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CN104042199A - Characteristic index feedback system and method - Google Patents

Characteristic index feedback system and method
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Publication number
CN104042199A
CN104042199ACN201410318675.0ACN201410318675ACN104042199ACN 104042199 ACN104042199 ACN 104042199ACN 201410318675 ACN201410318675 ACN 201410318675ACN 104042199 ACN104042199 ACN 104042199A
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index
controlling value
interval
dynamic indicator
environmental
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CN104042199B (en
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吴冰
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CHRONOCLOUD MEDICAL TECHNOLOGY (SHANGHAI) Co Ltd
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CHRONOCLOUD MEDICAL TECHNOLOGY (SHANGHAI) Co Ltd
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Abstract

A characteristic index feedback system comprises a wearing device and a remote server. The wearing device is used for collecting physical indexes, environment indexes and dynamic indexes conveniently, and driving a feedback module to provide feedback for a user according to a feedback result control value of the remote server. The remote server is used for storing and calculating the physical indexes, the environmental indexes and the dynamic indexes collected by the wearing device and calculating the feedback result control value. The wearing device comprises a physical index detection module, an environment index detection module, a dynamic index detection module, a communication module and the feedback module. The remote server comprises a database, a comparison module and a control module.

Description

A kind of characteristic index feedback system and feedback method thereof
Technical field
The invention belongs to medical instruments field, relate to a kind of feedback system and feedback method of characteristic index, more specifically, the present invention relates to a kind of System and method for characteristic index being fed back by wearable device and remote server.
Background technology
Characteristic index body index, environmental index, state index (comprises height above sea level, speed, longitude and latitude etc.) general designation, existing wearable characteristic index equipment, all to complete with user motion or the movable collection that completes certain characteristic index of some, such as most Wearable pedometer on market, all to want " step every days 10,000 " based on user, targets such as " weekly by consuming on foot 516 kilocalories " completes collection and the statistics of body index, simultaneously, existing Wearable characteristic index equipment does not have to point out rapidly the function of user characteristics Indexes Abnormality except measuring ability, even if caused Wearable equipment Inspection to user's body Indexes Abnormality, user is still unaware situation also.
In addition, it is abnormal that the variation of the dynamical states such as ambient condition, speed and height above sea level also may cause user's body index to occur, thereby have the generation of disease or other undesirable conditions, existing wearable equipment can not provide reminding user adaptively along with the variation of the factors such as ambient condition, speed, height above sea level.
Under this background, make that a to can be used for intelligent characteristic index collection system wearable equipment, adaptive adjustment equipment feedback model just particularly important, generation is had to huge market prospect simultaneously.
The invention provides a kind of characteristic index feedback system and method, the various feedback models of the adaptive user of providing are provided in the variation that uploads to the information such as body index data, environmental index data and dynamic indicator data of remote server according to the various sensors by wearable device, thereby be given to, user is real-time, automatic feedback prompting.
Summary of the invention
The invention provides a kind of characteristic index feedback system, comprise a wearing equipment and a remote server, described wearing equipment provides feedback result for gather the feedback result controlling value calculating according to remote server after body index, environmental index and dynamic indicator portablely to user, described remote server is used for storing body index, environmental index and the dynamic indicator that wearing equipment gathers, and calculates feedback result controlling value with this;
Wherein, described wearing equipment comprises a body index detection module, an environmental index detection module, a dynamic indicator detection module, a feedback module, a communication module, and described remote server comprises a data base, a comparison module and a control module;
Wherein, described body index detection module is for the body index with certain detection frequency detecting user, described environmental index detection module is used for certain on-site environmental index of detection frequency detecting user, described dynamic indicator detection module is for the dynamic indicator with certain detection frequency detecting user, and described communication module is for uploading respectively the extremely data base of described remote server of described body index, environmental index, dynamic indicator;
Described data base is used for health, environment, the dynamic indicator that storing communication module is uploaded in chronological order respectively, in described data base, also prestore several benchmark body index differences interval and several corresponding body index controlling values, identical reference atmosphere index interval and corresponding environmental index controlling value, interval and the corresponding dynamic indicator controlling value of identical benchmark dynamic indicator, described data base also prestores body index controlling value, environmental index controlling value, dynamic indicator controlling value and combines corresponding feedback result controlling value;
Described comparison module is used for transferring the last body index data of data base and front body index data, and before calculating, the difference of rear twice body index data, and compare with described benchmark body index difference interval, choose corresponding body index controlling value, described comparison module is also for transferring the last environmental index data of data base, and relatively interval with described reference atmosphere index, choose corresponding environmental index controlling value, described comparison module is also for transferring the last dynamic indicator data of data base, and relatively interval with described benchmark dynamic indicator, choose corresponding dynamic indicator controlling value,
Described control module is for receiving body index controlling value, environmental index controlling value, the dynamic indicator controlling value that comparison module is chosen, and combine body index controlling value, environmental index controlling value, dynamic indicator controlling value, transfer three feedback result controlling values that combinations of values is corresponding in described data base, and send feedback result controlling value data, the communication module on described wearing equipment is also for receiving described feedback result controlling value data.
