TW201528671A - Power conversion device and conversion method thereof - Google Patents

Power conversion device and conversion method thereof Download PDF

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TW201528671A
TW201528671A TW103101318A TW103101318A TW201528671A TW 201528671 A TW201528671 A TW 201528671A TW 103101318 A TW103101318 A TW 103101318A TW 103101318 A TW103101318 A TW 103101318A TW 201528671 A TW201528671 A TW 201528671A
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capacitor
power
load
electronic switch
inductor
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TW103101318A
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TWI524641B (en
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Po-Yen Chen
Ching-Tsai Pan
Ta-Sheng Hung
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Hep Tech Co Ltd
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Abstract

A power conversion device is used to convert the electrical energy of a power supply and output it to a load. The power conversion device comprises an electrical energy converter, a first capacitor and a DC-DC converter. Wherein the electrical energy converter is electrically connected to the power supply, for receiving the electrical energy outputted from the power supply and converting into a pulsed DC for output; one end of said first capacitor is electrically connected to the load; the DC-DC converter is electrically connected to the electrical energy converter, the load and the other end of the first capacitor, for receiving the pulse DC outputted from the electrical energy converter. After converted into direct current energy, one portion of it is outputted to the load, and the other portion is outputted to the first capacitor. In addition, the present invention further discloses a conversion method of the electrical energy converter.

Description

電源轉換裝置及其轉換方法 Power conversion device and conversion method thereof

本發明係與電源轉換有關;特別是指一種電源轉換裝置及其轉換方法。 The invention relates to power conversion; in particular to a power conversion device and a conversion method thereof.

按,傳統的電源轉換裝置通常是利用一輸出電容跨接於至電源的輸出端再連接至一負載,藉以直接透過電容之充放電達到電能轉換輸出之目的。而以交直流轉換為例,輸出電容前通常再連接有一整流電路以將交流電能轉換成直流電能。 According to the conventional power conversion device, an output capacitor is connected across the output end of the power supply to a load, so that the charge and discharge can be directly transmitted through the charge and discharge of the capacitor. Taking AC/DC conversion as an example, a rectifying circuit is usually connected before the output capacitor to convert AC power into DC power.

然而,前述用以交直流轉換之電源轉換裝置在作動時,常因為該交流電源的輸入電壓與輸入電流處於相位不同的情況,而導致功率因數低落且電流總諧波失真嚴重。 However, when the power conversion device for AC/DC conversion is operated, the input voltage of the AC power source and the input current are often in different phases, resulting in a low power factor and a serious total harmonic distortion.

除此之外,只有在該整流電路的輸出電壓高於輸出電容的電壓時,整流電路才會對輸出電容進行充電,因此造成輸出電容充能時間短縮,導致該整流電路中之二極體導通時間亦隨之縮短,進而導致導通電流的峰值隨之增大,造成輸入電流波形失真及功率因數降低外,更會使得最後輸出予負載之電能嚴重失真,且亦無法得到良好的電源轉換效率。 In addition, the rectifier circuit charges the output capacitor only when the output voltage of the rectifier circuit is higher than the output capacitor voltage, thereby causing the output capacitor to be charged for a short time, causing the diode in the rectifier circuit to be turned on. The time is also shortened, which leads to an increase in the peak value of the on-current, resulting in distortion of the input current waveform and a decrease in the power factor. The power of the final output to the load is severely distorted, and good power conversion efficiency cannot be obtained.

有鑑於此,本發明之目的用於提供一種電源轉換裝置及其轉換方法,可有效提高功率因數、降低電路成 本,同時可提升電能轉換效率。 In view of this, the object of the present invention is to provide a power conversion device and a conversion method thereof, which can effectively improve power factor and reduce circuit formation. This can also improve the efficiency of power conversion.

