Display device and display device control method
The display device adjusts light source luminance based on environmental illuminance ranges and user inputs to maintain consistent image brightness, addressing brightness fluctuations due to environmental changes.
Patent Information
- Application Number
- JP2022026444
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2022-02-24
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2042-02-24
AI Technical Summary
Existing display devices fail to adjust light source luminance effectively when environmental illuminance changes, leading to user-perceived image brightness issues, especially after manual luminance adjustments.
A display device with a control method that determines environmental illuminance ranges and adjusts light source luminance based on predefined luminance information, updating this information in response to user operations to maintain optimal image brightness.
The method ensures consistent image brightness by dynamically adjusting light source luminance according to environmental changes and user inputs, addressing user-perceived brightness fluctuations.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to a display device and a method for controlling the display device. [Background technology]
[0002] Display devices have been developed that have the function of adjusting the brightness of a light source when displaying an image. For example, Patent Document 1 discloses a liquid crystal display device that adjusts the brightness of a backlight, which is a light source, based on the illuminance of external light acquired by an optical sensor. This liquid crystal display device acquires the illuminance at predetermined time intervals and adjusts the brightness of the backlight in stages according to the acquired illuminance. Therefore, for example, if the illuminance of the environment in which the liquid crystal display device is installed changes temporarily or if the change in illuminance is small, the luminance of the backlight is not adjusted. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Japanese Patent Application Laid-Open No. 2005-121997 Summary of the Invention [Problem to be solved by the invention]
[0004] However, even when the luminance of the light source is automatically adjusted, the user may perceive the displayed image as dark or bright. In such cases, the user may manually change the luminance of the light source. However, Patent Document 1 does not disclose a case where the luminance of the light source is manually changed. Therefore, if the luminance of the environment changes after the user manually changes the luminance of the light source under a certain environmental illuminance, it is unclear how the luminance of the light source is automatically adjusted. [Means for solving the problem]
[0005] One aspect of the control method for a display device according to the present invention is a control method for a display device equipped with a light source, comprising: determining whether the illuminance of the environment in which the display device is installed belongs to a first range or a second range; adjusting the luminance of the light source by referring to first luminance information that specifies the luminance of the light source when the illuminance belongs to the first range when the illuminance belongs to the first range when the illuminance belongs to the first range when the illuminance belongs to the second range when the illuminance belongs to the second range when the illuminance belongs to the second range; updating the first luminance information in accordance with the first operation when a first operation that changes the luminance of the light source is received from a user when the illuminance belongs to the first range when the illuminance belongs to the first range when the illuminance belongs to the first range when the illuminance belongs to the second ...
[0006] One aspect of the display device of the present invention includes a light source and one or more processing devices, and the processing device performs the following operations: determining whether the illuminance of the environment in which the device is installed belongs to a first range or a second range; adjusting the luminance of the light source by referring to first luminance information that specifies the luminance of the light source when the illuminance belongs to the first range when the illuminance belongs to the first range; adjusting the luminance of the light source by referring to second luminance information that specifies the luminance of the light source when the illuminance belongs to the second range when the illuminance belongs to the second range when the processing device receives a first operation from a user to change the luminance of the light source when the illuminance belongs to the first range; updating the first luminance information in accordance with the first operation; and updating the second luminance information based on the first luminance information updated in accordance with the first operation when the processing device receives a second operation from a user to change the luminance of the light source when the illuminance belongs to the second range; and updating the first luminance information based on the second luminance information updated in accordance with the second operation when the processing device receives a second operation from a user to change the luminance of the light source when the illuminance belongs to the second range. [Brief explanation of the drawings]
[0007] [Figure 1] FIG. 1 is a schematic diagram for explaining an overview of a projector 1 according to a first embodiment. [Figure 2] 1 is a block diagram showing the configuration of a projector 1 according to a first embodiment. [Figure 3] 1 is a block diagram showing the configuration of a storage device 10 according to a first embodiment. [Figure 4] 10 is an explanatory diagram showing the correspondence relationship between events that occurred in room R1 from time T01 to time T13 and target values of the luminance of light source 180 that are set according to the illuminance in room R1 from time T01 to time T13. [Figure 5] 10 is a graph illustrating how the illuminance of the room R1 and the luminance of the light source 180 change over time. [Figure 6] 10 is a flowchart for explaining the operation of the projector 1 when the luminance of the light source 180 is adjusted based on the illuminance information 103. [Figure 7] 10 is a flowchart for explaining the operation of the projector 1 when the luminance information 104-n specifying the luminance of the light source 180 is updated in response to an operation by the user to change the luminance of the light source 180. DETAILED DESCRIPTION OF THE INVENTION
[0008] Preferred embodiments of the present invention will be described below with reference to the accompanying drawings. Note that the dimensions and scale of various parts in the drawings may differ from the actual dimensions, and some parts are shown schematically to facilitate understanding. Furthermore, the scope of the present invention is not limited to these embodiments unless otherwise specified in the following description to the effect that the present invention is limited. Furthermore, in this specification and claims, when a numerical range is expressed using "Φ to Ψ" (Φ and Ψ are both numerical values), the range includes the numerical values of the upper limit (Ψ) and the lower limit (Φ). Furthermore, the units of the upper limit (Ψ) and the lower limit (Φ) are the same.
[0009] 1. First embodiment In the first embodiment, a display device and a control method for a display device according to the present invention are described using as an example a projector having a function of adjusting the brightness of a light source based on illuminance information corresponding to the illuminance of the installation environment, and a function of collectively updating the brightness information specifying the brightness of the light source in response to an operation to change the brightness of the light source from a user when the operation is received.
[0010] 1.1.Projector Overview FIG. 1 is a schematic diagram illustrating an overview of a projector 1 according to a first embodiment. In this embodiment, the projector 1 includes a sensor 14. It is assumed that the projector 1, installed in a room R1, projects projection light onto a wall W1 to display a projection image GP. The projection image GP is a general term for an image displayed by the projector 1 projecting projection light onto a display surface. The room R1 includes a wall W1, a wall W2, and a light source L1. The wall W2 includes a window F1. In the room R1, the appearance of the projection image GP may change depending on the intensity and direction of light incident through the window F1, the intensity of light emitted from the light source L1, and other factors. The projector 1 acquires illuminance information from the sensor 14 according to the illuminance of the room R1 in which the projector 1 is installed. The projector 1 then controls the light source included in the projector 1 based on the illuminance information to adjust the projection image GP so that it is displayed at an appropriate brightness.
[0011] For example, if the user determines that the brightness of the projected image GP is not appropriate, the user can use the controller 9 to manually change the brightness of the light source of the projector 1. For example, in response to an operation from the user, the controller 9 outputs an infrared signal to instruct the projector 1 to change the brightness of the light source.
[0012] When the projector 1 receives an operation from the user to change the luminance of the light source, the projector 1 updates one piece of luminance information that specifies the luminance of the light source and that corresponds to the illuminance information according to the illuminance of the room R1 at the time the operation is received. The projector 1 then refers to the updated piece of luminance information and adjusts the luminance of the light source of the projector 1. Furthermore, the projector 1 updates other pieces of luminance information based on the updated piece of luminance information. In other words, when the projector 1 receives an operation from the user to change the luminance of the light source, it collectively updates the multiple pieces of luminance information that specify the luminance of the light source in accordance with the operation.
[0013] 1.2.Projector configuration and functions The configuration and functions of the projector 1 according to the first embodiment will be described below with reference to FIGS.
[0014] 2 is a block diagram showing the configuration of a projector 1 according to the first embodiment. The projector 1 includes a storage device 10 that stores various types of information, a processing device 12 that controls the operation of the projector 1, a sensor 14 that generates illuminance information according to the illuminance of the environment in which the projector 1 is installed, an operation device 16 that accepts input operations from a user of the projector 1, and a projection mechanism 18 that displays an image on a display surface by projecting projection light. The processing device 12 has functions as an illuminance management unit 120, a determination unit 121, a luminance management unit 122, a projection control unit 123, and an operation information acquisition unit 124. The projection mechanism 18 includes a light source 180.
[0015] The storage device 10 includes, for example, a volatile memory such as a RAM and a non-volatile memory such as a ROM. Here, RAM is an abbreviation for Random Access Memory, and ROM is an abbreviation for Read Only Memory.
[0016] FIG. 3 is a block diagram showing the configuration of the storage device 10 according to the first embodiment. The nonvolatile memory of the storage device 10 stores a program 101 that defines the operation of the projector 1, projection image information 102 that represents the projection image GP, illuminance information 103 related to the illuminance of the environment in which the projector 1 is installed, luminance information 104-n that specifies the luminance of the light source 180, and threshold information 110 that is referenced when making various determinations. In this embodiment, the threshold information 110 includes specified count information 111, state threshold information 112, and illuminance threshold information 113. The luminance information 104-n also includes first luminance information 105-n, second luminance information 106-n, third luminance information 107-n, maximum value information 108, minimum value information 109, and difference information 115. The maximum value information 108 is information that represents the maximum value that can be set as the luminance of the light source 180. The minimum value information 109 is information that indicates the minimum value that can be set as the luminance of the light source 180. The specified number of times information 111, the state threshold information 112, the illuminance threshold information 113, the first luminance information 105-n, the second luminance information 106-n, the third luminance information 107-n, and the difference information 115 will be described later.
[0017] The volatile memory of the storage device 10 is used by the processing device 12 as a work area when the program 101 is executed.
[0018] Note that part or all of the storage device 10 may be provided in an external storage device, an external server, etc. Also, part or all of the various information stored in the storage device 10 may be stored in advance in the storage device 10, or may be acquired from an external storage device, an external server, etc.
[0019] The processing device 12 is configured to include one or more CPUs. However, the processing device 12 may include a programmable logic device such as an FPGA instead of or in addition to a CPU. Here, CPU is an abbreviation for Central Processing Unit, and FPGA is an abbreviation for Field-Programmable Gate Array.