Further, in aforesaid body index feedback system, described body index detection module comprises a pressure transducer, a heart rate sensor, an EGC sensor, a body temperature trans; Described environmental index detection module comprises an environment temperature sensor, fine particle (PM2.5) sensor; Described dynamic indicator detection module comprises a velocity sensor, a height above sea level sensor.
Further, described communication module is GPRS transmission equipment.
Further, described dynamic indicator detection module is a six-axle acceleration sensor, and described six-axle acceleration sensor is that three axis accelerometer and three-axis gyroscope combine.
Further, described body index comprises hypertension forcing up the targets (SBP), the low forcing up the targets of blood pressure (DBP), heart rate index (HP) and body temperature index (BTemp); Described environmental index comprises ambient temperature index (ATemp) and fine particle (PM2.5) index; Described dynamic indicator comprises speed index (S) and height above sea level index (H).
The present invention also provides a kind of method of characteristic index feedback, based on aforesaid characteristic index feedback system, user's body index, environmental index and dynamic indicator is detected, and provides user with feedback result, and concrete steps are:
Step 1, by the body index detection module on described wearing equipment, with certain detection frequency, user's body index is detected, by described environmental index detection module with certain on-site environmental index of detection frequency detecting user, the dynamic indicator by described dynamic indicator detection module with certain detection frequency detecting user;
Step 2, uploads respectively described body index, environmental index, dynamic indicator extremely data base the storage of described remote server by described communication module;
Step 3, by described comparison module, transfer the last body index data and front body index data in data base, and before calculating, the difference of rear twice body index data, and compare with described benchmark body index difference interval, choose corresponding body index controlling value, transfer the last environmental index data in data base simultaneously, and relatively interval with described reference atmosphere index, choose corresponding environmental index controlling value, transfer the last dynamic indicator data in data base simultaneously, and relatively interval with described benchmark dynamic indicator, choose corresponding dynamic indicator controlling value,
Step 4, by described control module, receive body index controlling value, environmental index controlling value, the dynamic indicator controlling value that comparison module is chosen, and combine aforementioned three item number certificates, transfer three feedback result controlling values that combinations of values is corresponding in described data base, and send feedback result controlling value data, communication module on described wearing equipment receives described feedback result controlling value data, and drive feedback module provides user with feedback.
Further, described body index comprises hypertension forcing up the targets (SBP), the low forcing up the targets of blood pressure (DBP), heart rate index (HP) and body temperature index (BTemp), described environmental index comprises ambient temperature index (ATemp) and fine particle (PM2.5) index, and described dynamic indicator comprises speed index (S) and height above sea level index (H).
Characteristic index feedback system proposed by the invention and method can be adaptive the pattern of adjustment equipment feedback, in the situation that body index changes, user environment changes or the factor such as user's speed, height above sea level changes, can provide efficiently user the feedback with light, sound, electricity; Meanwhile, the in the situation that, environment steady in user's body index being constant, automatically adjust feedback model, without abnormal without feedback, thereby avoid too much bothering user, also make simultaneously more power saving of wearable device, endurance more for a long time, equipment life is longer.
