明的实施例中,第一区域中包括:病房级监护设备1、病房级监护设备2、病房级监护设备3、病房级监护设备4和病房级监护设备5,管理设备确定的第一信道组包括信道f a、f b、f c,f d,f e五个信道,管理设备从第一信道组中选取信道f a作为病房级监护设备1对应的第一信道,因此,管理设备通过第二无线通讯模块102将第一指示信息传输至病房级监护设备1,病房级监护设备1通过第一无线通讯模块101接收第一指示信息,第一指示信息具有为用于指示病房级监护设备1将信道f a配置为传输信道的信息,因此,病房级监护设备1即可根据第一指示信息将信道f a配置为传输信道。
需要说明的是,在本发明的实施例中,目标病房级监护设备和管理设备之前可以以WI-FI方式进行无线通讯,也就是说,目标病房级监护设备包括的第一无线通讯模块101和管理设备包括的第二无线通讯模块102,可以为WI-FI模块,具体的第一无线通讯模块101和第二无线通讯模块102 本发明实施例不作限定。需要说明的是,本申请实施例中提到的多个通讯模块在具体实现时,可以是多个独立的模块,也可以是集成在一个模块中以实现本申请实施例所需的功能。
在本发明的实施例中,至少一个主移动监测装置包括目标移动监测装置,目标病房级监护设备与目标移动监测装置对应匹配;
目标移动监测装置获取病人恢复状态参数中的部分参数,并通过第一信道将部分参数传输至目标病房级监护设备。
需要说明的是,在本发明的实施例中,目标病房级监护设备与目标移动监测装置对应匹配,两者构成一对通讯设备,由于目标移动监测装置仅为主移动监测装置中的一个,因此,其获取到的仅为病人恢复状态参数中的部分参数,该部分参数实际上如上述说明中所述,由目标移动监测装置自身采集的第一病人恢复状态参数,以及与目标移动监测装置对应匹配的辅移动监测装置采集的第二病人恢复状态参数所组成,该部分参数实际上也是目标病房级监护设备需要监护病人对应的病人恢复状态参数。
可以理解的是,在本发明的实施例,如图2所示,病房级监护设备1为目标病房级监护设备,相应的,主移动监测装置1即为目标移动监测装置,当然,病房级监护设备2为目标病房级监护设备,相应的,主移动监测装置2即为目标移动监测装置,病房级监护设备3为目标病房级监护设备,相应的,主移动监测装置3即为目标移动监测装置。
可以理解的是,在本发明的实施例中,由于目标病房级监护设备配置的为第一信道组中的第一信道,因此,与目标病房级监护设备对应匹配的目标移动监测装置就需要通过第一信道将部分参数传输至目标病房级监护设备。
如图5所示,在本发明的实施例中,目标病房级监护设备包括第一近场通讯模块201,目标移动监测装置包括第二近场通讯模块202;
目标病房级监护设备结合预设序列号和当前时间,产生第一配对码, 并通过第一近场通讯模块201将第一配对码传输至目标移动监测装置;
目标移动监测装置通过第二近场通讯模块202接收第一配对码,与目标病房级监护设备进行配对。
可以理解的是,在本发明的实施例中,目标病房级监护设备与对应匹配的目标移动监测装置在通过第一信道进行通讯之前,两者需要先进行匹配。
需要说明的是,在本发明的实施例中,每个病房级监护设备对应有不同的序列号,因此,目标病房级监护设备可以结合预设序列号和当前时间,产生一个当前唯一的配对码,即第一配对码,从而通过第一近场通讯模块201传输至目标移动监测装置,相应的,目标移动监测装置通过第二近场通讯模块202接收该第一配对码,即可根据第一配对码与目标病房级监护设备实现配对,即实现了一对通讯设备的配对。
需要说明的是,在本发明的实施例中,第一近场通讯模块和第二近场通讯模块可以为近距离无线通信(Near Field Communication,NFC)模块,因此,当目标移动监测装置和目标病房级监护设备近距离触碰时,目标病房级监护设备即可通过第一近场通讯模块201将第一配对码发送至目标移动监测装置,目标移动监测装置即可通过第二近场通讯模块202接收第一配对码。
在本发明的实施例中,监护系统还包括非目标移动监测装置;
当非目标移动监测装置获取第二配对码,并通过第二配对码尝试与目标病房级监护设备进行配对时,目标病房级监护设备拒绝与非目标移动监测装置配对。
可以理解的是,在本发明的实施例中监护系统中可以包括多个主移动监测装置和多个辅移动监测装置,对于目标移动监测装置而言,监护系统中其它移动监测装置均可视作非目标移动监测装置,而非目标移动监测装置可能之前与目标病房级监护设备配对过,或者,非目标移动监测装置需 要与其它病房级监护设备进行配对,此时,非目标移动监测装置可以获取之前配对过的配对码,或者需要与其它病房级监护设备进行配对的配对码,这类配对码均可作为第二配对码,而非目标移动监测装置可能在目标病房级监护设备的周围,因此,存在非目标移动监测装置通过第二配对码尝试接入目标病房级监护设备的情况,此时,目标病房级监护设备可以识别到其并非第一配对码,从而拒绝与非目标移动监测装置进行配对,即实现了无干扰通讯。