[0020] The processing device 12 functions as the illuminance management unit 120, the judgment unit 121, the brightness management unit 122, the projection control unit 123, and the operation information acquisition unit 124 shown in FIG. 2 by the CPU and other components of the processing device 12 executing the program 101 and operating in accordance with the program 101.
[0021] The sensor 14 includes a light-receiving element that converts incident light into an electrical signal. The sensor 14 generates illuminance information 103 according to the illuminance of the environment in which the projector 1 is installed. That is, in this embodiment, the illuminance information 103 generated by the sensor 14 is information that represents a numerical value corresponding to the illuminance of the environment in which the projector 1 is installed at the time the illuminance information 103 is generated.
[0022] The operation device 16 accepts input operations on the projector 1 from a user of the projector 1. The operation device 16 is configured to include, for example, a touch panel or operation buttons provided on the housing of the projector 1, and a light receiving unit for receiving infrared signals output from the controller 9. If the operation device 16 is configured to include a touch panel, the operation device 16 outputs data indicating the detected touch position to the processing device 12. If the operation device 16 is configured to include operation buttons, the operation device 16 outputs data identifying the pressed button to the processing device 12. The operation device 16 also receives infrared signals output from the controller 9, decodes the infrared signals, and outputs data indicating the operation content from the user on the projector 1 to the processing device 12. In this way, the content of the input operation on the projector 1 is transmitted to the processing device 12.
[0023] In this embodiment, a series of data output to the processing device 12 when the operation device 16 receives an operation from the user to change the luminance of the light source 180 may be referred to as "operation information JO." The operation information JO is information for instructing the processing device 12 to change the luminance of the light source 180, and includes information specifying the luminance of the light source 180 after the change.
[0024] The projection mechanism 18 includes a light source 180, an optical modulator (not shown) that generates projection light, and a projection optical system (not shown) that projects the projection light onto a display surface. The light source 180 includes, for example, a halogen lamp, a xenon lamp, an ultra-high pressure mercury lamp, an LED, or a laser light source. The optical modulator includes, for example, a DMD or a liquid crystal panel. The projection optical system includes a projection lens group having multiple lenses. Here, LED stands for Light Emitting Diode, and DMD stands for Digital Mirror Device. The projection mechanism 18 projects projection light to display a projection image GP on a display surface under the control of the projection control unit 123. In this embodiment, the projection mechanism 18 projects projection light to display the projection image GP onto a wall surface W1.
[0025] The light source 180 included in the projection mechanism 18 emits light to form projection light. The light emitted from the light source 180 is modulated into projection light by an optical modulator. The projection mechanism 18 adjusts the brightness of the light source 180 under the control of the projection control unit 123.
[0026] The function of the processing device 12 when adjusting the luminance of the light source 180 based on the illuminance information 103 will be described below.
[0027] The illuminance management unit 120 acquires, from the sensor 14, illuminance information 103 corresponding to the illuminance of the environment in which the projector 1 is installed. The illuminance management unit 120 also stores the acquired illuminance information 103 in the storage device 10. The illuminance management unit 120 also controls the storage device 10 to delete the illuminance information 103 stored in the storage device 10. In this embodiment, the illuminance information 103 is information related to the illuminance of the room R1 in which the projector 1 is installed. In this embodiment, the illuminance management unit 120 repeatedly acquires the illuminance information 103. That is, multiple pieces of illuminance information 103 are stored in the storage device 10.
[0028] The determination unit 121 refers to the illuminance information 103 and the specified number of times information 111, and determines whether the number of times the illuminance information 103 has been acquired is equal to or greater than the specified number of times. In this embodiment, the specified number of times information 111 is information that indicates a numerical value that serves as a threshold value when determining whether the number of times the illuminance information 103 has been acquired is equal to or greater than the specified number of times. In this embodiment, the numerical value indicated by the specified number of times information 111 is a natural number that is equal to or greater than 2.
[0029] The determination unit 121 refers to the plurality of pieces of illuminance information 103 and the state threshold information 112, and determines whether or not the difference between the maximum illuminance among the illuminances based on the plurality of pieces of illuminance information 103 and the minimum illuminance among the illuminances based on the plurality of pieces of illuminance information 103 is equal to or less than a predetermined value. In this embodiment, the state threshold information 112 is information that represents a numerical value that serves as a threshold when determining whether or not the difference between the maximum illuminance among the illuminances based on the plurality of pieces of illuminance information 103 and the minimum illuminance among the illuminances based on the plurality of pieces of illuminance information 103 is equal to or less than a predetermined value.
[0030] In this embodiment, when the difference between the maximum illuminance among the illuminances based on the plurality of pieces of illuminance information 103 and the minimum illuminance among the illuminances based on the plurality of pieces of illuminance information 103 is equal to or less than a predetermined value, it may be said that "the illuminance of the environment in which the projector 1 is installed is stable." In other words, determining whether or not the difference between the maximum illuminance among the illuminances based on the plurality of pieces of illuminance information 103 and the minimum illuminance among the illuminances based on the plurality of pieces of illuminance information 103 is equal to or less than a predetermined value is equivalent to determining whether or not the illuminance of the environment in which the projector 1 is installed is stable. Furthermore, when the illuminance of the environment in which the projector 1 is installed is not stable, it may be said that "the illuminance of the environment in which the projector 1 is installed is in a transient state."
[0031] The determination unit 121 determines whether the illuminance of the environment in which the projector 1 is installed belongs to a first range, a second range, or a third range, by referring to the multiple pieces of illuminance information 103 and the illuminance threshold information 113. The illuminance threshold information 113 is information that represents two or more numerical values that serve as thresholds for determining whether the illuminance of the environment in which the projector 1 is installed belongs to the first range, the second range, or the third range.
[0032] In this embodiment, it is assumed that the illuminance of the environment in which the projector 1 is installed is higher when it belongs to the second range than when it belongs to the first range. It is also assumed that the illuminance of the environment in which the projector 1 is installed is higher when it belongs to the third range than when it belongs to the second range. That is, the upper limit of the first range is smaller than the lower limit of the second range. Also, the upper limit of the second range is smaller than the lower limit of the third range.
[0033] Furthermore, in this embodiment, when determining whether the illuminance of the environment in which the projector 1 is installed belongs to the first range, the second range, or the third range, the average value of the illuminance based on the multiple illuminance information 103 is used as the illuminance of the environment in which the projector 1 is installed.
[0034] The luminance management unit 122 sets a target value for the luminance of the light source 180 according to the illuminance of the environment in which the projector 1 is installed. Specifically, when the illuminance of the environment in which the projector 1 is installed falls within a first range, the luminance management unit 122 sets the luminance specified by the first luminance information 105-n as the target value for the luminance of the light source 180. When the illuminance of the environment in which the projector 1 is installed falls within a second range, the luminance management unit 122 sets the luminance specified by the second luminance information 106-n as the target value for the luminance of the light source 180. When the illuminance of the environment in which the projector 1 is installed falls within a third range, the luminance management unit 122 sets the luminance specified by the third luminance information 107-n as the target value for the luminance of the light source 180.
[0035] In this embodiment, it is assumed that the luminance of the light source 180 specified by the first luminance information 105-n is equal to or lower than the luminance of the light source 180 specified by the second luminance information 106-n. It is also assumed that the luminance of the light source 180 specified by the second luminance information 106-n is equal to or lower than the luminance of the light source 180 specified by the third luminance information 107-n. In the following, the luminance of the light source 180 specified by the first luminance information 105-n, the luminance of the light source 180 specified by the second luminance information 106-n, and the luminance of the light source 180 specified by the third luminance information 107-n may be described using the ratio to the luminance (maximum value) of the light source 180 specified by the maximum value information 108.
[0036] The projection control unit 123 controls the projection mechanism 18 to adjust the luminance of the light source 180 to match the target value. In other words, the projection control unit 123 adjusts the luminance of the light source 180 by referring to the luminance information 104-n. For example, when the luminance specified by the first luminance information 105-n is set as the target value of the luminance of the light source 180, the projection control unit 123 adjusts the luminance of the light source 180 by referring to the first luminance information 105-n.
[0037] In this embodiment, it is assumed that the projection control unit 123 adjusts the luminance of the light source 180 so that the amount of change in the luminance of the light source 180 per unit time is constant or approximately constant.
[0038] The following describes the function of the processing device 12 when updating the luminance information 104-n that specifies the luminance of the light source 180 in response to an operation by the user to change the luminance of the light source 180.
[0039] The operation information acquisition unit 124 acquires operation information JO from the operation device 16 when the operation device 16 receives an operation to change the brightness of the light source 180 from the user.
[0040] In this embodiment, when the illuminance of the environment in which the projector 1 is installed falls within a first range and the operation information acquisition unit 124 acquires the operation information JO from the operation device 16, the operation information JO may be referred to as "first operation information JO1." When the illuminance of the environment in which the projector 1 is installed falls within a second range and the operation information acquisition unit 124 acquires the operation information JO from the operation device 16, the operation information JO may be referred to as "second operation information JO2." When the illuminance of the environment in which the projector 1 is installed falls within a third range and the operation information acquisition unit 124 acquires the operation information JO from the operation device 16, the operation information JO may be referred to as "third operation information JO3."
[0041] In addition, in this embodiment, when the operation device 16 outputs first operation information JO1 to the processing device 12 in response to a user's operation to change the luminance of the light source 180, this operation may be referred to as a "first operation." When the operation device 16 outputs second operation information JO2 to the processing device 12 in response to a user's operation to change the luminance of the light source 180, this operation may be referred to as a "second operation." When the operation device 16 outputs third operation information JO3 to the processing device 12 in response to a user's operation to change the luminance of the light source 180, this operation may be referred to as a "third operation."
[0042] The luminance management unit 122 updates the luminance information 104-n based on the operation information JO. In other words, the luminance management unit 122 updates the luminance information 104-n in response to a user operation to change the luminance of the light source 180. Specifically, the luminance management unit 122 updates the first luminance information 105-n based on the first operation information JO1. In other words, the luminance management unit 122 updates the first luminance information 105-n in response to a first operation from the user. Furthermore, the luminance management unit 122 updates the second luminance information 106-n based on the second operation information JO2. In other words, the luminance management unit 122 updates the second luminance information 106-n in response to a second operation from the user. Furthermore, the luminance management unit 122 updates the third luminance information 107-n based on the third operation information JO3. In other words, the luminance management unit 122 updates the third luminance information 107-n in response to a third operation from the user.