Accompanying drawing explanation
Fig. 1 is the workflow diagram of a kind of characteristic index feedback system provided by the present invention;
Fig. 2 dresses the outside drawing of equipment in provided by the present invention a kind of characteristic index feedback system;
Fig. 3 dresses the cut-away view of equipment in provided by the present invention a kind of characteristic index feedback system.
Description of reference numerals:
100 wearing equipment
101 body indexs, environmental index, dynamic indicator data upload link
102 remote servers
103 feedback result controlling values transmit link
The specific embodiment
A kind of embodiment of the present invention is:
A characteristic index feedback system, comprises a wearing equipment and a remote server.Wearing equipment as shown in Figure 2 and Figure 3, a pressure transducer, a heart rate sensor, an EGC sensor, a body temperature trans form body index detection module jointly; Environment temperature sensor, a fine particle (PM2.5) sensor (not indicating in the drawings) form environmental index detection module; A six-axle acceleration sensor (not indicating in the drawings) forms dynamic indicator detection module; A GPRS transmission equipment forms communication module; A LED lamp, loudspeaker, an oscillator, an electrode form feedback module.Body index detection module is used for gathering body hypertension forcing up the targets (SBP), the low forcing up the targets of blood pressure (DBP), heart rate index (HP) and body temperature index (BTemp), environmental index detection module is used for gathering ambient temperature index (ATemp) and fine particle (PM2.5) index, and aforesaid six-axle acceleration sensor is for picking rate index (S) and height above sea level index (H).Thereby feedback module is for providing user to feed back with luminous, pronunciation, generation vibrations, the weak shock current graduation of generation.
Remote server 102 in system shown in Figure 1 comprises a data base (not indicating in the drawings), a comparison module (not indicating in the drawings) and a control module (not indicating in the drawings), certainly comparison module and control module can be also one, the comparison control module forming a whole (not indicating in the drawings).Wherein data base is used for health, environment, the dynamic indicator that storing communication module is uploaded in chronological order respectively, in described data base, also prestore several benchmark body index differences interval and several corresponding body index controlling value A, identical reference atmosphere index interval and corresponding environmental index controlling value B, identical benchmark dynamic indicator interval and corresponding dynamic indicator controlling value C, described data base also prestores body index controlling value A, environmental index controlling value B, dynamic indicator controlling value C combines corresponding feedback result controlling value D.Described comparison module is used for transferring the last body index data of data base and front body index data, and before calculating, the difference of rear twice body index data, and compare with described benchmark body index difference interval, choose corresponding body index controlling value A, described comparison module is also for transferring the last environmental index data of data base, and relatively interval with described reference atmosphere index, choose corresponding environmental index controlling value B, described comparison module is also for transferring the last dynamic indicator data of data base, and relatively interval with described benchmark dynamic indicator, choose corresponding dynamic indicator controlling value C, described control module is for receiving body index controlling value A, environmental index controlling value B, the dynamic indicator controlling value C that comparison module is chosen, and combine body index controlling value A, environmental index controlling value B, dynamic indicator controlling value C, transfer three feedback result controlling value D that combinations of values is corresponding in described data base, and send and detect FREQUENCY CONTROL value D data, communication module on described wearing equipment receives described feedback result controlling value D data, and drive feedback module provides suitable feedback.
Wherein, as shown in table 1 below, aforesaid benchmark body index difference interval is that 5 piecewise intervals and 5 corresponding body index controlling value A can be divided into A0, A1, A2, A3, A4, wherein the first interval is SBP < 10, DBP < 10HP < 10, BTemp < 0.5, and corresponding body index controlling value is A0; Between Second Region, be 20 > SBP >=10,20 > DBP >=10,20 > HP >=10,1 > BTemp >=0.5, corresponding body index controlling value is A1; The 3rd interval is 30 > SBP >=20,30 > DBP >=20,30 > HP >=20,1.5 > BTemp >=1, and corresponding body index controlling value is A2; The 4th interval is 40 > SBP >=30,40 > DBP >=20,40 > HP >=30,2 > BTemp >=1.5, and corresponding body index controlling value is A3; The 5th interval is SBP >=40, DBP >=40, HP >=40, BTemp >=2, and corresponding health body control indexes value is A4; Described comparison module is transferred the last and last body hypertension forcing up the targets (SBP), the low forcing up the targets of blood pressure (DBP), heart rate index (HP) and body temperature index (BTemp) calculated difference, and according to the interval body index controlling value of calculating separately of described benchmark body index difference, comparison module is chosen the final body index controlling value of conduct of described health controlling value sequence number maximum.For example SBP difference is 15, corresponding A 1, and DBP difference is 10, corresponding A 1, HP difference is 30, corresponding A 3, BTemp difference is 0.5, corresponding A 1, body index controlling value the maximum is A3, and corresponding interval is the 4th interval in following table, and final body index controlling value is A3.