緣以達成上述目的,本發明所提供電源轉換裝置用以將一電源之電能轉換後輸出供予一負載,且該電源轉換裝置包含有一電能轉換器、一第一電容以及一直直流轉換器。其中,該電能轉換器電性連接該電源,用以接收該電源輸出之電能,並轉換成脈衝直流後輸出;該第一電容一端電性連接該負載;該直直流轉換器電性連接該電能轉換器、該負載與該第一電容的另一端,用以接收該電能轉換器輸出之脈衝直流,並轉換成直流電能後,一部分輸出予該負載,另一部分輸出予該第一電容。 In order to achieve the above objective, the power conversion device provided by the present invention is configured to convert a power of a power source and output it to a load, and the power conversion device includes a power converter, a first capacitor, and a DC converter. The power converter is electrically connected to the power source for receiving the power output of the power source, and is converted into a pulsed DC output; the first capacitor is electrically connected to the load at one end; the DC converter is electrically connected to the power The converter, the load and the other end of the first capacitor are configured to receive the pulsed direct current outputted by the power converter, and convert the converted to DC power, and then output a portion to the load, and another portion outputs the first capacitor.

依據上述構思,該電源係直流電源,且該電能轉換器包含有一第二電容,用以將該電源輸出之電能轉換成脈衝直流。該直直流轉換器包含有一二極體、一電感、一第三電容以及一電子開關;該二極體之正極連接該第一電容與該二電容的一端,而負極則連接該第二電容之另一端;該電感一端電性連接該二極體之正極,而該電感另一端則電性連接該第一電容的另一端;該第三電容一端連接該二極體之負極以及該負載之其中一端,而該第三電容另一端則連接該電感之任意一端;該電子開關設置於該電感與該第一電容之間的迴路上。 According to the above concept, the power source is a DC power source, and the power converter includes a second capacitor for converting the power output of the power source into a pulsed direct current. The DC-DC converter includes a diode, an inductor, a third capacitor, and an electronic switch; a cathode of the diode is connected to one end of the first capacitor and the second capacitor, and a cathode is connected to the second capacitor The other end of the inductor is electrically connected to the anode of the diode, and the other end of the inductor is electrically connected to the other end of the first capacitor; the third end of the third capacitor is connected to the cathode of the diode and the load One end of the third capacitor is connected to either end of the inductor; the electronic switch is disposed on a loop between the inductor and the first capacitor.

依據上述構思,該電源轉換裝置的轉換方法,包含有下列步驟:A. 導通該電子開關,使該電源之電能對該第一電容以及該第二電容儲能,並傳輸予該負載,且該第一電容對該電感釋能,而該第三電容之儲能輸出供予該負載; B. 阻斷該電子開關,使該電源之電能對該第一電容以及該第二電容儲能,並傳輸予該負載,而該電感之儲能流經該二極體以對該第三電容釋能。 According to the above concept, the conversion method of the power conversion device includes the following steps: A. turning on the electronic switch, causing the power of the power source to store energy to the first capacitor and the second capacitor, and transmitting the load to the load, and the The first capacitor releases the energy to the inductor, and the stored output of the third capacitor is supplied to the load; B. blocking the electronic switch, causing the power of the power source to store energy to the first capacitor and the second capacitor, and transmit the energy to the load, and the energy storage of the inductor flows through the diode to the third capacitor Release energy.

依據上述構思,該電源係交流電源,且該電能轉換器包含有一整流器以及一第二電容,該整流器用以將該電源輸出之電能整流後輸出;該第二電容用以將該整流器輸出之電能轉換成脈衝直流。該直直流轉換器包含有一二極體、一電感、一第三電容以及一電子開關;該二極體之正極連接該第一電容與該二電容的一端,而負極則連接該第二電容之另一端;該電感一端電性連接該二極體之正極,而該電感另一端則電性連接該第一電容的另一端;該第三電容一端連接該二極體之負極以及該負載之其中一端,而該第三電容另一端則連接該電感之任意一端;該電子開關設置於該電感與該第一電容之間的迴路上。 According to the above concept, the power source is an AC power source, and the power converter includes a rectifier and a second capacitor, the rectifier is used to rectify and output the power output of the power source; and the second capacitor is used to output the power of the rectifier. Convert to pulsed DC. The DC-DC converter includes a diode, an inductor, a third capacitor, and an electronic switch; a cathode of the diode is connected to one end of the first capacitor and the second capacitor, and a cathode is connected to the second capacitor The other end of the inductor is electrically connected to the anode of the diode, and the other end of the inductor is electrically connected to the other end of the first capacitor; the third end of the third capacitor is connected to the cathode of the diode and the load One end of the third capacitor is connected to either end of the inductor; the electronic switch is disposed on a loop between the inductor and the first capacitor.

