CN101284616A - Power control device of elevator car - Google Patents

Power control device of elevator car Download PDF

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Publication number
CN101284616A
CN101284616A CNA2008100870729A CN200810087072A CN101284616A CN 101284616 A CN101284616 A CN 101284616A CN A2008100870729 A CNA2008100870729 A CN A2008100870729A CN 200810087072 A CN200810087072 A CN 200810087072A CN 101284616 A CN101284616 A CN 101284616A
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China
Prior art keywords
lift car
power control
car
storage device
electrical storage
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CNA2008100870729A
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CN101284616B (en
Inventor
吉川敏文
藤野笃哉
中塚康弘
荒川淳
绫野秀树
森和久
稻叶博美
村冈一史
松原正裕
岸川孝生
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Hitachi Ltd
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Hitachi Ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B50/00Energy efficient technologies in elevators, escalators and moving walkways, e.g. energy saving or recuperation technologies

Abstract

The invention provides a power control device for an elevator cage, which is provided with a storage cell (34) installed on the elevator cage (1) and an air conditioner installed on the elevator cage with power supplied by the storage cell, and is provided with a cage power control unit (a cage power control device 2) for adjusting operation output of the air conditioner (11) according to the needed floor of a user when the residual charge capacity of the storage cell (34) is less than a specified surplus. Specifically, the invention alters output of the air condition according to a needed floor with the characteristic that requirement of air conditioner control alters along with alternation of the needed floor of the user. Therefore, the power control device of the elevator cage is capable of removing after line of the elevator, or lightening the after line, and the invention is capable of accomplishing essential design items for removing and lightening the after line, so as to reduce capacity of the storage cell installed on the elevator cage, and save unnecessary part for consumed power by electric installation such as the air conditioner and the luminous device, so that the invention is capable of inhibiting power consumption.

Description

The power control apparatus of lift car
Technical field
The present invention relates to the power control apparatus of a kind of lift car (エ レ ベ one ?り か ご), relate to specifically a kind of to the electrical equipment that is installed in air conditioner, illumination equipment and lift car door drive etc. in the lift car and storage battery etc. power consumption and discharge and recharge the lift car power control apparatus that power is controlled.
Background technology
The power consumption cable that is connected between lift car and the control panel is commonly called stern fast (Tailcord) or removal cable (Traveling Cable) etc.
The length of this stern fast in the elevator of high building reaches more than hundreds of rice, and the increase of its weight is a problem.And, in the very large violent earthquake of earthquake degree etc., come in contact because of rocking the equipment that may cause in stern fast and the hoist trunk.
For this reason, disclosed numerous patented technologies relevant with the elevator that does not use stern fast, it is by installing storage battery in the lift car side, by storage battery to being installed in electrical equipment power supplies such as air conditioner on the lift car and illumination, so that can not use stern fast.
The target of above-mentioned patented technology is how to reduce the capacity of the storage battery of setting up because of no stern fastization, perhaps how to prevent the situation that the charging of storage battery is used up fully.For example, the relevant technology of a kind of and no stern fast elevator is disclosed in patent documentation 1, in this elevator, by by be pressed on the guide rail driving rolls with the kinergety of elevator be transformed into the electrical generator of electric flux, the non-contact power supply device and the storage battery of with contactless state lift car being powered at the elevator parking floor is installed on the lift car respectively, when elevator travels, power to lift car by electrical generator, and when elevator parking, power to lift car by the non-contact power supply device.According to this technology, can reduce the capacity (for example, with reference to patent documentation 1) of storage battery.
In addition, the relevant technology of a kind of and no stern fast elevator is for example disclosed in patent documentation 2, in this elevator, on lift car and bob-weight, storage battery has been installed, and has the non-contact power supply device of when lift car is stopped certain floor, storage battery being powered with non-contacting form, when the residual capacity of storage battery when specified value is following, lift car is moved to be provided with the certain floor of non-contact power supply device.According to this technology, can reduce the possibility that battery is used up fully.(for example, with reference to patent documentation 2).
In addition, numerous patented technologies relevant have also been disclosed with how reducing consumed power, the target of this technology is to suppress the consumed power that air conditioner and illumination etc. are installed in the electrical equipment on the lift car, especially suppresses the consumed power of the big air conditioner of consumed power.
For example, the relevant technology of control a kind of and the air conditioner for elevator machine is disclosed in patent documentation 3, it has the storage battery that is installed on the lift car with to the air conditioner power supply, at each floor by the building power supply to the device of the air conditioner of lift car power supply and by switching to any the shifter in storage battery or the building power supply to the electric supply installation of air conditioner power supply, when lift car carries out between floor when mobile, power and the consumed power of air conditioner is controlled at minimum value to air conditioner by storage battery, and when lift car rests in each floor, power and the consumed power of air conditioner is controlled to be maxim to air conditioner by the building power supply.According to this technology, comprise the consumed power of the drive system that lift car is driven, can suppress elevator single-piece maximum consumption power (for example, with reference to patent documentation 3).
In addition, the relevant technology of action control a kind of and lift car usefulness air conditioner is for example disclosed in patent documentation 4, it has and detects in the lift car with the device of the elevator number of users at each floor elevator lobby place, a lot of floor of number of users is analyzed with the relevant time period and device of learning and the device that the comfort level of this time period is calculated, and according to analyzing and the result of study, according to the time period being of the action of the comfort level before control lift car that calculates of unit with air conditioner.According to this technology, can the passenger be felt under the uncomfortable situation with suitable operating efficiency control air conditioner (for example, with reference to patent documentation 4).
And, for example in patent documentation 5, disclose a kind of with regulate the relevant patented technology of the air output of interior environment system in lift car, it wants to take advantage of passenger into elevator by detection, regulates the air output of blowing in lift car from interior environment system.Specifically, be when not having the passenger, make the air conditioner of lift car out of service for saving in energy, and take advantage of into during lift car having detected the passenger, make air conditioner be the high wind pattern from the stop mode starting, by this control, can make the passenger feel nice and cool (for example, with reference to patent documentation 5).
Patent documentation 1 spy opens flat 5-294568 communique
The patent documentation 2 international communiques that disclose No. 2002/057171
Patent documentation 3 spies open the 2002-211845 communique
Patent documentation 4 spies open flat 9-151042 communique
Patent documentation 5 spies open the 2001-328771 communique.
Summary of the invention
But,, in order to obtain cutting down the electric energy generated of accumulator capacity, then need to increase the driving rolls of electrical generator, and a plurality of electrical generators be set according to described patent documentation 1 disclosed technology.If when the rating horsepower of the air conditioner of lift car more for example reaches several kW, the capacity of storage battery also will reach this rank of kWh, and cause the scale of storage battery to increase.
As cutting down this capacity, then need to increase the electric energy generated of electrical generator, and in order to improve generated output, the quantity that needs to use big electrical generator and need to increase electrical generator.In addition,, need add good general's driving rolls, and the friction of driving rolls is strengthened, and cause the speed of lift car to reduce by the strength that is pressed on the guide rail in order to reduce skidding of driving rolls.For fear of the generation of this situation, need to increase the winch of the electrical motor that is used to drive lift car etc. and the rating horsepower of inverter, to increase horsepower output.Its result, because the increasing of the scale of winch and inverter, so the problem that existence can cause the scale of whole elevator device to strengthen.And, because a plurality of high-performance electrical generators need be set, so also existence can cause manufacturing cost to increase and the problem of the weight increase of lift car etc.In addition, also can produce noise because of the friction between driving rolls and the guide rail.Therefore, be difficult to reduce significantly the capacity of storage battery.
In addition, according to patent documentation 2 disclosed technology, when the surplus of storage battery reduces, when the surplus that perhaps predicts storage battery will reduce, the floor standby that lift car is driven to be provided with charging unit.For example, if the non-contact power supply device is arranged on the lobby floor in the 1st building etc., then in time period that people go out to have lunch or next time period etc., when each floor of high-rise portion has taken place to go to the elevator lobby calling of lobby floor, because lift car need spend considerable time in the lobby floor standby so elevator drives to high-rise elevator lobby calling genetic horizon at this moment.For this reason, can cause passenger's wait time elongated.
The elevator in especially high-rise zone (when for example the elevator parking floor is set in the 1st building and the 30th buildings to the 40th buildings) is because lobby floor is very long with distance between other floor, so this problem is more for seriously.In addition, if for fear of this situation occurring, and for example when a plurality of floors are provided with a plurality of non-contact power supply device respectively,, also can increase the reconstruction cost of building except meeting causes the cost of device increases.For fear of above-mentioned 2 kinds of situations occurring, its result has to increase the capacity of storage battery.
In addition, according to patent documentation 3 disclosed technology,, need a considerable amount of electric supply installations be set in the building side in order to reduce the capacity that is installed in the storage battery on the lift car.According to the record of patent documentation 3, be at each storey setting electric supply installation, for example at the electric supply installation of each storey setting lift car in the building of 10 floors, then its cost (installation cost and building reconstruction cost) will become very big.In addition, owing to need carry out the maintenance of electric supply installation at each floor, so also need to spend corresponding labour power.On the other hand, if reduce the quantity of electric supply installation, then reduce, thereby need to strengthen the capacity that is installed in the battery on the lift car owing to carrying out electrically-charged chance, its result can cause the weight of lift car to increase, and makes the scale of whole elevator device increase.
Except the problem of above-mentioned storage battery aspect, owing to all the output of air conditioner is set at maxim when resting in the regulation floor at every turn, so may appear under the situation that does not need strong air-supply, the situation that air conditioner still moves with strong air supply pattern, like this, may can make the passenger who takes advantage of into elevator feel uncomfortable on the contrary because of strong air-conditioning output.
In addition, according to patent documentation 4 disclosed technology, in the more rush hour section of number of users, owing to be necessary to keep traveling comfort, and need the long-time horsepower output that strengthens air conditioner, for this reason, cause consumed power to increase possibly.In addition, because learning data belongs to the supposition of statistical, so not necessarily always match with the actual condition of service of at that time elevator.For example,, a lot of passengers are always arranged not necessarily also in the lift car even in the busy time period, and a lot of through the passenger of regular meeting's generation up direction, but the passenger of down direction is zero situation.At this moment,, just make air conditioner maintain high output without exception, just might cause waste if set for so long as be in rush hour section.
Its result, from storage battery when air conditioner is powered, may cause the charge capacity of storage battery that deficiency takes place halfway.In addition, when exception takes place, for example hold convention etc. when movable, when this activity begins and when finishing etc., it is very busy that the use of elevator can become, but owing to can't predict by learning data, so possibly can't accomplish suitable control is carried out in the output of air conditioner.
In addition, according to patent documentation 5 disclosed technology, in the busy time period, owing to the passenger is arranged always at elevator up and down, so may cause air conditioner always with the high wind mode operation.In addition, though few at the number of users of elevator at ordinary times, owing between each floor, there is the passenger who moves up and down,, like this, may cause air conditioner to move with the high wind pattern so have passenger's elevator up and down always at each floor always.Its result because the horsepower output of air conditioner increases, from storage battery when air conditioner is powered, may cause the charge capacity of storage battery that deficiency takes place halfway.
As mentioned above, according to above-mentioned patent documentation 1~5 disclosed technology, when the enforcement elevator does not have stern fast, though can reduce the capacity that is installed in the storage battery on the elevator, but the apparatus structure that whole elevator device may occur increases, and perhaps causes elevator passenger in the new problem of the elongated grade of the wait time of elevator lobby.Therefore, when adopting said method, can bring very big harmful effect to others, and be difficult to substantially reduce the capacity of storage battery.
In addition, aspect the consumed power of the air conditioner that suppresses lift car, also be difficult to be implemented in simultaneously according to the passenger's of lift car situation and require air conditioner is carried out suitable control, and the unnecessary output action of eliminating this air conditioner is with these two targets of power of inhibiting consumption.Its result if adopt above-mentioned technology in the air conditioner control of the elevator of no stern fastization, then is difficult to reduce the capacity that is installed in the storage battery on the lift car.Therefore, above-mentioned various technology all are difficult to substantially reduce the capacity of storage battery, thereby can't avoid the weight of storage battery to increase, and can offset the lightweight effect that no stern fastization is brought.
The present invention makes in order to address the above problem, the object of the present invention is to provide a kind of power control apparatus of lift car, the power control apparatus of this lift car not only can be realized the no stern fastization of elevator, perhaps realize the lightweight of stern fast, but also the significant design item can realize not having stern fastization and stern fast lightweight the time, promptly can reduce to be installed in the capacity of the storage battery on the lift car, the unnecessary part in the consumed power of electrical equipments such as interior environment system and illumination equipment can be saved, thereby consumed power can be suppressed.
To achieve these goals, the power control apparatus of the 1st lift car that the aspect is related of the present invention is constituted as, be arranged on the storage battery on the lift car and accept in the elevator of battery-driven interior environment system having, when the residual quantity of electricity accumulation of storage battery is in the regulation surplus when following, the operation output of air conditioner is regulated according to taking advantage of of passenger into floor.For this reason, can utilize each to take advantage of output into the desired air conditioner of floor this characteristic that has nothing in common with each other, according to passenger's the output that changes air conditioner into floor of taking advantage of.
In addition, the power control apparatus of the 2nd lift car that the aspect is related of the present invention is constituted as, electric supply installation in having the regulation floor that is arranged on building building side, be arranged on the lift car, when lift car is stopped this regulation floor, can accept the storage battery of electric supply installation power supply and be arranged on the lift car, can accept storage battery power supply, and when stopping the regulation floor, lift car can also accept in the elevator of interior environment system of electric supply installation power supply, by control, can make when lift car is stopped the regulation floor, increase the operation output of the interior environment system of lift car, and to make the discharge current of storage battery be zero.
By carrying out above-mentioned control, owing to can utilize the power supply of building power supply at the regulation floor that is provided with electric supply installation, so increase the output of air conditioner, regulate the interior temperature of lift car at short notice so that can maximally utilise this building power supply, on the other hand, by the discharge current that makes storage battery at this moment is zero, and can suppress the output of storage battery.