在本发明的实施例中,目标病房级监护设备开机之后扫描全部信道,确定当前全部信道中处于工作状态的信道是否为第一信道组中的信道;
在当前全部信道中处于工作状态的信道不为第一信道组中的信道时,目标病房级监护设备输出混用提示信息进行提示;
在当前全部信道中处于工作状态的信道为第一信道组中的信道时,目标病房级监护设备与目标移动监测装置进行配对。
可以理解的是,在本发明的实施例中,实际应用过程中,可能存在病房级监护设备混用的情况,例如,属于第一区域的目标病房级监护设备被医护人员拿到其它区域中进行使用的情况,因此,在目标病房级监护设备开机之后,先不进行与目标移动监测装置的配对,而是去扫描全部信道,确定当前全部信道中处于工作状态的信道是否为第一信道组中的信道,如果是,则说明目标病房级监护设备当前处于第一区域,因此,可以进行正常工作,如果不是,则说明目标病房级监护设备当前处于非第一区域的其它区域,因此,需要输出混用提示信息为医护人员进行提示。
需要说明的是,在本发明的实施例中,通过目标病房级监护设备输出混用提示信息,具体可以为发出报警提示音,或者,在目标病房级监护设备的显示界面上显示相关文字提示,本发明实施例不作限定。
如图5所示,在本发明的实施例中,目标病房级监护设备还包括第三无线通讯模块301,目标移动监测装置包括可以第三无线通讯模块301进行 耦合通讯的第四无线通讯模块302;
目标移动监测装置通过第四无线通讯模块302将部分参数以第一信道传输至病房级监护设备;
目标病房级监护设备通过第三无线通讯模块301以第一信道接收部分参数。
可以理解的是,在本发明的实施例中,目标病房级监护设备与目标移动监测装置之间通过第一信道进行通讯,依赖于具体的第三无线通讯模块301和第四无线通讯模块302来实现,即实际上由第三无线通讯模块301和第四无线通讯模块302以第一信道进行传输。
需要说明的是,在本发明的实施例中,目标移动监测装置和目标病房级监护设备通过第三无线通信模块301和第四无线通讯模块302,以第一信道进行无线通讯,实际上就是WMTS传输方式,第三无线通信模块301和第四无线通讯模块302就是实现WMTS传输方式所需要的硬件。
需要说明的是,在本发明的实施例中,管理设备还可以从第二信道组中确定目标病房级监护设备对应的第二信道,并通过第二无线通讯模块将第二信道对应的第二指示信息传输至目标病房级监护设备;其中,第二信道组为管理设备从部信道中确定的第二区域对应的预设信道组;
目标病房级监护设备通过第一无线通讯模块接收第二指示信息,根据第二指示信息停止配置第一信道,并将第二信道配置为传输信道,以脱离第一区域,加入第二区域。
可以理解的是,在本发明的实施例中,为了更灵活的使用病房级监护设备,管理设备还可以更换一个区域中的病房级监护设备配置的传输信道,将其加入另一个区域进行使用。
需要说明的是,在本发明的实施例中,目标病房级监护设备本身配置的为第一信道组中的第一信道,即目标病房级监护设备属于第一区域,但是,如果需要将目标病房级监护设备应用到第二区域,即将目标病房级监 护设备作为第二区域的病房级监护设备,管理设备即可从第二区域对应的第二信道组中选取一个信道,即第二信道为目标病房级监护设备进行配置,其中,选取出的第二信道必须为第二信道组中并未配置给任何属于第二区域的病房级监护设备的信道。
在本发明的实施例中,至少一个病房级监护设备中的每一个病房级监护设备,分别配置有第一区域对应的预设颜色标签,以区分至少一个病房级监护设备属于第一区域。
可以理解的是,在本发明的实施例中,属于第一区域的至少一个病房级监护设备中的每一个病房级监护设备可以配置预设颜色标签,当医护人员看到预设颜色标签,则可以判断病房级监护设备是否属于第一区域。当然,对于监护系统中的每一个区域的病房级监护设备,都可以配置对应区域的预设颜色标签。
需要说明的是,在本发明的实施例中,预设颜色标签可以为指示灯颜色,即不同区域的病房级监护设备可以配置不同的指示灯颜色;或者,病房级监护设备在显示界面的某个区域显示一个颜色标签。具体的预设颜色标签本发明实施例不作限定。
在本发明的实施例中,至少一个病房级监护设备中的每一个病房级监护设备,分别配置有第一区域对应的预设区域身份标识信息,以区分至少一个病房级监护设备属于第一区域。