[0043] When the first luminance information 105-n is updated in response to a first operation from the user, the luminance management unit 122 calculates the luminance of the light source 180 specified by the updated second luminance information 106-n and the luminance of the light source 180 specified by the updated third luminance information 107-n, based on the first luminance information 105-n updated in response to the first operation and the difference information 115. The difference information 115 is information that specifies the degree of difference between the luminance of the light source 180 specified by the first luminance information 105-n and the luminance of the light source 180 specified by the second luminance information 106-n, the degree of difference between the luminance of the light source 180 specified by the first luminance information 105-n and the luminance of the light source 180 specified by the third luminance information 107-n, and the degree of difference between the luminance of the light source 180 specified by the second luminance information 106-n and the luminance of the light source 180 specified by the third luminance information 107-n. In this embodiment, the difference information 115 specifies the degree of difference between the luminance of the light source 180 specified by the first luminance information 105-n and the luminance of the light source 180 specified by the second luminance information 106-n as 20% of the maximum value. Furthermore, the difference information 115 specifies the degree of difference between the luminance of the light source 180 specified by the second luminance information 106-n and the luminance of the light source 180 specified by the third luminance information 107-n as 20% of the maximum value. Furthermore, the difference information 115 specifies the degree of difference between the luminance of the light source 180 specified by the first luminance information 105-n and the luminance of the light source 180 specified by the third luminance information 107-n as a maximum value of 40%.
[0044] In this embodiment, the luminance management unit 122 calculates the luminance of the light source 180 specified by the updated second luminance information 106-n so that the difference between the luminance of the light source 180 specified by the first luminance information 105-n updated in response to the first operation and the luminance of the light source 180 specified by the updated second luminance information 106-n calculated based on the first luminance information 105-n updated in response to the first operation is constant. Furthermore, the luminance management unit 122 calculates the luminance of the light source 180 specified by the updated third luminance information 107-n so that the difference between the luminance of the light source 180 specified by the first luminance information 105-n updated in response to the first operation and the luminance of the light source 180 specified by the updated third luminance information 107-n calculated based on the first luminance information 105-n updated in response to the first operation is constant.
[0045] That is, the difference between the luminance of the light source 180 specified by the first luminance information 105-n updated in response to the first operation and the luminance of the light source 180 specified by the updated second luminance information 106-n calculated based on the first luminance information 105-n updated in response to the first operation may match the difference between the luminance of the light source 180 specified by the first luminance information 105-n and the luminance of the light source 180 specified by the second luminance information 106-n. Furthermore, the difference between the luminance of the light source 180 specified by the first luminance information 105-n updated in response to the first operation and the luminance of the light source 180 specified by the updated third luminance information 107-n calculated based on the first luminance information 105-n updated in response to the first operation may match the difference between the luminance of the light source 180 specified by the first luminance information 105-n and the luminance of the light source 180 specified by the third luminance information 107-n.
[0046] When the second luminance information 106-n is updated in response to a second operation from the user, the luminance management unit 122 calculates the luminance of the light source 180 specified by the updated first luminance information 105-n and the luminance of the light source 180 specified by the updated third luminance information 107-n based on the second luminance information 106-n updated in response to the second operation and the difference information 115.
[0047] In this embodiment, the luminance management unit 122 calculates the luminance of the light source 180 specified by the updated first luminance information 105-n so that the difference between the luminance of the light source 180 specified by the second luminance information 106-n updated in response to the second operation and the luminance of the light source 180 specified by the updated first luminance information 105-n calculated based on the second luminance information 106-n updated in response to the second operation is constant. Furthermore, the luminance management unit 122 calculates the luminance of the light source 180 specified by the updated third luminance information 107-n so that the difference between the luminance of the light source 180 specified by the second luminance information 106-n updated in response to the second operation and the luminance of the light source 180 specified by the updated third luminance information 107-n calculated based on the second luminance information 106-n updated in response to the second operation is constant.
[0048] That is, the difference between the luminance of the light source 180 specified by the second luminance information 106-n updated in response to the second operation and the luminance of the light source 180 specified by the updated first luminance information 105-n calculated based on the second luminance information 106-n updated in response to the second operation may match the difference between the luminance of the light source 180 specified by the second luminance information 106-n and the luminance of the light source 180 specified by the first luminance information 105-n. Furthermore, the difference between the luminance of the light source 180 specified by the second luminance information 106-n updated in response to the second operation and the luminance of the light source 180 specified by the updated third luminance information 107-n calculated based on the second luminance information 106-n updated in response to the second operation may match the difference between the luminance of the light source 180 specified by the second luminance information 106-n and the luminance of the light source 180 specified by the third luminance information 107-n.
[0049] When the third luminance information 107-n is updated in response to a third operation from the user, the luminance management unit 122 calculates the luminance of the light source 180 specified by the updated first luminance information 105-n and the luminance of the light source 180 specified by the updated second luminance information 106-n based on the third luminance information 107-n updated in response to the third operation and the difference information 115.
[0050] In this embodiment, the luminance management unit 122 calculates the luminance of the light source 180 specified by the updated first luminance information 105-n so that the difference between the luminance of the light source 180 specified by the third luminance information 107-n updated in response to the third operation and the luminance of the light source 180 specified by the updated first luminance information 105-n calculated based on the third luminance information 107-n updated in response to the third operation is constant. Furthermore, the luminance management unit 122 calculates the luminance of the light source 180 specified by the updated second luminance information 106-n so that the difference between the luminance of the light source 180 specified by the third luminance information 107-n updated in response to the third operation and the luminance of the light source 180 specified by the updated second luminance information 106-n calculated based on the third luminance information 107-n updated in response to the third operation is constant.
[0051] That is, the difference between the luminance of the light source 180 specified by the third luminance information 107-n updated in response to the third operation and the luminance of the light source 180 specified by the updated first luminance information 105-n calculated based on the third luminance information 107-n updated in response to the third operation may match the difference between the luminance of the light source 180 specified by the third luminance information 107-n and the luminance of the light source 180 specified by the first luminance information 105-n. Furthermore, the difference between the luminance of the light source 180 specified by the third luminance information 107-n updated in response to the third operation and the luminance of the light source 180 specified by the updated second luminance information 106-n calculated based on the third luminance information 107-n updated in response to the third operation may match the difference between the luminance of the light source 180 specified by the third luminance information 107-n and the luminance of the light source 180 specified by the second luminance information 106-n.
[0052] The judgment unit 121 refers to the maximum value information 108 and judges whether the luminance of the light source 180 specified by the calculated updated luminance information 104-n includes any luminance that exceeds the luminance of the light source 180 specified by the maximum value information 108.
[0053] If the calculated luminance of the light source 180 specified by the updated luminance information 104-n includes a luminance that exceeds the luminance of the light source 180 specified by the maximum value information 108, the luminance management unit 122 changes the luminance that exceeds the luminance of the light source 180 specified by the maximum value information 108 to the luminance (maximum value) of the light source 180 specified by the maximum value information 108.
[0054] In addition, the judgment unit 121 refers to the minimum value information 109 and judges whether or not the luminance of the light source 180 specified by the calculated updated luminance information 104-n is lower than the luminance of the light source 180 specified by the minimum value information 109.
[0055] If the calculated luminance of the light source 180 specified by the updated luminance information 104-n includes a luminance lower than the luminance of the light source 180 specified by the minimum value information 109, the luminance management unit 122 changes the luminance lower than the luminance of the light source 180 specified by the minimum value information 109 to the luminance (minimum value) of the light source 180 specified by the minimum value information 109.
[0056] The luminance management unit 122 updates the luminance information 104-n other than the luminance information 104-n updated based on the operation information JO. That is, if the calculated luminance of the light source 180 is not higher than the luminance of the light source 180 specified by the maximum value information 108 or lower than the luminance of the light source 180 specified by the minimum value information 109, the luminance management unit 122 updates the luminance information 104-n so that the luminance of the light source 180 specified by the updated luminance information 104-n becomes the luminance of the calculated light source 180. Furthermore, if the calculated luminance of the light source 180 is higher than the luminance of the light source 180 specified by the maximum value information 108, the luminance management unit 122 updates the luminance information 104-n so that the luminance of the light source 180 specified by the updated luminance information 104-n becomes the luminance (maximum value) of the light source 180 specified by the maximum value information 108. Furthermore, if the calculated luminance of the light source 180 is lower than the luminance of the light source 180 specified by the minimum value information 109, the luminance information 104-n is updated so that the luminance of the light source 180 specified by the updated luminance information 104-n becomes the luminance of the light source 180 specified by the minimum value information 109 (minimum value).
[0057] 1.3.Projector Operation A specific example of the operation of the projector 1 according to the first embodiment will be described below with reference to FIGS.
[0058] FIG. 4 is an explanatory diagram showing the correspondence relationship between events that occurred in room R1 from time T01 to time T13 and the target value of the luminance of light source 180 that is set according to the illuminance in room R1 from time T01 to time T13. In FIG. 4, the target value of the luminance of light source 180 at each time is indicated by a non-hatched numerical value. FIG. 4 also shows the correspondence relationship between the illuminance of room R1 at each time and the target value of the luminance of light source 180. For example, FIG. 4 shows that at time T01, the illuminance of room R1 falls within the third range, and the target value of the luminance of light source 180 is set to 75% of the maximum value. That is, 75% of the maximum value, which is the luminance specified by third luminance information 107-n, is set as the target value of the luminance of light source 180. Note that the hatched numerical values shown in FIG. 4 are luminances that were not set as the target value of the luminance of light source 180 at each time. For example, in FIG. 4, if the illuminance of room R1 at time T01 falls within the first range, 35% of the maximum value, which is the luminance specified by the first luminance information 105-n, is set as the target value for the luminance of light source 180.