依據上述構思,該電源轉換裝置的轉換方法,包含有下列步驟:A. 導通該電子開關,使該整流器輸出之電能對該第一電容以及該第二電容儲能,並傳輸予該負載,且該第一電容對該電感釋能,而該第三電容之儲能輸出供予該負載;B. 阻斷該電子開關,使該整流器輸出之電能對該第一電容以及該第二電容儲能,並傳輸予該負載,而該電感之儲能流經該二極體以對該第三電容釋能。 According to the above concept, the conversion method of the power conversion device includes the following steps: A. turning on the electronic switch, causing the electrical energy output by the rectifier to store energy to the first capacitor and the second capacitor, and transmitting the load to the load, and The first capacitor releases the energy to the inductor, and the stored output of the third capacitor is supplied to the load; B. blocking the electronic switch, causing the electrical energy output by the rectifier to store energy to the first capacitor and the second capacitor And transmitting to the load, and the stored energy of the inductor flows through the diode to release the third capacitor.

藉此,透過上述之設計,該電源轉換裝置可有效提高功率因數、降低電路成本,同時提升電能轉換效率之優點。 Thereby, through the above design, the power conversion device can effectively improve the power factor, reduce the circuit cost, and at the same time improve the efficiency of the power conversion efficiency.

10‧‧‧電能轉換器 10‧‧‧Power converter

12‧‧‧整流器 12‧‧‧Rectifier

20‧‧‧直直流轉換器 20‧‧‧Direct DC Converter

100‧‧‧負載 100‧‧‧ load

C1‧‧‧第一電容 C 1 ‧‧‧first capacitor

C2‧‧‧第二電容 C 2 ‧‧‧second capacitor

C3‧‧‧第三電容 C 3 ‧‧‧third capacitor

D‧‧‧二極體 D‧‧‧ diode

L‧‧‧電感 L‧‧‧Inductance

SW‧‧‧電子開關 SW‧‧‧Electronic switch

DC‧‧‧直流電源 DC‧‧‧DC power supply

AC‧‧‧交流電源 AC‧‧‧AC power supply

圖1為本發明之電路方塊圖;圖2為本發明第一較佳實施例之電路結構圖;圖3為步驟A時的等效電路圖;圖4為步驟B時的等效電路圖;圖5為本發明第二較佳實施例之電路結構圖;圖6為本發明第三較佳實施例之電路結構圖;圖7為本發明第四較佳實施例之電路結構圖。 1 is a block diagram of a circuit of the present invention; FIG. 2 is a circuit diagram of a first preferred embodiment of the present invention; FIG. 3 is an equivalent circuit diagram of step A; FIG. 4 is an equivalent circuit diagram of step B; 2 is a circuit configuration diagram of a second preferred embodiment of the present invention; FIG. 6 is a circuit configuration diagram of a third preferred embodiment of the present invention; and FIG. 7 is a circuit configuration diagram of a fourth preferred embodiment of the present invention.

為能更清楚地說明本發明,茲舉較佳實施例並配合圖示詳細說明如後。請參圖1所示,本發明第一較佳實施例之電源轉換裝置用以將一直流電源DC之電能轉換後輸出供予一負載100,且該電源轉換裝置包含有一電能轉換器10、一第一電容C1以及一直直流轉換器20。其中:該電能轉換器10電性連接該直流電源DC,用以接收該直流電源DC輸出之電能,並轉換成脈衝直流後輸出。請參閱圖2,於本實施例中,該電能轉換器10包含有一第二電容C2與該直流電源DC併接,用以將該直流電源DC輸出之電能轉換成脈衝直流。 In order that the present invention may be more clearly described, the preferred embodiments are illustrated in the accompanying drawings. As shown in FIG. 1 , the power conversion device of the first preferred embodiment of the present invention is configured to convert the power of the DC power supply DC to a load 100, and the power conversion device includes a power converter 10 and a power converter 10 . The first capacitor C 1 and the DC converter 20 are always. Wherein: the power converter 10 is electrically connected to the DC power source DC for receiving the power output of the DC power source DC, and converting it into a pulsed DC output. Please refer to FIG. 2, in the present embodiment, the power converter 10 comprises a capacitor C 2 and the second DC power source and DC ground, for converting the DC power output of the DC power into pulsed DC.