In addition, the power control apparatus of the 3rd lift car that the aspect is related of the present invention is constituted as, be arranged on the storage battery on the lift car and be arranged on the lift car and accept in the elevator of battery-driven illumination equipment having, when the number in the lift car is zero, the output of the illumination equipment of lift car is regulated according to the residual quantity of electricity accumulation of storage battery.Because the illumination in the lift car there is no need to carry out the illumination of high brightness when having no talent in lift car, so, can regulate the output of the illumination in the lift car according to the residual quantity of electricity accumulation of storage battery by carrying out above-mentioned control.
In addition, the power control apparatus of the 4th lift car that the aspect is related of the present invention is constructed to, be arranged on the storage battery on the lift car and be arranged on the lift car and accept battery-driven air conditioner having, the car position read out instrument, illumination equipment, the lift car door drive, the elevator that is used for the intercom phone device between lift car and outside, got in touch with, when the residual quantity of electricity accumulation of storage battery when specified value is following, power control apparatus by lift car is controlled, send whether install the instruction of power supply according to the residual quantity of electricity accumulation of storage battery, so that according to air conditioner to each, the car position read out instrument, illumination equipment, the order of lift car door drive and intercom phone device stops the power supply to each device.
Thus, in residual quantity of electricity accumulation deficiency owing to storage battery, and when having to stop each device power supply in lift car, can be according to residual quantity of electricity accumulation, more favourable above-mentioned order stops the power supply to each electrical equipment in the lift car with the passenger in lift car.
In addition, the power control apparatus of the 5th lift car that the aspect is related of the present invention is constituted as, electric supply installation in having the regulation floor that is arranged on building building side, be arranged on the lift car, when stopping the regulation floor, lift car accepts the 1st storage battery of electric supply installation power supply, be arranged on the lift car equally, when stopping the regulation floor, lift car accepts the 2nd storage battery of electric supply installation power supply, be arranged on the lift car, power by the 1st storage battery and the 2nd storage battery, and when stopping the regulation floor, car can also directly accept in the elevator of the air conditioner of electric supply installation power supply and illumination equipment, by control, make residual quantity of electricity accumulation when the 1st storage battery when stipulating that surplus is following, the discharge current of the 1st storage battery is suppressed at below the rated current, when lift car does not rest in the regulation floor, power to air conditioner and illumination equipment by the 1st storage battery and the 2nd storage battery, when lift car rests in the regulation floor, the 2nd storage battery is charged by electric supply installation.
By as above-mentioned control, the 1st storage battery main power source as each device power supply in lift car can be used, and when the residual quantity of electricity accumulation deficiency of the 1st storage battery, the 2nd storage battery be used as accessory feed.Though owing to selected the little but battery that can carry out fast charging and discharging of capacity as the 2nd storage battery, so, when stopping the regulation floor, lift car accepts fast charge by making the 2nd storage battery from electric supply installation, and discharging the deficiency that can replenish the 1st storage battery by the 2nd storage battery just At All Other Times.
In addition, the power control apparatus of the 6th lift car that the aspect is related of the present invention is constituted as, have on the lift car of being arranged on, accept by electric wireline building building side power supply power supply storage battery and be installed on the lift car, can accept storage battery power supply, and also can be from the elevator of the electrical equipment that comprises air conditioner and illumination equipment etc. of the power supply acceptance power supply of building building side by electric wireline, by control, make in the charging duration section of storage battery, by the power supply of electric wireline storage battery is charged from building building side, and in the time period beyond the charging duration section of storage battery, from storage battery and by electric wireline this two side of power supply from building building side electrical equipment is powered.
By as above controlling, storage battery is charged from the building power supply by electric wireline in the charging duration section that can wait at night, wait in the time period of electrical equipment work by day, by the electrical equipment discharge of storage battery in lift car, also can power to electrical equipment by electric wireline by the building power supply.
According to the present invention, a kind of power control apparatus of lift car can be provided, the power control apparatus of this lift car not only can be realized the no stern fastization of elevator, perhaps realize the lightweight of stern fast, but also the significant design item can realize not having stern fastization and stern fast lightweight the time, promptly can reduce to be installed in the capacity of the storage battery on the lift car, can save the unnecessary part in the consumed power of electrical equipments such as interior environment system and illumination equipment, thereby can suppress consumed power.
Description of drawings
Fig. 1 is the integral structure figure of the elevator device quoted for the ease of the power control apparatus to the related lift car of first embodiment of the present invention describes.
Fig. 2 is the diagram of block of expression car shown in Figure 1 with the inner structure of Power Control Unit.
Fig. 3 describes and the diagram of circuit quoted for the ease of the action to the power control apparatus of the related lift car of first embodiment of the present invention.
Fig. 4 is the illustration figure that the air conditioner quoted for the ease of the action to the power control apparatus of the related lift car of first embodiment of the present invention describes is regulated the input-output characteristic of pattern.
Fig. 5 is other illustration figure that the air conditioner quoted for the ease of the action to the power control apparatus of the related lift car of first embodiment of the present invention describes is regulated the input-output characteristic of pattern.
Fig. 6 describes and the diagram of circuit quoted for the ease of the action to the power control apparatus of the related lift car of first embodiment of the present invention.
Fig. 7 is the integral structure figure of the no stern fast elevator device quoted for the ease of the power control apparatus to the related lift car of second embodiment of the present invention describes.
Fig. 8 describes and the diagram of circuit quoted for the ease of the action to the power control apparatus of the related lift car of second embodiment of the present invention.
Fig. 9 describes and the illustration figure of the air conditioner adjustment factor of the building electric source modes quoted for the ease of the action to the power control apparatus of the related lift car of second embodiment of the present invention.
Figure 10 is the diagram of block of inner structure of the power control apparatus (car Power Control Unit) of the related lift car of expression the 3rd embodiment of the present invention.
Figure 11 describes and the diagram of circuit quoted for the ease of the action to the power control apparatus of the related lift car of the 3rd embodiment of the present invention.
Figure 12 describes and the diagram of circuit quoted for the ease of the action to the power control apparatus of the related lift car of the 4th embodiment of the present invention.
Figure 13 describes and the diagram of circuit quoted for the ease of the action to the power control apparatus of the related lift car of the 4th embodiment of the present invention.
Figure 14 is the integral structure figure of the elevator device of use the 2nd storage battery quoted for the ease of the power control apparatus to the related lift car of the 5th embodiment of the present invention describes.
Figure 15 describes and the diagram of circuit quoted for the ease of the action to the power control apparatus of the related lift car of the 5th embodiment of the present invention.
Figure 16 describes and the diagram of circuit quoted for the ease of the action to the power control apparatus of the related lift car of the 5th embodiment of the present invention.
Figure 17 is the integral structure figure of the elevator device that is made of the light weight stern fast quoted for the ease of the power control apparatus to the related lift car of the 6th embodiment of the present invention describes.
Figure 18 is the diagram of block that the power of the related lift car of expression the 6th embodiment of the present invention is controlled the structure of relevant portion.
Figure 19 describes and the diagram of circuit quoted for the ease of the action to the power control apparatus of the related lift car of the 6th embodiment of the present invention.
Figure 20 describes and the state diagram quoted for the ease of the power control apparatus to the lift car of the 6th embodiment of the present invention.
Nomenclature
1 lift car
2 car Power Control Unit
3 car electric supply installations
11 air conditioners
12 illumination equipments
13 car position read out instruments
14 electronic guiding devices
15 elevator door apparatus
16 intercom phones
Temperature sensor in 17 cars
Illuminance transducer in 18 cars
20 building side power supplys
34 storage batterys
34S the 2nd storage battery
35 accumulator control devices
35S the 2nd accumulator control device
70 light weight stern fasts
201 car air-conditionings instruction setting section
Part is regulated in the instruction of 202 air-conditionings
203 air-conditioning control command conversion fractions
204 master mode judgment parts
205 air-conditionings instruction regulated quantity arithmetic section (air conditioner adjusting pattern)
206 air-conditionings instruction regulated quantity arithmetic section (building electric source modes)
207 storage battery control command setting sections
The specific embodiment
Below each embodiment of the present invention is described, at first, the integral structure of elevator device and the relation between each embodiment are carried out simple declaration.
Air conditioner, illumination equipment are installed in lift car, be used to drive elevator cab door electrical motor, inverter, car position telltale, be used for the electrical equipments such as intercom phone between lift car and outside, got in touch with, these electrical equipments need electric supply installation that it is powered.In existing elevator,, directly above-mentioned electrical equipment is powered from control panel (belonging to the building power supply) by with lift car and be arranged on the power supply that control panel bonded assembly in the top Machine Room, building etc. is referred to as stern fast and use cable with communicating by letter.Because the electric wire of this stern fast part is made by steel, so cable is long more, then to account for elevator single-piece proportion also big more for its weight.With stroke is that building about 400~500 meters is an example, and the weight of stern fast may reach and the cooresponding weight of lift car.In addition, when causing stern fast to rock because of earthquake etc., the equipment case of collision in stern fast and the hoist trunk might take place.For this reason, especially in the elevator of long travel, be necessary to realize no stern fastization, perhaps make the stern fast lightweight.
When carrying out above-mentioned no stern fast, for example can adopt storage battery is installed on lift car, with the method for powering by this storage battery.But, when this type of service, because can not be always to battery charge, and can only charge in the section sometime, discharge for a long time afterwards, thus be necessary to increase charging capacity (charge capacity), thus might cause weight to increase.If like this, even realized no stern fastization, the weight of storage battery as an alternative also may surpass the weight of stern fast, thereby sees from total system and can't obtain useful effect, therefore, is necessary to reduce as much as possible the capacity of storage battery.In addition, because the unit capacity cost height of storage battery, and may need change storage battery because of the problem in service life, so preferably reduce the capacity of storage battery as much as possible.
In order to reduce the capacity of storage battery as much as possible, provide a kind of power control apparatus of lift car at this, the power control apparatus of this lift car can carry out appropriate managerial and control to the power of electrical equipment in the lift car and storage battery.
At first, know by inquiry that the ratio that is installed in the rating horsepower of the various electrical equipments on the lift car is roughly, air conditioner is 75%, and illumination is 15%, and elevator door driving device is 5%, and other is 5%, and wherein the ratio of air conditioner is the highest.
For this reason, the related lift car of first embodiment of the invention is configured to by control with power control apparatus, the horsepower output of air conditioner is suppressed in the suitable scope, to reduce the capacity of storage battery.Fig. 1 to Fig. 6 represents the content that it is detailed.In addition, the related lift car of first embodiment also can be used in existing elevator device with stern fast with power control apparatus, by using the power control apparatus of first embodiment, can access energy-saving effect.
In addition, electrical equipment in the lift car is powered can not only using storage battery, but also the power supply that can utilize the building side by the power supply of preferential use building side, can reduce the power consumption of storage battery when the electrical equipment in the lift car is powered.This is the related invention of power control apparatus of the lift car in the second embodiment of the invention.Concrete method is, if in a certain floor (for example lobby floor), be provided with storage battery carried out electrically-charged device, then, make and when lift car is stopped this floor, directly the electrical equipment in the lift car is powered from the building power supply by charging unit by control.Power control apparatus to the related lift car of second embodiment in Fig. 1 to Fig. 3 and Fig. 7 to Fig. 9 is described.
Electrical equipment beyond the air conditioner in the lift car also is the same, for example as illumination equipment and electronic guiding device devices such as (being referred to as electronic guiding device) at this guiding device of powering that has that will be used to lift car is successfully moved up and down with the acceptance such as device, magnetic guide boot and driving guide roller of wheel similar action, owing to can regulate its operation output according to the actual state of this device, so can reduce the capacity of storage battery.This is the related invention of power control apparatus of the lift car in the third embodiment of the invention.In Figure 10 to Figure 11, it is had been described in detail.
On the other hand, when reducing the capacity of storage battery, the worst situation occurs, be necessary to establish the processing method when the residual quantity of electricity accumulation deficiency has taken place in order to guard against.At this moment, in order to adapt with remaining charge capacity, can consider to adopt the method that various electrical equipments are stopped, and the related invention of the power control apparatus of the lift car in the four embodiment of the invention is exactly the invention that with suitable order various electrical equipments is stopped as mentioned above.In Figure 12 and Figure 13, it is had been described in detail.
In addition, storage battery is divided into main storage battery and subsidiary battery is provided with, be responsible at ordinary times the electrical equipment in the lift car being powered by main storage battery, just in case when under-charge has taken place in main storage battery, power by subsidiary battery as wrecking equipment, to avoid taking place the situation of electricity shortage, what relate to this invention is the power control apparatus of the lift car of the 5th embodiment.At this, use the storage battery that can carry out fast charging and discharging as subsidiary battery, thus, resting in to carry out electrically-charged floor the time, can carry out fast charge, and repeat discharge for auxiliary main storage battery in that situation in addition is next, like this, can in section sometime, remedy the deficiency of main storage battery.In Figure 14 to Figure 16, it is had been described in detail.
Except not having stern fastization, it is also conceivable that electric current is limited in the small range, can reduce the diameter of the electric wireline part in the stern fast thus, thereby realize the lightweight of stern fast.
Concrete method is, by stern fast the storage battery that is installed on the lift car charged from the building power supply with little electric current at night, by storage battery and this dual mode of stern fast the car power apparatus powered by day.At this moment, can realize the lightweight of stern fast, and, owing to also can utilize stern fast to power by day, therefore can reduce the capacity that is installed in the storage battery on the lift car.What relate to this invention is the power control apparatus of the lift car of the 6th embodiment of the present invention.In Figure 17 to Figure 20, it is had been described in detail.
Below, respectively first embodiment of the present invention, second embodiment, the 3rd embodiment, the 4th embodiment, the 5th embodiment and the 6th embodiment are elaborated.
First embodiment
Fig. 1 is the integral structure figure of the related elevator device of first embodiment of the present invention.
