The present invention relates generally lighting devices, and more particularly, to system and methods for controlling the ON/OFF modes and dimming functionality of outdoor lights in a low cost, convenient, environmentally safe, intelligent, highly reliable and cost effective manner.
Earlier outdoor lights were all about different types of light distribution corresponding to the type to usage and coverage area. With the introduction of LED luminaires, the concept of every saving became one of the most important parameter for illuminating equipments. But today a luminaire is considered incomplete without the capability of automated ON/OFF control and is the most sought after criteria apart from light pattern and percentage energy saving.
Now a days, the most preferred method of controlling the ON/OFF modes of outdoor lights, e.g., street lights, in the industry is by using bi-metal strip relay, LDR based sensors, which automatically switches ON and OFF the out-door lights, such as street lights, parking and other outdoor lights, by sensing the lumens/ambient light as opposed to centrally or manually controlled power switches.
Although the presently available photos sensors are capable of providing the required ON/OFF functionality, but ironically the same photo sensors are also the weakest link in the lighting system for a number of reasons, including: the photo sensor is a costly item to replace; the current photo sensors use discrete components with expansion metal relays which have a very short life/MTBF and hence needs frequent replacements which further make them expensive; photo sensors switch the outdoor lights ON and OFF based on a fixed threshold value of ambient light which cannot be altered as per requirement without a design modification; the actual power consumption is much higher than required as these sensors would switch on the light only to full power consumption mode (i.e. full light output) even though a lower light output is adequate at that particular ambient light; as the sensors systems do not carry any intelligence therefore they are not capable of differentiating sudden low light levels for reasons like passing clouds, momentary light blocks due to birds etc.
As an answer to the complaints of frequent replacement of photo sensors screw on replacement sensors were introduced in the market. This approach reduces the time to replace the sensor, however, the approach still does not prevent a maintenance call which turns out to be expensive because a bucket truck has to be sent out to reach the top of the pole and the hourly rate on that is high.
Although the prior art discloses different techniques for controlling the ON/OFF modes and dimming functionality of outdoor lights, but the features of the conventional techniques for controlling the ON/OFF modes and dimming functionality of outdoor lights, disclose complex designs and bulky structural indices that hinder their performance. Many such techniques are too complex for reliable operation and fail to provide efficient means for controlling the ON/OFF modes and dimming functionality of outdoor lights. No such system or technique is available in the commercial market at the present time which is capable of making the ambient light sensing capability intelligent and more reliable by putting in computing capability and using chip based sensor with high life expectancy.
In view of the disadvantages inherent in the conventional means of controlling the ON/OFF modes of street lights in the industry, it has remained a constant concern to provide for more practical, more efficient system and method for making the ambient light sensing capability intelligent and more reliable by putting in computing capability and using chip based sensor with high life expectancy and also controlling the ON/OFF modes and dimming functionality of outdoor lights, in a convenient, environmentally safe, and cost effective manner.
In view of the foregoing disadvantages inherent in the prior arts, the general purpose of the present invention is to provide an improved combination of convenience and utility, to include the advantages of the prior art, and to overcome the drawbacks inherent in the prior art. Therefore, the task of the inventions is to increase the achievable productivity and its economic efficiency.
The present invention provides an effective system and method for controlling the ON/OFF modes and dimming functionality of outdoor lights in an environmentally safe, convenient, and cost effective manner.
In one aspect, the present invention comprises: at least a multiple sensor bank capable of creating redundancy, increasing life of the sensor based system, reducing maintenance cost; at least a sensor in each sensor bank for increasing sensitivity of the sensor based system and making the system highly precise; and at least a highly powerful micro-controller capable of implanting intelligence into the lights, making the light a true power saving unit by adding dimming functionality, and detecting faulty sensing created by passing by objects using sampling module.
In another aspect, the present invention provides a system for intelligently controlling the ON/OFF modes and dimming functionality for lighting devices with built in redundancy. The system comprises: at least a sensor bank having a plurality of sensors capable of operating over exclusive ambient light levels and creating redundancy; at least a micro-controller configured to add dimming functionality and automatically detecting faulty sensing situations and sudden change in the light level; a polling module capable of detecting the conditions of the sensors and building redundancy; and a sampling module capable of controlling light output based on detected ambient light conditions and ambiguous false detections conditions. A time based dimming module is capable of working as disaster recovery in case of failure of all sensors. The micro-controller uses the sampling module to average out the results captured over a period of approximate 15-30 seconds to remove all possibilities of false reading captured due to sudden light level changes.
In another aspect, the present invention provides a method for intelligently controlling the ON/OFF modes and dimming functionality for lighting devices with built in redundancy. The method comprises the steps of: initializing a data memory and digital and analog pins; running polling module; initializing and switching to time based dimming in case the sensor bank is not working; and running a sampling module if the sensor bank is working.