可以理解的是,在本发明的实施例中,属于第一区域的至少一个病房级监护设备中的每一个病房级监护设备可以第一区域对应的预设区域身份标识信息,当医护人员看到病房级监护设备的预设区域身份标识信息,则可以判断病房级监护设备是否属于第一区域。当然,对于监护系统中的每一个区域的病房级监护设备,都可以配置对应区域的预设区域身份标识。
示例性的,在本发明的实施例中,监护系统中包括:第一区域、第二区域、第三区域,……,第N区域,第一区域的病房级监护设备均配置第 一区域的预设区域身份标识ID1,第二区域的病房级监护设备均配置第二区域的预设区域身份标识ID2,第三区域的病房级监护设备均配置第三区域的预设区域身份标识ID3,……,第N区域的病房级监护设备均配置第N区域的预设区域身份标识IDN。
本发明实施例提供了一种监护系统,包括:属于第一区域的至少一个病房级监护设备,至少一个病房级监护设备配置第一区域对应的第一信道组中的信道作为传输信道;与至少一个病房级监护设备对应匹配的至少一个主移动监测装置,至少一个主移动监测装置将获取到的目标对象对应的病人恢复状态参数,通过第一信道组中的信道传输至至少一个病房级监护设备,以实现对目标对象的实时监护。也就是说,本发明实施例提供的监护系统,通过对每一个区域中包括的病房级监护设备配置对应的信道组中的信道作为传输信道,减少了病房级监护设备和对应的移动监测装置进行数据传输时的互相干扰,从而提高了数据传输的性能。
本发明另一实施例提供了一种监护方法,应用于属于第一区域的至少一个病房级监护设备。图6为本发明实施例提供的一种监护方法的流程示意图。如图6所示,主要包括以下步骤:
S601、通过第一区域对应的第一信道组中的信道接收至少一个主移动监测装置获取到的目标对象对应的病人恢复状态参数;其中,至少一个病房级监护设备与至少一个主移动监测装置对应匹配。
在本发明的实施例中,属于第一区域的至少一个病房级监护设备配置第一信道组中的信道与至少一个主移动监测装置进行通讯。
需要说明的是,在本发明的实施例中,病人恢复状态参数与上述实施例中限定的病人恢复状态参数相同,在此不再赘述。
具体的,至少一个移动监测装置可以与至少一个病房级监护设备一一对应匹配,例如,第一区域具体包括病房级监护设备1、病房级监护设备2和病房级监护设备3,第一区域具体包括主移动监测装置1、主移动监测装 置2和主移动监测装置3,其中,病房级监护设备1与主移动监测装置1对应匹配,病房级监护设备2与主移动监测装置2对应匹配,病房级监护设备3与移动监测装置3对应匹配。
需要说明的是,在本发明的实施例中,至少一个病房级监护设备通过第一区域对应的第一信道组中的信道接收至少一个主移动监测装置获取到的目标对象对应的病人恢复状态参数之前,至少一个病房级监护设备中的的每一个病房级监护设备需要配置第一信道组中的信道作为传输信道。
具体的,在本发明的实施例中,第一信道组由管理设备从全部信道中确定,至少一个病房级监护设备包括目标病房级监护设备,目标病房级监护设备包括第一无线通讯模块101,管理设备包括第二无线通讯模块102。目标病房级监护设备通过第一无线通讯模块101接收管理设备传输的第一指示信息,之后,根据第一指示信息将第一信道配置为目标病房级监护设备的传输信道,其中,第一信道为管理设备从第一信道组中确定的目标病房级监护设备对应的传输信道,管理设备用于通过第二无线通讯模块102将第一信道对应的第一指示信息传输至目标病房级监护设备。
需要说明的是,在本发明的实施例中,目标病房级监护设备为属于第一区域的至少一个病房级监护设备中的任意一个病房级监护设备,具体的目标病房级监护设备本发明实施例不作限定。
具体的,在本发明的实施例中,至少一个移动监测装置通过第一区域对应的第一预设信道组中的信道接收至少一个主移动监测装置获取到的目标对象对应的病人恢复状态参数,包括:通过目标病房级监护设备配置的第一信道,接收至少一个主移动监测装置中目标移动监测装置获取的病人恢复状态参数中的部分参数;其中,目标移动监测装置与目标病房级监护设备对应匹配。
示例性的,在本发明的实施例中,第一信道组中包括信道f a、f b、f c,目标病房级监护设备配置信道f a作为传输信道,因此,至少一个主移动监 测装置中,与目标病房级监护设备对应匹配的目标移动监测装置实际上是通过信道f a传输自身获取的病人恢复状态参数的部分参数,相应的,至少一个病房级监护设备,通过目标病房级监护设备通过信道f a接收病人恢复状态参数的部分参数。
S602、根据病人恢复状态参数对目标对象进行实时监护。
在本发明的实施例中,至少一个病房级监护设备在接收到病人恢复状态参数之后,即可根据病人恢复状态参数对目标对象进行实时监护。
需要说明的是,在本发明的实施例中,至少一个主移动监测装置中每一个主移动监测装置都进行病人恢复状态参数中的部分参数的传输,这些部分参数实际上可以分别是对不同病人的不同相关参数,组成了全部的病人恢复状态参数,也就是说,至少一个病房级监护设备中通过每一个病房级监护设备分别接收到不同的部分参数,实际上可以对不同的病人进行监护。