In Fig. 1, Y2 represents the building building, and Y1 represents the hoist trunk space of elevator, and lift car 1 carries out moving of above-below direction in hoist trunk space Y 1.Having air conditioner 11, illumination equipment 12, car position telltale 13, electronic guiding device 14 in the lift car 1 (is used to make lift car 1 along the device of having of successfully moving up and down of guide rail with the wheel similar action, be also referred to as guide boot and guide roller, this device is worked under the situation of accepting power supply), the electrical equipment of elevator door apparatus 15 (being used to drive the electrical motor and the inverter of elevator cab door) and intercom phone 16 etc.
In existing elevator, this electrical equipment 11~16 is directly accepted power supply from the building power supply by the electric wireline in the stern fast, then accepts the power supply of storage battery 34 at this.Storage battery 34 is 2 primary cells that can discharge and recharge, and for example can be made of double layer capacitor and cond etc.
Specifically, be that direct current (DC) with storage battery (is transformed to galvanic device with direct current (DC) by DC/DC changer 33, it has the function that the vdc that makes storage battery boosts) boost after, power to various electrical equipments 11~16 after being transformed to AC power by inverter 36.At this, DC/DC changer 33 is by accumulator control device 35 controls.Accumulator control device 35 can make storage battery 34 discharges or charging by the voltage and current of DC/DC changer 33 is controlled.
Storage battery 34 is charged as power supply by building side power supply 20, (be used for direct current (DC) is transformed to high-frequency alternating current by changer 21 (being used for alternating current is transformed to direct current (DC)), the inverter 22 that is arranged in the hoist trunk Y1, be transformed to high frequency power for the efficient that improves voltage transformer) and power with voltage transformer 23 (Tr), and charge with voltage transformer 31, changer 32 and 33 pairs of storage batterys 34 of DC/DC changer by the power supply that is arranged on the lift car side.
The discharge that comprises the charging undertaken by building side power supply 20, various electrical equipments 11~16 are carried out and by discharging and recharging of carrying out of storage battery 34 etc., the power supply of lift car is implemented by changer 32, inverter 36, DC/DC changer 33, storage battery 34 and accumulator control device 35, and these devices are generically and collectively referred to as car electric supply installation 3.
The voltage transformer 23 of hoist trunk Y1 side and the voltage transformer 31 of lift car side have adopted the structure that can carry out non-contact power by magnetic coupling, in lift car 1 rests in hoist trunk Y1 be provided with the floor of charging unit (following voltage transformer 23, inverter 22 and changer 21 are generically and collectively referred to as charging unit in the hoist trunk) time, voltage transformer 31 and voltage transformer 23 are approaching mutually, interval between the two for example in number cm, can power from building side direction lift car under non-contacting state thus.Be provided with the frequent floor of stopping of the preferred elevator of floor of charging unit, for example, preferred lobby floor.More than to the various electrical equipments 11~16 in the lift car and use the method that storage battery 34 powers to various electrical equipments 11~16 and carry out electrically-charged method and be illustrated to storage battery 34.
What be used to control the power supply between this each electrical equipment 11~16 and the storage battery 34 and be subjected to electricity relation is car usefulness Power Control Unit 2 as " car power control unit " of the present invention.
Car can be to sending controling instructions such as the various electrical equipments 11~16 of the lift car that comprises air conditioner 11 and illumination equipment 12 and accumulator control devices 35 with Power Control Unit 2, with the adjusting of the operation output of controlling various electrical equipments 11~16 and action stop and storage battery 34 discharge and recharge action etc.
Concrete method is, car with Power Control Unit 2 according to the temperature regime in the outside air temperature that utilizes state, building of the residual quantity of electricity accumulation state of storage battery 34, elevator, building, by cab interior temperature sensor 17 detected lift car temperature, control by the input information of brightness and elevator position etc. in the cab interior illuminance transducer 18 detected lift cars etc., make storage battery 34 carry out the suitable action that discharges and recharges, and make various electrical equipments 11~16 carry out suitable run action by control.
The information that comprises acquisition from the temperature sensor 601~605 of elevator control gear 44A described later (in the input car patronage, position and be in the information that the stop state still is in motoring condition etc.), remotely administered server 52 (input weather information etc.), group management control apparatus 51 (information of input flow of the people etc.) and each floor in the input information of car with Power Control Unit 2.And above-mentioned symbol 44A, 52,51,601~605 has done expression in overall system structure figure shown in Figure 7 described later.
Fig. 2 is the diagram of block of expression car shown in Figure 1 with the inner structure of Power Control Unit 2.Car shown in Figure 2 is to judge carry out still (2) master mode (also can select two kinds of master modes all not carry out) of being powered by the building power supply of (1) master mode that output is regulated to air conditioner with the function of Power Control Unit 2, to being judged as the suitable controlling quantity of master mode computing that carry out, and send control command to air conditioner 11 or storage battery 34.
As shown in Figure 2, car is made of car air-conditioning instruction setting section 201, air-conditioning instruction adjusting part 202, air-conditioning control command conversion fraction 203, master mode judgment part 204, air-conditioning instruction regulated quantity arithmetic section (air conditioner adjusting pattern) 205, air-conditioning instruction regulated quantity arithmetic section (building electric source modes) 206 and storage battery control command setting section (building electric source modes) 207 with Power Control Unit 2.The function that described each construction module had partly illustrates in aftermentioned.
When carrying out the control of air conditioner 11, handle according to the order of sequence by car air-conditioning instruction setting section 201, air-conditioning instruction adjusting part 202 and air-conditioning control command conversion fraction 203, determine the air conditioner control command thus, and send to air conditioner 11.In car air-conditioning instruction setting section 201, will be set at initial value according to the control command of existing air-conditioning control decision.As this instruction, for example can exemplify out target temperature (expected value of cab interior temperature) and target output (the horsepower output expected value of air conditioner 11) etc.In air-conditioning instructed adjusting part 202, according to the instruction of decision in car air-conditioning instruction setting section 201, according to the regulated quantity of trying to achieve in air-conditioning instruction regulated quantity arithmetic section 205, the size adjustment that air-conditioning is instructed was suitable value.
In air-conditioning control command conversion fraction 203, the unit or the form of signal are carried out conversion, will become to send to the signal form of the control command of air conditioner 11 through the air-conditioning instruction map of overregulate.The method of conversion changes according to the method for reseptance of the control command of air conditioner 11.
For example, air conditioner 11 receive be target temperature the time, air-conditioning control command conversion fraction 203 is carried out conversion with coefficient 1, and will directly send to air conditioner as control command through the target temperature of overregulate.And when air conditioner 11 received output powers instruct, if when the instruction of the air-conditioning of overregulate is target temperature, according to the deviation between the temperature in target temperature and the current lift car it is transformed to horsepower output by air-conditioning control command conversion fraction 203 and instructs.When air conditioner 11 receives the ON/OFF instruction, then open/close temporal mode is set, make that having passed through the air-conditioning of regulating with the aviation value of specified time instructs (output of part 202 is regulated in the air-conditioning instruction) consistent, and be transformed to the open/close instruction of output according to this temporal mode.
When carrying out the adjusting action of air-conditioning instruction adjusting part 202, at first judge that by master mode judgment part 204 execution (1) regular event, (2) air conditioner regulate any master mode in pattern and (3) building electric source modes, switch thus and separately the corresponding regulated quantity arithmetic section 205~206 of master mode.Be to implement to switch specifically by change-over switch 208.
At this, so-called regular event is meant the action when air conditioner described later is regulated pattern and building electric source modes and all do not carried out, and does not promptly regulate in the part 202 to air-conditioning instruction in the air-conditioning instruction and regulates.In the information input master mode judgment part 204 with the residual quantity of electricity accumulation of storage battery, the position of predicting residual quantity of electricity accumulation, outside air temperature and lift car and state (be in halted state or be in motoring condition etc.) etc., so that select suitable state according to this state.For example, few in the residual quantity of electricity accumulation of storage battery 34, and outside air temperature for fear of the situation that the residual quantity of electricity accumulation deficiency occurs, selects air conditioner to regulate pattern when higher than specified value.
In air-conditioning instruction regulated quantity arithmetic section 205, according to the passenger take advantage of car floor, take advantage of the information of patronage and the specified seating capacity of car etc. in number, outside air temperature, the car to come the regulated quantity of computing air-conditioning instruction.Relation between each input and the regulated quantity has example input-output characteristic as shown in Figure 4 and Figure 5.To describe with reference to Fig. 4 and Fig. 5 below about these.
If when in master mode is judged, having selected the building electric source modes, carry out computing by air-conditioning instruction regulated quantity 206 pairs of air-conditioning instructions of arithmetic section regulated quantity of building electric source modes.The input information of this moment is temperature and the interior patronage of car in the car.When regulating the air-conditioning instruction, in storage battery control command setting section 207, set the storage battery control command and send it to accumulator control device (Fig. 1 35) according to the air-conditioning that calculates at this instruction regulated quantity.To illustrate below about the building electric source modes, because it can rest in can carry out electrically-charged floor the time at lift car 1, do not pass through electrical equipment 11~16 direct supplys of building side power supply 20 in car by storage battery 34, so, output by strengthening air conditioner 11 as much as possible (for this reason, regulated quantity has the trend greater than former instruction), come the quick approach target temperature, the discharge power that makes storage battery 34 simultaneously is zero, thus the effect with residual quantity of electricity accumulation of keeping storage battery 34.
Fig. 3 is the diagram of circuit of the car of presentation graphs 2 with the action of the master mode judgment part 204 of Power Control Unit 2.Following diagram of circuit with reference to Fig. 3 moves to the judgement of master mode judgment part 204 and is elaborated.
At first, judge that in master mode judgment part 204 whether the residual quantity of electricity accumulation of storage battery 34 is than threshold value 1 little (step ST10).When being judged as than threshold value 1 greatly (step ST10 "No"), whether the predictor of further judging residual quantity of electricity accumulation is than threshold value 2 little (step ST11).If when still being judged as than threshold value 2 greatly (step ST11 "No"), then can think also have enough residual quantity of electricity accumulation, therefore not implement the air-conditioning instruction and regulate (step ST12).And when residual quantity of electricity accumulation than threshold value 1 hour (step ST10 "Yes") or surplus predictor than threshold value 2 hours (step ST11 "Yes"), the situation of residual quantity of electricity accumulation deficiency then may appear, at this moment, carry out following judgment processing.
That is to say, at first, if lift car 1 is in halted state, and the position of lift car 1 be provided with and can (be provided with power supply among Fig. 1 with voltage transformer 23 to the electric supply installation of lift car 1 power supply, when the floor floor of inverter 22 and changer 21 devices) is consistent (step ST13 "Yes"), make master mode judgment part 204 can be by the electric supply installation 21 of hoist trunk 23 sides, 22,23 and the electric supply installation 3 of lift car power to the electrical equipment 11~16 of lift car 1 by building side power supply (Fig. 1 20), and make the judgement (step ST14) of implementing the building electric source modes.
If lift car 1 is not in halted state, perhaps the position of lift car 1 is be provided with can be when the floor of the electric supply installation of lift car 1 power supply be inconsistent (step ST13 "No"), and then master mode judgment part 204 judges that whether outside air temperature is than threshold value 3 little (step ST15).At this, if outside air temperature is judged as than threshold value hour (step ST15 "Yes"), even then make the judgement that also can not bring too big human discomfort to the passenger is regulated in the output of air conditioner 11, therefore, made entering the judgement that air conditioner is regulated pattern (step ST16).In addition, if outside air temperature is judged as (step ST15 "No") when bigger than threshold value, then makes the passenger and wish to carry out thermoregulator judgement, and make the judgement (step ST17) of carrying out regular event.
In the judgement example of above-mentioned master mode shown in Figure 3, when master mode judgment part 204 is provided in the judgement of whether implementing air conditioner adjusting pattern, with the position of lift car 1 and outside air temperature etc. as the condition of judging, but also can be arranged to not according to above-mentioned condition judgment, and for example when the residual quantity of electricity accumulation of storage battery 34 or its predictor are lower than threshold value, directly make entering the judgement that air conditioner is regulated pattern.At this moment, can be that direction is controlled to keep storage battery 34 residual quantity of electricity accumulation.
Fig. 4 (a) and (b) be the diagram of curves of the input-output characteristic of the control in the expression air conditioner adjusting pattern.Specifically, this diagram of curves (characteristic) uses by air-conditioning instruction regulated quantity arithmetic section 205 decision air-conditioning instruction regulated quantitys the time.
Controller characteristic curve when Fig. 4 (a) expression is not regulated air conditioner 11 according to outside air temperature.In the diagram of curves of Fig. 4 (a), transverse axis is represented to take advantage of into the number of lift car and the ratio of the specified passenger of car from a certain floor, the output of the air conditioner of (regulating part 202 by the air-conditioning instruction of Fig. 2 and regulating the back) after the longitudinal axis is represented to regulate.The A1 of Fig. 4 (a) represents to take advantage of the characteristic when being lobby floor into floor, and it is the characteristic during floor beyond the lobby floor that A2 represents to take advantage of into floor.
It is generally acknowledged, because building in-to-in interior environment system carrying out suitable operation always, so, staying in people in the building before this when taking elevator always, its requirement to the air-conditioning in the lift car is not very high.In contrast, the people who has just entered the building from the outside is when taking elevator, because it is under the outside air temperature environment before this always, so can feel consumingly be starved of air-conditioning in lift car.
Therefore, if the output of air conditioner 11 is regulated, just can suppress the output of air-conditioning single-piece according to both different demands.Generally all enter owing to enter the people in building from the outside, and take advantage of into elevator in lobby floor from lobby floor, so, can whether be that lobby floor judges whether the needs air-conditioning according to taking advantage of into floor.
What this 2 Gent linearity curve of the A1 of Fig. 4 (a) and A2 was represented is exactly above-mentioned situation, compare with taking advantage of the characteristic curve (A1) when being lobby floor into floor, and be beyond the lobby floor in the characteristic curve during floor taking advantage of floor, the output of air conditioner 11 has been lowered.In addition, not only take advantage of the key factor when being the output of decision air conditioner 11, take advantage of into the number of floor also very important when the output of decision air conditioner 11 into floor.For example, if take advantage of small into elevator, then there is no need to improve significantly the output of air conditioner 11 from lobby floor.In order to reflect this point, in the characteristic curve of the A1 of Fig. 4 (a) and A2, along with the increase of taking advantage of into number, the air-conditioning output after the adjusting also increases.