[0059] Note that, hereinafter, the luminance information 104-n at times T01 to T13 may be referred to as luminance information 104-01 to 13. Furthermore, the first luminance information 105-n at times T01 to T13 may be referred to as first luminance information 105-01 to 13. Furthermore, the second luminance information 106-n at times T01 to T13 may be referred to as second luminance information 106-01 to 13. Furthermore, the third luminance information 107-n at times T01 to T13 may be referred to as third luminance information 107-01 to 13. In other words, the "n" attached as the code of the luminance information 104-n, the first luminance information 105-n, the second luminance information 106-n, and the third luminance information 107-n corresponds to "01" to "13" attached as the code of the times T01 to T13 at each time.
[0060] Fig. 5 is a graph for explaining changes over time in the illuminance of room R1 and the luminance of light source 180. The graph shown in Fig. 5 includes changes in the illuminance of room R1 and the luminance of light source 180 from time T01 to time T13. Note that in the graph shown in Fig. 5, the amount of change in the luminance of light source 180 per unit time is shown as being constant.
[0061] At time T01, the illuminance of room R1 belongs to the third range. The target value of the luminance of light source 180 is set to 75% of the maximum value, which is the luminance specified by third luminance information 107-01. Note that, since the luminance of light source 180 has already reached 75% of the maximum target value at time T01, the luminance of light source 180 does not change until time T02. Furthermore, the luminance of light source 180 specified by first luminance information 105-01 is 35% of the maximum value. Furthermore, the luminance of light source 180 specified by second luminance information 106-01 is 55% of the maximum value.
[0062] At time T02, the room R1 becomes dark, and the illuminance changes from the third range to the first range. The projector 1 sets the target value of the luminance of the light source 180 to 35% of the maximum value, which is the luminance specified by the first luminance information 105-02. The projector 1 then controls the projection mechanism 18 to adjust the luminance of the light source 180 to reach 35% of the maximum value. Here, the first luminance information 105-02, the second luminance information 106-02, and the third luminance information 107-02 match the first luminance information 105-01, the second luminance information 106-01, and the third luminance information 107-01, respectively.
[0063] After the luminance of light source 180 reaches 35% of the maximum value, at time T03, the user manually changes the luminance of light source 180 to 40% of the maximum value. Because the illuminance of room R1 falls within the first range, projector 1 updates first luminance information 105-02 to first luminance information 105-03 in response to a first operation from the user. The luminance of light source 180 specified by first luminance information 105-03 is 40% of the maximum value. Furthermore, projector 1 updates second luminance information 106-02 to second luminance information 106-03 based on first luminance information 105-03 and difference information 115. The luminance of light source 180 specified by second luminance information 106-03 is 60% of the maximum value. Furthermore, the projector 1 updates the third luminance information 107-02 to the third luminance information 107-03 based on the first luminance information 105-03 and the difference information 115. The luminance of the light source 180 specified by the third luminance information 107-03 is 80% of the maximum value. Furthermore, the projector 1 sets the target value of the luminance of the light source 180 to 40% of the maximum value, which is the luminance specified by the first luminance information 105-03. Furthermore, the projector 1 controls the projection mechanism 18 to adjust the luminance of the light source 180 so that it reaches 40% of the maximum value.
[0064] In other words, by updating the second luminance information 106-02 based on the first luminance information 105-03 updated in response to the first operation, the degree of difference between the luminance of the light source 180 specified by the first luminance information 105-03 updated in response to the first operation and the luminance of the light source 180 specified by the second luminance information 106-03 updated based on the first luminance information 105-03 updated in response to the first operation matches the degree of difference between the luminance of the light source 180 specified by the first luminance information 105-02 and the luminance of the light source 180 specified by the second luminance information 106-02.
[0065] After the luminance of the light source 180 reaches 40% of the maximum value, the room R1 becomes slightly brighter, and at time T04, the illuminance changes from the first range to the second range. The projector 1 sets the target value of the luminance of the light source 180 to 60% of the maximum value, which is the luminance specified by the second luminance information 106-04. Then, the projector 1 controls the projection mechanism 18 to adjust the luminance of the light source 180 so that it reaches 60% of the maximum value. Here, the first luminance information 105-04, the second luminance information 106-04, and the third luminance information 107-04 match the first luminance information 105-03, the second luminance information 106-03, and the third luminance information 107-03, respectively.
[0066] After the luminance of light source 180 reaches 60% of the maximum value, at time T05, the user manually changes the luminance of light source 180 to 100% of the maximum value, i.e., the maximum value. Because the illuminance of room R1 falls within the second range, projector 1 updates second luminance information 106-04 to second luminance information 106-05 in response to a second operation from the user. The luminance of light source 180 specified by second luminance information 106-05 is the maximum value. Furthermore, projector 1 updates first luminance information 105-04 to first luminance information 105-05 based on second luminance information 106-05 and difference information 115. The luminance of light source 180 specified by first luminance information 105-05 is 80% of the maximum value. Furthermore, the projector 1 updates the third luminance information 107-04 to the third luminance information 107-05 based on the second luminance information 106-05 and the difference information 115. At this time, if the luminance of the light source 180 specified by the third luminance information 107-05 is calculated so that the difference between the luminance of the light source 180 specified by the second luminance information 106-05 and the luminance of the light source 180 specified by the third luminance information 107-05 is constant (specifically, so that the difference is 20% of the maximum value), the luminance of the light source 180 becomes 120% of the maximum value. Therefore, the projector 1 executes a process of changing the calculated luminance of the light source 180 from 120% of the maximum value to the maximum value, and then updates the third luminance information 107-04 to the third luminance information 107-05. Furthermore, the projector 1 sets the target value of the luminance of the light source 180 to the maximum value, which is the luminance specified by the second luminance information 106-05. Furthermore, the projector 1 controls the projection mechanism 18 to adjust the brightness of the light source 180 so that it reaches its maximum value.
[0067] In other words, by updating the first luminance information 105-04 based on the second luminance information 106-05 updated in response to the second operation, the degree of difference between the luminance of the light source 180 specified by the second luminance information 106-05 updated in response to the second operation and the luminance of the light source 180 specified by the first luminance information 105-05 updated based on the second luminance information 106-05 updated in response to the second operation matches the degree of difference between the luminance of the light source 180 specified by the first luminance information 105-04 and the luminance of the light source 180 specified by the second luminance information 106-04.
[0068] After the luminance of light source 180 reaches its maximum value, room R1 becomes dark, and at time T06, the illuminance changes from the second range to the first range. Projector 1 sets the target value of the luminance of light source 180 to 80% of the maximum value, which is the luminance specified by first luminance information 105-06. Then, projector 1 controls projection mechanism 18 to adjust the luminance of light source 180 so that it reaches 80% of the maximum value. Here, first luminance information 105-06, second luminance information 106-06, and third luminance information 107-06 match first luminance information 105-05, second luminance information 106-05, and third luminance information 107-05, respectively.
[0069] After the luminance of light source 180 reaches 80% of the maximum value, at time T07, the user manually changes the luminance of light source 180 to the maximum value. Because the illuminance of room R1 belongs to the first range, projector 1 updates first luminance information 105-06 to first luminance information 105-07 in response to a first operation from the user. The luminance of light source 180 specified by first luminance information 105-07 is the maximum value. Furthermore, projector 1 updates second luminance information 106-06 to second luminance information 106-07 based on first luminance information 105-07 and difference information 115. At this time, if the luminance of light source 180 specified by second luminance information 106-07 is calculated so that the difference between the luminance of light source 180 specified by first luminance information 105-07 and the luminance of light source 180 specified by second luminance information 106-07 is constant (specifically, so that it is 20% of the maximum value), the luminance of light source 180 will be 120% of the maximum value. Therefore, projector 1 executes a process to change the calculated luminance of light source 180 from 120% of the maximum value to the maximum value, and then updates second luminance information 106-06 to second luminance information 106-07. Furthermore, projector 1 updates third luminance information 107-06 to third luminance information 107-07 based on first luminance information 105-07 and difference information 115. At this time, if the luminance of the light source 180 specified by the third luminance information 107-07 is calculated so that the difference between the luminance of the light source 180 specified by the first luminance information 105-07 and the luminance of the light source 180 specified by the third luminance information 107-07 is constant (specifically, so that it is 40% of the maximum value), the luminance of the light source 180 will be 140% of the maximum value. Therefore, the projector 1 executes a process to change the calculated luminance of the light source 180 from 140% of the maximum value to the maximum value, and then updates the third luminance information 107-06 to the third luminance information 107-07. Furthermore, the projector 1 sets the target value of the luminance of the light source 180 to the maximum value, which is the luminance specified by the first luminance information 105-07. Furthermore, the projector 1 controls the projection mechanism 18 to adjust the luminance of the light source 180 so that it reaches the maximum value.
[0070] That is, when the second luminance information 106-06 is updated based on the first luminance information 105-07 updated in response to the first operation, if the luminance of the light source 180 specified by the second luminance information 106-06 becomes higher than the maximum value, the maximum value is set as the luminance of the light source 180 specified by the second luminance information 106-07 updated based on the first luminance information 105-07 updated in response to the first operation.
[0071] After the luminance of light source 180 reaches its maximum value, at time T08, room R1 becomes brighter and the illuminance changes from the first range to the third range. Projector 1 sets the target value of the luminance of light source 180 to the maximum value, which is the luminance specified by third luminance information 107-08. Then, projector 1 controls projection mechanism 18 to adjust the luminance of light source 180 to reach the maximum value. Note that, since the target value, the maximum value, has already been reached at time T08, the luminance of light source 180 does not change until time T09. Furthermore, first luminance information 105-08, second luminance information 106-08, and third luminance information 107-08 match first luminance information 105-07, second luminance information 106-07, and third luminance information 107-07, respectively.