In another aspect of the present invention, the polling module comprises the steps of: reading analog voltage signals coming from sensor banks and converting the analog voltage signals to digital voltage signals; checking digital voltage; checking sensor bank failure detection; marking the failure sensor bank for not reading failed sensor bank further; reading the working sensor bank in order to built the redundancy; switching to time based module if both sensor banks are failed; averaging out the digital voltages read from the sensor banks; storing the data in internal memory of the micro-controller; checking whether desired samples are collected over 15-20 seconds or not; terminating the polling module in case desired samples are collected; and starting a sampling module for controlling light output based on detected ambient light conditions and also removing ambiguous false condition detections.
In another aspect of the present invention, the sampling module comprises the steps of: studying all the data samples collected and stored in an internal memory of the micro-controller during the polling module to check consistent ambient light change; and setting an actual duty cycle by referring to a voltage versus duty cycle table stored in the non-volatile memory of the micro-controller.
In another aspect, the present invention provides a system for intelligently controlling the ON/OFF modes and dimming functionality for lighting devices with built in redundancy. The system comprises: a plurality of sensor banks having a plurality of sensors capable of operating over exclusive ambient light levels and creating redundancy; and a micro-controller configured to add dimming functionality and automatically detecting faulty sensing situations and sudden change in the light level, wherein computing logics are adapted with the help of a high end micro-controller to increase sensitivity of the system.
An another aspect, the present invention provides a highly sensitive, precise, intelligent and programmable ON/OFF and dimming functionality for outdoor lights with built in redundancy using a combination of microcontroller and ambient light photo sensors.
An another aspect, the present invention comprises means to increase a MTBF of the photo sensor based control by providing a feasible method of implementing sensor redundancy on each light system and/or by eliminating the use of low life expectancy metal relays.
These together with other aspects of the present invention, along with the various features of novelty that characterize the invention, are pointed out with particularity in the detailed description forming a part of this disclosure. For a better understanding of the present invention, its operating advantages, and the specific objects attained by its uses, reference should be made to the accompanying drawings and descriptive matter in which, there are illustrated exemplary embodiments of the present invention.
The advantages and features of the present invention will become better understood with reference to the following more detailed description taken in conjunction with the accompanying drawings, in which like elements are identified with like symbols, and in which:
Like reference numerals refer to like parts throughout several views of the drawings of the present invention.
The exemplary embodiments described herein detail for illustrative purposes are subject to many variations and structure and design. It should be emphasized, however that the present invention is not limited to a particular system and methods for controlling intelligently the ON/OFF modes and dimming functionality of out door lights as shown and described. Rather, the principles of the present invention can be used with a variety of configurations and structural arrangements for controlling the ON/OFF modes and dimming functionality of out door lights. It is understood that various omissions, substitutions of equivalents are contemplated as circumstances may suggest or render expedient, but the present invention is intended to cover the application or implementation without departing from the spirit or scope of the it's claims.
In the following description, for purposes of explanation, numerous specific details are set forth in order to provide a thorough understanding of the present invention. It will be apparent, however, to one skilled in the art that the present invention may be practiced without these specific details.
As used herein, the term ‘computing logic’ or ‘module’ refers to ‘algorithms’, the term ‘light-source’ refers to any semiconductor light source including LEDs, laser diodes, quantum dots or any combination thereof, the term ‘fixture’ refers to housing or compartment, the term ‘plurality’ refers to the presence of more than one of the referenced item, and the terms ‘a’ and ‘an’ do not denote a limitation of quantity but rather denote the presence of at least one of the referenced item.
The present invention provides an effective system and method for controlling the ON/OFF modes and dimming functionality of out door lights in an environmentally safe, intelligent, highly reliable, convenient, and cost effective manner; to include advantages of the existing system and methods, and to overcome the drawbacks inherent therein. The task of the inventions is to increase the achievable productivity and its economic efficiency.
The present invention provides a highly sensitive, precise, intelligent and programmable ON/OFF and dimming functionality for outdoor LED illuminating equipment with built in redundancy using a combination of microcontroller and ambient light chip based photo sensors. The fundamental idea of the invention is to make the ambient light sensing capability intelligent and more reliable by putting in computing capability and using chip based sensor with high life expectancy.
Referring to
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According to an exemplary embodiment, the present invention provides system and methods to resolve the present day challenges and weaknesses of the expansion metal relay based automated ON/OFF control systems 100 for outdoor illuminating equipment by using a plurality of sensor bank 100. The system 100 is enabled with computing logics or modules/algorithms with the help of the high end micro-controller 130.
According to an exemplary embodiment of the present invention, the system 100 is an ambient light based sensor system or chip based sensor system which may includes at least the ambient light sensor or the chip based sensor or photo diode. The chip based sensors may be used instead of the expansion metal relay sensors to increase the life of the sensor system which is one of the major problems faced today. These chip based sensors have a life almost comparable with the solid state lighting system which ranges between 50K to 60K hours. Therefore the chip based sensors may not need frequent field replacements thereby reducing the maintenance cost of the outdoor illuminating equipments.
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As explained above, with the change in ambient light falling on the sensor banks 110, the photocurrent flowing through the sensors 112 and 114 changes as per the above explanation in
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According to an exemplary embodiment of the present invention, this type of high precision sensing capability along with the micro-controller 130 with polling module as discussed earlier helps to build in further intelligence into the lighting systems by allowing powering up of the lights partially to specific percentage levels based on the actual demand of the prevailing ambient light conditions which considerably adds to power saving methodologies.