該第一電容C1一端電性連接該負載100,而與該負載100形成一分壓電路,藉以降低其它內部元件所承受之電壓,而使得該電源轉換裝置可選用耐壓較低之電子元件,進而有效地達到降低成本之目的。 The first capacitor C 1 is electrically connected to the load 100 at one end, and forms a voltage dividing circuit with the load 100 to reduce the voltage of other internal components, so that the power conversion device can select an electron with low withstand voltage. Components, and thus effectively achieve the purpose of reducing costs.

該直直流轉換器20則電性連接該電能轉換器10、該負載100與該第一電容C1的另一端,用以接收該電能轉換器10輸出之脈衝直流,並轉換成直流電能後,一部分輸出予該負載100,另一部分輸出予該第一電容C1。續參閱圖2,於本實施例中,該直直流轉換器20包含有一二極體D、一電感L、一第三電容C3以及一電子開關SW。該二極體D之正極連接該第一電容C1與該二電容C2的一端,而負極則連接該第二電容C1之另一端。該電感L一端電性連接該二極體D之正極,而該電感L另一端則電性連接該第一電容C1的另一端。該第三電容C3一端連接該二極體D之負極以及該負載100之其中一端,而該第三電容C3另一端則連接該電感L之另一端。該電子開關SW則用以設置於該電感L與該第一電容C1之間的迴路上,更詳而言之,該電子開關SW一端連接該電感L以及該第三電容C3,該電子開關SW另一端則連接該第一電容C1與該負載100連接之一端。 20 electrically connected to the straight-DC converter 10 of the power converter, the load 100 with the other end of the first capacitor C 1, a power converter for receiving the output 10 of the DC pulse, and the energy is converted into direct current, portion of the output to the load 100, to another part of the output of the first capacitor C 1. Referring to FIG. 2 , in the embodiment, the DC converter 20 includes a diode D, an inductor L, a third capacitor C 3 , and an electronic switch SW. The anode of the diode D is connected to one end of the first capacitor C 1 and the second capacitor C 2 , and the cathode is connected to the other end of the second capacitor C 1 . One end of the inductor L electrically connected to the cathode of the diode D, and the other end of the inductor L is electrically connected to the other end of the first capacitor C 1. The third capacitor C 3 is connected to one end of the diode D and one end of the load 100, and the other end of the third capacitor C 3 is connected to the other end of the inductor L. The electronic switch SW is disposed on the circuit between the inductor L and the first capacitor C 1 . More specifically, the electronic switch SW is connected to the inductor L and the third capacitor C 3 at one end. The other end of the switch SW is connected to one end of the first capacitor C 1 and the load 100.

於本實施例中,該等電容C1~C3、該電感L、輸入電壓、輸出電壓、該電子開關SW之切換頻率、以及該負載之規格如下表所示: In this embodiment, the capacitances C 1 to C 3 , the inductance L, the input voltage, the output voltage, the switching frequency of the electronic switch SW, and the specifications of the load are as follows:

藉此,透過上述結構設計與規格,在利用下述之電源轉換方法,便可達到增進電能轉換效率之目的,而該方法包含有下列步驟: Therefore, through the above structural design and specifications, the power conversion efficiency can be improved by using the power conversion method described below, and the method includes the following steps:

A. 請參閱圖3,導通該電子開關SW,使該直流電源DC之電能對該第一電容C1以及該第二電容C2儲能,並傳輸予該負載100,且該第一電容C1對該電感L釋能,而該第三電容C3之儲能輸出供予該負載100。 A. Referring to FIG. 3, the electronic switch SW is turned on, and the power of the DC power source DC is stored on the first capacitor C 1 and the second capacitor C 2 and transmitted to the load 100, and the first capacitor C is 1 The energy of the inductor L is released, and the energy storage output of the third capacitor C 3 is supplied to the load 100.

B. 請參閱圖4,阻斷該電子開關SW,使該電源DC之電能對該第一電容C1以及該第二電容C2儲能,並傳輸予該負載100,而該電感L之儲能流經該二極體D以對該第三電容釋能C3B. Referring to FIG. 4, the electronic switch SW is blocked, and the power of the power supply DC is stored in the first capacitor C 1 and the second capacitor C 2 and transmitted to the load 100, and the inductor L is stored. It can flow through the diode D to release the energy C 3 to the third capacitor.