[0072] At time T09, the user manually changes the luminance of light source 180 to 75% of the maximum value. Because the illuminance of room R1 falls within the third range, projector 1 updates third luminance information 107-08 to third luminance information 107-09 in response to a third operation from the user. The luminance of light source 180 specified by third luminance information 107-09 is 75% of the maximum value. Furthermore, projector 1 updates first luminance information 105-08 to first luminance information 105-09 based on third luminance information 107-09 and difference information 115. The luminance of light source 180 specified by first luminance information 105-09 is 35% of the maximum value. Furthermore, projector 1 updates second luminance information 106-08 to second luminance information 106-09 based on third luminance information 107-09 and difference information 115. The luminance of the light source 180 specified by the second luminance information 106-09 is 55% of the maximum value. Furthermore, the projector 1 sets the target value of the luminance of the light source 180 to 75% of the maximum value, which is the luminance specified by the third luminance information 107-09. Furthermore, the projector 1 controls the projection mechanism 18 to adjust the luminance of the light source 180 so that it reaches 75% of the maximum value.
[0073] After the luminance of light source 180 reaches 75% of the maximum value, at time T10, room R1 becomes dark and the illuminance changes from the third range to the first range. Projector 1 sets the target value of the luminance of light source 180 to 35% of the maximum value, which is the luminance specified by first luminance information 105-10. Then, projector 1 controls projection mechanism 18 to adjust the luminance of light source 180 so that it reaches 35% of the maximum value. Here, first luminance information 105-10, second luminance information 106-10, and third luminance information 107-10 match first luminance information 105-09, second luminance information 106-09, and third luminance information 107-09, respectively.
[0074] At time T11, before the luminance of light source 180 reaches 35% of the maximum value, the user manually changes the luminance of light source 180 to 60% of the maximum value. Because the illuminance of room R1 falls within the first range, projector 1 updates first luminance information 105-10 to first luminance information 105-11 in response to a first operation from the user. The luminance of light source 180 specified by first luminance information 105-11 is 60% of the maximum value. Furthermore, projector 1 updates second luminance information 106-10 to second luminance information 106-11 based on first luminance information 105-11 and difference information 115. The luminance of light source 180 specified by second luminance information 106-11 is 80% of the maximum value. Furthermore, the projector 1 updates the third luminance information 107-10 to the third luminance information 107-11 based on the first luminance information 105-11 and the difference information 115. The luminance of the light source 180 specified by the third luminance information 107-11 is the maximum value. Furthermore, the projector 1 sets the target value of the luminance of the light source 180 to 60% of the maximum value, which is the luminance specified by the first luminance information 105-11. Furthermore, the projector 1 controls the projection mechanism 18 to adjust the luminance of the light source 180 to reach 60% of the maximum value. In this case, the luminance of the light source 180 is adjusted to reach the changed target value of 60% of the maximum value without reaching the pre-change target value of 35% of the maximum value.
[0075] After the luminance of light source 180 reaches 60% of the maximum value, at time T12, room R1 becomes brighter and the illuminance changes from the first range to the third range. Projector 1 sets the target value of the luminance of light source 180 to the maximum value, which is the luminance specified by third luminance information 107-12. Then, projector 1 controls projection mechanism 18 to adjust the luminance of light source 180 to reach the maximum value. Here, first luminance information 105-12, second luminance information 106-12, and third luminance information 107-12 match first luminance information 105-11, second luminance information 106-11, and third luminance information 107-11, respectively.
[0076] Before the luminance of the light source 180 reaches its maximum value, the room R1 becomes slightly darker, and at time T13, the illuminance changes from the third range to the second range. The projector 1 sets the target value of the luminance of the light source 180 to 80% of the maximum value, which is the luminance specified by the second luminance information 106-13. The projector 1 then controls the projection mechanism 18 to adjust the luminance of the light source 180 to reach 80% of the maximum value. In this case, the luminance of the light source 180 is adjusted to reach 80% of the maximum value, which is the target value after the change, without reaching the maximum value, which is the target value before the change. Note that the first luminance information 105-13, the second luminance information 106-13, and the third luminance information 107-13 match the first luminance information 105-12, the second luminance information 106-12, and the third luminance information 107-12, respectively.
[0077] Hereinafter, the operation of the projector 1 according to the first embodiment will be described in detail with reference to FIGS.
[0078] 6 is a flowchart for explaining the operation of the projector 1 when adjusting the luminance of the light source 180 based on the illuminance information 103. The series of operations shown in the flowchart is started, for example, when the projector 1 is turned on and the operation device 16 receives an input operation related to the start of operation from the user of the projector 1. The projector 1 also executes the series of operations shown in the flowchart, for example, at time T04 in FIGS. 4 and 5. Note that in this embodiment, it is assumed that the projector 1 projects projection light for displaying the projection image GP onto the wall surface W1 in conjunction with the power being turned on. In other words, it is assumed that the luminance of the light source 180 is equal to or greater than the minimum value before the processing in step S101, which will be described later, is executed.
[0079] In step S101, the illuminance management unit 120 acquires illuminance information 103 corresponding to the illuminance of the room R1 in which the projector 1 is installed from the sensor 14. The illuminance management unit 120 also stores the acquired illuminance information 103 in the storage device 10.
[0080] In step S102, the determination unit 121 refers to the illuminance information 103 and the specified number of times information 111, and determines whether the number of times the illuminance information 103 has been acquired is equal to or greater than the specified number of times. If the number of times the illuminance information 103 has been acquired is equal to or greater than the specified number of times, that is, if YES in step S102, the determination unit 121 proceeds to step S103. If the number of times the illuminance information 103 has been acquired is less than the specified number of times, that is, if NO in step S102, the determination unit 121 proceeds to step S101.
[0081] As described above, the numerical value indicated by the specified number of times information 111 is a natural number equal to or greater than 2. Therefore, in step S102, the determination unit 121 determines whether the number of times that the illuminance information 103 has been acquired is equal to or greater than a predetermined number of times. If the determination in step S102 is YES, multiple pieces of illuminance information 103 are stored in the storage device 10. Furthermore, the projector 1 repeatedly executes the processes in steps S101 and S102 until the number of times that the illuminance information 103 has been acquired becomes equal to or greater than the specified number of times.
[0082] In step S103, the determination unit 121 refers to the plurality of pieces of illuminance information 103 and the state threshold information 112, and determines whether the difference between the maximum illuminance among the illuminances based on the plurality of pieces of illuminance information 103 and the minimum illuminance among the illuminances based on the plurality of pieces of illuminance information 103 is equal to or less than a predetermined value. If the difference between the maximum illuminance among the illuminances based on the plurality of pieces of illuminance information 103 and the minimum illuminance among the illuminances based on the plurality of pieces of illuminance information 103 is equal to or less than the predetermined value, i.e., if the determination in step S103 is YES, the determination unit 121 proceeds to step S104. If the difference between the maximum illuminance among the illuminances based on the plurality of pieces of illuminance information 103 and the minimum illuminance among the illuminances based on the plurality of pieces of illuminance information 103 is greater than the predetermined value, i.e., if the determination in step S103 is NO, the determination unit 121 proceeds to step S110.
[0083] In step S110, the illuminance management unit 120 controls the storage device 10 to delete the illuminance information 103 stored in the storage device 10.
[0084] In step S103, it is determined whether the illuminance of the environment in which the projector 1 is installed is stable or in a transient state based on the plurality of pieces of illuminance information 103. If the illuminance of the environment is in a transient state, there is a large variation in the illuminance value based on the illuminance information 103, and therefore the illuminance information 103 may not have been acquired accurately. For this reason, if the determination in step S103 is NO, that is, if the illuminance of the environment in which the projector 1 is installed is in a transient state, the projector 1 deletes part or all of the illuminance information 103 stored in the storage device 10 by executing the process in step S110. Then, the projector 1 reacquires the illuminance information 103 by executing the process in step S101. The reacquisition of the illuminance information 103 is repeatedly executed until it is determined that the illuminance of the environment in which the projector 1 is installed is stable.
[0085] In step S104, the determination unit 121 refers to the multiple pieces of illuminance information 103 and the illuminance threshold information 113, and determines whether the illuminance of the environment in which the projector 1 is installed falls within a first range. If the illuminance of the environment in which the projector 1 is installed falls within the first range, that is, if YES in step S104, the determination unit 121 proceeds with the process to step S106. If the illuminance of the environment in which the projector 1 is installed does not fall within the first range, that is, if NO in step S104, the determination unit 121 proceeds with the process to step S105.
[0086] In step S105, the determination unit 121 refers to the multiple pieces of illuminance information 103 and the illuminance threshold information 113, and determines whether the illuminance of the environment in which the projector 1 is installed belongs to the second range. If the illuminance of the environment in which the projector 1 is installed belongs to the second range, that is, if YES in step S105, the determination unit 121 proceeds to step S107. If the illuminance of the environment in which the projector 1 is installed does not belong to the second range, that is, if NO in step S105, the determination unit 121 proceeds to step S108.
[0087] In this embodiment, if the determination results in both steps S104 and S105 are NO, the illuminance of the environment in which the projector 1 is installed falls within the third range.
[0088] In step S106, the luminance management unit 122 sets the luminance specified by the first luminance information 105-n as the target value of the luminance of the light source 180.
[0089] In step S107, the luminance management unit 122 sets the luminance specified by the second luminance information 106-n as the target value of the luminance of the light source 180.
[0090] In step S108, the luminance management unit 122 sets the luminance specified by the third luminance information 107-n as the target value of the luminance of the light source 180.
[0091] In step S109, the projection control unit 123 controls the projection mechanism 18 to adjust the luminance of the light source 180 to match the target value. In other words, the projection control unit 123 adjusts the luminance of the light source 180 by referring to the luminance information 104-n.
[0092] If the illuminance of the environment in which the projector 1 is installed belongs to the first range, that is, if the luminance management unit 122 sets the luminance specified by the first luminance information 105-n as the target value of the luminance of the light source 180 in step S106, the projection control unit 123 adjusts the luminance of the light source 180 by referring to the first luminance information 105-n in step S109. Also, if the illuminance of the environment in which the projector 1 is installed belongs to the second range, that is, if the luminance management unit 122 sets the luminance specified by the second luminance information 106-n as the target value of the luminance of the light source 180 in step S107, the projection control unit 123 adjusts the luminance of the light source 180 by referring to the second luminance information 106-n in step S109. Furthermore, if the illuminance of the environment in which the projector 1 is installed falls within the third range, that is, if the luminance management unit 122 sets the luminance specified by the third luminance information 107-n as the target value of the luminance of the light source 180 in step S108, the projection control unit 123 adjusts the luminance of the light source 180 by referring to the third luminance information 107-n in step S109.