According to the characteristic shown in Fig. 4 (a), by regulating the output of air conditioner 11, air-conditioning can be distributed to from lobby floor with exporting emphasis and be taken advantage of the passenger who is starved of air-conditioning into elevator, simultaneously floor beyond the lobby floor is taken advantage of the passenger who not too needs air-conditioning into elevator, then can suppress air-conditioning output.
Its result can not make elevator passenger feel under the offending situation, reduces air conditioner 11 single-pieces output electric energy.In addition, by according to take advantage of from lobby floor into the patronage of elevator and beyond the lobby floor floor take advantage of patronage to carry out above-mentioned adjustment into elevator, can carry out suitable adjusting according to taking advantage of, thereby can further enough suppress the output electric energy of air conditioner 11 into number.Therefore, in the residual quantity of electricity accumulation of storage battery 34 not for a long time, can suppress the consumed power of air conditioner 11, thereby can slow down the minimizing degree of residual quantity of electricity accumulation by carrying out above-mentioned adjusting.That is to say, can when realizing no stern fast elevator, reduce the essential capacity of storage battery.
In addition, when calculating is taken advantage of into number, change average weight, can try to achieve estimated value divided by everyone by the time dependent that will be arranged on the underfloor not shown detected load data value of load cell of lift car.In addition, at this supplemental instruction a bit, having the people can worry, change output from air conditioner 11, arrive till the actual change of temperature in the lift car, need be through after a while, but actually, when the cold wind that blows out from air conditioner 11 (be not general ventilation, but have the wind of cold air) when blowing on the person, just can make the people produce feel cool, therefore control as described above is actually enough, in addition, compares with the temperature in reducing whole carriage, required air conditioner output is less, so also can suppress required electric flux in this.
Controller characteristic curve when Fig. 4 (b) expression has been carried out regulating to air conditioner according to outside air temperature.In regulated quantity along with whether being the difference of the characteristic that causes of lobby floor and with to take advantage of increase into number to increase this characteristic identical with Fig. 4 (b).
The controller characteristic curve that the air conditioner of Fig. 4 (b) is regulated pattern is with the difference of the controller characteristic curve of Fig. 4 (a), taking advantage of when being lobby floor into floor, and this controller characteristic curve changes along with the variation of outside air temperature at this moment.In the example of Fig. 4 (b), be accompanied by outside air temperature and rise to 25 degree, 28 degree, 30 degree and 32 degree, the output of air conditioner is also as characteristic curve A11, A12, A13, increase thereupon shown in the A14.The purpose of doing like this is at the passenger who takes advantage of from lobby floor into elevator, by carry out the adjusting of more careful air-conditioning output according to outside air temperature at this moment, to suppress the output of air-conditioning single-piece.For example, in Fig. 4 (a), when the output of decision air-conditioning, do not consider this factor of outside air temperature, and whether just according to being to take advantage of into the passenger of elevator and take advantage of into number and decide air-conditioning output with identical characteristic from lobby floor, and in Fig. 4 (b), then externally temperature is not under the very high situation, suppress the output of air conditioner 11, so can suppress the output of air conditioner 11 single-pieces.
Fig. 5 represents with Fig. 4 (a) and the routine different air conditioner of the controller characteristic curve (b) is regulated the controller characteristic curve of pattern.In addition, Fig. 5 is also corresponding with the input-output characteristic of the air-conditioning instruction regulated quantity arithmetic section 206 employed regulating controls that are used for the building electric source modes shown in Figure 2.
In Fig. 5, transverse axis is represented the ratio of patronage and the specified seating capacity of car in the car, and the longitudinal axis represents to regulate the output of the air conditioner of back (regulate part 202 by the air-conditioning instruction of Fig. 2 and regulate the back).As shown in Figure 5, it is many more to have in the car patronage, and the air conditioner output after then regulating is the characteristic of corresponding increase (curve B 1) also.In addition, this characteristic (curve B 1) has the characteristic that is similar to 2 functions, when the number in the car increases, the output of air conditioner is correspondingly sharply increased.This is because in the ordinary course of things, the patronage in car does not more need the output of too big air conditioner, but along with the increase of number, the passenger can produce constriction and human discomfort psychologically, therefore needs to strengthen the output of air conditioner.And along with number further increases, people's body temperature also can cause temperature to rise, and therefore needs to strengthen the output of air conditioner.
Owing to be arranged to control the output of air conditioner according to the characteristic of Fig. 5, crowded and carry out the output of centrality air-conditioning when being sought after air-conditioning really in car, so can suppress the output of air conditioner in other cases, thereby can suppress the output of air conditioner on the whole.
In addition, because in the building electric source modes, the position of lift car is limited in being provided with the floor to the electric supply installation of lift car power supply, to regulate the Applicable scope of the Fig. 4 (a) of output and method (b) into floor narrower so according to taking advantage of, in contrast to this, controller characteristic curve shown in Figure 5 is more suitable.So the air-conditioning instruction regulated quantity computing (206) of the building electric source modes of Fig. 2 is carried out according to the characteristic of Fig. 5.
And patronage also can be obtained estimate after will being arranged on the average weight of load data value divided by everyone that lift car 1 underfloor load cell measures in the car.
Fig. 6 is that expression is regulated the processing flow chart of pattern by the air conditioner that air-conditioning instruction regulated quantity arithmetic section 205 carries out.Below, the action to air-conditioning instruction regulated quantity arithmetic section 205 is elaborated with reference to diagram of circuit shown in Figure 6.
At first, by air-conditioning instruction regulated quantity arithmetic section 205 judge the passenger take advantage of into floor whether be lobby floor (step ST20).At this, so-called lobby floor is not only to refer to a floor, and be meant have with the building outside the gangway that is communicated with, and the floor (can be a plurality of floors) of numerous personnel from this gangway turnover arranged.Taking advantage of when being lobby floor, calculate air-conditioning instruction adjustment factor K (step ST21) according to following operational formula (1) into floor.
K=FA(P、T)…(1)
In the formula, FA represents to be used to determine the function of the air-conditioning instruction adjustment factor K value when taking advantage of of passenger is lobby floor into floor, and its input-output characteristic is corresponding with the A11~A14 of Fig. 4 (b).P represents to take advantage of the ratio into the specified seating capacity of number and car taken advantage of into floor, and T represents outside air temperature.
According in the air-conditioning of this setting instruction adjustment factor K value, regulate the air conditioner control commands by air-conditioning instruction regulated quantity arithmetic section 205, make it become the air conditioner that the characteristic with A11~A14 of Fig. 4 (b) matches and instruct.The adjusting of this air conditioner instruction lasts till that from change the passenger of lift car is zero (passenger who takes advantage of all descends till the elevator) constantly always, perhaps lasts till (step ST22) till this lift car change travel direction always.When to take advantage of into floor be floor beyond the lobby floor, calculate air-conditioning instruction adjustment factor K (step ST23) according to following operational formula (2).
K=FB(P)…(2)
In the formula, FB represent to be used to determine the passenger to take advantage of into floor be the function of the K value during floor beyond the lobby floor, its input-output characteristic is corresponding with the A2 of Fig. 4 (b).P represents to take advantage of the ratio into seating capacity with the specified seating capacity of car of floor.At this, regulate the air conditioner control command according to the air-conditioning instruction adjustment factor K that sets, make this air conditioner instruction and the characteristic of the A2 of Fig. 4 (b) match.The setting value of this K is taken advantage of into floor at each and is upgraded, and implements the air-conditioning instruction by air-conditioning instruction regulated quantity arithmetic section 205 according to the K that sets and regulate, until the passenger of lift car be zero or lift car change (step ST24) till the travel direction.
So, because air-conditioning instruction adjustment factor K takes advantage of into floor, takes advantage of into the number and the outside air temperature of floor and set, so can set the output of air-conditioning, its result as required according to the passenger, owing to can suppress unnecessary air-conditioning output, can suppress air conditioner single-piece output electric energy.Therefore, when carrying out the no stern fast of elevator, can lower the necessary capacity that is installed in the storage battery 34 in the lift car.
Second embodiment
Following with reference to Fig. 7 to Fig. 9 to by electric supply installation from building side power supply 20 directly the power control apparatus of the related lift car of the second embodiment of the invention of powering of the electrical equipments 11~16 (representing with 11A~16A and 11B~16B the figure) to lift car 1 in describe.
Fig. 7 is the integrally-built figure of the no stern fast elevator device of expression.As shown in the figure, (50A 50B) adopts group's way to manage (mode that 2 elevators are carried out integrated management as a colony) to manage for 2 elevators.Represent in the symbol of each member that the end is the member of No. 1 elevator of expression of A, the end is the member of No. 2 elevators of expression of B.At this, only the member to No. 1 elevator describes, and has omitted the explanation to the member of No. 2 elevators.In addition, in the member of No. 1 elevator, the member that has been illustrated in Fig. 1 adopts same-sign to represent, omits repeat specification at this.Below based on No. 1 elevator, the integral structure of elevator device shown in Figure 7 is described.
In elevator device (elevator device of No. 1 elevator), lift car 1A and bob-weight 48A link by main hoist cable (rope) 47A, main hoist cable 47A drives by rope sheave (sheave) 46A and pulley (pulley) 48A, and lift car and bob-weight are moved up and down.
Rope sheave 46A is by electrical motor 45A driven in rotation, and electrical motor 45A carries out variable speed drive (VSD) by the inverter in the elevator control gear 44A.Elevator control gear 44A, electrical motor 45A etc. are set in place in the Machine Room of the building the superiors.
As illustrated in fig. 1, the various electrical equipments of lift car 1A are accepted power supply from car electric supply installation 3A (being made of storage battery 34 and power converter 32,33,36 and accumulator control device 35).The electrical equipment of air conditioner 11A etc. and car electric supply installation 3A are carrying out suitable action as the car of " car power control unit " under with the control of Power Control Unit 2A.
When the storage battery in car electric supply installation 3A 34 charging, the voltage transformer 31A by the lift car side and the voltage transformer 23A of hoist trunk side carry out electromagnetic coupled and come electric energy transmitting.The power conversion unit 24A of hoist trunk side is made of changer 21 and the inverter 22 of Fig. 1, and the power conversion that is used for the building side is a high-frequency alternating current.In addition, send by radio communication device 43A (control setup side) and 42A (lift car side) to the control information that lift car sends from elevator control gear 44A.Because the stroke of hoist trunk is more than the 400m, so adopt the radio communication device that can between this distance, send.
Described radio communication for example also can adopt multi-hop (multi-hop) formula wireless communication system.Multi-hop formula wireless communication system is by the base station that is representative, a plurality of repeater station or the wireless network that constituted with a plurality of terminal stations of bonded assembly such as sensors with IEEE802.15.4, on the wall by above-mentioned a plurality of wireless communications stations being arranged on elevator lifting channel Y1 etc., can carry out radio communication and data independently and send.In addition, according to the length of the stroke of hoist trunk Y1, also can adopt sensor in the elevator lobby that is arranged on hoist trunk Y1 and each floor to carry out in-plant radio communication and replace multi-hop formula wireless communication system.
In addition, in the elevator lobby of each floor, be provided with temperature sensor 601,602 ..., 605, be used for the temperature of each floor is measured.The temperature data of this each floor sends to elevator control gear 44A by the local area network wireline communication networks such as (Local Area Network) of the elevator lobby of not shown each floor of binding, and by being wirelessly sent to car Power Control Unit 2A.
In addition, the elevator lobby waiting Passengen detection sensor that can calculate the number of waiting in the elevator lobby by image recognition not shown among Fig. 7 also can be set in the elevator lobby of each floor.With top is the structure explanation of No. 1 elevator, and the structure of No. 2 elevators is identical with No. 1 elevator.
No. 1 elevator and No. 2 elevators carry out integrated management as 1 elevator group by elevator group manage apparatus 51.In this elevator group manage apparatus 51, can to the number up and down of each floor of each elevator and up and down the time add up, and can obtain in the future the predictor of number of users sometime according to the number of users of each time point and past data etc.In addition, this information can send to each elevator control device 44A respectively by order wire, among the 44B.
Remotely administered server 52 for example is arranged in the facility management chamber or elevator reparing company in building, and remotely administered server 52 can send to each elevator control device 44A respectively with various information such as weather prognosis information by order wire, among the 44B.It more than is the general configuration of no stern fast elevator device that possesses the power control apparatus of lift car of the present invention.
(the step ST10 of Fig. 3 when the residual quantity of electricity accumulation of storage battery is in not enough state, ST11), be in halted state at car, and lift car is arranged in the floor (the step ST13 of Fig. 2) that is provided with the electric supply installation that lift car is powered, and can from the electric supply installation that is positioned at hoist trunk Y1 side directly when being positioned at the electric supply installation power supply of lift car side, carry out the building electric source modes.
Concrete method is, as shown in Figure 1, from voltage transformer 31, changer 32 and the inverter 36 of changer 21 by the hoist trunk side of building power supply 20, inverter 22, voltage transformer 23, lift car side, to electrical equipment direct supplys such as air conditioner 11 and illumination equipments 12.In addition, the discharged power of Ci Shi storage battery 34 is zero.So, by utilizing the power supply of building side to power, can under the situation that does not reduce the storage battery residual quantity of electricity accumulation, the various electrical equipments 11~16 in the lift car be powered at floor with car electric supply installation 3A.More than be the roughly situation of building electric source modes, in this pattern, the floor limited amount that can power to lift car by the power supply of building side, and it is also limited to carry out supplying time (at the berthing time of this floor).Therefore, its problem is how in the application of reality, limited power supply machine can and power-on time in the electrical equipment in the lift car is worked effectively.
At this, utilize the characteristics of air conditioner 11, be to utilize by air conditioner to carry out temperature in the lift car 1 of air regulation (air is to the maintenance effect of temperature=heat energy) this characteristic that in a period of time, can remain unchanged specifically, information such as wait number according to the elevator lobby place of the elevator number of users of seating capacity, this time period in temperature, the car in the car and each floor, air conditioner output that forecasting institute needs or the temperature in the car, and the output of air conditioner controlled, can satisfy this necessary condition in making during the building electric source modes.