每執行一次步驟A至步驟B後,則表示完成一次週期之作動。是以,在該電源轉換裝置持續作動之情況下,於步驟B後,便繼續重複執行步驟A至步驟B,直至該電源轉換裝置停止作動。 After each step A to step B is performed, it indicates that the operation of one cycle is completed. Therefore, in the case where the power conversion device is continuously operated, after step B, the steps A to B are repeatedly performed until the power conversion device stops operating.

藉此,透過上述之設計,於每次作動週期中,該第三電容C3的跨壓可自動地提供負電位,而導通該二極體D,以使該二極體D導通前後之整體電路結構改變,而可達到快速響應與低漣波輸出電壓之目的,同時可透過該電子開關SW之切換達到提升功率因數之目的。 Therefore, through the above design, the voltage across the third capacitor C 3 can automatically provide a negative potential during each actuation cycle, and the diode D is turned on to make the diode D conductive before and after the whole. The circuit structure is changed, and the purpose of fast response and low chopping output voltage can be achieved, and the switching of the electronic switch SW can achieve the purpose of improving the power factor.

另外,本發明除適用於直直流電源轉換外,亦可如圖5所示,於電能轉換器10增加設計一整流器12,並直接將該整流器12與一交流電源連接,藉以透過該整流器12將交流整流為直流後輸出,並同時利用前述之電源轉換方法,便可達到交直流電源轉換之目的,且同時可達到提升 功率因數、快速響應與低漣波輸出電壓之效果。 In addition, the present invention is applicable to the conversion of the direct current power supply, and as shown in FIG. 5, a rectifier 12 is additionally designed in the power converter 10, and the rectifier 12 is directly connected to an alternating current power source, thereby passing through the rectifier 12. AC rectification is DC output, and at the same time, the above-mentioned power conversion method can be used to achieve the purpose of AC/DC power conversion, and at the same time, it can be improved. Power factor, fast response and low chopping output voltage effects.

值得一提的是,本發明之直直流轉換器20的電子開關SW,只要是設置於該電感L與該第一電容C1之間的迴路上即可,並不限定其詳細之設置位置,舉例來說,除如圖2所示之位置外,亦可如圖6所示,該電子開關SW一端連接該電感L與該二極體D正極相接之一端,該電子開關D另一端則連接該第一電容C1不與該負載100連接之一端。或是如圖7所示,先將該第三電容C3改變位置而與該二極體D連接後,該電子開關SW一端連接該電感L、該二極體D正極以及該第三電容C3,而該電子開關SW另一端則連接該第一電容C1不與該負載100連接之一端,而此電路結構設計,配合上前述之轉換方法,同樣可以達到前述之有效提高功率因數、降低電路成本以及提升電能轉換效率之目的。 It is worth mentioning that the straight-DC converter according to the present invention the electronic switch SW 20, as long as the inductance L is provided in the loop to the first capacitance C 1 between, is not limited to the details of the setting position, For example, in addition to the position shown in FIG. 2, as shown in FIG. 6, one end of the electronic switch SW is connected to one end of the inductor L and the positive pole of the diode D, and the other end of the electronic switch D is Connecting the first capacitor C 1 is not connected to one end of the load 100. Or, as shown in FIG. 7, after the third capacitor C 3 is first changed to be connected to the diode D, the electronic switch SW is connected to the inductor L, the diode D positive electrode, and the third capacitor C at one end. 3, the other end of the electronic switch SW is connected not to the first capacitor C 1, the structure of this circuit design, with the upper end connected with the load 100 of the conversion method can also be effective to achieve the improved power factor, reduced Circuit cost and the purpose of improving power conversion efficiency.

另外,以上所述僅為本發明較佳可行實施例而已,在電氣特性與電路動作原理相同之情況下,電路中所用之元件位置並非唯一,且其數量亦不以單一為限,舉凡應用本發明說明書及申請專利範圍所為之等效電路變化,理應包含在本發明之專利範圍內。 In addition, the above description is only a preferred embodiment of the present invention. In the case where the electrical characteristics and the circuit operation principle are the same, the position of the components used in the circuit is not unique, and the number thereof is not limited to a single one. The equivalent circuit variations of the invention and the scope of the claims are intended to be included within the scope of the invention.