[0093] After the operation in step S109 is performed, the processing device 12 ends the series of operations shown in the flowchart of FIG.
[0094] As described above, the projector 1 can adjust the brightness of the light source 180 based on the illuminance information 103 by executing the series of operations shown in the flowchart of FIG.
[0095] FIG. 7 is a flowchart for explaining the operation of the projector 1 when updating the luminance information 104-n that specifies the luminance of the light source 180 in response to an operation from a user to change the luminance of the light source 180. The series of operations shown in the flowchart is started, for example, when the power of the projector 1 is turned on and the operation device 16 receives an input operation related to the start of operation from the user of the projector 1. The projector 1 also executes the series of operations shown in the flowchart, for example, at time T03 in FIGS. 4 and 5. Note that in this embodiment, while the projector 1 executes the series of operations shown in the flowchart of FIG. 7, the projector 1 does not execute the series of operations shown in the flowchart of FIG. 6. Also, while the projector 1 executes the series of operations shown in the flowchart of FIG. 6, for example, if the result of the determination in step S201, which will be described later, is YES, the projector 1 ends the series of operations shown in the flowchart of FIG. 6.
[0096] In step S201, the operation information acquisition unit 124 determines whether the operation device 16 has received an operation from the user to change the luminance of the light source 180. If the operation device 16 has received an operation from the user to change the luminance of the light source 180, that is, if the answer is YES in step S201, the operation information acquisition unit 124 proceeds to step S202. If the operation device 16 has not received an operation from the user to change the luminance of the light source 180, that is, if the answer is NO in step S201, the operation information acquisition unit 124 executes the process in step S201 again.
[0097] When the operation device 16 receives an operation to change the luminance of the light source 180 from the user, the operation information acquisition unit 124 acquires operation information JO from the operation device 16. When the operation device 16 does not receive an operation to change the luminance of the light source 180 from the user, the operation information acquisition unit 124 repeats the determination in step S201 until the operation device 16 receives an operation to change the luminance of the light source 180 from the user.
[0098] In step S202, the determination unit 121 refers to the multiple pieces of illuminance information 103 and the illuminance threshold information 113, and determines whether the illuminance of the environment in which the projector 1 is installed belongs to a first range. If the illuminance of the environment in which the projector 1 is installed belongs to the first range, that is, if YES in step S202, the determination unit 121 proceeds to step S204. If the illuminance of the environment in which the projector 1 is installed does not belong to the first range, that is, if NO in step S202, the determination unit 121 proceeds to step S203.
[0099] In step S203, the determination unit 121 refers to the multiple pieces of illuminance information 103 and the illuminance threshold information 113, and determines whether the illuminance of the environment in which the projector 1 is installed belongs to the second range. If the illuminance of the environment in which the projector 1 is installed belongs to the second range, that is, if YES in step S203, the determination unit 121 proceeds to step S205. If the illuminance of the environment in which the projector 1 is installed does not belong to the second range, that is, if NO in step S203, the determination unit 121 proceeds to step S206.
[0100] In this embodiment, if the determination results in both steps S202 and S203 are NO, the illuminance of the environment in which the projector 1 is installed falls within the third range.
[0101] In step S204, the luminance management unit 122 updates the first luminance information 105-n based on the first operation information JO1. In other words, the luminance management unit 122 updates the first luminance information 105-n in response to the first operation from the user.
[0102] In step S205, the luminance management unit 122 updates the second luminance information 106-n based on the second operation information JO2. In other words, the luminance management unit 122 updates the second luminance information 106-n in response to the second operation from the user.
[0103] In step S206, the luminance management unit 122 updates the third luminance information 107-n based on the third operation information JO3. In other words, the luminance management unit 122 updates the third luminance information 107-n in response to a third operation from the user.
[0104] If the illuminance of the environment in which projector 1 is installed falls within a first range, projector 1 updates first luminance information 105-n in response to a first operation from the user. If the illuminance of the environment in which projector 1 is installed falls within a second range, projector 1 updates second luminance information 106-n in response to a second operation from the user. If the illuminance of the environment in which projector 1 is installed falls within a third range, projector 1 updates third luminance information 107-n in response to a third operation from the user.
[0105] In step S207, the brightness management unit 122 calculates the brightness of the light source 180 specified by the updated second brightness information 106-n and the brightness of the light source 180 specified by the updated third brightness information 107-n, based on the first brightness information 105-n updated in response to the first operation and the difference information 115.
[0106] In step S208, the brightness management unit 122 calculates the brightness of the light source 180 specified by the updated first brightness information 105-n and the brightness of the light source 180 specified by the updated third brightness information 107-n, based on the second brightness information 106-n updated in response to the second operation and the difference information 115.
[0107] In step S209, the brightness management unit 122 calculates the brightness of the light source 180 specified by the updated first brightness information 105-n and the brightness of the light source 180 specified by the updated second brightness information 106-n, based on the third brightness information 107-n updated in response to the third operation and the difference information 115.
[0108] The degree of difference between the luminance of light source 180 specified by luminance information 104-n updated in response to a user operation to change the luminance of light source 180 and the luminance of light source 180 specified by the calculated updated luminance information 104-n is determined based on difference information 115. As described above, in this embodiment, difference information 115 specifies the difference between the luminance of light source 180 specified by first luminance information 105-n and the luminance of light source 180 specified by second luminance information 106-n as a maximum value of 20%. Furthermore, the difference information 115 specifies the degree of difference between the luminance of the light source 180 specified by the second luminance information 106-n and the luminance of the light source 180 specified by the third luminance information 107-n as a maximum value of 20%. Furthermore, the difference information 115 specifies the degree of difference between the luminance of the light source 180 specified by the first luminance information 105-n and the luminance of the light source 180 specified by the third luminance information 107-n as a maximum value of 40%.
[0109] In step S210, the determination unit 121 refers to the maximum value information 108 and determines whether the luminances of the light source 180 specified by the calculated updated luminance information 104-n include any that exceed the luminance of the light source 180 specified by the maximum value information 108. If the luminances of the light source 180 specified by the calculated updated luminance information 104-n include any that exceed the luminance of the light source 180 specified by the maximum value information 108, that is, if the answer is YES in step S210, the determination unit 121 proceeds to step S211. If the luminances of the light source 180 specified by the calculated updated luminance information 104-n do not include any that exceed the luminance of the light source 180 specified by the maximum value information 108, that is, if the answer is NO in step S210, the determination unit 121 proceeds to step S212.
[0110] If the calculated luminance of the light source 180 specified by the updated luminance information 104-n includes a luminance that exceeds the luminance of the light source 180 specified by the maximum value information 108, in step S211, the luminance management unit 122 changes the luminance that exceeds the luminance of the light source 180 specified by the maximum value information 108 to the luminance (maximum value) of the light source 180 specified by the maximum value information 108.
[0111] In step S212, determination unit 121 refers to minimum value information 109 and determines whether the calculated luminances of light source 180 specified by updated luminance information 104-n include any luminances lower than the luminance of light source 180 specified by minimum value information 109. If the calculated luminances of light source 180 specified by updated luminance information 104-n include any luminances lower than the luminance of light source 180 specified by minimum value information 109, that is, if YES in step S212, determination unit 121 proceeds to step S213. If the calculated luminances of light source 180 specified by updated luminance information 104-n do not include any luminances lower than the luminance of light source 180 specified by minimum value information 109, that is, if NO in step S212, determination unit 121 proceeds to step S214.
[0112] If the calculated luminance of the light source 180 specified by the updated luminance information 104-n includes a luminance lower than the luminance of the light source 180 specified by the minimum value information 109, in step S213, the luminance management unit 122 changes the luminance lower than the luminance of the light source 180 specified by the minimum value information 109 to the luminance (minimum value) of the light source 180 specified by the minimum value information 109.
[0113] In step S214, the luminance management unit 122 updates the luminance information 104-n other than the luminance information 104-n updated based on the operation information JO.
[0114] If the luminance of light source 180 specified by updated luminance information 104-n calculated in steps S207 to S209 is not greater than the luminance of light source 180 specified by maximum value information 108 or less than the luminance of light source 180 specified by minimum value information 109, then in step S214, luminance information 104-n is updated so that the luminance of light source 180 specified by updated luminance information 104-n becomes the calculated luminance of light source 180. If the luminance of light source 180 specified by updated luminance information 104-n calculated in steps S207 to S209 exceeds the luminance of light source 180 specified by maximum value information 108, then luminance information 104-n is updated in step S214 so that the luminance of light source 180 specified by updated luminance information 104-n becomes the luminance (maximum value) of light source 180 specified by maximum value information 108. Furthermore, if the luminance of the light source 180 specified by the updated luminance information 104-n calculated in steps S207 to S209 is lower than the luminance of the light source 180 specified by the minimum value information 109, in step S214, the luminance information 104-n is updated so that the luminance of the light source 180 specified by the updated luminance information 104-n becomes the luminance of the light source 180 specified by the minimum value information 109 (minimum value).
[0115] After the operation in step S214 is performed, the processing device 12 ends the series of operations shown in the flowchart of FIG.
[0116] As described above, by executing the series of operations shown in the flowchart of FIG. 7, the projector 1 can collectively update the brightness information 104-n that specifies the brightness of the light source 180 in response to a user's operation to change the brightness of the light source 180.
[0117] When changing the luminance of light source 180 in response to a user's operation to change the luminance of light source 180, projector 1 may, for example, execute the series of operations shown in the flowchart of Fig. 6 after executing the series of operations shown in the flowchart of Fig. 7. Furthermore, projector 1 may, for example, execute the processes of steps S106 and S109 between steps S204 and S207 in the flowchart of Fig. 7, execute the processes of steps S107 and S109 between steps S205 and S208, and execute the processes of steps S108 and S109 between steps S206 and S209.