As shown in table 2 below, described reference atmosphere index interval is 5 piecewise intervals and 5 corresponding environmental index controlling value B0, B1, B2, B3, B4, wherein the first interval is 28 >=ATemp >=18, PM < 100, and corresponding environmental index controlling value is B0; Between Second Region, be 17 >=ATemp >=12,33 >=ATemp >=29,100 < PM < 150, corresponding environmental index controlling value is B1; The 3rd interval is 11 >=ATemp >=0,36 >=ATemp >=34,150 < PM < 200, and corresponding environmental index controlling value is B2; The 4th interval is 0 > ATemp >=-10,39 >=ATemp >=37,200 < PM < 300, and corresponding environmental index controlling value is B3; The 5th interval is ATemp <-10, ATemp >=40,300 < PM < 500, and corresponding environmental index controlling value is B4; Described comparison module is transferred the last ambient temperature index (ATemp) and fine particle (PM2.5) index, and according to interval each the self-corresponding environmental index controlling value of calculating of described reference atmosphere index, in aforementioned index, one of selection environment control indexes value sequence number maximum is final environmental index controlling value.For example the last ATemp is 19 degree, corresponding B0, and PM2.5 is 250, corresponding B3, the maximum is B3, and corresponding interval is the 4th interval in following table, and corresponding environmental index controlling value is B3.
As shown in table 3 below, described benchmark dynamic indicator interval is i.e. 5 corresponding dynamic indicator controlling value C0, C1, C2, C3, the C4 of 5 piecewise intervals, and wherein the first interval is S=0 or S >=25, H=0 or H >=10000, and corresponding dynamic indicator controlling value is C0; Between Second Region, be 5 >=S > 0,400 >=H > 0, corresponding dynamic indicator controlling value is C1; The 3rd interval is 10 >=S > 5,1000 >=H > 400, and corresponding dynamic indicator controlling value is C2; The 4th interval is 15 >=S > 10,3000 >=H > 1000, and corresponding dynamic indicator controlling value is C3; The 5th interval is 25 > S > 15,10000 > H > 3000, and corresponding dynamic indicator controlling value is C4; Described comparison module is transferred the last speed index (S) and height above sea level index (H), and according to interval each the self-corresponding dynamic indicator controlling value of calculating of described benchmark dynamic indicator, of choosing dynamic indicator controlling value sequence number maximum in aforementioned index is final dynamic indicator controlling value.For example, the speed index S recording is 15, corresponding C0, and height above sea level is 4000, corresponding C4, final dynamic indicator controlling value is C4.
As shown in table 4 below, described feedback result controlling value is respectively D0, D1, D2, D3, five grades of D4, wherein: grade one is without feedback, i.e. D0=0; Grade two is luminous prompting, and D1=is luminous; Grade three is 1 audio alert, i.e. D2=pronunciation; Grade four is vibration reminding, i.e. D3=vibrations; Grade five is reminded for weak current, and D4=light current hits; Described feedback result controlling value with the corresponding relation of described body index controlling value, environmental index controlling value, the combination of dynamic indicator controlling value is: the corresponding aforementioned three item numbers certificates of D0 are the combination of A0B0C0; Corresponding described three item numbers of D1 have at least one to equal 1 according to the sequence number of A, B, C, and all the other sequence numbers are all less than 1 combination; Corresponding described three item numbers of D2 have at least one to equal 2 according to the sequence number of A, B, C, and all the other sequence numbers are all less than 2 combination; Corresponding described three item numbers of D3 have at least one to equal 3 according to the sequence number of A, B, C, and all the other sequence numbers are all less than 3 combination; Corresponding described three item numbers of D4 have at least one to equal 4 according to the sequence number of A, B, C, and all the other sequence numbers are all less than 4 combination.The body index controlling value that for example comparison module calculates is A1, and environmental index controlling value is B3, and dynamic indicator controlling value is C4, and to calculate feedback result controlling value be D4 to control module.