Fig. 8 is the diagram of circuit that the state of a control decision of the air conditioner of expression building electric source modes is handled.
Following diagram of circuit with reference to Fig. 8 is handled the state of a control decision of the air conditioner 11 of the building electric source modes that undertaken by air-conditioning instruction regulated quantity arithmetic section 206 (Fig. 2) and is described.
At first, instruct regulated quantity arithmetic section 206 according to temperature T C (degree) in the detected car of temperature sensor (17A of Fig. 7) in the lift car 1 by air-conditioning, according to the adjustment factor K1 (step ST30) of following operational formula (3) calculating based on temperature in the lift car.At this, adjustment factor is meant the required adjusting gain of output adjusting (suitable with the air-conditioning instruction adjusting part 202 of Fig. 2) of carrying out air conditioner.
K1=F1(TC)…(3)
In the formula, F1 represents the function that uses during temperature decision adjustment factor K1 according in the car.Adjustment factor K1 represents regulated quantity, and this regulated quantity is regulated by the air conditioner that needs during electric source modes is carried out much degree according to temperature in the current lift car and predicted and obtain.Afterwards, instruct regulated quantity arithmetic section 206 according to patronage PC (people) in the car by air-conditioning, according to the adjustment factor K2 (step ST31) of following operational formula (4) calculating based on patronage in the car, wherein, patronage PC (people) calculates according to the load detection value that is arranged on the underfloor load cell of lift car in the car.
K2=F2(PC)…(4)
In the formula, F2 represents the function that uses during patronage decision adjustment factor K2 according in the car.Adjustment factor K2 represents regulated quantity, and this regulated quantity is regulated by the air conditioner that needs during electric source modes is carried out much degree according to patronage in the current car and predicted and obtain.And, air-conditioning instruction regulated quantity arithmetic section 206 obtains the number of users NR (people) and the prediction number of users NRP (people) of the elevator of current slot from group manage apparatus 51, and, calculate based on the adjustment factor K3 (step ST32) of number of users with the prediction number of users according to operational formula shown below (5) according to these data.
K3=F3(NR、NRP)…(5)
In the formula, the function that F3 uses when representing according to the number of users of the elevator of current slot and prediction number of users decision adjustment factor K3.Adjustment factor K3 represents regulated quantity, and this regulated quantity is regulated by the air conditioner that needs during electric source modes is carried out much degree according to the number of users of the elevator of current slot and prediction number of users and predicted and obtain.Detect when using sensor (step ST33) if in the elevator lobby of each floor (perhaps also can be a certain certain floor), be provided with the elevator lobby waiting Passengen, then calculate the adjustment factor K4 (step ST35) that waits for the aggregate value PH (people) of number based on each elevator lobby according to operational formula shown below (6).
K4=F4(PH)(6)
In the formula, the function that F4 uses when representing according to the total wait number decision adjustment factor K4 of each elevator lobby.Adjustment factor K4 represents regulated quantity, and this regulated quantity is predicted and obtained by waiting for that according to the total of each current elevator lobby air conditioner that number is carried out much degree to needs during electric source modes is regulated.Detect when use sensor in that the elevator lobby waiting Passengen is not set, K4 is zero (step ST34).
By above processing, storage battery control command setting section 207 shown in Figure 2 obtain with car in behind each principal element such as total wait number of patronage, number of users and prediction number of users, each elevator lobby is relevant in the temperature, car the air conditioner adjustment factor, obtain air-conditioning instruction adjustment factor (step ST36) according to the aggregate value of each adjustment factor.In addition, making the battery discharging current-order simultaneously is zero, and the control of storage battery is switched to constant current control (generally, storage battery is controlled with constant potential) (step ST36).Its result, the output valve of air conditioner are controlled so as to and the corresponding suitable value of the situation (temperature, seating capacity, number of users and wait number) of this time point, and storage battery is because the output of not discharging, so residual quantity of electricity accumulation is maintained.And, because comprise the prediction to the situation in future, the output of air conditioner all decides according to adjustment factor, so,, behind the floor that is provided with electric supply installation, still the discharge output of storage battery can be controlled in the suitable scope at lift car.
In addition, (step ST30~ST35) is carried out by the air-conditioning instruction regulated quantity arithmetic section 206 that building electric source modes shown in Figure 2 is used, and the storage battery control command setting section 207 that the processing (step ST36) of the controlled condition of decision storage battery is used by building electric source modes shown in Figure 2 is carried out in the processing of the output regulated quantity of decision air conditioner shown in Figure 8.
Fig. 9 represents the concrete example of the air conditioner adjustment factor that the building electric source modes is used.In Fig. 9, temperature in transverse axis (C1) the expression car, the number of users of the longitudinal axis (C2) expression elevator.
The transverse axis and the longitudinal axis intersect the grid form represent with car in the adjustment factor of the corresponding air conditioner output of combination of temperature and number of users.For example, temperature is 28 degree in the car, and the elevator number of users is the x3 man-hour, and adjustment factor is P11.The output regulated quantity of required air conditioner in current and a period of time afterwards that this adjustment factor is represented to infer according to temperature in the current car and elevator number of users.And, in the method for calculating of adjustment factor shown in Figure 8, with temperature in the car and number of users separately, obtain the adjustment factor of each factor with function independently respectively, but also can make up each factor as shown in Figure 9.
The 3rd embodiment
The instruction diagram of Figure 10 and Figure 11 control method that to be the power control apparatus of expression by the related lift car of the 3rd embodiment of the present invention regulate the output of electrical equipment (illumination equipment and electronic guiding device) in the air conditioner car in addition.
Illumination equipment 12 and electronic guiding device 14 the two regulating control by as the car of " car power control unit " of the present invention with implementing in the Power Control Unit 2.Followingly come the output adjusting method of illumination apparatus and electronic guiding device to describe (suitably with reference to Fig. 1 etc.) with reference to Figure 10 and Figure 11.
Figure 10 represents to be used for to regulate the car of output of illumination equipment and electronic guiding device with the structure of Power Control Unit 2.The output of the air conditioner 11 shown in first embodiment of its basic structure and Fig. 2 is regulated identical.That is,, regulate part 221 by the illumination output command and regulate output command by the output command that cage illumination output command setting section 220 is set cage illumination.At this, output command is regulated according to the regulated quantity that illumination output command regulated quantity arithmetic section 224 calculates.Illumination output command after control of illumination instruction map part 222 will be regulated is transformed to the control of illumination instruction.Control of illumination instruction is sent to the control part of the illumination equipment in the lift car, controls the output of illumination equipment according to this control command (come from adjusting after output command).
At this, illumination equipment 12 is assumed to and uses LED (light-emitting diode) illumination basically.The LED illumination can be regulated illumination and carry out switch etc. easily by power regulation easily.Though there is the problem of aspect in service life in the fluorescent lamp of converter type, it can regulate illumination to a certain extent by power regulation.
The illumination output command is regulated pattern judgment part 223 according to the outside light quantity (detecting by illuminance transducer in the car of Fig. 1 18) in patronage, the car in the predictor of the residual quantity of electricity accumulation of storage battery, residual quantity of electricity accumulation, the car, judges whether to need to implement the adjusting of illumination output command.The details general who is regulated the judgment processing of carrying out pattern judgment part 223 by the illumination output command describes with reference to the diagram of circuit of Figure 11 below.The judged result that the illumination output command is regulated pattern judgment part 223 is sent to illumination output command regulated quantity arithmetic section 224.When enforcement output is regulated in illumination output command regulated quantity arithmetic section 224, identical according to residual quantity of electricity accumulation and predictor thereof with the occasion of air conditioner, calculate adjustment factor or regulated quantity, and its result is sent to illumination output command adjusting part 221.When not implementing output and regulate, adjustment factor or regulated quantity as zero, and are sent to illumination output command adjusting part 221 with its result.
Electronic guiding device 14 is devices of guiding (guide) lift car 1 on guide rail, and it is installed on the car frame of lift car 1 (schematically representing with symbol 14A in the entire system constructional drawing of Fig. 7).Electronic guiding device 14 has these 2 types of the electronic guiding device of guide boot formula (device that is sliding between the guide rail) and the electronic guiding devices of guide roller formula (being provided with roller between guide rail), DYN dynamic guiding device as power supply, before be the guiding device of electromagnetic levitation type, and the latter is to use actuator to form electric structure, so that the pressing force between guide rail and the roller is regulated.Above-mentioned two types all have can reduce the vibration and anti noise.
The structure that the output of electronic guiding device 14 is regulated and the adjustment structure of illumination are identical.Below simply the flow process of control structure is described.
At first, set by the output command of 225 pairs of electronic guiding devices 14 of output command setting section, when needs were regulated, output command was regulated part 226 and is carried out the adjusting of output command.Output command after control command conversion fraction 227 will be regulated is transformed to control command, and this control command is sent to electronic guiding device 14.Regulate the output adjusting that pattern judgment part 228 judges whether to implement electronic guiding device 14 by output command, when implementing to regulate, by output command regulated quantity arithmetic section 229 computing adjustment factor or regulated quantitys.Adjustment factor that calculates or regulated quantity send to output command and regulate part 226, and output command adjusting part 226 is worth according to this regulates output command.The input information that the output command of electronic guiding device 14 is regulated pattern judgment part 228 is the interior patronage of residual quantity of electricity accumulation, its predictor, car and the car motoring condition information of storage battery.The input information of output command regulated quantity arithmetic section 229 is the residual quantity of electricity accumulation and the predictor thereof of storage battery.
The diagram of circuit of the judgment processing of Figure 11 when to be expression by illumination output command shown in Figure 10 regulate pattern judgment part 223 and electronic guiding device output command and regulate output that pattern judgment part 228 judges whether to implement illumination equipment 12 and electronic guiding device 14 and regulate.Following diagram of circuit with reference to Figure 11, the treatment scheme of illumination output command shown in Figure 10 being regulated pattern judgment part 223 and electronic guiding device output adjusting pattern judgment part 228 describes.
In the diagram of circuit of Figure 11, the illumination output command is regulated pattern judgment part 223 (electronic guiding device output command is regulated pattern judgment part 228) and is judged that at first whether the residual quantity of electricity accumulation of storage battery is less than threshold value 3 (step ST40).When being judged as, judge that further whether the residual quantity of electricity accumulation predictor is less than threshold value 4 (step ST41) greater than threshold value.When if predictor also is judged as greater than threshold value (step ST41 "No"), then is judged as the output of not implementing illumination equipment 12 and electronic guiding device 14 etc. and regulates (step ST42).
On the other hand, if the residual quantity of electricity accumulation of storage battery is less than threshold value 3 (step ST40 "Yes"), when perhaps this predictor is judged as less than threshold value 4 (step ST41 "Yes"), regulates pattern judgment part 223 by the illumination output command and judge according to the detected value of load cell whether the seating capacity in the lift car 1 is zero (step ST43).When if patronage is zero in the car (step ST43 "Yes"), then according to the residual quantity of electricity accumulation of storage battery 34 or the output (step ST44) of its predictor attenuating car intraoral illumination.
On the other hand, regulate pattern judgment part 228 by electronic guiding device output command and further judge whether lift car 1 is in motoring condition (step ST45), if when being in motoring condition (step ST45 "Yes"), the then output (step ST46) of lowering electronic guiding device 14 according to residual quantity of electricity accumulation or its predictor of storage battery.If when being in halted state, not implementing the output of electronic guiding device 14 and regulate (step ST47).
In addition, when the residual quantity of electricity accumulation of storage battery 34 is in not enough state, can cause the unnecessary waste of electric energy owing to throw light in also to lift car when passenger lift car 1 in is zero, so preferably appropriate control is carried out in output according to residual quantity of electricity accumulation.Equally, when not having the passenger in lift car, the vibration that makes electronic guiding device 14 actions exceedingly suppress car also can cause the unnecessary waste of electric energy, so preferably according to residual quantity of electricity accumulation output is carried out the control of appropriateness.
By detecting the number in the lift car, when number is zero, the output of illumination and electronic guiding device is controlled according to residual quantity of electricity accumulation, can under the situation that can not bring adverse effect to elevator passenger, reduce the consumption of residual quantity of electricity accumulation.Therefore, storage battery is not easy to occur the situation of charge capacity deficiency.By implementing above-mentioned control, can further reduce the capacity that is installed in the storage battery in the lift car.
When seating capacity is non-vanishing in car (step ST43 "No"), judge that whether the outside light quantity in the illuminance transducer 18 detected cars is greater than threshold value 10 (step ST48) in the car of Fig. 1.When externally light quantity is greater than threshold value 10 (step ST48 "Yes"), owing to can reduce the output of car intraoral illumination, so lower this output (step ST49) according to residual quantity of electricity accumulation or its predictor of storage battery.When externally light quantity is less than threshold value 10 (step ST48 "No"), (step ST50) do not regulated in the output of facilities and equipments.
Because also can control illumination in the lift car according to the size of extraneous light this moment, so can reduce the consumption of the residual quantity of electricity accumulation of storage battery.In addition, having extraneous light to enter occasion in the lift car for example is that the wall of lift car is made by glass, and hoist trunk is positioned at the occasion of outside, building (building outside).Can list sightseeing elevator etc.
The 4th embodiment
Figure 12 and Figure 13 are the diagram of circuits that the power control apparatus of expression by the related lift car of the 4th embodiment of the present invention stops the control flow when storage battery 34 is powered, when being illustrated respectively in the residual quantity of electricity accumulation deficiency of storage battery 34, stop from storage battery 34 to the control flow (Figure 12) of various electrical equipments 11~16 (with reference to Fig. 1 etc.) when powering, and when promptly stopping, stopping control flow (Figure 13) when storage battery is powered.
Figure 12 and Figure 13 only represent respectively to regulate and use building power supply etc. can't deal with problems by the output of car electrical equipment, and have to stop electrical equipment 11~16 o'clock, sequence control so that the most suitably the order of (this moment suitably be meant consider from secure context the most suitable) stops electrical equipment with respect to the passenger, this control is implemented with Power Control Unit 2 by car.