Referring to
The additional advantage achieved using the principals or applications of the present invention is that the present invention may cater to the varying customer requirements round the world requiring different percentage dimming versus ambient light relationship without any design modifications but by just modifying the corresponding values of column 3 in the below TABLE 2.
Referring to
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The timing based module is illustrated below with an example. If we consider that today [DAY 1] the sensors 112 and 114 are functional the timing data logged in the data memory would look like as shown in below TABLE 3.
If for some reason all the sensors 112 and 114 are detected as failed sometime after DAY 2 operation. The micro-controller 130 immediately initializes and switches to time based module. The micro-controller 130 fetches the instantaneous data of the real time clock and finds that 10 hours have passed since the light switched OFF yesterday. Therefore, the timing based module calculates that the light should switch ON after another 5 hours and 50 minutes. Then set duty cycle to 5% after 10 minutes, 15% after 20 minutes and so on till it switches OFF after 15 hours and 50 minutes of operation. Since the timing based module may continue to supersede the ambient light based algorithm the light would again work on DAY 3, DAY 4 and keep on working based on the stored time tags till the system 100 is replaced.
According to an exemplary embodiment of the present invention, firstly the chip based sensors 112 and 114 may be connected to at least an analog input of the micro-controller 130 which is programmed to generate a digital pulse width modulated signal with varying duty cycle based on a voltage levels received on the analog pins. By the fundamental characteristics of the chip sensors 112 and 114, the internal resistances of the sensors 112 and 114 change with the amount of light exposed on the sensors 112 and 114 due to which the sensors 112 and 114 may allow an increased or a decreased current flow in the system 100. The increase or the decrease in the current flow is then may be converted to increased or decreased voltage drop across resistance packs connected in series which may be reflected at the analog pins of the micro-controller 130. The micro-controller 130 may works on a polling module which may constantly monitors the voltages on its analog pins. When the micro-controller 130 senses a change in the voltage at the analog pins, the micro-controller 130 may compare the change in the voltage with a duty cycle versus voltage table which may be pre-programmed in an algorithm fed into the micro-controller 130. Based on the duty cycle value, the micro-controller 130 may puts out a pulse width modulated signal from one of its digital pins with the desired duty cycle. In a full glow condition which is when it is completely dark, a duty cycle is 100% and in case of full off condition which is when it is full daylight, the duty cycle is 0%. Moreover, in OFF condition, the micro-controller 130 may also puts out a high digital signal from the digital port which may switches OFF the entire circuit on a parent card further reducing the OFF condition energy consumption.
According to an exemplary embodiment of the present invention, the system 100 and the method 200 is capable of: implementing sensor redundancy on each illuminating equipment; providing an increased MTBF [Mean Time Between Failure] of the photo sensor based control; eliminating the use of expansion metal relays; reducing operational costs by implementing redundancy which reduces the demand for sensor replacements; increasing the capability of the photo-sensor units from just controlling the ON/OFF functionality to ambient light based dimming capability; increasing power savings of outdoor illuminating equipments not only by changing it to solid state lighting but also by lighting them at different percentages (i.e. dimming) as required based on the condition of the ambient light; making the photo sensors 112 and 114 highly sensitivity and precise to ambient light by using sensor banks 110 (i.e. combination of photo sensors 112 and 114) to maximize the power saving capability; implanting intelligence into the outdoor lighting system to make it capable of taking decisions based on various built in complex algorithms.
According to an exemplary embodiment of the present invention, an additional backup/redundancy is provided as a result of the ON/OFF and dimming pattern which gets stored in the micro-controller 130 memory from prior operations, wherein the stored result of the ON/OFF and dimming pattern automatically retrieved in the event all sensors 112 and 114 are blocked or non-operational and the micro-controller 130 starts operating the illuminating equipment in the same manner so that by the time the sensors 112 and 114 are replaced the light is still functional.
Although a particular exemplary embodiment of the present invention has been disclosed in detail for illustrative purposes, it will be recognized to those skilled in the art that variations or modifications of the disclosed invention, including the rearrangement in the configurations of the parts, changes in sizes and dimensions, variances in terms of shape may be possible. Accordingly, the invention is intended to embrace all such alternatives, modifications and variations as may fall within the spirit and scope of the present invention.
The foregoing descriptions of specific embodiments of the present invention have been presented for purposes of illustration and description. They are not intended to be exhaustive or to limit the invention to the precise forms disclosed, and obviously many modifications and variations are possible in light of the above teaching. The embodiments were chosen and described in order to best explain the principles of the invention and its practical application, to thereby enable others skilled in the art to best utilize the invention and various embodiments with various modifications as are suited to the particular use contemplated. It is understood that various omissions, substitutions of equivalents are contemplated as circumstance may suggest or render expedient, but is intended to cover the application or implementation without departing from the spirit or scope of the claims of the present invention.
This non-provisional patent application claims priority from the U.S. provisional patent application Ser. No. 61/309,879 filed on Mar. 3, 2010, the content of which is incorporated herein by reference.
Number | Date | Country | |
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61309879 | Mar 2010 | US |