For example, user's wearing equipment under effective linking status also detects data by each sensor, and detection in every 30 minutes is once uploaded once.Now afternoon May 13 2014 time, 17:34 divided, and location is Shanghai, and the every body data of user is: SBP96, DBP64, HR80, BTemp37.4 degree, ATemp27 degree, PM156.These group data are uploaded to after remote server by GPRS module, system can be by these data and user Data Comparison in the past, and last data are SBP86, DBP56, HR68, BTemp36.8 degree, this time data show heart rate and body temperature slightly raise (A1), integrated environment PM2.5 value and multidate information again, system can promote feedback levels to feedback levels two (D1), and this setting is passed to wearable device and carry out feedback model renewal is set.After this, wearable device can luminous prompting user be paid close attention to condition.If after half an hour, user's body temperature rises to 37.9 degree (A2), heart rate and blood pressure also raise slightly, other environment, multidate information are constant, system can improve feedback levels again to grade three (D2), after system Lookup protocol wearable device, wearable device meeting voice message user, pays close attention to condition.The body data again receiving when system continues to change, and such as body temperature rises to 38.6 (A3) degree, system can promote feedback levels again to feedback levels four (D3), points out user, and health has gone out unusual condition.When body temperature rises to 39.5 (A4), system is promoted to the highest feedback levels five by feedback mechanism, and wearable device can send light current by electrode, is used for stimulating user, the prompting state of emergency.
An alternative embodiment of the invention is:
A kind of characteristic index feedback method as shown in Figure 1, aforesaid characteristic index feedback system detects user's body index, environmental index and dynamic indicator, and concrete steps are:
Step 1, by the body index detection module on described wearing equipment 100, with certain detection frequency, user's body index is detected, by described environmental index detection module with certain on-site environmental index of detection frequency detecting user, the dynamic indicator by described dynamic indicator detection module with certain detection frequency detecting user;
Step 2, uploads described body index, environmental index, dynamic indicator extremely data base the storage of described remote server 102 through body index, environmental index, dynamic indicator data upload link 101 respectively by described communication module;
Step 3, by described comparison module, transfer the last body index data and front body index data in data base, and before calculating, the difference of rear twice body index data, and compare with described benchmark body index difference interval, choose corresponding body index controlling value, transfer the last environmental index data in data base simultaneously, and relatively interval with described reference atmosphere index, choose corresponding environmental index controlling value, transfer the last dynamic indicator data in data base simultaneously, and relatively interval with described benchmark dynamic indicator, choose corresponding dynamic indicator controlling value,
Step 4, by described control module, receive body index controlling value, environmental index controlling value, the dynamic indicator controlling value that comparison module is chosen, and combine aforementioned three item number certificates, transfer three feedback result controlling values that combinations of values is corresponding in described data base, and by feedback result controlling value, transmit link 103 and send feedback result controlling value data, communication module on described wearing equipment 100 receives described feedback result controlling value data, and drive feedback module provides user suitably to feed back.