10‧‧‧電能轉換器 10‧‧‧Power converter

20‧‧‧直直流轉換器 20‧‧‧Direct DC Converter

100‧‧‧負載 100‧‧‧ load

C1‧‧‧第一電容 C 1 ‧‧‧first capacitor

DC‧‧‧直流電源 DC‧‧‧DC power supply

Claims (15)

一種電源轉換裝置,用以將一電源之電能轉換後輸出供予一負載,且該電源轉換裝置包含有:一電能轉換器,電性連接該電源,用以接收該電源輸出之電能,並轉換成脈衝直流後輸出;一第一電容,一端電性連接該負載;一直直流轉換器,電性連接該電能轉換器、該負載與該第一電容的另一端,用以接收該電能轉換器輸出之脈衝直流,並轉換成直流電能後,一部分輸出予該負載,另一部分輸出予該第一電容。 A power conversion device for converting power of a power source to output a load, and the power conversion device includes: a power converter electrically connected to the power source for receiving power output of the power source and converting a pulsed DC output; a first capacitor, one end is electrically connected to the load; a DC converter is electrically connected to the power converter, the load and the other end of the first capacitor for receiving the power converter output After the pulsed DC is converted into DC power, a part of the output is output to the load, and another part is output to the first capacitor. 如請求項1所述電源轉換裝置,其中該電源係直流電源,且該電能轉換器包含有一第二電容,用以將該電源輸出之電能轉換成脈衝直流。 The power conversion device of claim 1, wherein the power source is a DC power source, and the power converter includes a second capacitor for converting the power output of the power source into a pulsed DC. 如請求項2所述電源轉換裝置,其中該直直流轉換器包含有一二極體、一電感、一第三電容以及一電子開關;該二極體之正極連接該第一電容與該二電容的一端,而負極則連接該第二電容之另一端;該電感一端電性連接該二極體之正極,而該電感另一端則電性連接該第一電容的另一端;該第三電容一端連接該二極體之負極以及該負載之其中一端,而該第三電容另一端則連接該電感之任意一端;該電子開關設置於該電感與該第一電容之間的迴路上。 The power conversion device of claim 2, wherein the DC converter comprises a diode, an inductor, a third capacitor, and an electronic switch; the anode of the diode is connected to the first capacitor and the second capacitor One end of the second capacitor is connected to the other end of the second capacitor; the other end of the inductor is electrically connected to the other end of the first capacitor; the other end of the third capacitor is electrically connected to the other end of the first capacitor; Connecting the negative pole of the diode and one end of the load, and the other end of the third capacitor is connected to either end of the inductor; the electronic switch is disposed on a loop between the inductor and the first capacitor. 如請求項3所述電源轉換裝置,其中該電子開關一端連接該電感以及該第三電容,該電子開關另一端則連接該第一電容與該負載連接之一端。 The power conversion device of claim 3, wherein one end of the electronic switch is connected to the inductor and the third capacitor, and the other end of the electronic switch is connected to one end of the first capacitor and the load. 如請求項3所述電源轉換裝置,其中該電子開關一端連接該電感與該二極體正極相接之一端,該電子開關另一端則連接該第一電容不與該負載連接之一端。 The power conversion device of claim 3, wherein one end of the electronic switch is connected to one end of the inductor connected to the positive pole of the diode, and the other end of the electronic switch is connected to one end of the first capacitor not connected to the load. 如請求項3所述電源轉換裝置,其中該電子開關一端連接該電感、該二極體正極以及該第三電容,而該電子開關另一端則連接該第一電容不與該負載連接之一端。 The power conversion device of claim 3, wherein the electronic switch has one end connected to the inductor, the diode positive pole and the third capacitor, and the other end of the electronic switch is connected to the first capacitor not connected to the load. 如請求項1所述電源轉換裝置,其中該電源係交流電源,且該電能轉換器包含有一整流器以及一第二電容,該整流器用以將該電源輸出之電能整流後輸出;該第二電容用以將該整流器輸出之電能轉換成脈衝直流。 The power conversion device of claim 1, wherein the power source is an AC power source, and the power converter comprises a rectifier and a second capacitor, wherein the rectifier is used for rectifying and outputting the power output of the power source; The electrical energy output by the rectifier is converted into pulsed direct current. 如請求項7所述電源轉換裝置,其中該直直流轉換器包含有一二極體、一電感、一第三電容以及一電子開關;該二極體之正極連接該第一電容與該二電容的一端,而負極則連接該第二電容之另一端;該電感一端電性連接該二極體之正極,而該電感另一端則電性連接該第一電容的另一端;該第三電容一端連接該二極體之負極以及該負載之其中一端,而該第三電容另一端則連接該電感之任意一端;該電子開關設置於該電感與該第一電容之間的迴路上。 