In the diagram of circuit of Figure 12, car judges at first that with Power Control Unit 2 whether the residual quantity of electricity accumulation of storage battery 34 is less than threshold value A (step STA01).At this moment, if when being judged as (step STA01 "No"), when then waiting until next judgment processing (step STA02), return the processing of step STA01 once more, to carry out threshold ratio greater than threshold value.
At this, the littler value of threshold value when threshold value A is set to than the output adjusting of electrical equipment.When the situation of very serious residual quantity of electricity accumulation deficiency has taken place, just can implement this and stop handler.In residual quantity of electricity accumulation during less than threshold value A (step STA01 "Yes"), when the situation of very serious residual quantity of electricity accumulation deficiency has just taken place, at first stop from storage battery 34 in lift car 1 air conditioner 11 power supply or stop the action (step STA03) of air conditioner 11.
Afterwards, judge that with Power Control Unit 2 whether the residual quantity of electricity accumulation of storage battery 34 is less than threshold value B (step STA04) by car.In the result who judges is (step STA04 "No") during greater than threshold value B, when waiting until next judgment processing (step STA05), returns the processing of step STA04 once more, to carry out threshold ratio.In the result who judges is (step STA04 "Yes") during less than threshold value B, stops to power or stopping the action (step STA06) of car position telltale 13 from the car position telltale 13 (indicating device) of storage battery in lift car.
After this, judge that whether the residual quantity of electricity accumulation of storage battery 34 is less than threshold value C (step STA07).In the result who judges is (step STA07 "No") during greater than threshold value, when waiting until next judgment processing (step STA08), returns the processing of step STA07 once more, to carry out threshold ratio.In the result who judges be (step STA07 "Yes") during less than threshold value C, stops to power the perhaps action of lighting-off device 12 (step STA09) from the illumination equipment 12 of storage battery 34 in lift car 1.
After this, judge that whether the residual quantity of electricity accumulation of storage battery 34 is less than threshold value D (step STA10).In the result who judges is (step STA10 "No") during greater than threshold value D, when waiting until next judgment processing (step STA11), returns the processing of step STA10 once more, to carry out threshold ratio.In the result who judges be during less than threshold value D, and (step STA10 "Yes") stops to power or stopping the action (step STA12) of lift car door drive to the lift car door drive from storage battery 34.
Stop perhaps to stop the action of this electrical equipment according to above sequential stages ground, but till the residual quantity of electricity accumulation vanishing, still keep to intercom phone 16 power supplies to various electrical equipment 11~16 power supplies.This be because, air conditioner 11 and car position telltale in the lift car 1 are not indispensable, though can influence traveling comfort, compare with other equipment, its effect or acceptable are so stop electrical equipment according to said sequence.12 pairs of illumination equipments guarantee that the safety (considering from the angle of delinquency prevention) in the lift car is essential, so till can not keeping really to residual quantity of electricity accumulation, keep the power supply to illumination equipment 12.And, to compare with illumination equipment 12, the actuating device of elevator cab door is even more important, if elevator door can't carry out switch, the passenger then can occur and be closed in situation in the lift car, therefore, the power failure of the actuating device of elevator cab door is arranged in order on penult.
Last is stopped power supply be used for externally and lift car 1 between intercom phone 16 in the car got in touch with, because under any situation, in order to carry out safety verification, all be necessary to understand the situation in the lift car, so be necessary the power supply to intercom phone in the car 16 is maintained at last.
As mentioned above, by various electrical equipments 11~16 being quit work,, also can guarantee passenger's safety even when the such worst case of residual quantity of electricity accumulation wretched insufficiency having occurred according to the order that stops shown in Figure 12.
Figure 13 is identical with Figure 12, stopping in proper order of electrical equipment during expression residual quantity of electricity accumulation wretched insufficiency, different with Figure 12 is, Figure 12 represents be under the normal circumstances (when elevator is in operation conditions) stop order, be that for example elevator has carried out promptly stopping to wait in emergency circumstances the order that stops because of earthquake etc. has taken place and Figure 13 represents.Following diagram of circuit with reference to Figure 13 describes.
In the diagram of circuit of Figure 13, car judges at first with Power Control Unit 2 whether lift car 1 is in urgent halted state (step STB01).Being judged as (step STB01 "No") when not being in urgent halted state, handle according to diagram of circuit shown in Figure 12.Be judged as (step STB01 "Yes") when being in urgent halted state, whether the residual quantity of electricity accumulation of judging storage battery 34 is less than threshold value F (step STC01), in the result who judges is (step STC01 "No") during greater than threshold value F, armed state (step STC02) such as before judging, enter next time, after this, return the processing of step STC01, to carry out threshold ratio.If the result who judges be (a step STC01 "Yes") during less than threshold value F, stop to power from the car position telltale 13 (indicator) of storage battery 34 in lift car 1, the action of car position telltale 13 is stopped (step STC03).
Afterwards, whether the residual quantity of electricity accumulation of judging storage battery 34 is less than threshold value G (step STC04), in the result who judges is (step STC04 "No") during greater than threshold value G, armed state (step STC05) such as before judging, enter next time, after this, return the processing of step STC04, to carry out threshold ratio.If the result who judges be (a step STC04 "Yes") during less than threshold value G, stop to power to the lift car door drive from storage battery 34, perhaps stop the action (step STC06) of lift car door drive.
After this, whether the residual quantity of electricity accumulation of judging storage battery 34 is less than threshold value H (step STC07), in the result who judges is (step STC07 "No") during greater than threshold value H, armed state (step STC08) such as before judging, enter next time, after this, return the processing of step STC07, to carry out threshold ratio.If the result who judges be (a step STC07 "Yes") during less than threshold value H, stop to power from the air conditioner 11 of storage battery 34 in lift car 1, the action of air conditioner 11 is stopped (step STC09).
After this, whether the residual quantity of electricity accumulation of judging storage battery 34 is less than threshold value I (step STC10), in the result who judges is (step STC10 "No") during greater than threshold value I, armed state (step STC11) such as before judging, enter next time, after this, return the processing of step STC10, to carry out threshold ratio.If the result who judges be (a step STC10 "Yes") during less than threshold value I, stop to power from the illumination equipment 12 of storage battery 34 to lift car 1 in, perhaps make the action of the interior illumination equipment 12 of lift car 1 stop (step STC12).
In the diagram of circuit of above-mentioned Figure 13, identical with the situation of Figure 12, continue from storage battery 34 intercom phone 16 power supplies in car, be zero up to the residual quantity of electricity accumulation of storage battery 34.That is to say that the intercom phone 16 in the lift car 1 is with perseveration always, to the last.When elevator emergency stops (when elevator floor promptly stops midway), the passenger may appear by the situation of temporary close in lift car 1, for the temperature in the lift car 1 is remained on suitable temperature, preferably the order that stops with air conditioner 11 moves backward.In addition, owing to temporarily can not make the door action of lift car 1, therefore can stop to power in the stage early to elevator door.And, even because the door of lift car 1 is also wanted consumed power under closing state, so, can play the effect of the consumption that reduces residual quantity of electricity accumulation by stopping power supply.So, because promptly the situation when stopping is different with situation about normally stopping, so, handle by the order that stops that employing is different from just often, can stop order equipment is stopped with more suitable with respect to the passenger.
The 5th embodiment
Figure 14 to Figure 16 is the instruction diagram of the power control apparatus of the related lift car of the 5th embodiment of the present invention.In the 5th embodiment, storage battery 34 is made of the 1st storage battery and these two storage batterys of the 2nd storage battery as main storage battery, when the residual quantity of electricity accumulation as the 1st storage battery of main storage battery occurs when not enough, by the 2nd storage battery power supply as subsidiary battery.Figure 14 is the diagram of block of the power supply control structure of the above-mentioned lift car of expression.
In Figure 14, adopt the title of part of the symbolic representation identical and function and part shown in Figure 1 identical with first embodiment shown in Figure 1.Be with the difference of first embodiment, further increased the control setup 35S of the 2nd storage battery 34S, the 2nd storage battery 34S and the DC/DC changer 33S of the 2nd storage battery 34S.
The same with main storage battery 34, the 2nd storage battery 34S is by the electrical equipment power supply of DC/DC changer 33S in air conditioner 11 lift cars such as grade.In addition, because the output of the output of main storage battery 34 and the 2nd storage battery 34S all is connected on the dc bus between DC/DC changer 33S and the inverter 36, so can be charged to the 2nd storage battery 34S by the building power supply by DC/DC changer 32 from the voltage transformer 31 of lift car side equally.
Car is connected with the main storage battery control setup 35 of main storage battery 34 and the 2nd accumulator control device 35S of the 2nd storage battery 34S by order wire with Power Control Unit 2, thereby can perhaps state of a control be monitored respectively to this device sending controling instruction.
The effect of the 2nd storage battery 34S is to use as subsidiary battery when deficiency appears in the residual quantity of electricity accumulation of main storage battery 34.For the control scale increases, the 2nd storage battery 34S preferably uses the little storage battery of volume ratio main storage battery 34 as far as possible.And on the other hand,, select to use storage battery with fast charging and discharging performance as the 2nd storage battery 34S.In the time can carrying out electrically-charged floor, the 2nd storage battery 34S carries out fast charge with the charge volume that increases sharply at elevator parking, under steam and then discharge when resting in other floor.
The 2nd storage battery 34S is arranged to charge rapidly and can in the long as far as possible time, discharges, thereby can play the effect of the consumption of the residual quantity of electricity accumulation that reduces main storage battery 34.Carry out the 2nd storage battery 34S of fast charging and discharging as needs, be fit to use double layer capacitor and lithium ion battery etc.On the other hand, main storage battery 34 will discharge (be called again and recycle) in regulation long-time, so need have the different characteristic with the 2nd storage battery 34S after the long-time charging of having carried out regulation.In addition, in the ordinary course of things, if the above-mentioned storage battery that recycles type carries out the charging action of short time midway in discharge, especially with the action of charging of big electric current, can cause reduce service life, perhaps might damage storage battery, therefore preferably avoid charging midway in discharge.
As implied above, by being provided as the 2nd storage battery 34S that subsidiary battery uses, the capacity that can further be reduced in is set the capacity with main storage battery 34 of surplus capacity.Because the 2nd storage battery 34S can carry out fast charge and discharge halfway, so its capacity can be set the capacity littler than the reduction capacity of main storage battery 34 for, thereby can reduce the overall size and the weight of storage battery.
Figure 15 is the diagram of circuit of the control sequence of expression the 2nd storage battery 34S.The pattern of following reference diagram of circuit shown in Figure 15 when having used the 2nd storage battery describes.
At first, whether the residual quantity of electricity accumulation of judging main storage battery 34 with Power Control Unit 2 by car less than threshold value 5 (step ST61), and afterwards, whether the predictor of residual quantity of electricity accumulation of judging main storage battery 34 is less than threshold value 6 (step ST62).During all greater than its separately threshold value (step ST61 "No", ST62 "No"), the residual quantity of electricity accumulation that then is judged as main storage battery 34 is enough, thereby does not make the 2nd storage battery 34S action (step ST63) at both.And any one is judged as (step ST61 "Yes", perhaps step ST62 "Yes") when satisfying above-mentioned condition when the two, enters the 2nd storage battery pattern that makes the 2nd storage battery 34S action (zone that is surrounded by dotted line shown in the step ST64).
At this, at first standby floor (lift car finishes the floor of service back standby) is set at the floor (step ST65) that is provided with to the electric supply installation of lift car power supply.Therefore, a certain floor that the car that finishes to be in after the service readiness for action is being provided with electric supply installation always carries out standby, can charge to the 2nd storage battery 34S in standby.After this, judge whether car is in halted state, and judge car position whether consistent with the floor that is provided with electric supply installation (step ST66).Be judged as (step ST66 "Yes") when satisfying condition, can carrying out fast charge (step ST67) by building side power supply 20 to the 2nd storage battery 34S to the 2nd storage battery 34S charging.
Be judged as (step ST66 "No") when not satisfying condition, entering the pattern that makes the 2nd storage battery 34S discharge.At first, the consumed power (step ST68 and ST69) of control air conditioner 11 and illumination equipment 12.On this basis, make the 2nd storage battery 34S control discharge (step ST70) with constant potential.At main storage battery 34, the higher limit of discharge current is set, to limit its discharge current (step ST71).
Its result, the difference part between the consumed power of the discharge power of main storage battery 34 and car power apparatus 11~16 is provided by the 2nd storage battery 34S.Concrete method is, when the consumed power of car power apparatus 11~16 during greater than the discharge power of main storage battery 34, because of underproof, the voltage of dc bus (dc bus between DC/DC changer 33S and the inverter 36) descends.Because the 2nd storage battery 34S controls in the mode of constant potential control,, make the supply and demand of electricity reach balance thus so the 2nd storage battery 34S carries out the power of discharging action with the part of covering the shortage.
When the discharge of the 2nd storage battery 34S output is not enough (in principle, it is not very big storage battery that the 2nd storage battery 34S selects capacity and horsepower output for use), because the voltage of dc bus is in lower state all the time, so when detecting this situation (step ST72), in order to make electric power obtain balance, the consumed power of further controlling air conditioner 11 and illumination equipment 12 is (by the operation output of the further control convenience of output adjustment factor.The adjusting of air conditioner is regulated part 202 by the air-conditioning instruction of Fig. 2 and is implemented) (step ST74).When DC bus-bar voltage does not descend, keep current state (step ST73).
As mentioned above, when the residual quantity of electricity accumulation of main storage battery 34 has taken place when not enough, one side makes the 2nd storage battery 34S charge continually by control and discharges, control the consumed power of air conditioner 11 and illumination equipment 12 these electrical equipments on the one hand, thereby can reduce the consumption of the residual quantity of electricity accumulation of main storage battery 34.Its result can reduce storage battery single-piece capacity and weight.
Figure 16 is illustrated under the situation that makes the 2nd storage battery 34S action, when the diagram of circuit of the processing sequence when not enough has taken place in action for the capacity of the 2nd storage battery 34S.