Aforesaid body index comprises hypertension forcing up the targets (SBP), the low forcing up the targets of blood pressure (DBP), heart rate index (HP) and body temperature index (BTemp), described environmental index comprises ambient temperature index (ATemp) and fine particle (PM2.5) index, and described dynamic indicator comprises speed index (S) and height above sea level index (H);
Described benchmark body index difference interval is 5 piecewise intervals and 5 corresponding body index controlling value A0, A1, A2, A3, A4, wherein the first interval is SBP < 10, DBP < 10, HP < 10, BTemp < 0.5, and corresponding body index controlling value is A0; Between Second Region, be 20 > SBP >=10,20 > DBP >=10,20 > HP >=10,1 > BTemp >=0.5, corresponding body index controlling value is A1; The 3rd interval is 30 > SBP >=20,30 > DBP >=20,30 > HP >=20,1.5 > BTemp >=1, and corresponding body index controlling value is A2; The 4th interval is 40 > SBP >=30,40 > DBP >=20,40 > HP >=30,2 > BTemp >=1.5, and corresponding body index controlling value is A3; The 5th interval is SBP >=40, DBP >=40, HP >=40, BTemp >=2, and corresponding body index controlling value is A4; Described comparison module is transferred the last and last body hypertension forcing up the targets (SBP), the low forcing up the targets of blood pressure (DBP), heart rate index (HP) and body temperature index (BTemp) calculated difference, and according to the interval body index controlling value of calculating separately of described benchmark body index difference, comparison module is chosen the final body index controlling value of conduct of described health controlling value sequence number maximum;
Described reference atmosphere index interval is 5 piecewise intervals and 5 corresponding environmental index controlling value B0, B1, B2, B3, B4, and wherein the first interval is 28 >=ATemp >=18, PM < 100, and corresponding environmental index controlling value is B0; Between Second Region, be 17 >=ATemp >=12,33 >=ATemp >=29,100 < PM < 150, corresponding environmental index controlling value is B1; The 3rd interval is 11 >=ATemp >=0,36 >=ATemp >=34,150 < PM < 200, and corresponding environmental index controlling value is B2; The 4th interval is 0 > ATemp >=-10,39 >=ATemp >=37,200 < PM < 300, and corresponding environmental index controlling value is B3; The 5th interval is ATemp <-10, ATemp >=40,300 < PM < 500, and corresponding environmental index controlling value is B4; Described comparison module is transferred the last ambient temperature index (ATemp) and fine particle (PM2.5) index, and according to interval each the self-corresponding environmental index controlling value of calculating of described reference atmosphere index, in aforementioned index, one of selection environment control indexes value sequence number maximum is final environmental index controlling value;
Described benchmark dynamic indicator interval is i.e. 5 corresponding dynamic indicator controlling value C0, C1, C2, C3, the C4 of 5 piecewise intervals, and wherein the first interval is S=0 or S >=25, H=0 or H >=10000, and corresponding dynamic indicator controlling value is C0; Between Second Region, be 5 >=S > 0,400 >=H > 0, corresponding dynamic indicator controlling value is C1; The 3rd interval is 10 >=S > 5,1000 >=H > 400, and corresponding dynamic indicator controlling value is C2; The 4th interval is 15 >=S > 10,3000 >=H > 1000, and corresponding dynamic indicator controlling value is C3; The 5th interval is 25 > S > 15,10000 > H > 3000, and corresponding dynamic indicator controlling value is C4; Described comparison module is for transferring the last speed index (S) and height marker (H), and calculate each self-corresponding dynamic indicator controlling value according to described benchmark dynamic indicator is interval, and to choose of dynamic indicator controlling value sequence number maximum be final dynamic indicator controlling value;
Described feedback result controlling value is respectively D0, D1, D2, D3, five grades of D4, and its middle grade one is without feedback, i.e. D0=0; Grade two is luminous prompting, and D1=is luminous; Grade three is 1 audio alert, i.e. D2=pronunciation; Grade four is vibration reminding, i.e. D3=vibrations; Grade five is reminded for weak current, and D4=light current hits;
Described feedback result controlling value with the corresponding relation of described body index controlling value, environmental index controlling value, the combination of dynamic indicator controlling value is: the corresponding aforementioned three item numbers certificates of D0 are the combination of A0B0C0; Corresponding described three item numbers of D1 have at least one to equal 1 according to the sequence number of A, B, C, and all the other sequence numbers are all less than 1 combination; Corresponding described three item numbers of D2 have at least one to equal 2 according to the sequence number of A, B, C, and all the other sequence numbers are all less than 2 combination; Corresponding described three item numbers of D3 have at least one to equal 3 according to the sequence number of A, B, C, and all the other sequence numbers are all less than 3 combination; Corresponding described three item numbers of D4 have at least one to equal 4 according to the sequence number of A, B, C, and all the other sequence numbers are all less than 4 combination.
Those of ordinary skills can change on other optional structures of envisioning and embodiment or above-described embodiment.Above-mentioned all embodiment limit the scope of the invention but be not used within all belonging to scope of the present invention.