The power conversion device of claim 7, wherein the DC converter comprises a diode, an inductor, a third capacitor, and an electronic switch; the anode of the diode is connected to the first capacitor and the second capacitor One end of the second capacitor is connected to the other end of the second capacitor; the other end of the inductor is electrically connected to the other end of the first capacitor; the other end of the third capacitor is electrically connected to the other end of the first capacitor; Connecting the negative pole of the diode and one end of the load, and the other end of the third capacitor is connected to either end of the inductor; the electronic switch is disposed on a loop between the inductor and the first capacitor. 如請求項8所述電源轉換裝置,其中該電子開關一端連接該電感以及該第三電容,該電子開關另一端則連接該第一電容與該負載連接之一端。 The power conversion device of claim 8, wherein one end of the electronic switch is connected to the inductor and the third capacitor, and the other end of the electronic switch is connected to one end of the first capacitor and the load. 如請求項8所述電源轉換裝置,其中該電子開關一端連接該電感與該二極體正極相接之一端,該電子開關另一端則連接該第一電容不與該負載連接之一端。 The power conversion device of claim 8, wherein one end of the electronic switch is connected to one end of the inductor connected to the positive pole of the diode, and the other end of the electronic switch is connected to one end of the first capacitor not connected to the load. 如請求項8所述電源轉換裝置,其中該電子開關一端連接該電感、該二極體正極以及該第三電容,而該電子開關另一端則連接該第一電容不與該負載連接之一端。 The power conversion device of claim 8, wherein the electronic switch has one end connected to the inductor, the diode positive pole and the third capacitor, and the other end of the electronic switch is connected to the first capacitor not connected to the load. 一種如請求項3所述之電源轉換裝置的轉換方法,包含有下列步驟:A. 導通該電子開關,使該電源之電能對該第一電容以及該第二電容儲能,並傳輸予該負載,且該第一電容對該電感釋能,而該第三電容之儲能輸出供予該負載;B. 阻斷該電子開關,使該電源之電能對該第一電容以及該第二電容儲能,並傳輸予該負載,而該電感之儲能流經該二極體以對該第三電容釋能。 A conversion method of a power conversion device according to claim 3, comprising the steps of: A. turning on the electronic switch, causing the power of the power source to store energy to the first capacitor and the second capacitor, and transmitting the load to the load And the first capacitor releases the energy to the inductor, and the stored output of the third capacitor is supplied to the load; B. blocking the electronic switch, causing the power of the power source to store the first capacitor and the second capacitor And capable of transmitting to the load, and the stored energy of the inductor flows through the diode to release the third capacitor. 如請求項12所述之變壓方法,其中於步驟B之後,更包含有一步驟,係重覆執行步驟A至步驟B。 The method of transforming according to claim 12, wherein after step B, there is further included a step of repeating steps A to B. 一種如請求項8所述之電源轉換裝置的轉換方法,包含有下列步驟:A. 導通該電子開關,使該整流器輸出之電能對該第一電容以及該第二電容儲能,並傳輸予該負載,且該第一電容對該電感釋能,而該第三電容之儲能輸出供予該負載;B. 阻斷該電子開關,使該整流器輸出之電能對該第一電容以及該第二電容儲能,並傳輸予該負載,而 該電感之儲能流經該二極體以對該第三電容釋能。 A method for converting a power conversion device according to claim 8, comprising the steps of: A. turning on the electronic switch, causing the electrical energy output by the rectifier to store energy to the first capacitor and the second capacitor, and transmitting the energy to the first capacitor and the second capacitor a load, and the first capacitor releases the energy to the inductor, and the stored output of the third capacitor is supplied to the load; B. blocking the electronic switch, causing the rectifier to output electrical energy to the first capacitor and the second The capacitor stores energy and transmits it to the load, and The energy storage of the inductor flows through the diode to release the third capacitor. 如請求項14所述之變壓方法,其中,於步驟B之後,更包含有一步驟,係重覆執行步驟A至步驟B。 The method of transforming according to claim 14, wherein after step B, there is further included a step of repeating steps A to B.
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