In Figure 16, identical symbolic representation is adopted in the processing identical with Figure 15, and omits its repeat specification at this.Below only the processing different with the diagram of circuit of Figure 15 described.
Discharge with constant potential control at the 2nd storage battery 34S, main storage battery 34 is set under the state that the discharge current higher limits discharge (step ST70 and ST71), if (step ST82) when not enough appearred in the residual quantity of electricity accumulation of the 2nd storage battery 34S halfway, car uses Power Control Unit 2 to remove the discharge current higher limit of main storage batterys 34, and in the mode of constant potential control it is controlled (step ST84).Its result is responsible for powering to the electrical equipment of air conditioner 11 and illumination equipment 12 etc. by main storage battery 34.After this, because lift car 1 enters readiness for action, and move to the floor standby that is provided with to the electric supply installation of lift car 1 power supply, so can implement fast charge,, the 2nd storage battery 34S rescues the state of main storage battery 34 thereby being discharged once more to the 2nd storage battery 34S.
The 6th embodiment
Figure 17 to Figure 20 is the instruction diagram of the power control apparatus of the related lift car of the 6th embodiment of the present invention, the 6th embodiment is not have the stern fast elevator in order to realize, but, reduce the diameter or the quantity of electric wireline for by reducing the electric current of stern fast power supply.
The following structure of the elevator device of employing light weight stern fast the action with reference to Figure 17 to Figure 20 describes.
The advantage of this elevator device is to pass through the light weight stern fast, ceaselessly powers (but, owing to the capacity that has reduced electric wireline, so delivery is restricted) from the building power supply, compares with the situation of no stern fast, can reduce the capacity of storage battery.
And, below Shuo Ming the 6th embodiment is between existing elevator and no stern fast elevator of the present invention with stern fast, though can not realize not having stern fastization, but owing to can alleviate the weight of stern fast, and can reduce the capacity of the storage battery 34 that is installed on the lift car 1 again, therefore can make total system realize lightweight.
Figure 17 has represented to adopt the integral structure figure of the elevator device of light weight stern fast.Because Figure 17 is roughly the same with the basic structure of second embodiment shown in Figure 7, therefore, the identical identical symbolic representation of part employing, and have identical title and function.
Both differences are, the 6th embodiment removes and set up light weight stern fast 70A, beyond the 70B, also cancelled the electric supply installation that is arranged on the hoist trunk side to the lift car power supply (23A of Fig. 7,24A).
In use shown in Figure 17 in the elevator device of light weight stern fast owing to can ceaselessly accept the power supply power supply of building side, therefore, need electric supply installation to the lift car power supply be set in the hoist trunk side by stern fast.
And, as shown in figure 17, power to elevator control gear 44A by building power supply 20, and elevator control gear 44A is connected with car electric supply installation 3A by light weight stern fast 70A, thereby can power to lift car by elevator control gear 44A, light weight stern fast 70A and car electric supply installation 3A from building power supply 20.
Figure 18 is the diagram of block that the power control section of the lift car of the expression elevator device that adopted the light weight stern fast is divided.Because its structure is roughly the same with first embodiment shown in Figure 1, therefore, the identical identical symbolic representation of part employing, and have identical title and function.
Both differences are, the 6th embodiment has also been cancelled the electric supply installation to the lift car power supply that is arranged on the hoist trunk side (Fig. 1 23,22,21) except that having set up light weight stern fast 70.Implement with Power Control Unit 2 by car to the charging that storage battery 34 carries out by light weight stern fast 70 from the building power supply.
Figure 19 is the diagram of circuit of power control flow of the storage battery 34 of the expression elevator device that adopted the light weight stern fast.Following diagram of circuit with reference to Figure 19, the action with Power Control Unit 2 describes to car shown in Figure 180.
At this, judge at first whether current point in time is the charging duration section (step ST90) of storage battery 34.The charging duration section of storage battery 34 is set in the lower time period of frequency of utilization of evening and elevator in principle, for example is set to from 23 o'clock to 7 o'clock time period.When if current point in time is the charging duration section of storage battery 34, enters by stern fast storage battery 34 is carried out electrically-charged charge mode.When car is judged as charge mode with Power Control Unit 2 (step ST91), by stern fast with the electric current below the specified value to storage battery charge (step ST92).Owing in order to make stern fast realization lightweight reduce the diameter of electric wireline, perhaps reduced the radical of electric wireline, so need charge to storage battery with little electric current.The specified value that electric current is limited is according to the current capacity decision of electric wireline.Continuing storage battery 34 charged reaches complete charge condition (step ST93) up to it, reaches complete charge behind the complete charge condition, and lift car enters readiness for action (step ST94).
When current point in time was beyond the charging duration section of storage battery, storage battery 34 entered discharge mode.When car is judged as discharge mode with Power Control Unit 2 (step ST95), control storage battery 34 (step ST96) with the constant potential mode.At this moment, mainly powered to car electrical equipment 11~16 by storage battery 34, the building power supply of powering by stern fast is an accessory feed.The reason of the building power supply being arranged to accessory feed is that after the electric wireline in the stern fast dwindled, its current capacity was restricted.
When the consumption power of the electrical equipment in the lift car 1 11~16 is very big, because the delivery of building side power supply 20 is provided with the upper limit, so by storage battery 34 as main electric supply installation, if but consumed power hour, in order to preserve the residual quantity of electricity accumulation of storage battery 34, preferably building side power supply is used as main electric supply installation.Therefore, preferably being arranged to provides certain power (supply and the cooresponding power of higher limit all the time) all the time by building side power supply 20, and remaining insufficient section is powered by storage battery 34.When the response to power supply of building side power supply is very fast (response of building side power supply is very fast under general situation),, then can realize above-mentioned method to set up by storage battery 34 being carried out constant potential control.
In order to lower the capacity of storage battery 34, method is regulated in the output that can adopt above-mentioned being used to not have the electrical equipment of stern fast elevator device.Therefore, according to the residual quantity of electricity accumulation of storage battery 34, implement to be used to not have the output of the electrical equipment of stern fast elevator device and regulate method (Fig. 3 to Fig. 6 and Figure 10 to Figure 13).
Situation when Figure 20 represents that the control flow chart according to the storage battery of the elevator device of use light weight stern fast shown in Figure 19 carries out the charging of storage battery and discharge.
The intraday situation of change of the electric current that flows through in the electric wireline of Figure 20 (a) expression from stern fast.In the diagram of curves of Figure 20 (a), transverse axis is represented the time, and its time length is 1 day.The longitudinal axis represents to flow through current value in the electric wireline in the stern fast when using many electric wireline (if, be the aggregate value of each electric current).When current value be on the occasion of the time, the expression electric current just flow to lift car from control panel.
Solid line among Figure 20 (a) is represented the characteristic of the electric current of actual flow.It is roughly fixed value.This fixed value is with corresponding according to the higher limit of the current capacity of the electric wireline in stern fast decision.That is to say no matter storage battery is in charge condition or is in discharge regime, provides and the cooresponding electric current of higher limit by the building power supply, can lower the discharge electric energy of storage battery thus.
Dotted line among Figure 20 (a) is represented the load current value of air conditioner.Because under the situation of common stern fast, the electric current that flows in stern fast is by the current sinking decision of the electrical equipment of lift car, so the electric current that flows may surpass the electric current shown in the dotted line, therefore need to use thicker electric wireline or the many electric wireline of diameter, but according to the 6th embodiment of the present invention, because also use storage battery simultaneously, thus actual current value can shown in Figure 20 (a), be reduced, thus can cut down the electric wireline in the stern fast.Therefore, can make the stern fast lightweight.
Figure 20 (b) expression is installed in the intraday situation of change of the electric current of the storage battery on the lift car.Transverse axis among the figure is represented the time, and its time length is 1 day, and the longitudinal axis is represented the electric current of storage battery.Discharging on the occasion of expression of electric current, negative value is represented to charge.Be in charge condition from 23 in evening to morning till 7, be in discharge regime till 23 from 7 of mornings to evening.
The intraday situation of change of the current sinking of the electrical equipment in Figure 20 (c) expression lift car.Evening, the consumed power of the electrical equipment in the lift car is little, and (for the ease of understanding, the consumed power among the figure was zero during idle periods.Even under actual conditions, aviation value that also can forecast consumption power is very little), but by day, along with the increase of elevator passenger and the rising of temperature, the consumption power of air conditioner etc. also rises, and in the time period in afternoon, current sinking will further increase especially at noon.In existing elevator device, because the current sinking of the car electrical equipment shown in Figure 20 (c) directly flows through stern fast, thus need thicker electric wireline (perhaps many electric wireline), thus the problem of stern fast preponderance produced.Compare with Figure 20 (a), can know that the electric current that flows through stern fast reduces, thereby can realize the lightweight of stern fast.
The discharge current of storage battery 34 also is like this, in the mode of no stern fast, the electric current that storage battery 34 must provide the current sinking of the electrical equipment 11~16 in the lift car 1 with Figure 20 (c) to equate, if and adopt above-mentioned the 6th embodiment, then because can power, so can shown in Figure 20 (b), reduce the discharge current of storage battery 34 from stern fast.Therefore, can lower the necessary capacity of storage battery.
As mentioned above, power control apparatus according to lift car of the present invention, not only can realize the no stern fastization of elevator, perhaps realize the lightweight of stern fast, but also the significant design item can realize not having stern fastization and stern fast lightweight the time, promptly can reduce to be installed in the capacity of the storage battery on the lift car, can save the unnecessary part in the consumed power of electrical equipments such as interior environment system and illumination equipment, thereby can suppress consumed power.
And above-mentioned car can be arranged to all realize by software with the function of each construction module that Power Control Unit 2 is had, and also can be arranged to one of them part and be realized by hardware.For example, car air-conditioning instruction setting section 201, the air-conditioning that constitutes power control apparatus 2 instructs the data handing of regulating in part 202, air-conditioning control command conversion fraction 203, master mode judgment part 204, air-conditioning instruction regulated quantity arithmetic section (the air conditioner function is regulated pattern) 205, air-conditioning instruction regulated quantity arithmetic section (building electric source modes) 206 and the storage battery control command setting section (building electric source modes) 207 can be arranged to realize on computers by one or more program, also can be arranged to one of them part and be realized by hardware.

Claims (32)

1, a kind of power control apparatus of lift car, wherein elevator has and is arranged on the electrical storage device on the lift car and is arranged on the described lift car and accepts the interior environment system of described electrical storage device power supply, the power control apparatus of described lift car is used for controlling the operation of the described interior environment system of described elevator, it is characterized in that
Have the car power control unit, this car is used for when the charge capacity of described electrical storage device satisfies defined terms with power control unit, according to passenger's the operation output of regulating the interior environment system of described lift car into floor of taking advantage of.
2, a kind of power control apparatus of lift car, wherein elevator has and is arranged on the electrical storage device on the lift car and is arranged on the described lift car and accepts the interior environment system of described electrical storage device power supply, the power control apparatus of described lift car is used for controlling the operation of the described interior environment system of described elevator, it is characterized in that
Have the car power control unit, this car is used for when the charge capacity of described electrical storage device satisfies defined terms with power control unit, regulates the operation output of the interior environment system of described lift car according to the number in the described lift car.
3, the power control apparatus of lift car as claimed in claim 1 is characterized in that,
Described car with power control unit when the charge capacity of described electrical storage device satisfies defined terms, further according to the operation output of regulating the interior environment system of described lift car into number of taking advantage of of described floor.
4, the power control apparatus of lift car as claimed in claim 1 is characterized in that,
When the charge capacity of described electrical storage device satisfied defined terms, the outside air temperature when further taking advantage of into elevator according to the passenger was regulated the operation output of the interior environment system of described lift car to described car with power control unit.
5, the power control apparatus of lift car as claimed in claim 1 is characterized in that,
Described car with power control unit when the charge capacity of described electrical storage device satisfies defined terms, further according to the passenger whether take advantage of into floor be the operation output of the lobby floor interior environment system of regulating described lift car.
6, the power control apparatus of lift car as claimed in claim 1 is characterized in that,
Described car with power control unit when the charge capacity of described electrical storage device satisfies defined terms, further according to described passenger's the operation output of regulating the interior environment system of described lift car into the temperature of floor of taking advantage of.
7, a kind of power control apparatus of lift car, wherein this elevator has electric supply installation, electrical storage device and interior environment system, wherein this electric supply installation is arranged in the more than one regulation floor of building building side, this electrical storage device is arranged on the lift car, when stopping described regulation floor, lift car can accept described electric supply installation power supply, this interior environment system is arranged on the described lift car, accept described electrical storage device power supply, and when described lift car is stopped described regulation floor, can also accept described electric supply installation power supply, the power control apparatus of this lift car is characterised in that
Has the car power control unit, control with power control unit by this car, make when described lift car is stopped described regulation floor, increase the operation output of the interior environment system of described lift car, and to make the discharge current of described electrical storage device be zero.
8, the power control apparatus of lift car as claimed in claim 7 is characterized in that,
Regulate with power control unit by described car, so that when described lift car is stopped described regulation floor, further according at least a operation output that increases the interior environment system of described lift car in the wait number at the elevator lobby place of each floor in the temperature in the described lift car, number in the lift car and described building.
9, the power control apparatus of lift car as claimed in claim 7 is characterized in that,
Regulate with power control unit by described car, so that when described lift car is stopped described regulation floor, the further operation output of the interior environment system that increases described lift car according to the current number of users or the prediction number of users of described elevator.
10, the power control apparatus of lift car as claimed in claim 7 is characterized in that,
When described lift car rests in described regulation floor, and when the charge capacity of described electrical storage device satisfies defined terms, regulate with power control unit, with the operation output of the interior environment system that increases described lift car by described car.
11, as the power control apparatus of any described lift car in the claim 7 to 10, it is characterized in that,
To make the discharge current of described storage battery be zero to described car by carrying out constant current control with power control unit.