Claims (10)

6. characteristic index feedback system as claimed in claim 5, it is characterized in that described benchmark body index difference interval is 5 piecewise intervals and 5 corresponding body index controlling value A0, A1, A2, A3, A4, wherein the first interval is SBP < 10, DBP < 10, HP < 10, BTemp < 0.5, and corresponding body index controlling value is A0; Between Second Region, be 20 > SBP >=10,20 > DBP >=10,20 > HP >=10,1 > BTemp >=0.5, corresponding body index controlling value is A1; The 3rd interval is 30 > SBP >=20,30 > DBP >=20,30 > HP >=20,1.5 > BTemp >=1, and corresponding body index controlling value is A2; The 4th interval is 40 > SBP >=30,40 > DBP >=20,40 > HP >=30,2 > BTemp >=1.5, and corresponding body index controlling value is A3; The 5th interval is SBP >=40, DBP >=40, HP >=40 or BTemp >=2, and corresponding body index controlling value is A4; Described comparison module is for transferring described data base the last and last hypertension forcing up the targets (SBP), the low forcing up the targets of blood pressure (DBP), heart rate index (HP) and body temperature index (BTemp) calculated difference, and calculate body index controlling value separately according to described benchmark body index difference interval, and choose the final body index controlling value of conduct of described health controlling value sequence number maximum.
Described reference atmosphere index interval is 5 piecewise intervals and 5 corresponding environmental index controlling value B0, B1, B2, B3, B4, and wherein the first interval is 28 >=ATemp >=18, PM < 100, and corresponding environmental index controlling value is B0; Between Second Region, be 17 >=ATemp >=12,33 >=ATemp >=29,100 < PM < 150, corresponding environmental index controlling value is B1; The 3rd interval is 11 >=ATemp >=0,36 >=ATemp >=34,150 < PM < 200, and corresponding environmental index controlling value is B2; The 4th interval is 0 > ATemp >=-10,39 >=ATemp >=37,200 < PM < 300, and corresponding environmental index controlling value is B3; The 5th interval is ATemp <-10, ATemp >=40,300 < PM < 500, and corresponding environmental index controlling value is B4; Described comparison module is for transferring described data base the last ambient temperature index (ATemp) and fine particle (PM2.5) index, and calculate each self-corresponding environmental index controlling value according to described reference atmosphere index is interval, and of selection environment control indexes value sequence number maximum is final environmental index controlling value.
Described benchmark dynamic indicator interval is i.e. 5 corresponding dynamic indicator controlling value C0, C1, C2, C3, the C4 of 5 piecewise intervals, and wherein the first interval is S=0 or S >=25 or H=0 or H >=10000, and corresponding dynamic indicator controlling value is C0; Between Second Region, be 5 >=S >, 0 or 400 >=H > 0, corresponding dynamic indicator controlling value is C1; The 3rd interval is 10 >=S >, 5 or 1000 >=H > 400, and corresponding dynamic indicator controlling value is C2; The 4th interval is 15 >=S >, 10 or 3000 >=H > 1000, and corresponding dynamic indicator controlling value is C3; The 5th interval is 25 > S > 15 or 10000 > H > 3000, and corresponding dynamic indicator controlling value is C4; Described comparison module is for transferring the last speed index (S) and height marker (H), and calculate each self-corresponding dynamic indicator controlling value according to described benchmark dynamic indicator is interval, and to choose of dynamic indicator controlling value sequence number maximum be final dynamic indicator controlling value.
8. characteristic index feedback system as claimed in claim 7, is characterized in that described feedback result controlling value with the corresponding relation of described body index controlling value, environmental index controlling value, the combination of dynamic indicator controlling value is: the corresponding aforementioned three item numbers certificates of D0 are the combination of A0B0C0; Corresponding described three item numbers of D1 have at least one to equal 1 according to the sequence number of A, B, C, and all the other sequence numbers are all less than 1 combination; Corresponding described three item numbers of D2 have at least one to equal 2 according to the sequence number of A, B, C, and all the other sequence numbers are all less than 2 combination; Corresponding described three item numbers of D3 have at least one to equal 3 according to the sequence number of A, B, C, and all the other sequence numbers are all less than 3 combination; Corresponding described three item numbers of D4 have at least one to equal 4 according to the sequence number of A, B, C, and all the other sequence numbers are all less than 4 combination.