需要说明的是,在本发明的实施例中,至少一个病房级监护设备通过目标病房级监护设备接收病人恢复状态参数中的部分参数之前,目标病房级监护设备还需要和目标移动监测装置进行配对。
具体的,在本发明的实施例中,目标病房级监护设备包括第一近场通讯模块201,至少一个病房级监护设备通过目标病房级监护设备接收至少一个主移动监测装置中,目标移动监测装置获取的病人恢复状态参数中的部分参数之前,还包括以下步骤:通过目标病房级监护设备结合预设序列号和当前时间,产生第一配对码;通过第一近场通讯模201将第一配对码传输至目标移动监测装置,以实现与目标移动监测装置进行配对。
需要说明的是,在本发明的实施例中,至少一个病房级监护设备中目标病房级监护设备通过第一近场通讯模块201将第一配对码传输至目标移动监测装置,以实现与目标移动监测装置进行配对之后,还包括如下步骤:当非目标移动监测装置获取第二配对码,并通过第二配对码尝试与目标病 房级监护设备进行配对时,目标病房级监护设备拒绝与非目标移动监测装置配对。
可以理解的是,在本发明的实施例中,每个病房级监护设备对应有不同的序列号,即唯一的身份标识,因此,至少一个病房级监护设备可以通过目标病房级监护设备结合预设序列号和当前时间,产生第一配对码,该预设序列号为目标病房级监护设备自身的预设序列号,目标移动监测装置接收到第一配对码,就可以与目标病房级监护设备建立配对,当然,对于无法获知第一配对码的其它移动监测装置,也就无法与目标病房级监护设备配对。
需要说明的是,在本发明的实施例中,至少一个病房级监护设备通过目标病房级监护设备接收至少一个主移动监测装置中目标移动监测装置获取的病人恢复状态参数中的部分参数之前,还可以包括以下步骤:在目标病房级监护设备开机之后,通过目标病房级监护设备扫描全部信道,确定当前全部信道中处于工作状态的信道中是否为第一信道组中的信道;在当前全部信道中处于工作状态的信道不为第一信道组中的信道时,通过目标病房级监护设备输出混用提示信息进行提示;在当前全部信道中处于工作状态的信道为第一信道组中的信道时,通过目标病房级监护设备与目标移动监测装置进行配对。
可以理解的是,在本发明的实施例中,实际应用过程中,可能存在病房级监护设备混用的情况,例如,属于第一区域的目标病房级监护设备被医护人员拿到其它区域中进行使用的情况,因此,在目标病房级监护设备开机之后,先不进行与目标移动监测装置的配对,而是去扫描全部信道,确定当前全部信道中处于工作状态的信道是否为第一信道组中的信道,如果是,则说明目标病房级监护设备当前处于第一区域,因此,可以进行正常工作,如果不是,则说明目标病房级监护设备当前处于非第一区域的其它区域,因此,需要输出混用提示信息为医护人员进行提示。
需要说明的是,在本发明的实施例中,通过目标病房级监护设备输出混用提示信息,具体可以为发出报警提示音,或者,在目标病房级监护设备的显示界面上显示相关文字提示,本发明实施例不作限定。
需要说明的是,在本发明的实施例中,目标病房级监护设备包括第三无线通讯模块301,至少一个病房级监护设备通过目标病房级监护设备配置的第一信道,接收至少一个主移动监测装置中目标移动监测装置获取的病人恢复状态参数中的部分参数,具体为通过第三无线通讯模块以第一信道接收部分参数。
需要说明的是,在本发明的实施例中,至少一个病房级监护设备根据第一指示信息将第一信道配置为目标病房级监护设备的传输信道之后,还可以包括以下步骤:通过第一无线通讯模块接收管理设备传输的第二指示信息;通过目标病房级监护设备,根据第二指示信息停止配置第一信道,并将第二信道配置为目标病房级监护设备的传输信道,以实现目标病房级监护设备脱离第一区域,加入第二区域;其中,管理设备用于从全部信道中确定第二区域对应的第二信道组,并从第二信道组中确定目标病房级监护设备对应的第二信道,以通过第二无线通讯模块将第二信道对应的第二指示信息传输至目标病房级监护设备。
可以理解的是,在本发明的实施例中,为了更为灵活的使用病房级监护设备,例如,在监护系统中第二区域的需要监护的病人增多,需要更多的病房级监护设备,此时,可以将与第一区域中病房级监护设调用到第一区域,而第二区域的病房级监护设备配置的为第二信道组中的信道,因此,需要将第一区域的病房级监护设备配置的第一信道组中的信道更换为第二信道组中的信道。
本发明又一实施例提供了一种监护方法,应用于至少一个主移动监测装置,至少一个主移动监测装置与属于第一区域的至少一个病房级监护设备对应匹配。图7为本发明实施例提供的一种监护方法的流程示意图。如 图7所示,主要包括以下步骤:
S701、获取目标对象对应的病人恢复状态参数。
在本发明的实施例中,至少一个主移动监测装置可以获取目标对象对应的病人恢复状态参数。
需要说明的是,在本发明的实施例中,目标对象可以为多个病人,其中,一个病人对应一个主移动监测装置,即一个病人佩戴一个主移动监测装置,每个主移动监测装置可以获取对应病人的相关参数,每个病人的相关参数即为病人恢复状态参数中的部分参数。
需要说明的是,在本发明的实施例中,至少一个主移动监测装置中每一个主移动监测装置还可以存在对应匹配的辅移动监测装置,主移动监测装置自身可以采集病人恢复状态参数中的一些参数,例如,心电信号,还可以收集辅移动监测装置采集的一些参数,例如,血压数据。
S702、通过第一信道组中的信道将病人恢复状态参数传输至至少一个病房级监护设备,以通过至少一个病房级监护设备实现对目标对象的实时监护;其中,至少一个病房级监护设备配置第一区域对应的第一信道组中的信道作为传输信道。
在本发明的实施例中,至少一个主移动监测装置包括目标移动监测装置,至少一个病房级监护设备包括目标病房级监护设备,目标病房级监护设备与目标移动监测装置对应匹配,至少一个主移动监测装置通过第一信道组中的信道将病人恢复状态参数传输至至少一个病房级监护设备,包括:通过目标移动监测装置获取病人恢复状态参数中的部分参数;通过目标移动监测装置以第一信道将部分参数传输至目标病房级监护设备;其中,第一信道为目标病房级监护设备配置的第一信道组中的信道。
需要说明的是,在本发明的实施例中,目标移动监测装置中包括第四无线通讯模块302,具体是通过第四无线通讯模块302以第一信道将部分参数传输至目标病房级监护设备。
需要说明的是,在本发明的实施例中,目标移动监测装置包括第二近场通讯模块202,至少一个主移动监测装置通过目标移动监测装置以第一信道将部分参数传输至目标病房级监护设备之前,还包括:通过第二近场通讯模块接收目标病房级监护设备传输的第一配对码;根据第一配对码与目标病房级监护设备进行配对。
需要说明的是,在本发明的实施例中,第二近场通讯模块202实际上可以为NFC模块,相应的,与目标移动监测装置对应匹配的目标病房级监护设备中包括第一近场通讯模块201,当目标病房级监护设备与目标移动监测装置近距离触碰时,即可通过第一近场通讯模块201和第二近场通讯模块202实现第一配对码传输,实现配对。
本发明又一实施例提供了一种病房级监护设备,图8为本发明实施例提供的一种病房级监护设备的结构示意图。如图8所示,该病房级监护设备包括:第一处理器801、第一存储器802、第一通信总线803和第一通讯附件804;
第一通信总线803,用于实现第一处理器801、第一存储器802和第一通讯附件804之间的通信连接;
第一处理器801和第一通讯附件804,用于执行第一存储器802存储的第一监护程序,以实现上述应用于至少一个病房级监护设备的监护方法。
本发明又一实施例提供了一种主移动监测装置,图9为本发明实施例提供的一种移动监测装置的结构示意图。如图9所示,该主移动监测装置包括:第二处理器901、第二存储器902、第二通信总线903和第二通讯附件904;
第二通信总线903,用于实现第二处理器901、第二存储器902和第二通讯附件904之间的通信连接;
第二处理器901和第二通讯附件904,用于执行第二存储器902存储的第二监护程序,以实现上述应用于主移动监测装置的监护方法。
本发明实施例还提供了一种计算机可读存储介质,该计算机可读存储介质存储有监护程序,监护程序可以被处理器执行,以实现上述监护方法。
需要说明的是,计算机可读存储介质可以是是易失性存储器(volatile memory),例如随机存取存储器(Random-Access Memory,RAM);或者非易失性存储器(non-volatile memory),例如只读存储器(Read-Only Memory,ROM),快闪存储器(flash memory),硬盘(Hard Disk Drive,HDD)或固态硬盘(Solid-State Drive,SSD);也可以是包括上述存储器之一或任意组合的各自设备,如移动电话、计算机、平板设备、个人数字助理等。
本领域内的技术人员应明白,本发明的实施例可提供为方法、系统、或计算机程序产品。因此,本发明可采用硬件实施例、软件实施例、或结合软件和硬件方面的实施例的形式。而且,本发明可采用在一个或多个其中包含有计算机可用程序代码的计算机可用存储介质(包括但不限于磁盘存储器和光学存储器等)上实施的计算机程序产品的形式。