12, a kind of power control apparatus of lift car, wherein elevator has and is arranged on the electrical storage device on the lift car and is arranged on the described lift car and accepts the illumination equipment of described electrical storage device power supply, the power control apparatus of described lift car is used for controlling the output of the described illumination equipment of described elevator, it is characterized in that
Have the car power control unit, when this car is zero with the patronage of power control unit in described lift car, regulate the output of the illumination equipment of described lift car according to the charge capacity of described electrical storage device.
13, a kind of power control apparatus of lift car, wherein elevator has and is arranged on the electrical storage device on the lift car and is arranged on the described lift car and accepts the electronic guiding device of described electrical storage device power supply, the power control apparatus of described lift car is used for controlling the output of the described electronic guiding device of described elevator, it is characterized in that
Have the car power control unit, when this car is zero with the patronage of power control unit in described lift car, regulate the output of the electronic guiding device of described lift car according to the charge capacity of described electrical storage device.
14, a kind of power control apparatus of lift car, wherein elevator has: electrical storage device, it is arranged on the lift car; And the electrical equipment that comprises interior environment system, this electrical equipment is arranged on the described lift car, and accepts the power supply of described electrical storage device, and the power control apparatus of described lift car is used for the control of powering of the various electrical equipments of elevator be is characterized in that,
Has the car power control unit, this car with power control unit at the charge capacity of described electrical storage device when specified value is following, according to described charge capacity, stop power supply to described various electrical equipments to stop mode to the power supply of described interior environment system at first.
15, the power control apparatus of lift car as claimed in claim 14 is characterized in that,
Control with power control unit by described car, make after the power supply that has stopped described various electrical equipments, still keep the power supply of intercom phone device that being used in the described various electric apparatuss got in touch with between lift car and outside.
16, the power control apparatus of lift car as claimed in claim 14 is characterized in that,
Control with power control unit by described car, make after the power supply that has stopped described various electrical equipments, still keep power supply the electronic guiding device in the described various electrical equipments.
17, as the power control apparatus of any described lift car in the claim 14 to 16, it is characterized in that,
Control with power control unit by described car, make, stop power supply described various electrical equipments with different orders under the situation that described lift car promptly stops and carrying out under in addition the situation about stopping.
18, a kind of power control apparatus of lift car, wherein this elevator has electric supply installation, the 1st electrical storage device and the 2nd electrical storage device and interior environment system and illumination equipment, wherein this electric supply installation is arranged in the more than one regulation floor of building building side, the 1st electrical storage device and the 2nd electrical storage device are arranged on the lift car, when resting in described regulation floor, lift car can accept described electric supply installation power supply, this interior environment system and illumination equipment are arranged on the described lift car, accept any the electrical storage device power supply in described the 1st electrical storage device and the 2nd electrical storage device, and when described lift car rests in described regulation floor, can also accept described electric supply installation power supply, the power control apparatus of this lift car is characterised in that
Have the car power control unit, control with power control unit, make when the charge capacity of described the 1st electrical storage device satisfies defined terms, the discharge current of described the 1st electrical storage device is suppressed at below the rated current by this car,
Do not rest at described lift car under the situation of described regulation floor, described interior environment system and illumination equipment powered by described the 1st electrical storage device and described the 2nd electrical storage device,
Rest at described lift car under the situation of described regulation floor, described the 2nd electrical storage device is charged by described electric supply installation.
19, the power control apparatus of lift car as claimed in claim 18 is characterized in that,
Control with power control unit by described car, make when the charge capacity of described electrical storage device satisfies defined terms, make the described lift car that finishes after the service drive to described regulation floor and carry out standby, so that charge by described electric supply installation.
20, the power control apparatus of lift car as claimed in claim 18 is characterized in that,
Control with power control unit by described car, make and do not rest under the situation of described regulation floor at described lift car, by described the 1st electrical storage device and described the 2nd electrical storage device described interior environment system and illumination equipment are powered, and regulate operation output described interior environment system or described illumination equipment according to the discharge power of described the 1st electrical storage device and described the 2nd electrical storage device or charge capacity.
21, as the power control apparatus of any described lift car in the claim 18 to 20, it is characterized in that,
Described car when the charge capacity of described the 2nd electrical storage device satisfies defined terms, is removed the inhibition to the discharge current of described the 1st electrical storage device with power control unit.
22, a kind of power control apparatus of lift car, wherein this elevator has: electrical storage device, it is arranged on the lift car, can accept the power supply power supply of building building side by electric wireline; And the electrical equipment that comprises interior environment system and illumination equipment, this electrical equipment is arranged on the described lift car, can accept the power supply of described electrical storage device, and can accept the power supply power supply of described building building side by described electric wireline, the power control apparatus of described lift car is characterised in that
Has the car power control unit, control with power control unit by this car, make in the charging duration section of described electrical storage device, power supply by described building building side is powered to described electrical storage device by described electric wireline, and in the time period beyond the described charging duration section, described electrical equipment is powered and described electrical equipment is powered by described electric wireline by the power supply of described building building side by described electrical storage device.
23, the power control apparatus of lift car as claimed in claim 22 is characterized in that,
Control with power control unit by described car, make by the rated current of the current value of described electric wireline when described electrical storage device is powered less than described interior environment system.
24, the power control apparatus of lift car as claimed in claim 22 is characterized in that,
Control with power control unit by described car, making becomes certain value by the current value of described electric wireline when described electrical equipment is powered.
25, the power control apparatus of lift car as claimed in claim 22 is characterized in that,
Control with power control unit by described car, make in the time period beyond the described charging duration section, in the consumed power of described electrical equipment in the little time period, from the power supply of described building building side by described electric wireline to the electric current of described electrical equipment power supply greater than from the electric current of described electrical storage device to described electrical equipment power supply.
26, the power control apparatus of lift car as claimed in claim 22 is characterized in that,
Described car will comprise that with power control unit the less time period of elevator number of users in evening is controlled to be described charging duration section.
27, a kind of power control apparatus of lift car, wherein this elevator has the conditioning unit that is arranged on the lift car, and the power control apparatus of described lift car is used to control the operation of described interior environment system, it is characterized in that,
Have the car power control unit, this car is with the take advantage of operation output of into floor regulating the interior environment system of described lift car of power control unit according to the passenger.
28, a kind of power control apparatus of lift car, wherein this elevator has the conditioning unit that is arranged on the lift car, and the power control apparatus of described lift car is used to control the operation of described interior environment system, it is characterized in that,
Have the car power control unit, this car is regulated the operation output of the interior environment system of described lift car according to the patronage in the described lift car with power control unit.
29, as the power control apparatus of claim 27 or 28 described lift cars, it is characterized in that,
Described car is further regulated according to taking advantage of into number of described floor with power control unit.
30, the power control apparatus of lift car as claimed in claim 27 is characterized in that,
Described car further takes advantage of fashionable outside air temperature to regulate according to the passenger with power control unit.
31, the power control apparatus of lift car as claimed in claim 27 is characterized in that,
Described car with power control unit further according to the passenger whether take advantage of into floor be that lobby floor is regulated.
32, the power control apparatus of lift car as claimed in claim 27 is characterized in that,
Described car is further regulated according to the temperature of described floor with power control unit.
CN2008100870729A 2007-04-13 2008-04-11 Power control device of elevator car Expired - Fee Related CN101284616B (en)

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Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101883731A (en) * 2007-11-30 2010-11-10 通力股份公司 Standby mode of an elevator
CN102556786A (en) * 2010-12-09 2012-07-11 三菱电机株式会社 Elevator device
CN103946141A (en) * 2011-11-08 2014-07-23 因温特奥股份公司 Information exchange between elevator systems and building systems
CN104058307A (en) * 2009-09-11 2014-09-24 株式会社日立制作所 Energy-saving Operation System Of Elevator
CN105098866A (en) * 2014-05-19 2015-11-25 赵赵 Power supply mode of storage battery of wind tower elevator
CN106091245A (en) * 2016-06-08 2016-11-09 广州日滨科技发展有限公司 A kind of air conditioner for elevator pressure regulation method, device and air conditioner for elevator
CN107947346A (en) * 2017-12-11 2018-04-20 日立楼宇技术(广州)有限公司 A kind of management system, method and the storage medium of the charging of elevator device battery
CN111706940A (en) * 2020-05-25 2020-09-25 珠海格力电器股份有限公司 Escalator gravitational potential energy recycling method and device, processor and air conditioner

Families Citing this family (24)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP5580823B2 (en) * 2008-08-15 2014-08-27 オーチス エレベータ カンパニー Elevator and building power system with secondary power management
JP5393302B2 (en) * 2009-07-08 2014-01-22 三菱電機ビルテクノサービス株式会社 BGM device in elevator car
JP5558845B2 (en) * 2010-01-12 2014-07-23 東芝エレベータ株式会社 Elevator power saving control system
JP5733917B2 (en) * 2010-06-28 2015-06-10 三菱電機株式会社 Elevator power supply system
JP2012175857A (en) * 2011-02-23 2012-09-10 Toshiba Elevator Co Ltd Elevator
JP2013049557A (en) * 2011-08-31 2013-03-14 Toshiba Elevator Co Ltd Passenger conveyor control device
JP5892757B2 (en) * 2011-09-27 2016-03-23 東芝エレベータ株式会社 Elevator contactless power supply system
JP5910302B2 (en) * 2012-05-21 2016-04-27 三菱電機株式会社 Elevator car power transmission equipment
KR101263368B1 (en) 2012-08-08 2013-05-16 주식회사 맥스포 Elevator Management System
CN102897615B (en) 2012-09-20 2014-04-16 中达光电工业(吴江)有限公司 Electricity feedback device and method of elevator and elevator
JP5528595B1 (en) * 2013-03-08 2014-06-25 東芝エレベータ株式会社 Lighting control device for elevator hall
JP6430566B2 (en) * 2017-03-24 2018-11-28 東芝エレベータ株式会社 Elevator contactless power supply system
JP6850362B2 (en) * 2017-11-28 2021-03-31 株式会社日立製作所 Elevator and elevator control device
EP3674239B1 (en) * 2018-12-14 2024-05-01 Otis Elevator Company Hybrid energy storage system architectures
WO2020151797A1 (en) * 2019-01-21 2020-07-30 Thyssenkrupp Elevator Innovation And Operations Ag Emergency power supply for an elevator cabin
JP7366572B2 (en) * 2019-04-03 2023-10-23 東京瓦斯株式会社 Storage battery life extension system, storage battery life extension service provision method and program
KR102323736B1 (en) * 2020-01-22 2021-11-08 이동석 Elevator emergency power supply with air cleaner
CN115427340A (en) * 2020-04-17 2022-12-02 三菱电机株式会社 Elevator system
JP7136155B2 (en) * 2020-05-29 2022-09-13 フジテック株式会社 Elevator power supply abnormality monitoring device
CN111960226B (en) * 2020-08-14 2021-11-16 安徽迅立达电梯有限公司 Elevator internal environment adjusting system based on data acquisition
CN112225021B (en) * 2020-11-02 2022-04-12 江苏蒙哥马利电梯有限公司 Intelligent elevator dispatching control method based on planetary gear transmission module
CN113410887B (en) * 2021-06-29 2023-08-18 日立楼宇技术(广州)有限公司 Method and device for supplying power to elevator car
JP7120431B1 (en) * 2021-11-29 2022-08-17 三菱電機株式会社 Elevator power failure operation system
CN116573514B (en) * 2023-07-13 2023-09-26 广东轩宇机械科技有限公司 Energy-storage type construction lifter

Family Cites Families (15)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6225833A (en) * 1985-07-25 1987-02-03 株式会社東芝 Elevator controller
JPS63178016U (en) * 1987-05-11 1988-11-17
JP2555083B2 (en) * 1987-07-06 1996-11-20 株式会社日立製作所 Power supply control device
JPH0867426A (en) * 1994-08-31 1996-03-12 Toshiba Corp Control device for elevator
JPH08231136A (en) * 1995-02-28 1996-09-10 Mitsubishi Denki Bill Techno Service Kk Automatic fan driving device in elevator car
JPH0976839A (en) * 1995-09-12 1997-03-25 Matsushita Electric Ind Co Ltd Power supply control device to be mounted on vehicle and power control method for electric equipment mounted on the vehicle
JPH09151041A (en) * 1995-12-01 1997-06-10 Hitachi Building Syst Co Ltd Control device of air-conditioning equipment for elevator
JP2002003089A (en) * 2000-06-23 2002-01-09 Mitsubishi Electric Corp Operation device for elevator with air conditioner
JP4683708B2 (en) * 2000-11-14 2011-05-18 三菱電機株式会社 Elevator equipment
JP2002211845A (en) * 2001-01-15 2002-07-31 Hitachi Building Systems Co Ltd Method of controlling air conditioner in elevator
JP4122973B2 (en) * 2001-01-19 2008-07-23 株式会社日立製作所 Elevator
JP4406516B2 (en) * 2001-02-16 2010-01-27 株式会社日立製作所 Elevator management device and elevator system
JP2005145652A (en) * 2003-11-14 2005-06-09 Toshiba Elevator Co Ltd Electric power supply system for elevator
JP2006264855A (en) * 2005-03-23 2006-10-05 Toshiba Elevator Co Ltd Auxiliary power supplying device for elevator
KR100968288B1 (en) * 2005-04-01 2010-07-07 미쓰비시덴키 가부시키가이샤 Electric-power supply system for elevator

Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101883731A (en) * 2007-11-30 2010-11-10 通力股份公司 Standby mode of an elevator
CN101883731B (en) * 2007-11-30 2013-06-12 通力股份公司 Elevator system and method for setting standby mode in elevator system
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CN103946141A (en) * 2011-11-08 2014-07-23 因温特奥股份公司 Information exchange between elevator systems and building systems
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CN101284616B (en) 2011-07-20
CN102897611A (en) 2013-01-30
CN101792078B (en) 2013-05-29
JP4406442B2 (en) 2010-01-27
JP2012162401A (en) 2012-08-30
JP2009286635A (en) 2009-12-10
JP2008260620A (en) 2008-10-30
HK1144803A1 (en) 2011-03-11
JP5155965B2 (en) 2013-03-06
CN102897611B (en) 2014-11-26

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