Described benchmark body index difference interval is 5 piecewise intervals and 5 corresponding body index controlling value A0, A1, A2, A3, A4, wherein the first interval is SBP < 10, DBP < 10, HP < 10, BTemp < 0.5, and corresponding body index controlling value is A0; Between Second Region, be 20 > SBP >=10,20 > DBP >=10,20 > HP >=10,1 > BTemp >=0.5, corresponding body index controlling value is A1; The 3rd interval is 30 > SBP >=20,30 > DBP >=20,30 > HP >=20,1.5 > BTemp >=1, and corresponding body index controlling value is A2; The 4th interval is 40 > SBP >=30,40 > DBP >=20,40 > HP >=30,2 > BTemp >=1.5, and corresponding body index controlling value is A3; The 5th interval is SBP >=40, DBP >=40, HP >=40, BTemp >=2, and corresponding body index controlling value is A4; Described comparison module is transferred the last and last body hypertension forcing up the targets (SBP), the low forcing up the targets of blood pressure (DBP), heart rate index (HP) and body temperature index (BTemp) calculated difference, and according to the interval body index controlling value of calculating separately of described benchmark body index difference, comparison module is chosen the final body index controlling value of conduct of described health controlling value sequence number maximum;
Described reference atmosphere index interval is 5 piecewise intervals and 5 corresponding environmental index controlling value B0, B1, B2, B3, B4, and wherein the first interval is 28 >=ATemp >=18, PM < 100, and corresponding environmental index controlling value is B0; Between Second Region, be 17 >=ATemp >=12,33 >=ATemp >=29,100 < PM < 150, corresponding environmental index controlling value is B1; The 3rd interval is 11 >=ATemp >=0,36 >=ATemp >=34,150 < PM < 200, and corresponding environmental index controlling value is B2; The 4th interval is 0 > ATemp >=-10,39 >=ATemp >=37,200 < PM < 300, and corresponding environmental index controlling value is B3; The 5th interval is ATemp <-10, ATemp >=40,300 < PM < 500, and corresponding environmental index controlling value is B4; Described comparison module is transferred the last ambient temperature index (ATemp) and fine particle (PM2.5) index, and according to interval each the self-corresponding environmental index controlling value of calculating of described reference atmosphere index, in aforementioned index, one of selection environment control indexes value sequence number maximum is final environmental index controlling value;
Described benchmark dynamic indicator interval is i.e. 5 corresponding dynamic indicator controlling value C0, C1, C2, C3, the C4 of 5 piecewise intervals, and wherein the first interval is S=0 or S >=25, H=0 or H >=10000, and corresponding dynamic indicator controlling value is C0; Between Second Region, be 5 >=S > 0,400 >=H > 0, corresponding dynamic indicator controlling value is C1; The 3rd interval is 10 >=S > 5,1000 >=H > 400, and corresponding dynamic indicator controlling value is C2; The 4th interval is 15 >=S > 10,3000 >=H > 1000, and corresponding dynamic indicator controlling value is C3; The 5th interval is 25 > S > 15,10000 > H > 3000, and corresponding dynamic indicator controlling value is C4; Described comparison module is transferred the last speed index (S) and height marker (H), and calculate each self-corresponding dynamic indicator controlling value according to described benchmark dynamic indicator is interval, and to choose of dynamic indicator controlling value sequence number maximum be final dynamic indicator controlling value;
Described feedback result controlling value with the corresponding relation of described body index controlling value, environmental index controlling value, the combination of dynamic indicator controlling value is: the corresponding aforementioned three item numbers certificates of D0 are the combination of A0B0C0; Corresponding described three item numbers of D1 have at least one to equal 1 according to the sequence number of A, B, C, and all the other sequence numbers are all less than 1 combination; Corresponding described three item numbers of D2 have at least one to equal 2 according to the sequence number of A, B, C, and all the other sequence numbers are all less than 2 combination; Corresponding described three item numbers of D3 have at least one to equal 3 according to the sequence number of A, B, C, and all the other sequence numbers are all less than 3 combination; Corresponding described three item numbers of D4 have at least one to equal 4 according to the sequence number of A, B, C, and all the other sequence numbers are all less than 4 combination.
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