[0118] As described above, according to the first embodiment, the projector 1 can adjust the luminance of the light source 180 according to the illuminance of the environment in which the projector 1 is installed. That is, even when the projector 1 is used in an environment where the illuminance is likely to change, for example, the projector 1 can display the projection image GP at an appropriate luminance by adjusting the luminance of the light source 180 according to the illuminance of the environment.
[0119] Furthermore, according to the first embodiment, when the projector 1 receives an operation from a user to change the luminance of the light source 180, the projector 1 can collectively update the luminance information 104-n that specifies the luminance of the light source 180 in accordance with the operation. That is, the user can easily set the luminance of the light source 180.
[0120] Furthermore, according to the first embodiment, the projector 1 can determine whether the illuminance of the environment in which the projector 1 is installed is in a stable state or a transient state. In other words, the projector 1 can accurately acquire illuminance information 103 according to the illuminance of the environment in which the projector 1 is installed.
[0121] Furthermore, according to the first embodiment, if the projector 1 receives a new operation from the user to change the luminance of the light source 180 before the adjustment process of the luminance of the light source 180 is completed, or if the illuminance of the installation environment changes, the projector 1 can adjust the luminance of the light source 180 to the changed target value without going through the target value before the change. That is, the projector 1 can, for example, shorten the time required to adjust the luminance of the light source 180, or suppress flickering of the projected image GP by omitting unnecessary luminance adjustment.
[0122] As described above, the control method for the projector 1 according to the first embodiment is a control method for the projector 1 including the light source 180, and includes determining whether the illuminance of the room R1 in which the projector 1 is installed belongs to a first range or a second range, and adjusting the luminance of the light source 180 by referring to first luminance information 105-n that specifies the luminance of the light source 180 when the illuminance belongs to the first range when the illuminance of the room R1 belongs to the first range, and adjusting the luminance of the light source 180 by referring to second luminance information 106-n that specifies the luminance of the light source 180 when the illuminance belongs to the second range when the illuminance of the room R1 belongs to the second range. when a first operation to change the luminance of the light source 180 is received from the user when the illuminance of the room R1 belongs to a first range, updating the first luminance information 105-n in accordance with the first operation and updating the second luminance information 106-n based on the first luminance information 105-n updated in accordance with the first operation; when a second operation to change the luminance of the light source 180 is received from the user when the illuminance of the room R1 belongs to a second range, updating the second luminance information 106-n in accordance with the second operation and updating the first luminance information 105-n based on the second luminance information 106-n updated in accordance with the second operation.
[0123] Moreover, the projector 1 according to the first embodiment includes a light source 180 and a processing device 12, and determines whether the illuminance of a room R1 in which the projector 1 is installed belongs to a first range or a second range; when the illuminance of the room R1 belongs to the first range, adjusts the luminance of the light source 180 by referring to first luminance information 105-n that specifies the luminance of the light source 180 when the illuminance belongs to the first range; when the illuminance of the room R1 belongs to the second range, adjusts the luminance of the light source 180 by referring to second luminance information 106-n that specifies the luminance of the light source 180 when the illuminance belongs to the second range; and when the illuminance of the room R1 belongs to the first range, adjusts the luminance of the light source 180 by referring to When a first operation to change the luminance of the light source 180 is received from the user in a state where the illuminance of the room R1 belongs to a second range, the first luminance information 105-n is updated in accordance with the first operation, and the second luminance information 106-n is updated based on the first luminance information 105-n updated in accordance with the first operation; when a second operation to change the luminance of the light source 180 is received from the user in a state where the illuminance of the room R1 belongs to a second range, the second luminance information 106-n is updated in accordance with the second operation, and the first luminance information 105-n is updated based on the second luminance information 106-n updated in accordance with the second operation.
[0124] That is, the projector 1 according to this embodiment can adjust the luminance of the light source 180 in stages according to the illuminance of the environment in which the projector 1 is installed. In addition, when an operation to change the luminance of the light source 180 is received from a user, the luminance information 104-n that specifies the luminance of the light source 180 can be updated collectively in accordance with the operation. This allows the projector 1 to automatically adjust the luminance of the light source 180 even if the illuminance of the environment changes after the user manually changes the luminance of the light source 180. Furthermore, when the user of the projector 1 manually changes the luminance of the light source 180 when the illuminance of the environment falls within either the first range or the second range, the user of the projector 1 does not need to manually set the luminance of the light source 180 that corresponds to the other of the first range or the second range. That is, the user of the projector 1 can easily set the luminance of the light source 180.
[0125] In the first embodiment, the projector 1 is an example of a "display device," the light source 180 is an example of a "light source," the first luminance information 105-n is an example of "first luminance information," the second luminance information 106-n is an example of "second luminance information," and the processing device 12 is an example of "one or more processing devices." Furthermore, the first range is an example of a "first range," the second range is an example of a "second range," the first operation is an example of a "first operation," the second operation is an example of a "second operation," and room R1 is an example of an "environment." Furthermore, if the "first luminance information" is the first luminance information 105-02, the first luminance information 105-03 is an example of the "updated first luminance information." Furthermore, if the "second luminance information" is the second luminance information 106-04, the second luminance information 106-05 is an example of the "updated second luminance information."
[0126] Furthermore, in the control method for projector 1 according to the first embodiment, the upper limit value of the first range is smaller than the lower limit value of the second range, the brightness of light source 180 has a maximum value, the brightness of light source 180 specified by first brightness information 105-n is equal to or less than the brightness of light source 180 specified by second brightness information 106-n, and in updating second brightness information 106-n based on first brightness information 105-n updated in response to a first operation, if the brightness of light source 180 specified by second brightness information 106-n becomes higher than the maximum value, the maximum value is set as the brightness of light source 180 specified by second brightness information 106-n updated based on first brightness information 105-n updated in response to the first operation.
[0127] That is, when the projector 1 according to the present embodiment collectively updates the luminance information 104-n in response to a user operation to change the luminance of the light source 180, if the luminance of the light source 180 specified by the updated luminance information 104-n exceeds the maximum value, the luminance exceeding the maximum value can be changed to the maximum value. This allows the user of the projector 1 to update the luminance information 104-n when setting the luminance of the light source 180 without being restricted by the maximum value.
[0128] In the first embodiment, the "maximum value" is the luminance of the light source 180 specified by the maximum value information 108, for example.
[0129] Furthermore, in the control method for projector 1 according to the first embodiment, the upper limit value of the first range is smaller than the lower limit value of the second range, the luminance of light source 180 has a minimum value, the luminance of light source 180 specified by first luminance information 105-n is equal to or less than the luminance of light source 180 specified by second luminance information 106-n, and in updating first luminance information 105-n based on second luminance information 106-n updated in response to a second operation, if the luminance of light source 180 specified by first luminance information 105-n becomes lower than the minimum value, the minimum value is set as the luminance of light source 180 specified by first luminance information 105-n updated based on second luminance information 106-n updated in response to the second operation.
[0130] That is, when the projector 1 according to the present embodiment collectively updates the luminance information 104-n in response to a user operation to change the luminance of the light source 180, if the luminance of the light source 180 specified by the updated luminance information 104-n falls below the minimum value, the luminance below the minimum value can be changed to the minimum value. This allows the user of the projector 1 to update the luminance information 104-n when setting the luminance of the light source 180 without being restricted by the setting minimum value.
[0131] In the first embodiment, the "minimum value" is the luminance of the light source 180 specified by the minimum value information 109, for example.
[0132] Furthermore, in the control method for the projector 1 according to the first embodiment, by updating the second luminance information 106-n based on the first luminance information 105-n updated in response to the first operation, the degree of difference between the luminance of the light source 180 specified by the first luminance information 105-n updated in response to the first operation and the luminance of the light source 180 specified by the second luminance information 106-n updated based on the first luminance information 105-n updated in response to the first operation is determined based on the luminance of the light source 180 specified by the first luminance information 105-n and the luminance of the light source 180 specified by the second luminance information 106-n. By updating the first luminance information 105-n based on the second luminance information 106-n updated in response to the second operation, the degree of difference between the luminance of the light source 180 specified by the second luminance information 106-n updated in response to the second operation and the luminance of the light source 180 specified by the first luminance information 105-n updated based on the second luminance information 106-n updated in response to the second operation matches the degree of difference between the luminance of the light source 180 specified by the first luminance information 105-n and the luminance of the light source 180 specified by the second luminance information 106-n.
[0133] That is, the projector 1 according to this embodiment can keep the degree of difference in the luminance of the light source 180 specified by the plurality of pieces of luminance information 104-n constant before and after an update. This allows the user of the projector 1 to set the degree of difference in the luminance of the light source 180 specified by the plurality of pieces of luminance information 104-n to any value.
[0134] In addition, the control method for projector 1 according to the first embodiment further includes acquiring illuminance information 103 multiple times according to the illuminance of room R1 in which projector 1 is installed, and if the difference between the maximum illuminance among the illuminances based on the multiple illuminance information 103 and the minimum illuminance among the illuminances based on the multiple illuminance information 103 is less than a predetermined value, determining whether the illuminance of room R1 in which projector 1 is installed belongs to a first range or a second range based on the multiple illuminance information 103.
[0135] That is, the projector 1 according to this embodiment can determine whether the illuminance of the environment in which the projector 1 is installed is in a stable state or a transient state. That is, the projector 1 can accurately adjust the luminance of the light source 180 by using the highly accurate illuminance information 103 acquired when the illuminance of the environment in which the projector 1 is installed is in a stable state.
[0136] In the first embodiment, the illuminance information 103 is an example of "illuminance information." In the first embodiment, the "predetermined value" is an example of a numerical value indicated by the state threshold information 112.
[0137] 2. Variations Each of the above embodiments can be modified in various ways. Specific modified embodiments are exemplified below. Furthermore, two or more embodiments arbitrarily selected from the following examples can be appropriately combined within a range that does not contradict each other. For elements in the modified examples exemplified below that have the same actions and functions as the above-described embodiments, the symbols used in the above explanations will be used and detailed explanations of each will be omitted where appropriate.