本发明是参照根据本发明实施例的方法、设备(系统)、和计算机程序产品的流程图和/或方框图来描述的。应理解可由计算机程序指令实现流程图和/或方框图中的每一流程和/或方框、以及流程图和/或方框图中的流程和/或方框的结合。可提供这些计算机程序指令到通用计算机、专用计算机、嵌入式处理机或其他可编程信号处理设备的处理器以产生一个机器,使得通过计算机或其他可编程信号处理设备的处理器执行的指令产生用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的装置。
这些计算机程序指令也可存储在能引导计算机或其他可编程信号处理设备以特定方式工作的计算机可读存储器中,使得存储在该计算机可读存储器中的指令产生包括指令装置的制造品,该指令装置实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能。
这些计算机程序指令也可装载到计算机或其他可编程信号处理设备上, 使得在计算机或其他可编程设备上执行一系列操作步骤以产生计算机实现的处理,从而在计算机或其他可编程设备上执行的指令提供用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的步骤。
以上所述,仅为本发明的较佳实施例而已,并非用于限定本发明的保护范围。
工业实用性
在本发明实施例的技术方案中,监护系统包括:属于第一区域的至少一个病房级监护设备,至少一个病房级监护设备配置第一区域对应的第一信道组中的信道作为传输信道;与至少一个病房级监护设备对应匹配的至少一个主移动监测装置,至少一个主移动监测装置将获取到的目标对象对应的病人恢复状态参数,通过第一信道组中的信道传输至至少一个病房级监护设备,以实现对目标对象的实时监护。也就是说,通过对每一个区域中包括的病房级监护设备配置对应的信道组中的信道作为传输信道,减少了病房级监护设备和对应的主移动监测装置进行数据传输时的配对干扰,从而提高了数据传输的性能。

Claims (26)

  1. 一种监护系统,其特征在于,所述系统包括:
    属于第一区域的至少一个病房级监护设备,所述至少一个病房级监护设备配置所述第一区域对应的第一信道组中的信道作为传输信道;
    与所述至少一个病房级监护设备对应匹配的至少一个主移动监测装置,所述至少一个主移动监测装置将获取到的目标对象对应的病人恢复状态参数,通过所述第一信道组中的信道传输至所述至少一个病房级监护设备,以实现对所述目标对象的实时监护。
  2. 根据权利要求1所述的系统,其特征在于,所述系统还包括:管理设备;
    所述管理设备按照预设信道分配方法,从全部信道中确定每一个区域对应的预设信道组,并为所述每一个区域中不同的病房级监护设备配置对应的预设信道组中不同的信道作为传输信道;
    其中,所述第一信道组为所述管理设备从所述全部信道中确定的所述第一区域对应的预设信道组。
  3. 根据权利要求1所述的系统,其特征在于,所述系统还包括至少一个辅移动监测装置;
    所述病人恢复状态参数包括所述至少一个主移动监测装置采集到的至少一个第一病人恢复状态参数和所述至少一个辅移动监测装置采集到的至少一个第二病人恢复状态参数;
    所述至少一个辅移动监测装置将所述至少一个第二病人恢复状态参数以无线传输方式传输至所述至少一个主移动监测装置。
  4. 根据权利要求2所述的系统,其特征在于,所述至少一个病房级监护设备包括目标病房级监护设备;所述目标病房级监护设备包括第一无线通讯模块,所述管理设备包括第二无线通讯模块;
    所述管理设备从所述第一信道组中确定所述目标病房级监护设备对应的第一信道,并通过所述第二无线通讯模块将所述第一信道对应的第一指示信息传输至所述目标病房级监护设备;
    所述目标病房级监护设备通过所述第一无线通讯模块接收所述第一指示信息,根据所述第一指示信息将所述第一信道配置为传输信道。
  5. 根据权利要求4所述的系统,其特征在于,所述至少一个主移动监测装置包括目标移动监测装置,所述目标病房级监护设备与所述目标移动监测装置对应匹配;
    所述目标移动监测装置获取所述病人恢复状态参数中的部分参数,并通过所述第一信道将所述部分参数传输至所述目标病房级监护设备。
  6. 根据权利要求5所述的系统,所述目标病房级监护设备包括第一近场通讯模块,所述目标移动监测装置包括第二近场通讯模块;
    所述目标病房级监护设备结合预设序列号和当前时间,产生第一配对码,并通过所述第一近场通讯模块将所述第一配对码传输至所述目标移动监测装置;
    所述目标移动监测装置通过所述第二近场通讯模块接收所述第一配对码,与所述目标病房级监护设备进行配对。
  7. 根据权利要求6所述的方法,其特征在于,所述系统还包括非目标移动监测装置;