[0138] 2.1. Variation 1 In the above-described embodiment, the case where determining whether the illuminance of the environment in which the projector 1 is installed is in a stable state is exemplified as determining whether the difference between the maximum illuminance among the illuminances based on the plurality of pieces of illuminance information 103 and the minimum illuminance among the illuminances based on the plurality of pieces of illuminance information 103 is equal to or less than a predetermined value, but the present invention is not limited to such an embodiment. For example, in the projector 1A according to this modification, it is assumed that determining whether the illuminance of the environment in which the projector 1A is installed is in a stable state is determining whether the difference between the illuminances based on the illuminance information 103 acquired in any two consecutive pieces of the plurality of pieces of illuminance information 103 is equal to or less than a predetermined value. In this modification, the state threshold information 112 is information that represents a numerical value that serves as a threshold when determining whether the difference between the illuminances based on the illuminance information 103 acquired in any two consecutive pieces of the plurality of pieces of illuminance information 103 is equal to or less than the predetermined value.
[0139] As described above, according to Modification 1, projector 1A can determine whether the illuminance of the environment in which projector 1A is installed is stable or in a transient state. In other words, projector 1A can accurately acquire illuminance information 103 according to the illuminance of the environment in which projector 1A is installed.
[0140] As described above, the control method for projector 1A according to variant example 1 further includes acquiring illuminance information 103 multiple times according to the illuminance of room R1 in which projector 1A is installed, and if the difference in illuminance based on illuminance information 103 acquired in any two consecutive times among the multiple illuminance information 103 is less than a predetermined value, it is determined based on the multiple illuminance information 103 whether the illuminance of room R1 in which projector 1A is installed belongs to the first range or the second range.
[0141] That is, projector 1A according to this modification can determine whether the illuminance of the environment in which projector 1A is installed is in a stable state or a transient state. That is, projector 1A can accurately adjust the luminance of light source 180 by using highly accurate illuminance information 103 acquired when the illuminance of the environment in which projector 1A is installed is in a stable state.
[0142] In Modification 1, projector 1A is an example of a "display device," and illuminance information 103 is an example of "illuminance information." Furthermore, the first range is an example of a "first range," the second range is an example of a "second range," and the room R1 is an example of an "environment." In addition, in the first modification, the "predetermined value" is an example of a numerical value indicated by the state threshold information 112.
[0143] 2.2. Variation 2 In the above-described embodiment and modified examples, when determining whether the illuminance of the environment in which the projector is installed belongs to the first range, the second range, or the third range, an average value of the illuminance based on the plurality of illuminance information 103 is used as the illuminance of the environment in which the projector is installed. However, the present invention is not limited to this. For example, the average value may be the maximum value of the illuminance based on the plurality of illuminance information 103, the minimum value of the illuminance based on the plurality of illuminance information 103, or the median value of the illuminance based on the plurality of illuminance information 103.
[0144] 2.3. Variation 3 In the above-described embodiment and modified examples, when the luminance of light source 180 is adjusted, the amount of change in the luminance of light source 180 per unit time is constant or approximately constant. However, the present invention is not limited to this example. For example, the luminance of light source 180 may be adjusted so that the time required from the start of luminance adjustment to the end of luminance adjustment is constant or approximately constant. Specifically, the luminance of light source 180 may be adjusted so that the time required from the start of luminance adjustment to the end of luminance adjustment is 40 seconds, which is approximately the same as the time it takes for the human eye to adapt to light. This allows luminance adjustment to be performed without causing discomfort to the user.
[0145] 2.4. Variation 4 In the above-described embodiment and modified example, the illuminance of the environment in which the projector is installed is classified into one of three ranges, but the present invention is not limited to this. For example, the illuminance of the environment in which the projector is installed may be classified into one of two ranges, or into one of four or more ranges.
[0146] 2.5. Variation 5 In the above-described embodiment and modified examples, the difference information 115 specifies the difference between the updated luminance information 104-n and the luminance information 104-n calculated based on the updated luminance information 104-n as a predetermined value as the degree of difference between the luminance information 104-n updated in response to a user's operation to change the luminance of the light source 180 and the luminance information 104-n calculated based on the updated luminance information 104-n, but the present invention is not limited to this embodiment. For example, the difference information 115 may specify the ratio between the updated luminance information 104-n and the luminance information 104-n calculated based on the updated luminance information 104-n as a predetermined value as the degree of difference between the luminance information 104-n updated in response to a user's operation to change the luminance of the light source 180 and the luminance information 104-n calculated based on the updated luminance information 104-n. Specifically, the difference information 115 may specify the ratio of the luminance of the light source 180 specified by the first luminance information 105-n to the luminance of the light source 180 specified by the second luminance information 106-n as 2:3, as the degree of difference between the luminance of the light source 180 specified by the first luminance information 105-n and the luminance of the light source 180 specified by the second luminance information 106-n. [Explanation of symbols]
[0147] 1...projector, 9...controller, 10...storage device, 12...processing device, 14...sensor, 16...operation device, 18...projection mechanism, 101...program, 102...projected image information, 103...illuminance information, 104...luminance information, 105...first luminance information, 106...second luminance information, 107...third luminance information, 108...maximum value information, 109...minimum value information, 110...threshold value information, 111...specified number of times information, 112...status threshold value information, 113...illuminance threshold value information, 120...illuminance management unit, 121...determination unit, 122...luminance management unit, 123...projection control unit, 124...operation information acquisition unit, 180...light source, F1...window, GP...projected image, L1...lighting, R1...room, T01...time, W1...wall, W2...wall.
Claims
1. A method for controlling a display device having a light source, comprising: determining whether the illuminance of an environment in which the display device is installed falls within a first range or a second range; When the illuminance falls within the first range, adjusting the luminance of the light source by referring to first luminance information that specifies the luminance of the light source when the illuminance falls within the first range; When the illuminance falls within the second range, adjusting the luminance of the light source by referring to second luminance information that specifies the luminance of the light source when the illuminance falls within the second range; when a first operation for changing the luminance of the light source is received from a user in a state where the illuminance falls within the first range, updating the first luminance information in accordance with the first operation; updating the second luminance information based on first luminance information updated in response to the first operation; when a second operation for changing the luminance of the light source is received from a user in a state where the illuminance falls within the second range, updating the second luminance information in accordance with the second operation; updating the first luminance information based on second luminance information updated in response to the second operation; A method for controlling a display device, comprising:
2. the upper limit of the first range is smaller than the lower limit of the second range, the luminance of the light source has a maximum value; the luminance of the light source specified by the first luminance information is equal to or less than the luminance of the light source specified by the second luminance information, When updating the second luminance information based on the first luminance information updated in response to the first operation, if the luminance of the light source designated by the second luminance information becomes higher than the maximum value, the maximum value is set as the luminance of the light source designated by the second luminance information updated based on the first luminance information updated in response to the first operation. The method for controlling the display device according to claim 1 .
3. the upper limit of the first range is smaller than the lower limit of the second range, the luminance of the light source has a minimum value; the luminance of the light source specified by the first luminance information is equal to or less than the luminance of the light source specified by the second luminance information, When updating the first luminance information based on the second luminance information updated in response to the second operation, if the luminance of the light source designated by the first luminance information becomes lower than the minimum value, the minimum value is set as the luminance of the light source designated by the first luminance information updated based on the second luminance information updated in response to the second operation.
3. A method for controlling the display device according to claim 1.
4. by updating the second luminance information based on the first luminance information updated in response to the first operation, a degree of difference between the luminance of the light source designated by the first luminance information updated in response to the first operation and the luminance of the light source designated by the second luminance information updated based on the first luminance information updated in response to the first operation matches a degree of difference between the luminance of the light source designated by the first luminance information and the luminance of the light source designated by the second luminance information, By updating the first luminance information based on the second luminance information updated in response to the second operation, a degree of difference between the luminance of the light source designated by the second luminance information updated in response to the second operation and the luminance of the light source designated by the first luminance information updated based on the second luminance information updated in response to the second operation coincides with a degree of difference between the luminance of the light source designated by the first luminance information and the luminance of the light source designated by the second luminance information. A method for controlling the display device according to any one of claims 1 to 3.
5. acquiring illuminance information corresponding to the illuminance of an environment in which the display device is installed a plurality of times; Further comprising: when a difference between the maximum illuminance among the illuminances based on the plurality of pieces of illuminance information and the minimum illuminance among the illuminances based on the plurality of pieces of illuminance information is equal to or less than a predetermined value, determine whether the illuminance of the environment in which the display device is installed falls within the first range or the second range based on the plurality of pieces of illuminance information; A method for controlling the display device according to any one of claims 1 to 4.
6. acquiring illuminance information corresponding to the illuminance of an environment in which the display device is installed a plurality of times; Further comprising: if a difference in illuminance based on illuminance information acquired at any two consecutive times among the plurality of pieces of illuminance information is equal to or less than a predetermined value, determine whether the illuminance of the environment in which the display device is installed falls within the first range or the second range based on the plurality of pieces of illuminance information; A method for controlling the display device according to any one of claims 1 to 4.
7. A light source and one or more processing devices; Equipped with The processing device includes: determining whether the illuminance of the environment in which the device is installed falls within a first range or a second range; When the illuminance falls within the first range, adjusting the luminance of the light source by referring to first luminance information that specifies the luminance of the light source when the illuminance falls within the first range; When the illuminance falls within the second range, adjusting the luminance of the light source by referring to second luminance information that specifies the luminance of the light source when the illuminance falls within the second range; when a first operation for changing the luminance of the light source is received from a user in a state where the illuminance falls within the first range, updating the first luminance information in accordance with the first operation; updating the second luminance information based on first luminance information updated in response to the first operation; when a second operation for changing the luminance of the light source is received from a user in a state where the illuminance falls within the second range, updating the second luminance information in accordance with the second operation; updating the first luminance information based on second luminance information updated in response to the second operation; A display device that performs the above.
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