    当所述非目标移动监测装置获取第二配对码,并通过所述第二配对码尝试与所述目标病房级监护设备进行配对时,所述目标病房级监护设备拒绝与所述非目标移动监测装置配对。
  8. 根据权利要求5所述的系统,其特征在于,
    所述目标病房级监护设备开机之后扫描所述全部信道,确定当前所述全部信道中处于工作状态的信道是否为所述第一信道组中的信道;
    在当前所述全部信道中处于工作状态的信道不为所述第一信道组中的 信道时,所述目标病房级监护设备输出混用提示信息进行提示;
    在当前所述全部信道中处于工作状态的信道为所述第一信道组中的信道时,所述目标病房级监护设备与所述目标移动监测装置进行配对。
  9. 根据权利要求5所述的系统,其特征在于,所述目标病房级监护设备包括第三无线通讯模块,所述目标移动监测装置包括可以所述第三无线通讯模块进行耦合通讯的第四无线通讯模块;
    所述目标移动监测装置通过所述第四无线通讯模块将所述部分参数以所述第一信道传输至所述病房级监护设备;
    所述目标病房级监护设备通过所述第三无线通讯模块以所述第一信道接收所述部分参数。
  10. 根据权利要求4所述的系统,其特征在于,
    所述管理设备从第二信道组中确定所述目标病房级监护设备对应的第二信道,并通过所述第二无线通讯模块将所述第二信道对应的第二指示信息传输至所述目标病房级监护设备;其中,所述第二信道组为所述管理设备从所述全部信道中确定的第二区域对应的预设信道组;
    所述目标病房级监护设备通过所述第一无线通讯模块接收所述第二指示信息,根据所述第二指示信息停止配置所述第一信道,并将所述第二信道配置为传输信道,以脱离所述第一区域,加入所述第二区域。
  11. 根据权利要求1所述的系统,其特征在于,
    所述至少一个病房级监护设备中的每一个病房级监护设备,分别配置有所述第一区域对应的预设颜色标签,以区分所述至少一个病房级监护设备属于所述第一区域。
  12. 根据权利要求1所述的系统,其特征在于,
    所述至少一个病房级监护设备中的每一个病房级监护设备,分别配置有所述第一区域对应的预设区域身份标识信息,以区分所述至少一个病房级监护设备属于所述第一区域。
  13. 一种监护方法,应用于属于第一区域的至少一个病房级监护设备,其特征在于,所述方法包括:
    通过所述第一区域对应的第一信道组中的信道接收至少一个主移动监测装置获取到的目标对象对应的病人恢复状态参数;其中,所述至少一个病房级监护设备与所述至少一个主移动监测装置对应匹配;
    根据所述病人恢复状态参数对所述目标对象进行实时监护。
  14. 根据权利要求13所述的方法,其特征在于,所述第一信道组由管理设备从全部信道中确定,所述至少一个病房级监护设备包括目标病房级监护设备,所述目标病房级监护设备包括第一无线通讯模块,所述管理设备包括第二无线通讯模块;所述通过所述第一区域对应的第一信道组中的信道接收至少一个主移动监测装置获取到的目标对象对应的病人恢复状态参数之前,所述方法还包括:
    通过所述第一无线通讯模块接收所述管理设备传输的第一指示信息;
    通过所述目标病房级监护设备,根据所述第一指示信息将第一信道配置为所述目标病房级监护设备的传输信道;
    其中,所述第一信道为所述管理设备从所述第一信道组中确定的所述目标病房级监护设备对应的传输信道,所述管理设备用于通过所述第二无线通讯模块将所述第一信道对应的第一指示信息传输至所述目标病房级监护设备。
  15. 根据权利要求14所述的方法,其特征在于,所述通过所述第一区域对应的第一预设信道组中的信道接收至少一个主移动监测装置获取到的目标对象对应的病人恢复状态参数,包括:
    通过所述目标病房级监护设备配置的所述第一信道,接收所述至少一个主移动监测装置中目标移动监测装置获取的所述病人恢复状态参数中的部分参数;
    其中,所述目标移动监测装置与所述目标病房级监护设备对应匹配。
  16. 根据权利要求15所述的方法,其特征在于,所述目标病房级监护设备包括第一近场通讯模块,所述接收所述至少一个主移动监测装置中目标移动监测装置获取的所述病人恢复状态参数中的部分参数之前,所述方法还包括:
    通过所述目标病房级监护设备结合预设序列号和当前时间,产生第一配对码;
    通过所述第一近场通讯模块将所述第一配对码传输至所述目标移动监测装置,以实现与所述目标移动监测装置进行配对。
  17. 根据权利要求16所述的方法,其特征在于,所述通过所述第一近场通讯模块将所述第一配对码传输至所述目标移动监测装置,以实现与所述目标移动监测装置进行配对之后,所述方法还包括:
    当非目标移动监测装置获取第二配对码,并通过所述第二配对码尝试与所述目标病房级监护设备进行配对时,所述目标病房级监护设备拒绝与所述非目标移动监测装置配对。
  18. 根据权利要求15所述的方法,其特征在于,所述接收所述至少一个主移动监测装置中目标移动监测装置获取的所述病人恢复状态参数中的部分参数之前,所述方法还包括:
    在所述目标病房级监护设备开机之后,通过所述目标病房级监护设备扫描所述全部信道,确定当前所述全部信道中处于工作状态的信道中是否为所述第一信道组中的信道;
    在当前所述全部信道中处于工作状态的信道不为所述第一信道组中的信道时,通过所述目标病房级监护设备输出混用提示信息进行提示;
    在当前所述全部信道中处于工作状态的信道为所述第一信道组中的信道时,通过所述目标病房级监护设备与所述目标移动监测装置进行配对。
  19. 根据权利要求15所述的方法,其特征在于,所述目标病房级监护设备包括第三无线通讯模块,所述通过所述目标病房级监护设备配置的所 述第一信道,接收所述至少一个主移动监测装置中目标移动监测装置获取的所述病人恢复状态参数中的部分参数,包括:
    通过所述第三无线通讯模块以所述第一信道接收所述部分参数。
  20. 根据权利要求14所述的方法,其特征在于,所述根据所述第一指示信息将第一信道配置为所述目标病房级监护设备的传输信道之后,所述方法还包括:
    通过所述第一无线通讯模块接收所述管理设备传输的第二指示信息;通过所述目标病房级监护设备,根据所述第二指示信息停止配置所述第一信道,并将所述第二信道配置为所述目标病房级监护设备的传输信道,以实现所述目标病房级监护设备脱离所述第一区域,加入第二区域;
    其中,所述管理设备用于从所述全部信道中确定所述第二区域对应的第二信道组,并从所述第二信道组中确定所述目标病房级监护设备对应的第二信道,以通过所述第二无线通讯模块将所述第二信道对应的所述第二指示信息传输至所述目标病房级监护设备。
  21. 一种监护方法,应用于至少一个主移动监测装置,其特征在于,所述至少一个主移动监测装置与属于第一区域的至少一个病房级监护设备对应匹配,所述方法包括:
    获取目标对象对应的病人恢复状态参数;
    通过第一信道组中的信道将所述病人恢复状态参数传输至所述至少一个病房级监护设备,以通过所述至少一个病房级监护设备实现对所述目标对象的实时监护;
    其中,所述至少一个病房级监护设备配置所述第一区域对应的第一信道组中的信道作为传输信道。
  22. 根据权利要求21所述的方法,其特征在于,所述至少一个主移动监测装置包括目标移动监测装置,所述至少一个病房级监护设备包括目标病房级监护设备,所述目标病房级监护设备与所述目标移动监测装置对应 匹配,所述通过第一信道组中的信道将所述病人恢复状态参数传输至所述至少一个病房级监护设备,包括:
    通过所述目标移动监测装置获取所述病人恢复状态参数中的部分参数;
    通过所述目标移动监测装置以所述第一信道将所述部分参数传输至所述目标病房级监护设备;
    其中,所述第一信道为所述目标病房级监护设备配置的所述第一信道组中的信道。
  23. 根据权利要求22所述的方法,其特征在于,所述目标移动监测装置包括第二近场通讯模块,所述通过所述目标移动监测装置以所述第一信道将所述部分参数传输至所述目标病房级监护设备之前,所述方法还包括:
    通过所述第二近场通讯模块接收所述目标病房级监护设备传输的第一配对码;
    根据所述第一配对码与所述目标病房级监护设备进行配对。
  24. 一种病房级监护设备,其特征在于,所述病房级监护设备包括:第一处理器、第一存储器、第一通信总线和第一通讯附件;
    所述第一通信总线,用于实现所述第一处理器、所述第一存储器和所述第一通讯附件之间的通信连接;
    所述第一处理器和所述第一通讯附件,用于执行所述第一存储器存储的第一监护程序,以实现权利要求13-20任一项所述的方法。
  25. 一种主移动监测装置,其特征在于,所述主移动监测装置包括:第二处理器、第二存储器、第二通信总线和第二通讯附件;
    所述第二通信总线,用于实现所述第二处理器、所述第二存储器和所述第二通讯附件之间的通信连接;
    所述第二处理器和所述第二通讯附件,用于执行所述第二存储器存储的第二监护程序,以实现权利要求21-23任一项所述的方法。
  26. 一种计算机可读存储介质,所述计算机可读存储介质存储有监护 程序,所述监护程序可以被处理器执行,以实现权利要求13-23任一项所述的方法。
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